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  • Question 1 - A 20-year-old man is rushed to the emergency department following his ejection from...

    Correct

    • A 20-year-old man is rushed to the emergency department following his ejection from a car during a road accident.

      During the examination, the patient responds to simple questions with incomprehensible sounds and opens his eyes in response to pain. There is also an abnormal wrist flexion when a sternal rub is applied, and a positive Battle's sign is observed.

      A CT scan of the head is ordered, which reveals a fracture of the petrous temporal bone.

      Which nerve is most likely to be affected by the patient's injury?

      Your Answer: Facial nerve

      Explanation:

      The facial nerve passes through the internal acoustic meatus, which is correct. This nerve provides motor innervation to the muscles of facial expression, parasympathetic innervation to salivary and lacrimal glands, and special sensory innervation of taste in the anterior 2/3 of the tongue via the chorda tympani. The patient in question has a Glasgow Coma Score of 7, indicating nonspecific neurotrauma from a recent road traffic accident. It is unlikely that damage to the internal acoustic meatus would affect the glossopharyngeal or hypoglossal nerves, which pass through different structures. Damage to the oculomotor nerve, which passes through the superior orbital fissure, may cause ptosis and a dilated ‘down-and-out’ pupil.

      Cranial nerves are a set of 12 nerves that emerge from the brain and control various functions of the head and neck. Each nerve has a specific function, such as smell, sight, eye movement, facial sensation, and tongue movement. Some nerves are sensory, some are motor, and some are both. A useful mnemonic to remember the order of the nerves is Some Say Marry Money But My Brother Says Big Brains Matter Most, with S representing sensory, M representing motor, and B representing both.

      In addition to their specific functions, cranial nerves also play a role in various reflexes. These reflexes involve an afferent limb, which carries sensory information to the brain, and an efferent limb, which carries motor information from the brain to the muscles. Examples of cranial nerve reflexes include the corneal reflex, jaw jerk, gag reflex, carotid sinus reflex, pupillary light reflex, and lacrimation reflex. Understanding the functions and reflexes of the cranial nerves is important in diagnosing and treating neurological disorders.

    • This question is part of the following fields:

      • Neurological System
      14.8
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  • Question 2 - A 82-year-old man arrives at the emergency department complaining of bone and abdominal...

    Correct

    • A 82-year-old man arrives at the emergency department complaining of bone and abdominal pain. He appears confused, and his wife reports that he has been experiencing low mood lately. Upon conducting blood tests, it is discovered that he has elevated levels of calcium and parathyroid hormone. What is the probable cause of his hypercalcaemia?

      Your Answer: Increased activity of osteoclasts

      Explanation:

      Primary hyperparathyroidism is the likely diagnosis for this patient, which is typically caused by a single adenoma in the parathyroid gland. The hormone PTH plays a key role in increasing plasma calcium levels while decreasing phosphate levels. This is achieved through increased absorption of calcium in the bowel and kidneys, as well as increased bone resorption through the activity of osteoclasts.

      If osteoblast activity were increased, it would actually decrease plasma calcium levels. Conversely, decreased resorption in the kidneys would result in more calcium being lost in the urine, leading to lower plasma calcium levels. Lower levels of plasma calcium would also result from decreased activity of vitamin D.

      It’s important to note that PTH has no direct effect on calcitonin secretion, which is controlled by plasma calcium levels as well as the hormones gastrin and pentagastrin.

      Maintaining Calcium Balance in the Body

      Calcium ions are essential for various physiological processes in the body, and the largest store of calcium is found in the skeleton. The levels of calcium in the body are regulated by three hormones: parathyroid hormone (PTH), vitamin D, and calcitonin.

      PTH increases calcium levels and decreases phosphate levels by increasing bone resorption and activating osteoclasts. It also stimulates osteoblasts to produce a protein signaling molecule that activates osteoclasts, leading to bone resorption. PTH increases renal tubular reabsorption of calcium and the synthesis of 1,25(OH)2D (active form of vitamin D) in the kidney, which increases bowel absorption of calcium. Additionally, PTH decreases renal phosphate reabsorption.

      Vitamin D, specifically the active form 1,25-dihydroxycholecalciferol, increases plasma calcium and plasma phosphate levels. It increases renal tubular reabsorption and gut absorption of calcium, as well as osteoclastic activity. Vitamin D also increases renal phosphate reabsorption in the proximal tubule.

      Calcitonin, secreted by C cells of the thyroid, inhibits osteoclast activity and renal tubular absorption of calcium.

      Although growth hormone and thyroxine play a small role in calcium metabolism, the primary regulation of calcium levels in the body is through PTH, vitamin D, and calcitonin. Maintaining proper calcium balance is crucial for overall health and well-being.

    • This question is part of the following fields:

      • Neurological System
      33.9
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  • Question 3 - A 15-year-old patient presents with a recurring headache. The patient experiences the headache...

    Correct

    • A 15-year-old patient presents with a recurring headache. The patient experiences the headache twice a week, affecting only one side of the head. The headache is throbbing, lasts for several hours, and is accompanied by nausea, photophobia, and visual disturbances. There is no association with postural changes, and the headache has remained consistent over time. During a cranial nerve examination, you instruct the patient to clench their jaw while palpating the masseter and temporalis muscles to test the trigeminal nerve (CN V). Which components of the trigeminal nerve contain motor fibers?

      Your Answer: Mandibular nerve only.

      Explanation:

      The mandibular branch of the trigeminal nerve (CN V) is unique in that it carries motor fibers, supplying the muscles of mastication (masseter, temporalis, medial and lateral pterygoid muscles), as well as other muscles such as the tensor veli palatini, mylohyoid, the anterior belly of digastric, and tensor tympani.

      Additional information on the trigeminal nerve and its sensory supply can be found below.

      Based on the patient’s symptoms, it appears that they are experiencing a migraine with aura. The unilateral nature of the symptoms, frequency and duration of the attacks, as well as the presence of pain, visual disturbances, nausea, and sensitivity to light all suggest a migraine diagnosis.

      To test the motor component of the mandibular nerve, the clinician may inspect the masseter and temporalis muscles for bulk and palpate them while the patient clenches their jaw. The jaw jerk reflex may also be assessed.

      The trigeminal nerve is the main sensory nerve of the head and also innervates the muscles of mastication. It has sensory distribution to the scalp, face, oral cavity, nose and sinuses, and dura mater, and motor distribution to the muscles of mastication, mylohyoid, anterior belly of digastric, tensor tympani, and tensor palati. The nerve originates at the pons and has three branches: ophthalmic, maxillary, and mandibular. The ophthalmic and maxillary branches are sensory only, while the mandibular branch is both sensory and motor. The nerve innervates various muscles, including the masseter, temporalis, and pterygoids.

    • This question is part of the following fields:

      • Neurological System
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  • Question 4 - A patient in their 50s complains of tenderness in the anatomical snuffbox following...

    Correct

    • A patient in their 50s complains of tenderness in the anatomical snuffbox following a fall. The tendons of the abductor pollicis longus are located along the radial (lateral) border of the anatomical snuffbox.

      What is the nerve that innervates this muscle?

      Your Answer: Radial nerve

      Explanation:

      The correct answer is that the posterior interosseous branch of the radial nerve supplies abductor pollicis longus, along with all the other extensor muscles of the forearm, including supinator. The main trunk of the radial nerve supplies triceps, anconeus, extensor carpi radialis, and brachioradialis. The anterior interosseous nerve supplies flexor digitorum profundus (radial half), flexor pollicis longus, and pronator quadratus. The median nerve supplies the LOAF muscles (lumbricals 1 and 2, opponens pollicis, abductor pollicis brevis, and flexor pollicis brevis). The lateral cutaneous nerve of the forearm has no motor innervation, and the ulnar nerve supplies most of the intrinsic muscles of the hand and two muscles of the anterior forearm: the flexor carpi ulnaris and the medial flexor digitorum profundus.

      The Radial Nerve: Anatomy, Innervation, and Patterns of Damage

      The radial nerve is a continuation of the posterior cord of the brachial plexus, with root values ranging from C5 to T1. It travels through the axilla, posterior to the axillary artery, and enters the arm between the brachial artery and the long head of triceps. From there, it spirals around the posterior surface of the humerus in the groove for the radial nerve before piercing the intermuscular septum and descending in front of the lateral epicondyle. At the lateral epicondyle, it divides into a superficial and deep terminal branch, with the deep branch crossing the supinator to become the posterior interosseous nerve.

      The radial nerve innervates several muscles, including triceps, anconeus, brachioradialis, and extensor carpi radialis. The posterior interosseous branch innervates supinator, extensor carpi ulnaris, extensor digitorum, and other muscles. Denervation of these muscles can lead to weakness or paralysis, with effects ranging from minor effects on shoulder stability to loss of elbow extension and weakening of supination of prone hand and elbow flexion in mid prone position.

      Damage to the radial nerve can result in wrist drop and sensory loss to a small area between the dorsal aspect of the 1st and 2nd metacarpals. Axillary damage can also cause paralysis of triceps. Understanding the anatomy, innervation, and patterns of damage of the radial nerve is important for diagnosing and treating conditions that affect this nerve.

    • This question is part of the following fields:

      • Neurological System
      15.3
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  • Question 5 - The posterior interosseous nerve is a branch of which of the following? ...

    Incorrect

    • The posterior interosseous nerve is a branch of which of the following?

      Your Answer: Deep branch of the radial nerve

      Correct Answer: Median nerve

      Explanation:

      The anterior interosseous nerve is a branch of the median nerve that supplies the deep muscles on the front of the forearm, excluding the ulnar half of the flexor digitorum profundus. It runs alongside the anterior interosseous artery along the anterior of the interosseous membrane of the forearm, between the flexor pollicis longus and flexor digitorum profundus. The nerve supplies the whole of the flexor pollicis longus and the radial half of the flexor digitorum profundus, and ends below in the pronator quadratus and wrist joint. The anterior interosseous nerve innervates 2.5 muscles, namely the flexor pollicis longus, pronator quadratus, and the radial half of the flexor digitorum profundus. These muscles are located in the deep level of the anterior compartment of the forearm.

    • This question is part of the following fields:

      • Neurological System
      10.1
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  • Question 6 - A 32-year-old man is recuperating on the ward after undergoing surgery on his...

    Correct

    • A 32-year-old man is recuperating on the ward after undergoing surgery on his parotid gland. During the ward round, it is observed that he has weakness on the right side of his face. The right side of his forehead lacks wrinkles, and he has difficulty closing his right eye. However, he still has naso-labial folds, and there is no drooping of the mouth. Which branch of the facial nerve is most likely affected by the damage?

      Your Answer: Temporal branch

      Explanation:

      The muscles of facial expression are innervated by the facial nerve, which has five branches: the temporal branch, zygomatic branch, buccal branch, marginal mandibular branch, and cervical branch. The temporal branch specifically provides innervation to the frontalis muscle, which raises the eyebrows and wrinkles the forehead, the corrugator supercilii muscle, which assists in frowning by drawing the eyebrows inferomedially, and the orbicularis oculi muscle, which is responsible for closing the eyelids. During parotid surgery, it is important to be cautious and avoid damaging the facial nerve, which branches within the parotid gland but does not supply it.

      The facial nerve is responsible for supplying the muscles of facial expression, the digastric muscle, and various glandular structures. It also contains a few afferent fibers that originate in the genicular ganglion and are involved in taste. Bilateral facial nerve palsy can be caused by conditions such as sarcoidosis, Guillain-Barre syndrome, Lyme disease, and bilateral acoustic neuromas. Unilateral facial nerve palsy can be caused by these conditions as well as lower motor neuron issues like Bell’s palsy and upper motor neuron issues like stroke.

      The upper motor neuron lesion typically spares the upper face, specifically the forehead, while a lower motor neuron lesion affects all facial muscles. The facial nerve’s path includes the subarachnoid path, where it originates in the pons and passes through the petrous temporal bone into the internal auditory meatus with the vestibulocochlear nerve. The facial canal path passes superior to the vestibule of the inner ear and contains the geniculate ganglion at the medial aspect of the middle ear. The stylomastoid foramen is where the nerve passes through the tympanic cavity anteriorly and the mastoid antrum posteriorly, and it also includes the posterior auricular nerve and branch to the posterior belly of the digastric and stylohyoid muscle.

    • This question is part of the following fields:

      • Neurological System
      17.9
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  • Question 7 - A 20-year-old man is in a motorway accident at high speed, resulting in...

    Correct

    • A 20-year-old man is in a motorway accident at high speed, resulting in a head injury. He is taken to the hospital, where he is intubated and ventilated, and a CT scan of his head is performed.

      The scan reveals that a portion of the cerebral hemisphere is being pushed downwards towards the brainstem. The radiologist describes this as 'uncal herniation'.

      What is the dura mater structure through which the brain is herniating?

      Your Answer: Tentorium cerebelli

      Explanation:

      The tentorium cerebelli separates the occipital lobes from the cerebellum and is a frequent site for brain herniation. The falx cerebelli separates the hemispheres of the cerebellum. The falx cerebri separates the cerebral hemispheres and subfalcine herniation may occur with asymmetrical swelling of the brain. The sella diaphragm is a small dural structure within the sella turcica and is not associated with catastrophic symptoms. The trigeminal cave covers the trigeminal nerve and is not a site for brain herniation.

      The Three Layers of Meninges

      The meninges are a group of membranes that cover the brain and spinal cord, providing support to the central nervous system and the blood vessels that supply it. These membranes can be divided into three distinct layers: the dura mater, arachnoid mater, and pia mater.

      The outermost layer, the dura mater, is a thick fibrous double layer that is fused with the inner layer of the periosteum of the skull. It has four areas of infolding and is pierced by small areas of the underlying arachnoid to form structures called arachnoid granulations. The arachnoid mater forms a meshwork layer over the surface of the brain and spinal cord, containing both cerebrospinal fluid and vessels supplying the nervous system. The final layer, the pia mater, is a thin layer attached directly to the surface of the brain and spinal cord.

      The meninges play a crucial role in protecting the brain and spinal cord from injury and disease. However, they can also be the site of serious medical conditions such as subdural and subarachnoid haemorrhages. Understanding the structure and function of the meninges is essential for diagnosing and treating these conditions.

    • This question is part of the following fields:

      • Neurological System
      8.5
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  • Question 8 - An aging man with a lengthy smoking history is hospitalized for a planned...

    Correct

    • An aging man with a lengthy smoking history is hospitalized for a planned coronary artery bypass graft surgery due to angina. After the procedure, he experiences a continuous hoarseness in his voice.

      Which anatomical structure is most likely to have been affected during the surgery, resulting in the man's hoarse voice?

      Your Answer: Left recurrent laryngeal nerve

      Explanation:

      During cardiac surgery, the left recurrent laryngeal nerve can be harmed because it originates beneath the aortic arch. This can result in a hoarse voice. However, it is not possible for the right nerve to be damaged during the procedure as it originates at the base of the right lung, below the right subclavian. Injuries to the vagus nerves would cause more complicated symptoms than just hoarseness. Additionally, the trachea is situated above the heart in the chest and is therefore unlikely to be affected by the surgery.

      The Recurrent Laryngeal Nerve: Anatomy and Function

      The recurrent laryngeal nerve is a branch of the vagus nerve that plays a crucial role in the innervation of the larynx. It has a complex path that differs slightly between the left and right sides of the body. On the right side, it arises anterior to the subclavian artery and ascends obliquely next to the trachea, behind the common carotid artery. It may be located either anterior or posterior to the inferior thyroid artery. On the left side, it arises left to the arch of the aorta, winds below the aorta, and ascends along the side of the trachea.

      Both branches pass in a groove between the trachea and oesophagus before entering the larynx behind the articulation between the thyroid cartilage and cricoid. Once inside the larynx, the recurrent laryngeal nerve is distributed to the intrinsic larynx muscles (excluding cricothyroid). It also branches to the cardiac plexus and the mucous membrane and muscular coat of the oesophagus and trachea.

      Damage to the recurrent laryngeal nerve, such as during thyroid surgery, can result in hoarseness. Therefore, understanding the anatomy and function of this nerve is crucial for medical professionals who perform procedures in the neck and throat area.

    • This question is part of the following fields:

      • Neurological System
      9.1
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  • Question 9 - A young woman presents with ascending paralysis which started three weeks after a...

    Incorrect

    • A young woman presents with ascending paralysis which started three weeks after a diarrhoeal illness. Her ventilatory muscles are found to be paralysed too, prompting ventilatory support. She is subsequently diagnosed with Guillain-Barré syndrome (GBS), what is the most likely bacterium responsible for this?

      Your Answer: Streptococcus pneumoniae

      Correct Answer: Campylobacter jejuni

      Explanation:

      The onset of GBS is initiated by a microbial trigger that stimulates the production of antibodies, leading to a cross-reaction with nerves. The most prevalent triggers are Campylobacter jejuni and cytomegalovirus, while other triggers include Mycoplasma pneumoniae, varicella zoster virus, HIV, and Epstein-Barr virus.

      Understanding Guillain-Barre Syndrome and Miller Fisher Syndrome

      Guillain-Barre syndrome is a condition that affects the peripheral nervous system and is often triggered by an infection, particularly Campylobacter jejuni. The immune system attacks the myelin sheath that surrounds nerve fibers, leading to demyelination. This results in symptoms such as muscle weakness, tingling sensations, and paralysis.

      The pathogenesis of Guillain-Barre syndrome involves the cross-reaction of antibodies with gangliosides in the peripheral nervous system. Studies have shown a correlation between the presence of anti-ganglioside antibodies, particularly anti-GM1 antibodies, and the clinical features of the syndrome. In fact, anti-GM1 antibodies are present in 25% of patients with Guillain-Barre syndrome.

      Miller Fisher syndrome is a variant of Guillain-Barre syndrome that is characterized by ophthalmoplegia, areflexia, and ataxia. This syndrome typically presents as a descending paralysis, unlike other forms of Guillain-Barre syndrome that present as an ascending paralysis. The eye muscles are usually affected first in Miller Fisher syndrome. Studies have shown that anti-GQ1b antibodies are present in 90% of cases of Miller Fisher syndrome.

      In summary, Guillain-Barre syndrome and Miller Fisher syndrome are conditions that affect the peripheral nervous system and are often triggered by infections. The pathogenesis of these syndromes involves the cross-reaction of antibodies with gangliosides in the peripheral nervous system. While Guillain-Barre syndrome is characterized by muscle weakness and paralysis, Miller Fisher syndrome is characterized by ophthalmoplegia, areflexia, and ataxia.

    • This question is part of the following fields:

      • Neurological System
      11.7
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  • Question 10 - From which of these foraminae does the ophthalmic branch of the trigeminal nerve...

    Correct

    • From which of these foraminae does the ophthalmic branch of the trigeminal nerve exit the skull?

      Your Answer: Superior orbital fissure

      Explanation:

      Standing Room Only – Locations of trigeminal nerve branches exiting the skull

      V1 – Superior orbital fissure
      V2 – Foramen rotundum
      V3 – Foramen ovale

      The trigeminal nerve is the main sensory nerve of the head and also innervates the muscles of mastication. It has sensory distribution to the scalp, face, oral cavity, nose and sinuses, and dura mater, and motor distribution to the muscles of mastication, mylohyoid, anterior belly of digastric, tensor tympani, and tensor palati. The nerve originates at the pons and has three branches: ophthalmic, maxillary, and mandibular. The ophthalmic and maxillary branches are sensory only, while the mandibular branch is both sensory and motor. The nerve innervates various muscles, including the masseter, temporalis, and pterygoids.

    • This question is part of the following fields:

      • Neurological System
      3.8
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  • Question 11 - A patient in his late 40s visits his GP complaining of intense shoulder...

    Incorrect

    • A patient in his late 40s visits his GP complaining of intense shoulder pain that radiates to the scapula area. Despite a thorough shoulder examination revealing no joint issues, the patient is referred for additional tests. Imaging studies reveal a bronchogenic apical lung tumor that has caused lesions in the brachial plexus and extends towards the superior cervical and stellate ganglia. If these two structures are compressed, what signs are most likely to occur?

      Your Answer: Excessive sweating of the face

      Correct Answer: Ptosis, miosis, anhydrosis

      Explanation:

      The superior cervical ganglion (SCG) is a component of the sympathetic nervous system that solely innervates the head and neck. Its functions include innervating eye structures, and damage or compression of the SCG can lead to Horner’s syndrome, which is characterized by ptosis, miosis, and anhydrosis. This syndrome occurs due to the unopposed action of the parasympathetic system on the eye, as the sympathetic innervation is impaired.

      Damage to the external laryngeal nerve, a branch of the superior laryngeal nerve, can result in a monotonous voice. However, this nerve does not originate from the SCG, so it is unlikely to affect the voice.

      As the SCG is part of the sympathetic nervous system, its damage impairs sympathetic responses and leads to unopposed parasympathetic innervation. This can cause miosis (constriction) of the eye, not mydriasis (dilation).

      Sweating is caused by the action of the sympathetic nervous system, so damage to the SCG would most likely result in anhydrosis (lack of sweat) of the face, rather than hyperhidrosis (excessive sweating).

      Hoarse voice can result from damage to the recurrent laryngeal nerve, which is not related to the SCG, so it is unlikely to affect the voice.

      Horner’s syndrome is a condition characterized by several features, including a small pupil (miosis), drooping of the upper eyelid (ptosis), a sunken eye (enophthalmos), and loss of sweating on one side of the face (anhidrosis). The cause of Horner’s syndrome can be determined by examining additional symptoms. For example, congenital Horner’s syndrome may be identified by a difference in iris color (heterochromia), while anhidrosis may be present in central or preganglionic lesions. Pharmacologic tests, such as the use of apraclonidine drops, can also be helpful in confirming the diagnosis and identifying the location of the lesion. Central lesions may be caused by conditions such as stroke or multiple sclerosis, while postganglionic lesions may be due to factors like carotid artery dissection or cluster headaches. It is important to note that the appearance of enophthalmos in Horner’s syndrome is actually due to a narrow palpebral aperture rather than true enophthalmos.

    • This question is part of the following fields:

      • Neurological System
      15
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  • Question 12 - As a final year medical student in the emergency department, you encounter a...

    Correct

    • As a final year medical student in the emergency department, you encounter a 70-year-old woman who presents with a history of falling down the stairs at home. She reports a sudden onset of difficulty with speech and loss of the left side of her field of vision, and is currently experiencing vomiting. The department staff have arranged for a CT scan of her head, with a tentative diagnosis of either a stroke or transient ischaemic attack (TIA).

      What is the distinguishing factor between these two potential diagnoses?

      Your Answer: TIAs do not cause acute infarction

      Explanation:

      The definition of a TIA has been updated to be based on tissue rather than time. It now refers to a temporary episode of neurological dysfunction caused by focal brain, spinal cord, or retinal ischemia, without resulting in acute infarction. Both TIAs and strokes can affect the spinal cord, brain, and retina, and both can cause symptoms that may require hospitalization. However, neither condition typically results in a significant troponin rise, which is more commonly associated with cardiac events.

      A transient ischaemic attack (TIA) is a brief period of neurological deficit caused by a vascular issue, lasting less than an hour. The original definition of a TIA was based on time, but it is now recognized that even short periods of ischaemia can result in pathological changes to the brain. Therefore, a new ’tissue-based’ definition is now used. The clinical features of a TIA are similar to those of a stroke, but the symptoms resolve within an hour. Possible features include unilateral weakness or sensory loss, aphasia or dysarthria, ataxia, vertigo, or loss of balance, visual problems, sudden transient loss of vision in one eye (amaurosis fugax), diplopia, and homonymous hemianopia.

      NICE recommends immediate antithrombotic therapy, giving aspirin 300 mg immediately unless the patient has a bleeding disorder or is taking an anticoagulant. If aspirin is contraindicated, management should be discussed urgently with the specialist team. Specialist review is necessary if the patient has had more than one TIA or has a suspected cardioembolic source or severe carotid stenosis. Urgent assessment within 24 hours by a specialist stroke physician is required if the patient has had a suspected TIA in the last 7 days. Referral for specialist assessment should be made as soon as possible within 7 days if the patient has had a suspected TIA more than a week previously. The person should be advised not to drive until they have been seen by a specialist.

      Neuroimaging should be done on the same day as specialist assessment if possible. MRI is preferred to determine the territory of ischaemia or to detect haemorrhage or alternative pathologies. Carotid imaging is necessary as atherosclerosis in the carotid artery may be a source of emboli in some patients. All patients should have an urgent carotid doppler unless they are not a candidate for carotid endarterectomy.

      Antithrombotic therapy is recommended, with clopidogrel being the first-line treatment. Aspirin + dipyridamole should be given to patients who cannot tolerate clopidogrel. Carotid artery endarterectomy should only be considered if the patient has suffered a stroke or TIA in the carotid territory and is not severely disabled. It should only be recommended if carotid stenosis is greater

    • This question is part of the following fields:

      • Neurological System
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  • Question 13 - A 70-year-old male has been diagnosed with Alzheimer's disease, but there is no...

    Correct

    • A 70-year-old male has been diagnosed with Alzheimer's disease, but there is no family history of the disease.

      Which gene is the most probable to be affected in this individual?

      Your Answer: APOE ε4 gene

      Explanation:

      The risk of sporadic Alzheimer’s disease is primarily determined by APOE polymorphic alleles, with the ε4 allele carrying the highest risk. Familial Alzheimer’s disease is linked to the APP, PSEN1, and PSEN2 genes, while familial Parkinson’s disease is associated with the PARK genes.

      Alzheimer’s disease is a type of dementia that gradually worsens over time and is caused by the degeneration of the brain. There are several risk factors associated with Alzheimer’s disease, including increasing age, family history, and certain genetic mutations. The disease is also more common in individuals of Caucasian ethnicity and those with Down’s syndrome.

      The pathological changes associated with Alzheimer’s disease include widespread cerebral atrophy, particularly in the cortex and hippocampus. Microscopically, there are cortical plaques caused by the deposition of type A-Beta-amyloid protein and intraneuronal neurofibrillary tangles caused by abnormal aggregation of the tau protein. The hyperphosphorylation of the tau protein has been linked to Alzheimer’s disease. Additionally, there is a deficit of acetylcholine due to damage to an ascending forebrain projection.

      Neurofibrillary tangles are a hallmark of Alzheimer’s disease and are partly made from a protein called tau. Tau is a protein that interacts with tubulin to stabilize microtubules and promote tubulin assembly into microtubules. In Alzheimer’s disease, tau proteins are excessively phosphorylated, impairing their function.

    • This question is part of the following fields:

      • Neurological System
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  • Question 14 - A client comes to the medical facility after a surgical operation. She reports...

    Incorrect

    • A client comes to the medical facility after a surgical operation. She reports an inability to shrug her shoulder. What is the probable nerve injury causing this issue?

      Your Answer: Ansa cervicalis

      Correct Answer: Accessory nerve

      Explanation:

      Operations in the posterior triangle can result in injury to the accessory nerve, which can impact the functioning of the trapezius muscle.

      Cranial nerves are a set of 12 nerves that emerge from the brain and control various functions of the head and neck. Each nerve has a specific function, such as smell, sight, eye movement, facial sensation, and tongue movement. Some nerves are sensory, some are motor, and some are both. A useful mnemonic to remember the order of the nerves is Some Say Marry Money But My Brother Says Big Brains Matter Most, with S representing sensory, M representing motor, and B representing both.

      In addition to their specific functions, cranial nerves also play a role in various reflexes. These reflexes involve an afferent limb, which carries sensory information to the brain, and an efferent limb, which carries motor information from the brain to the muscles. Examples of cranial nerve reflexes include the corneal reflex, jaw jerk, gag reflex, carotid sinus reflex, pupillary light reflex, and lacrimation reflex. Understanding the functions and reflexes of the cranial nerves is important in diagnosing and treating neurological disorders.

    • This question is part of the following fields:

      • Neurological System
      9.1
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  • Question 15 - A 75-year-old male is referred to the memory clinic due to a gradual...

    Correct

    • A 75-year-old male is referred to the memory clinic due to a gradual decline in his memory. Over the past five months, he has been struggling to recall the names of his loved ones and has been found disoriented and confused on multiple occasions. After an evaluation, the patient is prescribed medication to slow down the advancement of the illness.

      What is the primary enzyme inhibited by the initial medication for the suspected condition?

      Your Answer: Cholinesterase

      Explanation:

      Patients with Alzheimer’s dementia, which is the most prevalent type, experience a decrease in cholinergic neurons. To address this, acetylcholine inhibitors (AChEI) are prescribed to increase the amount of AChEI in the synaptic cleft, resulting in amplified effects at the postsynaptic receptor. Donepezil, galantamine, and rivastigmine are examples of AChEI inhibitors.

      Donepezil is the primary recommendation for treating Alzheimer’s disease, while memantine, an NMDA receptor antagonist, is the secondary recommendation.

      Management of Alzheimer’s Disease

      Alzheimer’s disease is a type of dementia that progressively affects the brain and is the most common form of dementia in the UK. There are both non-pharmacological and pharmacological management options available for patients with Alzheimer’s disease.

      Non-pharmacological management involves offering activities that promote wellbeing and are tailored to the patient’s preferences. Group cognitive stimulation therapy, group reminiscence therapy, and cognitive rehabilitation are some of the options that can be considered.

      Pharmacological management options include acetylcholinesterase inhibitors such as donepezil, galantamine, and rivastigmine for managing mild to moderate Alzheimer’s disease. Memantine, an NMDA receptor antagonist, is a second-line treatment option that can be used for patients with moderate Alzheimer’s who are intolerant of or have a contraindication to acetylcholinesterase inhibitors. It can also be used as an add-on drug to acetylcholinesterase inhibitors for patients with moderate or severe Alzheimer’s or as monotherapy in severe Alzheimer’s.

      When managing non-cognitive symptoms, NICE does not recommend the use of antidepressants for mild to moderate depression in patients with dementia. Antipsychotics should only be used for patients at risk of harming themselves or others or when the agitation, hallucinations, or delusions are causing them severe distress.

      It is important to note that donepezil is relatively contraindicated in patients with bradycardia, and adverse effects may include insomnia. Proper management of Alzheimer’s disease can improve the quality of life for patients and their caregivers.

    • This question is part of the following fields:

      • Neurological System
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  • Question 16 - A teenage boy is in a car crash and experiences a spinal cord...

    Correct

    • A teenage boy is in a car crash and experiences a spinal cord injury resulting in a hemisection of his spinal cord. What clinical features will he exhibit on examination below the level of injury?

      Your Answer: Weakness and loss of light touch sensation on the same side and loss of pain on the opposite side

      Explanation:

      When a hemisection of the spinal cord occurs, it results in a condition known as Brown-Sequard syndrome. This condition is characterized by sensory and motor loss on the same side of the injury, as well as pain loss on the opposite side. The loss of motor function on the same side is due to damage to the corticospinal tract, which does not cross over within the spinal cord but instead decussates in the brainstem. Similarly, the loss of light touch on the same side is due to damage to the dorsal column, which also decussates in the brainstem. In contrast, the loss of pain on the opposite side is due to damage to the spinothalamic tract, which decussates at the level of sensory input. As a result, pain signals are always carried on the opposite side of the spinal cord, while motor and light touch signals are carried on the same side as the injury.

      Understanding Brown-Sequard Syndrome

      Brown-Sequard syndrome is a condition that occurs when there is a lateral hemisection of the spinal cord. This condition is characterized by a combination of symptoms that affect the body’s ability to sense and move. Individuals with Brown-Sequard syndrome experience weakness on the same side of the body as the lesion, as well as a loss of proprioception and vibration sensation on that side. On the opposite side of the body, there is a loss of pain and temperature sensation.

      It is important to note that the severity of Brown-Sequard syndrome can vary depending on the location and extent of the spinal cord injury. Some individuals may experience only mild symptoms, while others may have more severe impairments. Treatment for Brown-Sequard syndrome typically involves a combination of physical therapy, medication, and other supportive measures to help manage symptoms and improve overall quality of life.

    • This question is part of the following fields:

      • Neurological System
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  • Question 17 - A 65-year-old male arrives at the emergency department with a sudden onset of...

    Correct

    • A 65-year-old male arrives at the emergency department with a sudden onset of numbness on the lateral aspect of his calf and an inability to dorsiflex his foot. Which nerve is most likely affected in this presentation?

      Your Answer: Common peroneal nerve

      Explanation:

      The most frequent reason for foot drop is a lesion in the common peroneal nerve.

      The common peroneal nerve is responsible for providing sensation to the posterolateral part of the leg and controlling the anterior and lateral compartments of the lower leg. If it is compressed or damaged, it can result in foot drop.

      While the sciatic nerve divides into the common peroneal nerve, it would cause additional symptoms.

      The femoral nerve only innervates the upper thigh and inner leg, so it would not cause foot drop.

      The tibial nerve is the other branch of the sciatic nerve and controls the muscles in the posterior compartment of the leg.

      The posterior femoral cutaneous nerve is responsible for providing sensation to the skin of the posterior aspect of the thigh.

      Understanding Foot Drop: Causes and Examination

      Foot drop is a condition that occurs when the foot dorsiflexors become weak. This can be caused by various factors, including a common peroneal nerve lesion, L5 radiculopathy, sciatic nerve lesion, superficial or deep peroneal nerve lesion, or central nerve lesions. However, the most common cause is a common peroneal nerve lesion, which is often due to compression at the neck of the fibula. This can be triggered by certain positions, prolonged confinement, recent weight loss, Baker’s cysts, or plaster casts to the lower leg.

      To diagnose foot drop, a thorough examination is necessary. If the patient has an isolated peroneal neuropathy, there will be weakness of foot dorsiflexion and eversion, and reflexes will be normal. Weakness of hip abduction is suggestive of an L5 radiculopathy. Bilateral symptoms, fasciculations, or other abnormal neurological findings are indications for specialist referral.

      If foot drop is diagnosed, conservative management is appropriate. Patients should avoid leg crossing, squatting, and kneeling. Symptoms typically improve over 2-3 months.

    • This question is part of the following fields:

      • Neurological System
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  • Question 18 - A neurologist evaluates a stroke patient who is experiencing difficulty with word finding...

    Incorrect

    • A neurologist evaluates a stroke patient who is experiencing difficulty with word finding and reduced fluency of speech, but with intact comprehension. Based on these symptoms, the neurologist diagnoses the patient with a particular type of aphasia.

      Can you identify the location of the brain lesion in this patient, given the probable diagnosis?

      Your Answer: Hypoglossal trigone

      Correct Answer: Inferior frontal gyrus

      Explanation:

      The cause of Broca’s aphasia is a lesion in the inferior frontal gyrus, resulting in non-fluent speech but preserved comprehension. The arcuate fasciculus connects Broca’s and Wernicke’s areas, and a lesion here causes conduction aphasia with fluent speech but errors. The cerebellar peduncles connect the cerebellum to the brainstem and midbrain. The hypoglossal trigone contains the hypoglossal nerve ganglion responsible for tongue motor activity, not language deficits. Wernicke’s aphasia, characterized by fluent but disconnected speech, is caused by a lesion in the superior temporal gyrus.

      Types of Aphasia: Understanding the Different Forms of Language Impairment

      Aphasia is a language disorder that affects a person’s ability to communicate effectively. There are different types of aphasia, each with its own set of symptoms and underlying causes. Wernicke’s aphasia, also known as receptive aphasia, is caused by a lesion in the superior temporal gyrus. This area is responsible for forming speech before sending it to Broca’s area. People with Wernicke’s aphasia may speak fluently, but their sentences often make no sense, and they may use word substitutions and neologisms. Comprehension is impaired.

      Broca’s aphasia, also known as expressive aphasia, is caused by a lesion in the inferior frontal gyrus. This area is responsible for speech production. People with Broca’s aphasia may speak in a non-fluent, labored, and halting manner. Repetition is impaired, but comprehension is normal.

      Conduction aphasia is caused by a stroke affecting the arcuate fasciculus, the connection between Wernicke’s and Broca’s area. People with conduction aphasia may speak fluently, but their repetition is poor. They are aware of the errors they are making, but comprehension is normal.

      Global aphasia is caused by a large lesion affecting all three areas mentioned above, resulting in severe expressive and receptive aphasia. People with global aphasia may still be able to communicate using gestures. Understanding the different types of aphasia is important for proper diagnosis and treatment.

    • This question is part of the following fields:

      • Neurological System
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  • Question 19 - A 28-year-old male comes to the Emergency Department complaining of a severely painful,...

    Incorrect

    • A 28-year-old male comes to the Emergency Department complaining of a severely painful, reddened right-eye that has been going on for 6 hours. He also reports experiencing haloes around light and reduced visual acuity. The patient has a history of hypermetropia. Upon examination, the right-eye appears red with a fixed and dilated pupil and conjunctival injection.

      What is the most probable diagnosis?

      Your Answer: Central retinal vein occlusion

      Correct Answer: Acute closed-angle glaucoma

      Explanation:

      The correct diagnosis is acute closed-angle glaucoma, which is characterized by an increase in intra-ocular pressure due to impaired aqueous outflow. Symptoms include a painful red eye, reduced visual acuity, and haloes around light. Risk factors include hypermetropia, pupillary dilatation, and age-related lens growth. Examination findings typically include a fixed dilated pupil with conjunctival injection. Treatment options include reducing aqueous secretions with acetazolamide and increasing pupillary constriction with topical pilocarpine.

      Anterior uveitis is an incorrect diagnosis, as it refers to inflammation of the anterior portion of the uvea and is associated with systemic inflammatory conditions. Ophthalmoscopy findings include an irregular pupil.

      Central retinal vein occlusion is also an incorrect diagnosis, as it causes acute blindness due to thromboembolism or vasculitis in the central retinal vein. Ophthalmoscopy typically reveals severe retinal haemorrhages.

      Infective conjunctivitis is another incorrect diagnosis, as it is characterized by sore, red eyes with discharge. Bacterial causes typically result in purulent discharge, while viral cases often have serous discharge.

      Acute angle closure glaucoma (AACG) is a type of glaucoma where there is a rise in intraocular pressure (IOP) due to a blockage in the outflow of aqueous humor. This condition is more likely to occur in individuals with hypermetropia, pupillary dilation, and lens growth associated with aging. Symptoms of AACG include severe pain, decreased visual acuity, a hard and red eye, haloes around lights, and a semi-dilated non-reacting pupil. AACG is an emergency and requires urgent referral to an ophthalmologist. The initial medical treatment involves a combination of eye drops, such as a direct parasympathomimetic, a beta-blocker, and an alpha-2 agonist, as well as intravenous acetazolamide to reduce aqueous secretions. Definitive management involves laser peripheral iridotomy, which creates a tiny hole in the peripheral iris to allow aqueous humor to flow to the angle.

    • This question is part of the following fields:

      • Neurological System
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  • Question 20 - A 28-year-old patient presents to the emergency department after a car accident. During...

    Incorrect

    • A 28-year-old patient presents to the emergency department after a car accident. During your initial assessment, you perform a pupil examination by shining a light in each eye. What two nerves are being tested during this examination?

      Your Answer: Ophthalmic nerve and trochlear nerve

      Correct Answer: Optic nerve and oculomotor nerve

      Explanation:

      The pupillary light reflex involves the optic nerve and oculomotor nerve. The optic nerve carries visual information from the retina when a light is shone in the pupil. The oculomotor nerve then transmits efferent information to the sphincter pupillae muscle, causing it to constrict.

      The second cranial nerve is the optic nerve, responsible for visual information transmission.

      The third cranial nerve is the oculomotor nerve, which provides motor innervation to four extra-orbital muscles and parasympathetic fibers to the constrictor pupillae and ciliaris.

      The fourth cranial nerve is the trochlear nerve, which supplies the superior oblique extra-orbital muscle.

      The ophthalmic nerve is the first division of the trigeminal nerve, the fifth cranial nerve, and carries sensation from the orbit, upper eyelid, and forehead.

      Cranial nerves are a set of 12 nerves that emerge from the brain and control various functions of the head and neck. Each nerve has a specific function, such as smell, sight, eye movement, facial sensation, and tongue movement. Some nerves are sensory, some are motor, and some are both. A useful mnemonic to remember the order of the nerves is Some Say Marry Money But My Brother Says Big Brains Matter Most, with S representing sensory, M representing motor, and B representing both.

      In addition to their specific functions, cranial nerves also play a role in various reflexes. These reflexes involve an afferent limb, which carries sensory information to the brain, and an efferent limb, which carries motor information from the brain to the muscles. Examples of cranial nerve reflexes include the corneal reflex, jaw jerk, gag reflex, carotid sinus reflex, pupillary light reflex, and lacrimation reflex. Understanding the functions and reflexes of the cranial nerves is important in diagnosing and treating neurological disorders.

    • This question is part of the following fields:

      • Neurological System
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  • Question 21 - A young man comes to the clinic with difficulty forming meaningful sentences following...

    Correct

    • A young man comes to the clinic with difficulty forming meaningful sentences following treatment for a right middle cerebral artery infarction. He struggles to complete his sentences and frequently pauses while speaking. However, his comprehension of spoken language remains intact. The physician suspects a neurological origin. Which area of his brain is likely affected?

      Your Answer: Broca's area

      Explanation:

      The individual in question is experiencing Broca’s aphasia, which results in impaired language production but preserved comprehension. Wernicke’s aphasia, on the other hand, would result in impaired comprehension but preserved language production. Both Broca’s and Wernicke’s aphasia are typically caused by a stroke and affect areas in the left hemisphere, not involving the occipital lobe. Therefore, the options that suggest specific anatomical landmarks are incorrect.

      Types of Aphasia: Understanding the Different Forms of Language Impairment

      Aphasia is a language disorder that affects a person’s ability to communicate effectively. There are different types of aphasia, each with its own set of symptoms and underlying causes. Wernicke’s aphasia, also known as receptive aphasia, is caused by a lesion in the superior temporal gyrus. This area is responsible for forming speech before sending it to Broca’s area. People with Wernicke’s aphasia may speak fluently, but their sentences often make no sense, and they may use word substitutions and neologisms. Comprehension is impaired.

      Broca’s aphasia, also known as expressive aphasia, is caused by a lesion in the inferior frontal gyrus. This area is responsible for speech production. People with Broca’s aphasia may speak in a non-fluent, labored, and halting manner. Repetition is impaired, but comprehension is normal.

      Conduction aphasia is caused by a stroke affecting the arcuate fasciculus, the connection between Wernicke’s and Broca’s area. People with conduction aphasia may speak fluently, but their repetition is poor. They are aware of the errors they are making, but comprehension is normal.

      Global aphasia is caused by a large lesion affecting all three areas mentioned above, resulting in severe expressive and receptive aphasia. People with global aphasia may still be able to communicate using gestures. Understanding the different types of aphasia is important for proper diagnosis and treatment.

    • This question is part of the following fields:

      • Neurological System
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  • Question 22 - A 49-year-old patient visits your clinic with complaints of unintentional weight loss, increased...

    Correct

    • A 49-year-old patient visits your clinic with complaints of unintentional weight loss, increased appetite, and diarrhea. She frequently experiences a rapid heartbeat and feels hot and sweaty in your office. During examination, you observe lid retraction in her eyes and a pulse rate of 110 beats per minute. You suspect thyrotoxicosis and plan to measure her serum levels of thyroid stimulating hormone (TSH), triiodothyronine (T3), and thyroxine (T4). Since TSH is secreted by the anterior pituitary, which other hormone is also released by this gland?

      Your Answer: Prolactin

      Explanation:

      The hormone secreted by the anterior pituitary gland that stimulates breast development in puberty and during pregnancy, as well as milk production after delivery, is prolactin. Along with prolactin, the anterior pituitary gland also secretes growth hormone, adrenocorticotropic hormone (ACTH), luteinizing hormone (LH), follicle-stimulating hormone (FSH), and melanocyte releasing hormone.

      antidiuretic hormone (ADH), also known as vasopressin, is secreted by the posterior pituitary gland. It increases water reabsorption in the collecting ducts of the kidneys.

      Aldosterone is released by the zona glomerulosa of the adrenal cortex. It is a mineralocorticoid that increases sodium reabsorption in the distal nephron of the kidney, leading to water retention.

      Cortisol is released by the zona fasiculata of the adrenal gland. It is a glucocorticoid that has various actions, including increasing protein catabolism, glycogenolysis, and gluconeogenesis.

      The pituitary gland is a small gland located within the sella turcica in the sphenoid bone of the middle cranial fossa. It weighs approximately 0.5g and is covered by a dural fold. The gland is attached to the hypothalamus by the infundibulum and receives hormonal stimuli from the hypothalamus through the hypothalamo-pituitary portal system. The anterior pituitary, which develops from a depression in the wall of the pharynx known as Rathkes pouch, secretes hormones such as ACTH, TSH, FSH, LH, GH, and prolactin. GH and prolactin are secreted by acidophilic cells, while ACTH, TSH, FSH, and LH are secreted by basophilic cells. On the other hand, the posterior pituitary, which is derived from neuroectoderm, secretes ADH and oxytocin. Both hormones are produced in the hypothalamus before being transported by the hypothalamo-hypophyseal portal system.

    • This question is part of the following fields:

      • Neurological System
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  • Question 23 - An orthopaedic surgeon discusses the risk of a total hip replacement to Maria,...

    Correct

    • An orthopaedic surgeon discusses the risk of a total hip replacement to Maria, an 80-year-old female with hip osteoarthritis, in order to gain consent. She is concerned about the risk of sciatic nerve damage.

      What is a reliable landmark that can be used to identify the sciatic nerve and minimize the risk of damage during the surgery?

      Your Answer: Inferior to the piriformis muscle

      Explanation:

      The sciatic nerve, which consists of nerve roots L4-S3, exits the body through the greater sciatic foramen located below the piriformis muscle. It does not provide any muscle innervation in the gluteal area, but instead travels to the back of the thigh where it branches out to supply the hamstring muscles (biceps femoris, semitendinosus, and semimembranosus) and adductor magnus. Thus, the key reference point is the lower edge of the piriformis muscle.

      Understanding the Sciatic Nerve

      The sciatic nerve is the largest nerve in the body, formed from the sacral plexus and arising from spinal nerves L4 to S3. It passes through the greater sciatic foramen and emerges beneath the piriformis muscle, running under the cover of the gluteus maximus muscle. The nerve provides cutaneous sensation to the skin of the foot and leg, as well as innervating the posterior thigh muscles and lower leg and foot muscles. Approximately halfway down the posterior thigh, the nerve splits into the tibial and common peroneal nerves. The tibial nerve supplies the flexor muscles, while the common peroneal nerve supplies the extensor and abductor muscles.

      The sciatic nerve also has articular branches for the hip joint and muscular branches in the upper leg, including the semitendinosus, semimembranosus, biceps femoris, and part of the adductor magnus. Cutaneous sensation is provided to the posterior aspect of the thigh via cutaneous nerves, as well as the gluteal region and entire lower leg (except the medial aspect). The nerve terminates at the upper part of the popliteal fossa by dividing into the tibial and peroneal nerves. The nerve to the short head of the biceps femoris comes from the common peroneal part of the sciatic, while the other muscular branches arise from the tibial portion. The tibial nerve goes on to innervate all muscles of the foot except the extensor digitorum brevis, which is innervated by the common peroneal nerve.

    • This question is part of the following fields:

      • Neurological System
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  • Question 24 - A child undergoes a challenging craniotomy for fulminant mastoiditis and abscess. While performing...

    Correct

    • A child undergoes a challenging craniotomy for fulminant mastoiditis and abscess. While performing the surgery, the trigeminal nerve is severely affected in Meckel's cave. What is the least probable deficit that the child will experience?

      Your Answer: Anaesthesia over the entire ipsilateral side of the face

      Explanation:

      The sensory fibres of the trigeminal nerve do not provide innervation to the angle of the jaw, which means that this area is not affected by this type of injury. However, since the trigeminal nerve is responsible for providing motor innervation to the muscles of mastication, an injury in close proximity to the motor fibres may result in some degree of compromise in muscle function.

      The trigeminal nerve is the main sensory nerve of the head and also innervates the muscles of mastication. It has sensory distribution to the scalp, face, oral cavity, nose and sinuses, and dura mater, and motor distribution to the muscles of mastication, mylohyoid, anterior belly of digastric, tensor tympani, and tensor palati. The nerve originates at the pons and has three branches: ophthalmic, maxillary, and mandibular. The ophthalmic and maxillary branches are sensory only, while the mandibular branch is both sensory and motor. The nerve innervates various muscles, including the masseter, temporalis, and pterygoids.

    • This question is part of the following fields:

      • Neurological System
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  • Question 25 - The following statements about the femoral nerve are all true except for one....

    Correct

    • The following statements about the femoral nerve are all true except for one. Which statement is incorrect?

      Your Answer: It supplies adductor longus

      Explanation:

      The obturator nerve supplies the adductor longus.

      The femoral nerve is a nerve that originates from the spinal roots L2, L3, and L4. It provides innervation to several muscles in the thigh, including the pectineus, sartorius, quadriceps femoris, and vastus lateralis, medialis, and intermedius. Additionally, it branches off into the medial cutaneous nerve of the thigh, saphenous nerve, and intermediate cutaneous nerve of the thigh. The femoral nerve passes through the psoas major muscle and exits the pelvis by going under the inguinal ligament. It then enters the femoral triangle, which is located lateral to the femoral artery and vein.

      To remember the femoral nerve’s supply, a helpful mnemonic is don’t MISVQ scan for PE. This stands for the medial cutaneous nerve of the thigh, intermediate cutaneous nerve of the thigh, saphenous nerve, vastus, quadriceps femoris, and sartorius, with the addition of the pectineus muscle. Overall, the femoral nerve plays an important role in the motor and sensory functions of the thigh.

    • This question is part of the following fields:

      • Neurological System
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  • Question 26 - A 65-year-old man arrives at the emergency department with a sudden onset of...

    Incorrect

    • A 65-year-old man arrives at the emergency department with a sudden onset of aphasia lasting for 15 minutes. His partner mentions a similar incident occurred a month ago, but he did not seek medical attention as it resolved on its own.

      Upon point of care testing, his capillary blood glucose level is 6.5 mmol/L (3.9 - 7.1). An urgent CT scan of his brain is conducted, which reveals no signs of acute infarct. However, upon returning from the scan, he regains full speech and denies experiencing any other neurological symptoms.

      What aspect of the episode suggests a diagnosis of transient ischaemic attack?

      Your Answer: The episode lasted for less than 24-hours

      Correct Answer: There was no evidence of acute infarction on CT imaging, and the episode was brief

      Explanation:

      The definition of a TIA has been updated to focus on tissue-based factors rather than time-based ones. It is now defined as a brief episode of neurological dysfunction caused by focal brain, spinal cord, or retinal ischemia, without acute infarction. The new guidelines emphasize the importance of focal neurology and negative brain imaging in diagnosing a TIA, which typically lasts less than an hour. This is a departure from the previous definition, which focused on symptoms resolving within 24 hours and led to delays in diagnosis and treatment. Patients may have a history of stereotyped episodes preceding a TIA. Focal neurology is a hallmark of TIA, which can affect motor, sensory, aphasic, or visual areas of the brain. In cases where isolated aphasia lasts only 30 minutes and brain imaging shows no infarction, the patient has had a TIA rather than a stroke.

      A transient ischaemic attack (TIA) is a brief period of neurological deficit caused by a vascular issue, lasting less than an hour. The original definition of a TIA was based on time, but it is now recognized that even short periods of ischaemia can result in pathological changes to the brain. Therefore, a new ’tissue-based’ definition is now used. The clinical features of a TIA are similar to those of a stroke, but the symptoms resolve within an hour. Possible features include unilateral weakness or sensory loss, aphasia or dysarthria, ataxia, vertigo, or loss of balance, visual problems, sudden transient loss of vision in one eye (amaurosis fugax), diplopia, and homonymous hemianopia.

      NICE recommends immediate antithrombotic therapy, giving aspirin 300 mg immediately unless the patient has a bleeding disorder or is taking an anticoagulant. If aspirin is contraindicated, management should be discussed urgently with the specialist team. Specialist review is necessary if the patient has had more than one TIA or has a suspected cardioembolic source or severe carotid stenosis. Urgent assessment within 24 hours by a specialist stroke physician is required if the patient has had a suspected TIA in the last 7 days. Referral for specialist assessment should be made as soon as possible within 7 days if the patient has had a suspected TIA more than a week previously. The person should be advised not to drive until they have been seen by a specialist.

      Neuroimaging should be done on the same day as specialist assessment if possible. MRI is preferred to determine the territory of ischaemia or to detect haemorrhage or alternative pathologies. Carotid imaging is necessary as atherosclerosis in the carotid artery may be a source of emboli in some patients. All patients should have an urgent carotid doppler unless they are not a candidate for carotid endarterectomy.

      Antithrombotic therapy is recommended, with clopidogrel being the first-line treatment. Aspirin + dipyridamole should be given to patients who cannot tolerate clopidogrel. Carotid artery endarterectomy should only be considered if the patient has suffered a stroke or TIA in the carotid territory and is not severely disabled. It should only be recommended if carotid stenosis is greater

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      • Neurological System
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  • Question 27 - A 59-year-old man arrives at the emergency department with a sudden onset of...

    Incorrect

    • A 59-year-old man arrives at the emergency department with a sudden onset of visual disturbance. He has a medical history of hypercholesterolemia and is currently taking atorvastatin. Additionally, he smokes 15 cigarettes daily, drinks half a bottle of wine each night, and works as a bond-trader.

      Upon examination of his eyes, a field defect is observed in the right upper quadrant of both his right and left eye. Other than that, the examination is unremarkable.

      What is the anatomical location of the lesion that is affecting his vision?

      Your Answer: Right optic nerve

      Correct Answer: Left inferior optic radiation

      Explanation:

      A right superior homonymous quadrantanopia in the patient is caused by a lesion in the left inferior optic radiation located in the temporal lobe. The sudden onset indicates a possible stroke or vascular event. A superior homonymous quadrantanopia occurs when the contralateral inferior optic radiation is affected.

      A lesion in the left superior optic radiation would result in a right inferior homonymous quadrantanopia, which is not the case here. Similarly, a lesion in the left optic tract would cause contralateral hemianopia, which is also not the diagnosis in this patient.

      Understanding Visual Field Defects

      Visual field defects can occur due to various reasons, including lesions in the optic tract, optic radiation, or occipital cortex. A left homonymous hemianopia indicates a visual field defect to the left, which is caused by a lesion in the right optic tract. On the other hand, homonymous quadrantanopias can be categorized into PITS (Parietal-Inferior, Temporal-Superior) and can be caused by lesions in the inferior or superior optic radiations in the temporal or parietal lobes.

      When it comes to congruous and incongruous defects, the former refers to complete or symmetrical visual field loss, while the latter indicates incomplete or asymmetric visual field loss. Incongruous defects are caused by optic tract lesions, while congruous defects are caused by optic radiation or occipital cortex lesions. In cases where there is macula sparing, it is indicative of a lesion in the occipital cortex.

      Bitemporal hemianopia, on the other hand, is caused by a lesion in the optic chiasm. The type of defect can indicate the location of the compression, with an upper quadrant defect being more common in inferior chiasmal compression, such as a pituitary tumor, and a lower quadrant defect being more common in superior chiasmal compression, such as a craniopharyngioma.

      Understanding visual field defects is crucial in diagnosing and treating various neurological conditions. By identifying the type and location of the defect, healthcare professionals can provide appropriate interventions to improve the patient’s quality of life.

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      • Neurological System
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  • Question 28 - A 70-year-old individual presents to the ophthalmology clinic with a gradual decline in...

    Incorrect

    • A 70-year-old individual presents to the ophthalmology clinic with a gradual decline in visual acuity, difficulty seeing at night, and occasional floaters. Upon fundoscopy, yellow pigment deposits are observed in the macular region, along with demarcated red patches indicating fluid leakage and bleeding. The patient has no significant medical history. The ophthalmologist recommends a treatment that directly inhibits vascular endothelial growth factors. What is the appropriate management for this patient?

      Your Answer: Verteporfin

      Correct Answer: Bevacizumab

      Explanation:

      Bevacizumab is a monoclonal antibody that targets vascular endothelial growth factor (VEGF) and is used as a first-line treatment for the neovascular or exudative form of age-related macular degeneration (AMD). This form of AMD is characterized by the proliferation of abnormal blood vessels in the eye that leak blood and protein below the macula, causing damage to the photoreceptors. Bevacizumab blocks VEGF, which stimulates the growth of these abnormal vessels.

      Fluocinolone is a corticosteroid that is used as an anti-inflammatory via intraocular injection in some eye conditions, but it does not affect VEGF. Laser photocoagulation is used to cauterize ocular blood vessels in several eye conditions, but it also does not affect VEGF. Verteporfin is a medication used as a photosensitizer prior to photodynamic therapy, which can be used in eye conditions with ocular vessel proliferation, but it is not an anti-VEGF drug.

      Age-related macular degeneration (ARMD) is a common cause of blindness in the UK, characterized by degeneration of the central retina (macula) and the formation of drusen. The risk of ARMD increases with age, smoking, family history, and conditions associated with an increased risk of ischaemic cardiovascular disease. ARMD is classified into dry and wet forms, with the latter carrying the worst prognosis. Clinical features include subacute onset of visual loss, difficulties in dark adaptation, and visual hallucinations. Signs include distortion of line perception, the presence of drusen, and well-demarcated red patches in wet ARMD. Investigations include slit-lamp microscopy, colour fundus photography, fluorescein angiography, indocyanine green angiography, and ocular coherence tomography. Treatment options include a combination of zinc with anti-oxidant vitamins for dry ARMD and anti-VEGF agents for wet ARMD. Laser photocoagulation is also an option, but anti-VEGF therapies are usually preferred.

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      • Neurological System
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  • Question 29 - A 13-year-old girl is brought to the first-seizure clinic by her parents after...

    Incorrect

    • A 13-year-old girl is brought to the first-seizure clinic by her parents after experiencing multiple seizures in the past two weeks. According to her parents, the girl loses consciousness, becomes rigid, and falls to the ground while shaking for about two minutes during each episode. They also report that she has been experiencing urinary incontinence during these seizures.

      The specialist decides to prescribe an antiepileptic medication.

      What is the likely diagnosis for this patient, and what is the mechanism of action of the prescribed drug?

      Your Answer: Sodium valproate - partial antagonism of calcium channels

      Correct Answer: Sodium valproate - inhibits sodium channels

      Explanation:

      The patient in this scenario is experiencing a classic case of tonic-clonic seizures, which is characterized by unconsciousness, stiffness, and jerking of muscles. The first-line treatment for males with tonic-clonic seizures is sodium valproate, which is believed to work by inhibiting sodium channels and suppressing the excitation of neurons in the brain. Lamotrigine or levetiracetam is recommended for females due to the teratogenic effects of sodium valproate. Carbamazepine, which is a second-line treatment for focal seizures, would not be prescribed in this case. Ethosuximide, which is used to treat absence seizures, works by partially antagonizing calcium channels in the brain.

      Treatment Options for Epilepsy

      Epilepsy is a neurological disorder that affects millions of people worldwide. Treatment for epilepsy typically involves the use of antiepileptic drugs (AEDs) to control seizures. The decision to start AEDs is usually made after a second seizure, but there are certain circumstances where treatment may be initiated after the first seizure. These include the presence of a neurological deficit, structural abnormalities on brain imaging, unequivocal epileptic activity on EEG, or if the patient or their family considers the risk of having another seizure to be unacceptable.

      It is important to note that there are specific drug treatments for different types of seizures. For generalized tonic-clonic seizures, males are typically prescribed sodium valproate, while females may be given lamotrigine or levetiracetam. For focal seizures, first-line treatment options include lamotrigine or levetiracetam, with carbamazepine, oxcarbazepine, or zonisamide used as second-line options. Ethosuximide is the first-line treatment for absence seizures, with sodium valproate or lamotrigine/levetiracetam used as second-line options. For myoclonic seizures, males are usually given sodium valproate, while females may be prescribed levetiracetam. Finally, for tonic or atonic seizures, males are typically given sodium valproate, while females may be prescribed lamotrigine.

      It is important to work closely with a healthcare provider to determine the best treatment plan for each individual with epilepsy. Additionally, it is important to be aware of potential risks associated with certain AEDs, such as the use of sodium valproate during pregnancy, which has been linked to neurodevelopmental delays in children.

    • This question is part of the following fields:

      • Neurological System
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  • Question 30 - A 78-year-old man comes to the emergency department complaining of double vision. According...

    Incorrect

    • A 78-year-old man comes to the emergency department complaining of double vision. According to his wife, he fell in the garden earlier today and hit his head on a bench. During the examination, you notice that his left eye is fixed in a down and out position. After performing a CT scan, you discover that he has an extradural hematoma on the left side. These types of hematomas are often caused by the middle meningeal artery rupturing. Which foramina does this artery use to enter the cranium?

      Your Answer: Foramen lacerum

      Correct Answer: Foramen spinosum

      Explanation:

      The correct answer is the foramen spinosum, which is a small opening in the cranial cavity that allows the meningeal artery to pass through.

      The foramen lacerum is covered with cartilage during life and is sometimes described as the passage for the nerve and artery of the pterygoid canal. However, it is more accurate to say that they pass into the cartilage that blocks the foramen before entering the pterygoid canal, which is located in the anterior wall of the foramen.

      The foramen ovale is an oval-shaped opening that allows the mandibular nerve to pass through.

      The foramen magnum is the largest of the foramen and is located in the posterior of the cranial cavity. It allows the brainstem and associated structures to pass through.

      Foramina of the Base of the Skull

      The base of the skull contains several openings called foramina, which allow for the passage of nerves, blood vessels, and other structures. The foramen ovale, located in the sphenoid bone, contains the mandibular nerve, otic ganglion, accessory meningeal artery, and emissary veins. The foramen spinosum, also in the sphenoid bone, contains the middle meningeal artery and meningeal branch of the mandibular nerve. The foramen rotundum, also in the sphenoid bone, contains the maxillary nerve.

      The foramen lacerum, located in the sphenoid bone, is initially occluded by a cartilaginous plug and contains the internal carotid artery, nerve and artery of the pterygoid canal, and the base of the medial pterygoid plate. The jugular foramen, located in the temporal bone, contains the inferior petrosal sinus, glossopharyngeal, vagus, and accessory nerves, sigmoid sinus, and meningeal branches from the occipital and ascending pharyngeal arteries.

      The foramen magnum, located in the occipital bone, contains the anterior and posterior spinal arteries, vertebral arteries, and medulla oblongata. The stylomastoid foramen, located in the temporal bone, contains the stylomastoid artery and facial nerve. Finally, the superior orbital fissure, located in the sphenoid bone, contains the oculomotor nerve, recurrent meningeal artery, trochlear nerve, lacrimal, frontal, and nasociliary branches of the ophthalmic nerve, and abducent nerve.

    • This question is part of the following fields:

      • Neurological System
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  • Question 31 - A 28-year-old woman has been brought to the emergency department via ambulance after...

    Incorrect

    • A 28-year-old woman has been brought to the emergency department via ambulance after being discovered unconscious in a nearby park, with a heroin-filled needle found nearby.

      During the examination, the patient's heart rate is recorded at 44/min, BP at 110/60 mmHg, and respiratory rate at 10. Upon checking her pupils, they are observed to be pinpoint.

      Which three G protein-coupled receptors are affected by the drug responsible for this?

      Your Answer: GABA-A, kappa and mu

      Correct Answer: Delta, mu and kappa

      Explanation:

      The three clinically relevant opioid receptors in the body are delta, mu, and kappa. These receptors are all G protein-coupled receptors and are responsible for the pharmacological actions of opioids. Based on the examination findings of bradycardia, bradypnoea, and pinpoint pupils, it is likely that the woman has experienced an opioid overdose. The answer GABA-A, delta and mu is not appropriate as the GABA-A receptor is a ligand-gated ion channel receptor for the inhibitory neurotransmitter GABA. Similarly, GABA-A, kappa and mu is not appropriate for the same reason. GABA-B, D-2 and kappa is also not appropriate as the GABA-B receptor is a G-protein-coupled receptor for the inhibitory neurotransmitter GABA, and the D-2 receptor is a G protein-coupled receptor for dopamine.

      Understanding Opioids: Types, Receptors, and Clinical Uses

      Opioids are a class of chemical compounds that act upon opioid receptors located within the central nervous system (CNS). These receptors are G-protein coupled receptors that have numerous actions throughout the body. There are three clinically relevant groups of opioid receptors: mu (µ), kappa (κ), and delta (δ) receptors. Endogenous opioids, such as endorphins, dynorphins, and enkephalins, are produced by specific cells within the CNS and their actions depend on whether µ-receptors or δ-receptors and κ-receptors are their main target.

      Drugs targeted at opioid receptors are the largest group of analgesic drugs and form the second and third steps of the WHO pain ladder of managing analgesia. The choice of which opioid drug to use depends on the patient’s needs and the clinical scenario. The first step of the pain ladder involves non-opioids such as paracetamol and non-steroidal anti-inflammatory drugs. The second step involves weak opioids such as codeine and tramadol, while the third step involves strong opioids such as morphine, oxycodone, methadone, and fentanyl.

      The strength, routes of administration, common uses, and significant side effects of these opioid drugs vary. Weak opioids have moderate analgesic effects without exposing the patient to as many serious adverse effects associated with strong opioids. Strong opioids have powerful analgesic effects but are also more liable to cause opioid-related side effects such as sedation, respiratory depression, constipation, urinary retention, and addiction. The sedative effects of opioids are also useful in anesthesia with potent drugs used as part of induction of a general anesthetic.

    • This question is part of the following fields:

      • Neurological System
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  • Question 32 - A 23-year-old man is in a physical altercation and suffers a cut on...

    Incorrect

    • A 23-year-old man is in a physical altercation and suffers a cut on the back of his wrist. Upon examination in the ER, it is discovered that the laceration runs horizontally over the area of the extensor retinaculum, which remains undamaged. Which of the following structures is the least probable to have been harmed in this situation?

      Your Answer: Dorsal cutaneous branch of the ulnar nerve

      Correct Answer: Tendon of extensor indicis

      Explanation:

      The extensor retinaculum starts its attachment to the radius near the styloid and then moves diagonally and downwards to wrap around the ulnar styloid without attaching to it. As a result, the extensor tendons are situated beneath the extensor retinaculum and are less prone to injury compared to the superficial structures.

      The Extensor Retinaculum and its Related Structures

      The extensor retinaculum is a thick layer of deep fascia that runs across the back of the wrist, holding the long extensor tendons in place. It attaches to the pisiform and triquetral bones medially and the end of the radius laterally. The retinaculum has six compartments that contain the extensor muscle tendons, each with its own synovial sheath.

      Several structures are related to the extensor retinaculum. Superficial to the retinaculum are the basilic and cephalic veins, the dorsal cutaneous branch of the ulnar nerve, and the superficial branch of the radial nerve. Deep to the retinaculum are the tendons of the extensor carpi ulnaris, extensor digiti minimi, extensor digitorum, extensor indicis, extensor pollicis longus, extensor carpi radialis longus, extensor carpi radialis brevis, abductor pollicis longus, and extensor pollicis brevis.

      The radial artery also passes between the lateral collateral ligament of the wrist joint and the tendons of the abductor pollicis longus and extensor pollicis brevis. Understanding the topography of these structures is important for diagnosing and treating wrist injuries and conditions.

    • This question is part of the following fields:

      • Neurological System
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  • Question 33 - A 40-year-old woman with Down's syndrome visits her doctor accompanied by her caregiver....

    Incorrect

    • A 40-year-old woman with Down's syndrome visits her doctor accompanied by her caregiver. The doctor is informed that the woman's memory has been declining and it is now affecting her daily activities. Upon hearing their concerns, the doctor explains that individuals with Down's syndrome have a higher likelihood of developing a specific type of dementia compared to the general population.

      What type of dementia is more common among individuals with Down's syndrome?

      Your Answer: Dementia from normal pressure hydrocephalus

      Correct Answer: Alzheimer's disease

      Explanation:

      Trisomy 21, also known as Down’s syndrome, is associated with an increased risk of developing Alzheimer’s disease. This is because the amyloid precursor protein gene (APP) is located on chromosome 21, and individuals with trisomy 21 have three copies of this gene. APP is believed to play a significant role in the development of Alzheimer’s disease, and almost all people with Down’s syndrome will have amyloid plaques in their brain tissue by the age of 40. While there have been some case studies linking Down’s syndrome to other forms of dementia, such as dementia with Lewy bodies and frontotemporal dementia, the relationship is not as well established as it is with Alzheimer’s disease. There is no known association between Down’s syndrome and normal pressure hydrocephalus or vascular dementia.

      Alzheimer’s disease is a type of dementia that gradually worsens over time and is caused by the degeneration of the brain. There are several risk factors associated with Alzheimer’s disease, including increasing age, family history, and certain genetic mutations. The disease is also more common in individuals of Caucasian ethnicity and those with Down’s syndrome.

      The pathological changes associated with Alzheimer’s disease include widespread cerebral atrophy, particularly in the cortex and hippocampus. Microscopically, there are cortical plaques caused by the deposition of type A-Beta-amyloid protein and intraneuronal neurofibrillary tangles caused by abnormal aggregation of the tau protein. The hyperphosphorylation of the tau protein has been linked to Alzheimer’s disease. Additionally, there is a deficit of acetylcholine due to damage to an ascending forebrain projection.

      Neurofibrillary tangles are a hallmark of Alzheimer’s disease and are partly made from a protein called tau. Tau is a protein that interacts with tubulin to stabilize microtubules and promote tubulin assembly into microtubules. In Alzheimer’s disease, tau proteins are excessively phosphorylated, impairing their function.

    • This question is part of the following fields:

      • Neurological System
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  • Question 34 - A woman falls onto her neck and examination elicits signs of lateral medullary...

    Incorrect

    • A woman falls onto her neck and examination elicits signs of lateral medullary syndrome. Which description provides the correct findings?

      Your Answer: Gait disturbance, urinary incontinence and decreased cognition

      Correct Answer: Ipsilateral loss of pain and temperature in the face with dysphagia and ataxia and contra lateral loss in the body

      Explanation:

      The lateral medullary syndrome is characterized by damage to the structures in the lateral medulla, which is supplied by the posterior inferior cerebellar artery. This can result in various examination findings, including ataxia from damage to the inferior cerebellar peduncle, dysphagia from damage to the nucleus ambiguus, and ipsilateral loss of pain and temperature from the face due to damage to the spinal trigeminal nucleus. Additionally, there may be contralateral loss of pain and temperature in the body from damage to the lateral spinothalamic tract.

      In contrast, Brown-Sequard syndrome, which results from cord hemisection, is characterized by ipsilateral loss of light touch proprioception and contralateral loss of pain and temperature. Pontine stroke may present with hypertonia and contralateral neglect, while the triad of gait disturbance, urinary incontinence, and dementia is seen in normal pressure hydrocephalus. Medial medullary syndrome may present with ipsilateral tongue deviation, contralateral limb weakness, and contralateral loss of proprioception.

      Understanding Lateral Medullary Syndrome

      Lateral medullary syndrome, also referred to as Wallenberg’s syndrome, is a condition that arises when the posterior inferior cerebellar artery becomes blocked. This condition is characterized by a range of symptoms that affect both the cerebellum and brainstem. Cerebellar features of the syndrome include ataxia and nystagmus, while brainstem features include dysphagia, facial numbness, and cranial nerve palsy such as Horner’s. Additionally, patients may experience contralateral limb sensory loss. Understanding the symptoms of lateral medullary syndrome is crucial for prompt diagnosis and treatment.

    • This question is part of the following fields:

      • Neurological System
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  • Question 35 - A 90-year-old man was brought to the clinic by his family due to...

    Incorrect

    • A 90-year-old man was brought to the clinic by his family due to a decline in his memory over the past 6 months, accompanied by occasional confusion. His personality and behavior remain unchanged. Upon neurological examination, no abnormalities were found. Following further investigations, he was diagnosed with dementia. What is the probable molecular pathology underlying his symptoms?

      Your Answer: Loss of dopaminergic neurons in the substantia nigra

      Correct Answer: Presence of neurofibrillary tangles

      Explanation:

      Alzheimer’s disease is the most prevalent cause of dementia, followed by vascular dementia. It is characterized by the accumulation of type A-Beta-amyloid protein, leading to cortical plaques, and abnormal aggregation of the tau protein, resulting in intraneuronal neurofibrillary tangles. Parkinson’s disease is indicated by the loss of dopaminergic neurons in the substantia nigra, while Lewy body dementia is suggested by the presence of Lewy bodies. Vascular dementia is associated with atherosclerosis of cerebral arteries.

      Alzheimer’s disease is a type of dementia that gradually worsens over time and is caused by the degeneration of the brain. There are several risk factors associated with Alzheimer’s disease, including increasing age, family history, and certain genetic mutations. The disease is also more common in individuals of Caucasian ethnicity and those with Down’s syndrome.

      The pathological changes associated with Alzheimer’s disease include widespread cerebral atrophy, particularly in the cortex and hippocampus. Microscopically, there are cortical plaques caused by the deposition of type A-Beta-amyloid protein and intraneuronal neurofibrillary tangles caused by abnormal aggregation of the tau protein. The hyperphosphorylation of the tau protein has been linked to Alzheimer’s disease. Additionally, there is a deficit of acetylcholine due to damage to an ascending forebrain projection.

      Neurofibrillary tangles are a hallmark of Alzheimer’s disease and are partly made from a protein called tau. Tau is a protein that interacts with tubulin to stabilize microtubules and promote tubulin assembly into microtubules. In Alzheimer’s disease, tau proteins are excessively phosphorylated, impairing their function.

    • This question is part of the following fields:

      • Neurological System
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  • Question 36 - Which one of the following structures does not pass through the foramen ovale?...

    Correct

    • Which one of the following structures does not pass through the foramen ovale?

      Your Answer: Maxillary nerve

      Explanation:

      OVALE is a mnemonic that stands for Otic ganglion, V3 (Mandibular nerve: 3rd branch of trigeminal), Accessory meningeal artery, Lesser petrosal nerve, and Emissary veins.

      Foramina of the Base of the Skull

      The base of the skull contains several openings called foramina, which allow for the passage of nerves, blood vessels, and other structures. The foramen ovale, located in the sphenoid bone, contains the mandibular nerve, otic ganglion, accessory meningeal artery, and emissary veins. The foramen spinosum, also in the sphenoid bone, contains the middle meningeal artery and meningeal branch of the mandibular nerve. The foramen rotundum, also in the sphenoid bone, contains the maxillary nerve.

      The foramen lacerum, located in the sphenoid bone, is initially occluded by a cartilaginous plug and contains the internal carotid artery, nerve and artery of the pterygoid canal, and the base of the medial pterygoid plate. The jugular foramen, located in the temporal bone, contains the inferior petrosal sinus, glossopharyngeal, vagus, and accessory nerves, sigmoid sinus, and meningeal branches from the occipital and ascending pharyngeal arteries.

      The foramen magnum, located in the occipital bone, contains the anterior and posterior spinal arteries, vertebral arteries, and medulla oblongata. The stylomastoid foramen, located in the temporal bone, contains the stylomastoid artery and facial nerve. Finally, the superior orbital fissure, located in the sphenoid bone, contains the oculomotor nerve, recurrent meningeal artery, trochlear nerve, lacrimal, frontal, and nasociliary branches of the ophthalmic nerve, and abducens nerve.

    • This question is part of the following fields:

      • Neurological System
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  • Question 37 - A 10-year-old girl arrives at the emergency department with her father. She complains...

    Incorrect

    • A 10-year-old girl arrives at the emergency department with her father. She complains of a headache followed by seeing flashing lights and floaters. Her father also noticed her eyes moving from side to side. What type of seizure is likely to be associated with these symptoms?

      Your Answer: Frontal lobe seizure

      Correct Answer: Occipital lobe seizure

      Explanation:

      Visual changes like floaters and flashes are common symptoms of occipital lobe seizures, while hallucinations and automatisms are associated with temporal lobe seizures. Head and leg movements, as well as postictal weakness, are typical of frontal lobe seizures, while paraesthesia is a common symptom of parietal lobe seizures.

      Localising Features of Focal Seizures in Epilepsy

      Focal seizures in epilepsy can be localised based on the specific location of the brain where they occur. Temporal lobe seizures are common and may occur with or without impairment of consciousness or awareness. Most patients experience an aura, which is typically a rising epigastric sensation, along with psychic or experiential phenomena such as déjà vu or jamais vu. Less commonly, hallucinations may occur, such as auditory, gustatory, or olfactory hallucinations. These seizures typically last around one minute and are often accompanied by automatisms, such as lip smacking, grabbing, or plucking.

      On the other hand, frontal lobe seizures are characterised by motor symptoms such as head or leg movements, posturing, postictal weakness, and Jacksonian march. Parietal lobe seizures, on the other hand, are sensory in nature and may cause paraesthesia. Finally, occipital lobe seizures may cause visual symptoms such as floaters or flashes. By identifying the specific location and type of seizure, doctors can better diagnose and treat epilepsy in patients.

    • This question is part of the following fields:

      • Neurological System
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  • Question 38 - A 25-year-old female comes to the GP complaining of sudden eye pain and...

    Incorrect

    • A 25-year-old female comes to the GP complaining of sudden eye pain and vision changes. During the examination, the GP observes a significant relative afferent pupillary defect (RAPD) in her right eye. What will occur when the GP shines a penlight into her right eye?

      Your Answer: Pupillary constriction in the left eye but no constriction in the right

      Correct Answer: No pupillary constriction in both eyes

      Explanation:

      The process of transmitting light through the afferent pathway begins with the retina receiving the light. An action potential is then generated in the optic nerve, which travels through the left and right lateral geniculate bodies. Finally, axons synapse at the left and right pre-tectal nuclei.

      When there is a defect in the afferent pathway, a relative afferent pupillary defect (RAPD) can occur. This is characterized by the absence of constriction in both pupils when a light is shined in the affected eye. For example, if there is a RAPD in the left eye, shining the light in the left eye will result in absent constriction in both pupils, while shining the light in the right eye will result in constriction of both pupils.

      In this question, there is a RAPD in the right eye. Therefore, shining the light in the right eye will result in absent constriction in both eyes. Any answers indicating full or partial constriction in one or both pupils are incorrect.

      A relative afferent pupillary defect, also known as the Marcus-Gunn pupil, can be identified through the swinging light test. This condition is caused by a lesion that is located anterior to the optic chiasm, which can be found in the optic nerve or retina. When light is shone on the affected eye, it appears to dilate while the normal eye remains unchanged.

      The causes of a relative afferent pupillary defect can vary. For instance, it may be caused by a detachment of the retina or optic neuritis, which is often associated with multiple sclerosis. The pupillary light reflex pathway involves the afferent pathway, which starts from the retina and goes through the optic nerve, lateral geniculate body, and midbrain. The efferent pathway, on the other hand, starts from the Edinger-Westphal nucleus in the midbrain and goes through the oculomotor nerve.

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      • Neurological System
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  • Question 39 - A 75-year-old male arrives at the Emergency Department with sudden onset facial weakness...

    Correct

    • A 75-year-old male arrives at the Emergency Department with sudden onset facial weakness and concerns of a stroke. However, upon further questioning, the patient denies any risk factors for cardiovascular disease. During the examination, the patient displays unilateral weakness on the right side of their face and reports experiencing pain in their right ear. Further investigation reveals a widespread vesicular rash on the patient's right ear.

      What is the causative organism responsible for this syndrome?

      Your Answer: Varicella zoster virus

      Explanation:

      Ramsey-Hunt syndrome (VII nerve palsy) is caused by the varicella zoster virus.

      The facial nerve is responsible for supplying the muscles of facial expression, the digastric muscle, and various glandular structures. It also contains a few afferent fibers that originate in the genicular ganglion and are involved in taste. Bilateral facial nerve palsy can be caused by conditions such as sarcoidosis, Guillain-Barre syndrome, Lyme disease, and bilateral acoustic neuromas. Unilateral facial nerve palsy can be caused by these conditions as well as lower motor neuron issues like Bell’s palsy and upper motor neuron issues like stroke.

      The upper motor neuron lesion typically spares the upper face, specifically the forehead, while a lower motor neuron lesion affects all facial muscles. The facial nerve’s path includes the subarachnoid path, where it originates in the pons and passes through the petrous temporal bone into the internal auditory meatus with the vestibulocochlear nerve. The facial canal path passes superior to the vestibule of the inner ear and contains the geniculate ganglion at the medial aspect of the middle ear. The stylomastoid foramen is where the nerve passes through the tympanic cavity anteriorly and the mastoid antrum posteriorly, and it also includes the posterior auricular nerve and branch to the posterior belly of the digastric and stylohyoid muscle.

    • This question is part of the following fields:

      • Neurological System
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  • Question 40 - A woman in her early fifties comes in with sensory loss on the...

    Incorrect

    • A woman in her early fifties comes in with sensory loss on the left side and sensory neglect on the same side. The physician suspects the presence of a space-occupying lesion. Where is the most probable location of this lesion?

      Your Answer: Left temporal

      Correct Answer: Right parietal lobe

      Explanation:

      The parietal lobe is linked to sensation and sensory attention, and damage to it results in contralateral deficits. Therefore, right parietal lobe damage leads to left-sided deficits.

      Brain lesions can be localized based on the neurological disorders or features that are present. The gross anatomy of the brain can provide clues to the location of the lesion. For example, lesions in the parietal lobe can result in sensory inattention, apraxias, astereognosis, inferior homonymous quadrantanopia, and Gerstmann’s syndrome. Lesions in the occipital lobe can cause homonymous hemianopia, cortical blindness, and visual agnosia. Temporal lobe lesions can result in Wernicke’s aphasia, superior homonymous quadrantanopia, auditory agnosia, and prosopagnosia. Lesions in the frontal lobes can cause expressive aphasia, disinhibition, perseveration, anosmia, and an inability to generate a list. Lesions in the cerebellum can result in gait and truncal ataxia, intention tremor, past pointing, dysdiadokinesis, and nystagmus.

      In addition to the gross anatomy, specific areas of the brain can also provide clues to the location of a lesion. For example, lesions in the medial thalamus and mammillary bodies of the hypothalamus can result in Wernicke and Korsakoff syndrome. Lesions in the subthalamic nucleus of the basal ganglia can cause hemiballism, while lesions in the striatum (caudate nucleus) can result in Huntington chorea. Parkinson’s disease is associated with lesions in the substantia nigra of the basal ganglia, while lesions in the amygdala can cause Kluver-Bucy syndrome, which is characterized by hypersexuality, hyperorality, hyperphagia, and visual agnosia. By identifying these specific conditions, doctors can better localize brain lesions and provide appropriate treatment.

    • This question is part of the following fields:

      • Neurological System
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  • Question 41 - A 31-year-old female patient visits her GP with complaints of constant fatigue, lethargy,...

    Incorrect

    • A 31-year-old female patient visits her GP with complaints of constant fatigue, lethargy, and severe headaches. She reports a loss of sexual drive and irregular periods. During an eye examination, the doctor observes bitemporal hemianopia, and an MRI scan reveals a large non-functional pituitary tumor. What structure is being pressed on by the tumor to cause the patient's visual symptoms?

      Your Answer: Edinger-Westphal nucleus

      Correct Answer: Optic chiasm

      Explanation:

      The pituitary gland is located in the pituitary fossa, which is just above the optic chiasm. As a result, any enlarging masses from the pituitary gland can often put pressure on it, leading to bitemporal hemianopia.

      It is important to note that compression of the optic nerve would not cause more severe or widespread visual loss. Additionally, the optic nerve is not closely related to the pituitary gland anatomically, so it is unlikely to be directly compressed by a pituitary tumor.

      Similarly, the optic tract is not closely related to the pituitary gland anatomically, so it is also unlikely to be directly compressed by a pituitary tumor. Damage to the optic tract on one side would result in homonymous hemianopsia.

      The lateral geniculate nucleus is a group of cells in the thalamus that is unlikely to be compressed by a pituitary tumor. Its primary function is to transmit sensory information from the optic tract to other central parts of the visual pathway.

      Understanding Visual Field Defects

      Visual field defects can occur due to various reasons, including lesions in the optic tract, optic radiation, or occipital cortex. A left homonymous hemianopia indicates a visual field defect to the left, which is caused by a lesion in the right optic tract. On the other hand, homonymous quadrantanopias can be categorized into PITS (Parietal-Inferior, Temporal-Superior) and can be caused by lesions in the inferior or superior optic radiations in the temporal or parietal lobes.

      When it comes to congruous and incongruous defects, the former refers to complete or symmetrical visual field loss, while the latter indicates incomplete or asymmetric visual field loss. Incongruous defects are caused by optic tract lesions, while congruous defects are caused by optic radiation or occipital cortex lesions. In cases where there is macula sparing, it is indicative of a lesion in the occipital cortex.

      Bitemporal hemianopia, on the other hand, is caused by a lesion in the optic chiasm. The type of defect can indicate the location of the compression, with an upper quadrant defect being more common in inferior chiasmal compression, such as a pituitary tumor, and a lower quadrant defect being more common in superior chiasmal compression, such as a craniopharyngioma.

      Understanding visual field defects is crucial in diagnosing and treating various neurological conditions. By identifying the type and location of the defect, healthcare professionals can provide appropriate interventions to improve the patient’s quality of life.

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      • Neurological System
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  • Question 42 - A 68-year-old male comes to the emergency department with a sudden onset of...

    Incorrect

    • A 68-year-old male comes to the emergency department with a sudden onset of numbness in his right arm and leg. During the examination, you observe that he has left-sided facial numbness. There are no alterations in his speech or hearing, and he has no weakness in any of his limbs.

      What is the probable diagnosis?

      Your Answer: Middle cerebral artery stroke

      Correct Answer: Lateral medullary syndrome

      Explanation:

      Understanding Lateral Medullary Syndrome

      Lateral medullary syndrome, also referred to as Wallenberg’s syndrome, is a condition that arises when the posterior inferior cerebellar artery becomes blocked. This condition is characterized by a range of symptoms that affect both the cerebellum and brainstem. Cerebellar features of the syndrome include ataxia and nystagmus, while brainstem features include dysphagia, facial numbness, and cranial nerve palsy such as Horner’s. Additionally, patients may experience contralateral limb sensory loss. Understanding the symptoms of lateral medullary syndrome is crucial for prompt diagnosis and treatment.

    • This question is part of the following fields:

      • Neurological System
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  • Question 43 - A patient visiting the neurology outpatient clinic presents with a motor deficit. The...

    Incorrect

    • A patient visiting the neurology outpatient clinic presents with a motor deficit. The neurologist observes muscle fasciculations, flaccid weakness, and decreased reflexes.

      What is the location of the lesion?

      Your Answer: Medulla

      Correct Answer: Peripheral nerve

      Explanation:

      A lower motor neuron lesion can be identified by a decrease in reflex response.

      When a lower motor neuron lesion occurs, it can result in reduced tone, weakness, and muscle fasciculations. These neurons originate in the anterior horn of the spinal cord and connect with the neuromuscular junction.

      On the other hand, if the corticospinal tract is affected in the motor cortex, internal capsule, midbrain, or medulla, it would cause an upper motor neuron pattern of weakness. This would be characterized by hypertonia, brisk reflexes, and an upgoing plantar reflex response.

      Reflexes are automatic responses that our body makes in response to certain stimuli. These responses are controlled by the nervous system and do not require conscious thought. There are several common reflexes that are associated with specific roots in the spinal cord. For example, the ankle reflex is associated with the S1-S2 root, while the knee reflex is associated with the L3-L4 root. Similarly, the biceps reflex is associated with the C5-C6 root, and the triceps reflex is associated with the C7-C8 root. Understanding these reflexes can help healthcare professionals diagnose and treat certain conditions.

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      • Neurological System
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  • Question 44 - As you help the FY1 draft discharge summaries for the care of the...

    Incorrect

    • As you help the FY1 draft discharge summaries for the care of the elderly ward, you come across a patient who is reported to have profound apraxia. This individual is 89 years old and has significant dementia. Can you explain what apraxia is?

      Your Answer: The use of simplified language

      Correct Answer: Inability to perform voluntary movements

      Explanation:

      Apraxia refers to the incapacity to execute deliberate movements even when the motor and sensory systems are functioning properly. This condition impacts activities like dressing, eating, artistic endeavors (such as drawing), and ideomotor actions (like waving goodbye).

      Brain lesions can be localized based on the neurological disorders or features that are present. The gross anatomy of the brain can provide clues to the location of the lesion. For example, lesions in the parietal lobe can result in sensory inattention, apraxias, astereognosis, inferior homonymous quadrantanopia, and Gerstmann’s syndrome. Lesions in the occipital lobe can cause homonymous hemianopia, cortical blindness, and visual agnosia. Temporal lobe lesions can result in Wernicke’s aphasia, superior homonymous quadrantanopia, auditory agnosia, and prosopagnosia. Lesions in the frontal lobes can cause expressive aphasia, disinhibition, perseveration, anosmia, and an inability to generate a list. Lesions in the cerebellum can result in gait and truncal ataxia, intention tremor, past pointing, dysdiadokinesis, and nystagmus.

      In addition to the gross anatomy, specific areas of the brain can also provide clues to the location of a lesion. For example, lesions in the medial thalamus and mammillary bodies of the hypothalamus can result in Wernicke and Korsakoff syndrome. Lesions in the subthalamic nucleus of the basal ganglia can cause hemiballism, while lesions in the striatum (caudate nucleus) can result in Huntington chorea. Parkinson’s disease is associated with lesions in the substantia nigra of the basal ganglia, while lesions in the amygdala can cause Kluver-Bucy syndrome, which is characterized by hypersexuality, hyperorality, hyperphagia, and visual agnosia. By identifying these specific conditions, doctors can better localize brain lesions and provide appropriate treatment.

    • This question is part of the following fields:

      • Neurological System
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  • Question 45 - A 35-year-old woman presents to the Emergency Department with a stab wound to...

    Incorrect

    • A 35-year-old woman presents to the Emergency Department with a stab wound to her forearm following a robbery. Upon examination, there is numbness observed in the thenar eminence and weakness in finger and wrist flexion. Which nerve is the most probable to have been damaged?

      Your Answer: Musculocutaneous nerve

      Correct Answer: Median nerve

      Explanation:

      The median nerve is responsible for providing sensation to the thenar eminence and controlling finger and wrist flexion. Its palmar cutaneous branch supplies sensation to the skin on the lateral side of the palm, including the thenar eminence. The median nerve directly innervates the flexor carpi radialis and palmaris longus muscles, which are responsible for wrist flexion, as well as the flexor digitorum superficialis and lateral half of the flexor digitorum profundus muscles via the anterior interosseous nerve, which control finger flexion. Damage to the median nerve can result in weakness in these movements.

      Anatomy and Function of the Median Nerve

      The median nerve is a nerve that originates from the lateral and medial cords of the brachial plexus. It descends lateral to the brachial artery and passes deep to the bicipital aponeurosis and the median cubital vein at the elbow. The nerve then passes between the two heads of the pronator teres muscle and runs on the deep surface of flexor digitorum superficialis. Near the wrist, it becomes superficial between the tendons of flexor digitorum superficialis and flexor carpi radialis, passing deep to the flexor retinaculum to enter the palm.

      The median nerve has several branches that supply the upper arm, forearm, and hand. These branches include the pronator teres, flexor carpi radialis, palmaris longus, flexor digitorum superficialis, flexor pollicis longus, and palmar cutaneous branch. The nerve also provides motor supply to the lateral two lumbricals, opponens pollicis, abductor pollicis brevis, and flexor pollicis brevis muscles, as well as sensory supply to the palmar aspect of the lateral 2 ½ fingers.

      Damage to the median nerve can occur at the wrist or elbow, resulting in various symptoms such as paralysis and wasting of thenar eminence muscles, weakness of wrist flexion, and sensory loss to the palmar aspect of the fingers. Additionally, damage to the anterior interosseous nerve, a branch of the median nerve, can result in loss of pronation of the forearm and weakness of long flexors of the thumb and index finger. Understanding the anatomy and function of the median nerve is important in diagnosing and treating conditions that affect this nerve.

    • This question is part of the following fields:

      • Neurological System
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  • Question 46 - A 82-year-old man comes to the emergency department complaining of abdominal and bone...

    Incorrect

    • A 82-year-old man comes to the emergency department complaining of abdominal and bone pain. He appears confused, and his wife reports that he has been feeling down lately. After conducting blood tests, you discover that he has elevated levels of parathyroid hormone, leading you to suspect primary hyperparathyroidism.

      What bone profile results would you anticipate?

      Your Answer: Decreased levels of calcium and decreased phosphate

      Correct Answer: Increased levels of calcium and decreased phosphate

      Explanation:

      PTH elevates calcium levels while reducing phosphate levels.

      A single parathyroid adenoma is often responsible for primary hyperparathyroidism, which results in the release of PTH and elevated/normal calcium levels. Normally, increased calcium levels would lead to decreased PTH levels.

      Vitamin D is another significant factor in calcium homeostasis, as it increases both plasma calcium and phosphate levels.

      Maintaining Calcium Balance in the Body

      Calcium ions are essential for various physiological processes in the body, and the largest store of calcium is found in the skeleton. The levels of calcium in the body are regulated by three hormones: parathyroid hormone (PTH), vitamin D, and calcitonin.

      PTH increases calcium levels and decreases phosphate levels by increasing bone resorption and activating osteoclasts. It also stimulates osteoblasts to produce a protein signaling molecule that activates osteoclasts, leading to bone resorption. PTH increases renal tubular reabsorption of calcium and the synthesis of 1,25(OH)2D (active form of vitamin D) in the kidney, which increases bowel absorption of calcium. Additionally, PTH decreases renal phosphate reabsorption.

      Vitamin D, specifically the active form 1,25-dihydroxycholecalciferol, increases plasma calcium and plasma phosphate levels. It increases renal tubular reabsorption and gut absorption of calcium, as well as osteoclastic activity. Vitamin D also increases renal phosphate reabsorption in the proximal tubule.

      Calcitonin, secreted by C cells of the thyroid, inhibits osteoclast activity and renal tubular absorption of calcium.

      Although growth hormone and thyroxine play a small role in calcium metabolism, the primary regulation of calcium levels in the body is through PTH, vitamin D, and calcitonin. Maintaining proper calcium balance is crucial for overall health and well-being.

    • This question is part of the following fields:

      • Neurological System
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  • Question 47 - A 28-year-old female experienced a crush injury while working, causing an air vent...

    Incorrect

    • A 28-year-old female experienced a crush injury while working, causing an air vent to fall and trap her arm. As a result, she developed fixed focal dystonia that led to flexion contracture of her right wrist and digits.

      During the examination, the doctor observed intrinsic hand muscle wasting. The patient's right forearm was supinated, her wrist was hyperextended, and her fingers were flexed. Additionally, there was a decrease in sensation along the medial aspect of her hand and arm, and a reduction in handgrip strength.

      Which nerve roots are affected in this case?

      Your Answer: C8

      Correct Answer: C8/T1

      Explanation:

      T1 nerve root damage can result in Klumpke’s paralysis.

      Brachial Plexus Injuries: Erb-Duchenne and Klumpke’s Paralysis

      Erb-Duchenne paralysis is a type of brachial plexus injury that results from damage to the C5 and C6 roots. This can occur during a breech presentation, where the baby’s head and neck are pulled to the side during delivery. Symptoms of Erb-Duchenne paralysis include weakness or paralysis of the arm, shoulder, and hand, as well as a winged scapula.

      On the other hand, Klumpke’s paralysis is caused by damage to the T1 root of the brachial plexus. This type of injury typically occurs due to traction, such as when a baby’s arm is pulled during delivery. Klumpke’s paralysis can result in a loss of intrinsic hand muscles, which can affect fine motor skills and grip strength.

      It is important to note that brachial plexus injuries can have long-term effects on a person’s mobility and quality of life. Treatment options may include physical therapy, surgery, or a combination of both. Early intervention is key to improving outcomes and minimizing the impact of these injuries.

    • This question is part of the following fields:

      • Neurological System
      5
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  • Question 48 - A teenage boy is struck on the side of his head by a...

    Incorrect

    • A teenage boy is struck on the side of his head by a baseball bat. Upon CT head scan, an extradural haematoma is detected. What is the most probable foramen that the affected artery entered the skull through?

      Your Answer: Foramen ovale

      Correct Answer: Foramen spinosum

      Explanation:

      The artery that is most likely responsible for the extradural haematoma is the middle meningeal artery, which enters the skull through the foramen spinosum. This artery is vulnerable to injury in the pterional region of the skull, where the bone is thin and can be easily fractured. The accessory meningeal artery enters through the foramen ovale, while the carotid artery enters through the carotid canal and the recurrent meningeal artery enters through the superior orbital fissure. The foramen rotundum does not have an artery entering through it.

      Foramina of the Base of the Skull

      The base of the skull contains several openings called foramina, which allow for the passage of nerves, blood vessels, and other structures. The foramen ovale, located in the sphenoid bone, contains the mandibular nerve, otic ganglion, accessory meningeal artery, and emissary veins. The foramen spinosum, also in the sphenoid bone, contains the middle meningeal artery and meningeal branch of the mandibular nerve. The foramen rotundum, also in the sphenoid bone, contains the maxillary nerve.

      The foramen lacerum, located in the sphenoid bone, is initially occluded by a cartilaginous plug and contains the internal carotid artery, nerve and artery of the pterygoid canal, and the base of the medial pterygoid plate. The jugular foramen, located in the temporal bone, contains the inferior petrosal sinus, glossopharyngeal, vagus, and accessory nerves, sigmoid sinus, and meningeal branches from the occipital and ascending pharyngeal arteries.

      The foramen magnum, located in the occipital bone, contains the anterior and posterior spinal arteries, vertebral arteries, and medulla oblongata. The stylomastoid foramen, located in the temporal bone, contains the stylomastoid artery and facial nerve. Finally, the superior orbital fissure, located in the sphenoid bone, contains the oculomotor nerve, recurrent meningeal artery, trochlear nerve, lacrimal, frontal, and nasociliary branches of the ophthalmic nerve, and abducent nerve.

    • This question is part of the following fields:

      • Neurological System
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  • Question 49 - A 55-year-old woman is recuperating after a challenging mastectomy and axillary lymph node...

    Incorrect

    • A 55-year-old woman is recuperating after a challenging mastectomy and axillary lymph node dissection for breast cancer. She reports experiencing shoulder discomfort, and upon examination, her scapula is visibly winged. Which of the following is the most probable root cause of the loss of innervation?

      Your Answer: Latissimus dorsi

      Correct Answer: Serratus anterior

      Explanation:

      Winging of the scapula is usually caused by long thoracic nerve injury, which may occur during axillary dissection. Rhomboid damage is a rare cause.

      The Long Thoracic Nerve and its Role in Scapular Winging

      The long thoracic nerve is derived from the ventral rami of C5, C6, and C7, which are located close to their emergence from intervertebral foramina. It runs downward and passes either anterior or posterior to the middle scalene muscle before reaching the upper tip of the serratus anterior muscle. From there, it descends on the outer surface of this muscle, giving branches into it.

      One of the most common symptoms of long thoracic nerve injury is scapular winging, which occurs when the serratus anterior muscle is weakened or paralyzed. This can happen due to a variety of reasons, including trauma, surgery, or nerve damage. In addition to long thoracic nerve injury, scapular winging can also be caused by spinal accessory nerve injury (which denervates the trapezius) or a dorsal scapular nerve injury.

      Overall, the long thoracic nerve plays an important role in the function of the serratus anterior muscle and the stability of the scapula. Understanding its anatomy and function can help healthcare professionals diagnose and treat conditions that affect the nerve and its associated muscles.

    • This question is part of the following fields:

      • Neurological System
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  • Question 50 - A 35-year-old patient presents to the emergency department with a sudden onset headache...

    Incorrect

    • A 35-year-old patient presents to the emergency department with a sudden onset headache rated at 10/10 in severity, which he describes as the worst headache he has ever had. During the examination, the doctor observes photophobia and a decreasing level of consciousness in the patient.

      What potential underlying risk factor could have contributed to this occurrence?

      Your Answer: Autism spectrum disorder

      Correct Answer: Ehlers-Danlos syndrome

      Explanation:

      Subarachnoid haemorrhage is a potential complication for individuals with Ehlers-Danlos syndrome, a group of connective tissue disorders characterized by joint hypermobility, hyper-extensive skin, and easy bruising. It should be noted that acute kidney injury is not a risk factor, but adult polycystic kidney disease may increase the likelihood of subarachnoid haemorrhage.

      Understanding Subarachnoid Haemorrhage

      Subarachnoid haemorrhage (SAH) is a type of intracranial haemorrhage where blood is present in the subarachnoid space, which is located deep to the subarachnoid layer of the meninges. Spontaneous SAH is caused by various factors such as intracranial aneurysm, arteriovenous malformation, pituitary apoplexy, arterial dissection, mycotic aneurysms, and perimesencephalic. The most common symptom of SAH is a sudden-onset headache, which is severe and occipital. Other symptoms include nausea, vomiting, meningism, coma, seizures, and sudden death. SAH can be confirmed through a CT head scan or lumbar puncture. Treatment for SAH depends on the underlying cause, and most intracranial aneurysms are treated with a coil by interventional neuroradiologists. Complications of aneurysmal SAH include re-bleeding, vasospasm, hyponatraemia, seizures, hydrocephalus, and death. Predictive factors for SAH include conscious level on admission, age, and the amount of blood visible on CT head.

    • This question is part of the following fields:

      • Neurological System
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  • Question 51 - A 73-year-old man arrives at the emergency department with complaints of sudden onset...

    Incorrect

    • A 73-year-old man arrives at the emergency department with complaints of sudden onset weakness on the right side of his face and arm. He has a medical history of atrial fibrillation and admits to occasionally forgetting to take his anticoagulant medication. During a complete neurological examination, you assess the corneal reflex. What nerves are involved in the corneal reflex test?

      Your Answer: Optic nerve and ophthalmic nerve

      Correct Answer: Ophthalmic nerve and facial nerve

      Explanation:

      The corneal reflex involves the afferent limb of the nasociliary branch of the ophthalmic nerve and the efferent impulse of the facial nerve. The optic nerve carries visual information, the oculomotor nerve supplies motor innervation to extra-ocular muscles, the ophthalmic nerve carries sensation from the orbit, and the facial nerve innervates muscles of facial expression and carries taste and parasympathetic fibers.

      Cranial nerves are a set of 12 nerves that emerge from the brain and control various functions of the head and neck. Each nerve has a specific function, such as smell, sight, eye movement, facial sensation, and tongue movement. Some nerves are sensory, some are motor, and some are both. A useful mnemonic to remember the order of the nerves is Some Say Marry Money But My Brother Says Big Brains Matter Most, with S representing sensory, M representing motor, and B representing both.

      In addition to their specific functions, cranial nerves also play a role in various reflexes. These reflexes involve an afferent limb, which carries sensory information to the brain, and an efferent limb, which carries motor information from the brain to the muscles. Examples of cranial nerve reflexes include the corneal reflex, jaw jerk, gag reflex, carotid sinus reflex, pupillary light reflex, and lacrimation reflex. Understanding the functions and reflexes of the cranial nerves is important in diagnosing and treating neurological disorders.

    • This question is part of the following fields:

      • Neurological System
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  • Question 52 - A 25-year-old woman complains of pain in the medial aspect of her thigh....

    Incorrect

    • A 25-year-old woman complains of pain in the medial aspect of her thigh. Upon investigation, a large ovarian cyst is discovered. Which nerve is most likely being compressed as the underlying cause of her discomfort?

      Your Answer: Genitofemoral

      Correct Answer: Obturator

      Explanation:

      The cutaneous branch of the obturator nerve is often not present, but it is known to provide sensation to the inner thigh. If there are large tumors in the pelvic area, they may put pressure on this nerve, causing pain that spreads down the leg.

      Anatomy of the Obturator Nerve

      The obturator nerve is formed by branches from the ventral divisions of L2, L3, and L4 nerve roots, with L3 being the main contributor. It descends vertically in the posterior part of the psoas major muscle and emerges from its medial border at the lateral margin of the sacrum. After crossing the sacroiliac joint, it enters the lesser pelvis and descends on the obturator internus muscle to enter the obturator groove. The nerve lies lateral to the internal iliac vessels and ureter in the lesser pelvis and is joined by the obturator vessels lateral to the ovary or ductus deferens.

      The obturator nerve supplies the muscles of the medial compartment of the thigh, including the external obturator, adductor longus, adductor brevis, adductor magnus (except for the lower part supplied by the sciatic nerve), and gracilis. The cutaneous branch, which is often absent, supplies the skin and fascia of the distal two-thirds of the medial aspect of the thigh when present.

      The obturator canal connects the pelvis and thigh and contains the obturator artery, vein, and nerve, which divides into anterior and posterior branches. Understanding the anatomy of the obturator nerve is important in diagnosing and treating conditions that affect the medial thigh and pelvic region.

    • This question is part of the following fields:

      • Neurological System
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  • Question 53 - Which one of the following structures is not closely related to the carotid...

    Incorrect

    • Which one of the following structures is not closely related to the carotid sheath?

      Your Answer: Hypoglossal nerve

      Correct Answer: Anterior belly of digastric muscle

      Explanation:

      The carotid sheath is connected to sternohyoid and sternothyroid at its lower end. The superior belly of omohyoid crosses the sheath at the cricoid cartilage level. The sternocleidomastoid muscle covers the sheath above this level. The vessels pass beneath the posterior belly of digastric and stylohyoid above the hyoid bone. The hypoglossal nerve crosses the sheath diagonally at the hyoid bone level.

      The common carotid artery is a major blood vessel that supplies the head and neck with oxygenated blood. It has two branches, the left and right common carotid arteries, which arise from different locations. The left common carotid artery originates from the arch of the aorta, while the right common carotid artery arises from the brachiocephalic trunk. Both arteries terminate at the upper border of the thyroid cartilage by dividing into the internal and external carotid arteries.

      The left common carotid artery runs superolaterally to the sternoclavicular joint and is in contact with various structures in the thorax, including the trachea, left recurrent laryngeal nerve, and left margin of the esophagus. In the neck, it passes deep to the sternocleidomastoid muscle and enters the carotid sheath with the vagus nerve and internal jugular vein. The right common carotid artery has a similar path to the cervical portion of the left common carotid artery, but with fewer closely related structures.

      Overall, the common carotid artery is an important blood vessel with complex anatomical relationships in both the thorax and neck. Understanding its path and relations is crucial for medical professionals to diagnose and treat various conditions related to this artery.

    • This question is part of the following fields:

      • Neurological System
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  • Question 54 - A 29-year-old female is being followed up in the epilepsy clinic after switching...

    Incorrect

    • A 29-year-old female is being followed up in the epilepsy clinic after switching from lamotrigine to carbamazepine for her generalised tonic-clonic seizures. What is the mechanism of action of her new medication?

      Your Answer: Binds to GABAA receptors allosterically to hyperpolarize neuronal cell membranes

      Correct Answer: Binds to sodium channels to increase their refractory period

      Explanation:

      Carbamazepine binds to voltage-gated sodium channels in the neuronal cell membrane, blocking their action in the inactive form. This results in a longer time for the neuron to depolarize, increasing the absolute refractory period and raising the threshold for seizure activity. It does not bind to potassium channels or GABA receptors. Blocking potassium efflux would increase the refractory period, while promoting potassium efflux would hyperpolarize the cell and also increase the refractory period. Benzodiazepines bind allosterically to GABAA receptors, hyperpolarizing the cell and increasing the refractory period.

      Understanding Carbamazepine: Uses, Mechanism of Action, and Adverse Effects

      Carbamazepine is a medication that is commonly used in the treatment of epilepsy, particularly partial seizures. It is also used to treat trigeminal neuralgia and bipolar disorder. Chemically similar to tricyclic antidepressant drugs, carbamazepine works by binding to sodium channels and increasing their refractory period.

      However, there are some adverse effects associated with carbamazepine use. It is known to be a P450 enzyme inducer, which can affect the metabolism of other medications. Patients may also experience dizziness, ataxia, drowsiness, headache, and visual disturbances, especially diplopia. In rare cases, carbamazepine can cause Steven-Johnson syndrome, leucopenia, agranulocytosis, and hyponatremia secondary to syndrome of inappropriate ADH secretion.

      It is important to note that carbamazepine exhibits autoinduction, which means that when patients start taking the medication, they may experience a return of seizures after 3-4 weeks of treatment. Therefore, it is crucial for patients to be closely monitored by their healthcare provider when starting carbamazepine.

    • This question is part of the following fields:

      • Neurological System
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  • Question 55 - A person experiences a haemorrhage in a specific area of their brain. As...

    Correct

    • A person experiences a haemorrhage in a specific area of their brain. As a result, they are no longer able to control their body temperature. Which region of the brain has been affected?

      Your Answer: Hypothalamus

      Explanation:

      The hypothalamus plays a crucial role in regulating body temperature. Specifically, the anterior portion of the hypothalamus helps to lower body temperature by activating the parasympathetic nervous system, while the posterior nucleus helps to raise body temperature by activating the sympathetic nervous system. In contrast, the thalamus serves as a relay center in the brain, the pituitary gland secretes hormones, the midbrain is the uppermost part of the brainstem, and the medulla is the lowermost part of the brainstem. Lesions to these areas would not have a significant impact on body temperature regulation.

      The hypothalamus is a part of the brain that plays a crucial role in maintaining the body’s internal balance, or homeostasis. It is located in the diencephalon and is responsible for regulating various bodily functions. The hypothalamus is composed of several nuclei, each with its own specific function. The anterior nucleus, for example, is involved in cooling the body by stimulating the parasympathetic nervous system. The lateral nucleus, on the other hand, is responsible for stimulating appetite, while lesions in this area can lead to anorexia. The posterior nucleus is involved in heating the body and stimulating the sympathetic nervous system, and damage to this area can result in poikilothermia. Other nuclei include the septal nucleus, which regulates sexual desire, the suprachiasmatic nucleus, which regulates circadian rhythm, and the ventromedial nucleus, which is responsible for satiety. Lesions in the paraventricular nucleus can lead to diabetes insipidus, while lesions in the dorsomedial nucleus can result in savage behavior.

    • This question is part of the following fields:

      • Neurological System
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  • Question 56 - A 65-year-old male presents to the preoperative hernia clinic with complaints of visual...

    Incorrect

    • A 65-year-old male presents to the preoperative hernia clinic with complaints of visual difficulty. During the examination, a homonymous hemianopia is observed. What is the most probable location of the lesion?

      Your Answer: Pituitary gland

      Correct Answer: Optic tract

      Explanation:

      Although the students don’t seem to be fond of them, the college appears to approve. It’s important to note that a homonymous hemianopia suggests an optic tract injury, while inferior quadranopias are typically caused by parietal lobe lesions. Optic chiasm lesions or pituitary tumors, on the other hand, result in bitemporal hemianopias.

      Understanding Visual Field Defects

      Visual field defects can occur due to various reasons, including lesions in the optic tract, optic radiation, or occipital cortex. A left homonymous hemianopia indicates a visual field defect to the left, which is caused by a lesion in the right optic tract. On the other hand, homonymous quadrantanopias can be categorized into PITS (Parietal-Inferior, Temporal-Superior) and can be caused by lesions in the inferior or superior optic radiations in the temporal or parietal lobes.

      When it comes to congruous and incongruous defects, the former refers to complete or symmetrical visual field loss, while the latter indicates incomplete or asymmetric visual field loss. Incongruous defects are caused by optic tract lesions, while congruous defects are caused by optic radiation or occipital cortex lesions. In cases where there is macula sparing, it is indicative of a lesion in the occipital cortex.

      Bitemporal hemianopia, on the other hand, is caused by a lesion in the optic chiasm. The type of defect can indicate the location of the compression, with an upper quadrant defect being more common in inferior chiasmal compression, such as a pituitary tumor, and a lower quadrant defect being more common in superior chiasmal compression, such as a craniopharyngioma.

      Understanding visual field defects is crucial in diagnosing and treating various neurological conditions. By identifying the type and location of the defect, healthcare professionals can provide appropriate interventions to improve the patient’s quality of life.

    • This question is part of the following fields:

      • Neurological System
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  • Question 57 - Which of the following muscles is not innervated by the sciatic nerve? ...

    Incorrect

    • Which of the following muscles is not innervated by the sciatic nerve?

      Your Answer: Semitendinosus

      Correct Answer: Quadriceps femoris

      Explanation:

      The femoral nerve is typically responsible for innervating the quadriceps femoris, while the sciatic nerve is commonly considered a nerve of the posterior compartment. Although the obturator nerve is the primary source of innervation for the adductor magnus, the sciatic nerve also plays a role in its innervation.

      Understanding the Sciatic Nerve

      The sciatic nerve is the largest nerve in the body, formed from the sacral plexus and arising from spinal nerves L4 to S3. It passes through the greater sciatic foramen and emerges beneath the piriformis muscle, running under the cover of the gluteus maximus muscle. The nerve provides cutaneous sensation to the skin of the foot and leg, as well as innervating the posterior thigh muscles and lower leg and foot muscles. Approximately halfway down the posterior thigh, the nerve splits into the tibial and common peroneal nerves. The tibial nerve supplies the flexor muscles, while the common peroneal nerve supplies the extensor and abductor muscles.

      The sciatic nerve also has articular branches for the hip joint and muscular branches in the upper leg, including the semitendinosus, semimembranosus, biceps femoris, and part of the adductor magnus. Cutaneous sensation is provided to the posterior aspect of the thigh via cutaneous nerves, as well as the gluteal region and entire lower leg (except the medial aspect). The nerve terminates at the upper part of the popliteal fossa by dividing into the tibial and peroneal nerves. The nerve to the short head of the biceps femoris comes from the common peroneal part of the sciatic, while the other muscular branches arise from the tibial portion. The tibial nerve goes on to innervate all muscles of the foot except the extensor digitorum brevis, which is innervated by the common peroneal nerve.

    • This question is part of the following fields:

      • Neurological System
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  • Question 58 - An 81-year-old patient has presented to their physician with episodes of syncope and...

    Incorrect

    • An 81-year-old patient has presented to their physician with episodes of syncope and lightheadedness triggered by activities such as shaving or wearing a shirt with a collar. The patient also reports a change in their sense of taste. During the examination, the physician feels the patient's carotid pulse, which triggers another lightheaded episode. The patient's vital signs are taken immediately, revealing a heart rate of 36 bpm, blood pressure of 60/42 mmHg, sats of 96%, and a temperature of 36.7ºC. The physician suspects carotid sinus syndrome and wonders which cranial nerve is responsible for the hypersensitive response in this scenario.

      Your Answer: Vagus nerve (CN X)

      Correct Answer: Glossopharyngeal nerve (CN IX)

      Explanation:

      Cranial nerves are a set of 12 nerves that emerge from the brain and control various functions of the head and neck. Each nerve has a specific function, such as smell, sight, eye movement, facial sensation, and tongue movement. Some nerves are sensory, some are motor, and some are both. A useful mnemonic to remember the order of the nerves is Some Say Marry Money But My Brother Says Big Brains Matter Most, with S representing sensory, M representing motor, and B representing both.

      In addition to their specific functions, cranial nerves also play a role in various reflexes. These reflexes involve an afferent limb, which carries sensory information to the brain, and an efferent limb, which carries motor information from the brain to the muscles. Examples of cranial nerve reflexes include the corneal reflex, jaw jerk, gag reflex, carotid sinus reflex, pupillary light reflex, and lacrimation reflex. Understanding the functions and reflexes of the cranial nerves is important in diagnosing and treating neurological disorders.

    • This question is part of the following fields:

      • Neurological System
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  • Question 59 - A 55-year-old man comes in with hyperacousia on one side. What is the...

    Correct

    • A 55-year-old man comes in with hyperacousia on one side. What is the most probable location of the nerve lesion?

      Your Answer: Facial

      Explanation:

      If the nerve in the bony canal is damaged, it can lead to a loss of innervation to the stapedius muscle, which can result in sounds not being properly muted.

      The Facial Nerve: Functions and Pathways

      The facial nerve is a crucial nerve that supplies the structures of the second embryonic branchial arch. It is primarily responsible for controlling the muscles of facial expression, the digastric muscle, and various glandular structures. Additionally, it contains a few afferent fibers that originate in the cells of its genicular ganglion and are involved in taste sensation.

      The facial nerve has four main functions, which can be remembered by the mnemonic face, ear, taste, tear. It supplies the muscles of facial expression, the nerve to the stapedius muscle in the ear, taste sensation to the anterior two-thirds of the tongue, and parasympathetic fibers to the lacrimal and salivary glands.

      The facial nerve’s path begins in the pons, where its motor and sensory components originate. It then passes through the petrous temporal bone into the internal auditory meatus, where it combines with the vestibulocochlear nerve. From there, it enters the facial canal, which passes superior to the vestibule of the inner ear and contains the geniculate ganglion. The canal then widens at the medial aspect of the middle ear and gives rise to three branches: the greater petrosal nerve, the nerve to the stapedius, and the chorda tympani.

      Finally, the facial nerve exits the skull through the stylomastoid foramen, passing through the tympanic cavity anteriorly and the mastoid antrum posteriorly. It then enters the parotid gland and divides into five branches: the temporal, zygomatic, buccal, marginal mandibular, and cervical branches. Understanding the functions and pathways of the facial nerve is essential for diagnosing and treating various neurological and otolaryngological conditions.

    • This question is part of the following fields:

      • Neurological System
      8.6
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  • Question 60 - At which of the following vertebral body levels does the common carotid artery...

    Incorrect

    • At which of the following vertebral body levels does the common carotid artery usually divide into the external and internal carotid arteries?

      Your Answer: C6

      Correct Answer: C4

      Explanation:

      It ends at the top edge of the thyroid cartilage, typically situated at the fourth cervical vertebrae (C4).

      The common carotid artery is a major blood vessel that supplies the head and neck with oxygenated blood. It has two branches, the left and right common carotid arteries, which arise from different locations. The left common carotid artery originates from the arch of the aorta, while the right common carotid artery arises from the brachiocephalic trunk. Both arteries terminate at the upper border of the thyroid cartilage by dividing into the internal and external carotid arteries.

      The left common carotid artery runs superolaterally to the sternoclavicular joint and is in contact with various structures in the thorax, including the trachea, left recurrent laryngeal nerve, and left margin of the esophagus. In the neck, it passes deep to the sternocleidomastoid muscle and enters the carotid sheath with the vagus nerve and internal jugular vein. The right common carotid artery has a similar path to the cervical portion of the left common carotid artery, but with fewer closely related structures.

      Overall, the common carotid artery is an important blood vessel with complex anatomical relationships in both the thorax and neck. Understanding its path and relations is crucial for medical professionals to diagnose and treat various conditions related to this artery.

    • This question is part of the following fields:

      • Neurological System
      26
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  • Question 61 - A 54 year old female who has undergone a hysterectomy presents to the...

    Incorrect

    • A 54 year old female who has undergone a hysterectomy presents to the clinic with complaints of pain and decreased sensation on the inner part of her thigh. Upon examination, weak thigh adduction is noted. What nerve injury is most probable?

      Your Answer: L3 cord compression

      Correct Answer: Obturator nerve

      Explanation:

      The adductor nerve is responsible for providing sensation to the inner part of the thigh and facilitating adduction and internal rotation of the thigh. This nerve is commonly damaged during surgeries involving the pelvic or abdominal region. It is improbable for the L3 spinal cord to be compressed in such cases.

      Anatomy of the Obturator Nerve

      The obturator nerve is formed by branches from the ventral divisions of L2, L3, and L4 nerve roots, with L3 being the main contributor. It descends vertically in the posterior part of the psoas major muscle and emerges from its medial border at the lateral margin of the sacrum. After crossing the sacroiliac joint, it enters the lesser pelvis and descends on the obturator internus muscle to enter the obturator groove. The nerve lies lateral to the internal iliac vessels and ureter in the lesser pelvis and is joined by the obturator vessels lateral to the ovary or ductus deferens.

      The obturator nerve supplies the muscles of the medial compartment of the thigh, including the external obturator, adductor longus, adductor brevis, adductor magnus (except for the lower part supplied by the sciatic nerve), and gracilis. The cutaneous branch, which is often absent, supplies the skin and fascia of the distal two-thirds of the medial aspect of the thigh when present.

      The obturator canal connects the pelvis and thigh and contains the obturator artery, vein, and nerve, which divides into anterior and posterior branches. Understanding the anatomy of the obturator nerve is important in diagnosing and treating conditions that affect the medial thigh and pelvic region.

    • This question is part of the following fields:

      • Neurological System
      17.5
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  • Question 62 - A 45-year-old man arrives at the emergency department after being hit by a...

    Incorrect

    • A 45-year-old man arrives at the emergency department after being hit by a car while crossing the road. According to the paramedics, he was conscious at the scene but his level of consciousness deteriorated during transport. He is currently only responsive to voice and answering in single words. After stabilizing him, a CT scan of the head is urgently requested, which reveals an extradural hemorrhage. One of the common causes of this type of hemorrhage is the rupture of the middle meningeal artery. This artery runs along the deep surface of the cranium, with its anterior division located near which point on the cranium?

      Your Answer: Asterion

      Correct Answer: Pterion

      Explanation:

      The pterion is the correct answer, as all of the options are anatomical points on the cranium. The pterion is located in the temporal fossa and marks the junction of four cranial bones. It is a weak area of the skull and a fracture at this site can cause a haemorrhage due to the middle meningeal artery running deep to it. The asterion is where three cranial bones meet, while the lambda is where two cranial bones meet and is the site of the posterior fontanelle in newborns. The bregma is where two cranial bones meet and is the site of the anterior fontanelle during infancy. The nasion is where the nasion bones meet the frontal bones. Extradural haemorrhage is bleeding between the dura mater and the skull, often caused by rupture of the middle meningeal artery following head trauma. It typically presents in older patients with a lucid interval between the head injury and neurological deterioration.

      The Middle Meningeal Artery: Anatomy and Clinical Significance

      The middle meningeal artery is a branch of the maxillary artery, which is one of the two terminal branches of the external carotid artery. It is the largest of the three arteries that supply the meninges, the outermost layer of the brain. The artery runs through the foramen spinosum and supplies the dura mater. It is located beneath the pterion, where the skull is thin, making it vulnerable to injury. Rupture of the artery can lead to an Extradural hematoma.

      In the dry cranium, the middle meningeal artery creates a deep indentation in the calvarium. It is intimately associated with the auriculotemporal nerve, which wraps around the artery. This makes the two structures easily identifiable in the dissection of human cadavers and also easily damaged in surgery.

      Overall, understanding the anatomy and clinical significance of the middle meningeal artery is important for medical professionals, particularly those involved in neurosurgery.

    • This question is part of the following fields:

      • Neurological System
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  • Question 63 - A 50-year-old man comes to the neurology clinic with a tremor on his...

    Incorrect

    • A 50-year-old man comes to the neurology clinic with a tremor on his right side. Additionally, he is diagnosed with dysdiadochokinesia on his right side.

      Where is the probable location of a lesion in the brain?

      Your Answer: Hypothalamus

      Correct Answer: Right cerebellum

      Explanation:

      Ipsilateral signs are caused by unilateral lesions in the cerebellum.

      The patient is exhibiting symptoms of cerebellar disease, including unilateral dysdiadochokinesia and an intention tremor on the right side, indicating a right cerebellar lesion.

      If the lesion were in the basal ganglia, a resting tremor would be more likely.

      A hypothalamic lesion would not explain these symptoms.

      Cerebellar syndrome is a condition that affects the cerebellum, a part of the brain responsible for coordinating movement and balance. When there is damage or injury to one side of the cerebellum, it can cause symptoms on the same side of the body. These symptoms can be remembered using the mnemonic DANISH, which stands for Dysdiadochokinesia, Dysmetria, Ataxia, Nystagmus, Intention tremour, Slurred staccato speech, and Hypotonia.

      There are several possible causes of cerebellar syndrome, including genetic conditions like Friedreich’s ataxia and ataxic telangiectasia, neoplastic growths like cerebellar haemangioma, strokes, alcohol use, multiple sclerosis, hypothyroidism, and certain medications or toxins like phenytoin or lead poisoning. In some cases, cerebellar syndrome may be a paraneoplastic condition, meaning it is a secondary effect of an underlying cancer like lung cancer. It is important to identify the underlying cause of cerebellar syndrome in order to provide appropriate treatment and management.

    • This question is part of the following fields:

      • Neurological System
      22.5
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  • Question 64 - A 30-year-old woman visits the doctor's office complaining of nausea and vomiting. Upon...

    Incorrect

    • A 30-year-old woman visits the doctor's office complaining of nausea and vomiting. Upon taking a pregnancy test, it is discovered that she is indeed pregnant. Can you identify the location of the chemoreceptor trigger zone?

      Your Answer: Vestibular system of the inner ear

      Correct Answer: Area postrema (medulla)

      Explanation:

      The vomiting process is initiated by the chemoreceptor trigger zone, which receives signals from various sources such as the gastrointestinal tract, hormones, and drugs. This zone is located in the area postrema, which is situated on the floor of the 4th ventricle in the medulla. It is noteworthy that the area postrema is located outside the blood-brain barrier. The nucleus of tractus solitarius, which is also located in the medulla, contains autonomic centres that play a role in the vomiting reflex. This nucleus receives signals from the chemoreceptor trigger zone. The vomiting centres in the brain receive inputs from different areas, including the gastrointestinal tract and the vestibular system of the inner ear.

      Vomiting is the involuntary act of expelling the contents of the stomach and sometimes the intestines. This is caused by a reverse peristalsis and abdominal contraction. The vomiting center is located in the medulla oblongata and is activated by receptors in various parts of the body. These include the labyrinthine receptors in the ear, which can cause motion sickness, the over distention receptors in the duodenum and stomach, the trigger zone in the central nervous system, which can be affected by drugs such as opiates, and the touch receptors in the throat. Overall, vomiting is a reflex action that is triggered by various stimuli and is controlled by the vomiting center in the brainstem.

    • This question is part of the following fields:

      • Neurological System
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  • Question 65 - A 75-year-old man with Alzheimer's disease visits his doctor for a medication review,...

    Incorrect

    • A 75-year-old man with Alzheimer's disease visits his doctor for a medication review, accompanied by his son. The son reports that his father is struggling to perform daily tasks and requests an increase in his care package.

      During the examination, the patient appears disoriented to time and place. A mini-mental state examination is conducted, revealing a score of 14/30, indicating moderate dementia.

      Which histological finding would be the most specific for this patient's diagnosis?

      Your Answer: Extraneuronal Lewy bodies, intraneuronal amyloid plaques

      Correct Answer: Extraneuronal amyloid plaques, intraneuronal neurofibrillary tangles

      Explanation:

      In Alzheimer’s disease, the pathology involves extraneuronal amyloid plaques and intraneuronal neurofibrillary tangles. Amyloid plaques are clumps of beta-amyloid that are found in the extracellular matrix, while neurofibrillary tangles are made up of hyperphosphorylated tau and are located within the neurons. The exact role of beta-amyloid and tau in the development of Alzheimer’s disease is still not fully understood.

      Alzheimer’s disease is a type of dementia that gradually worsens over time and is caused by the degeneration of the brain. There are several risk factors associated with Alzheimer’s disease, including increasing age, family history, and certain genetic mutations. The disease is also more common in individuals of Caucasian ethnicity and those with Down’s syndrome.

      The pathological changes associated with Alzheimer’s disease include widespread cerebral atrophy, particularly in the cortex and hippocampus. Microscopically, there are cortical plaques caused by the deposition of type A-Beta-amyloid protein and intraneuronal neurofibrillary tangles caused by abnormal aggregation of the tau protein. The hyperphosphorylation of the tau protein has been linked to Alzheimer’s disease. Additionally, there is a deficit of acetylcholine due to damage to an ascending forebrain projection.

      Neurofibrillary tangles are a hallmark of Alzheimer’s disease and are partly made from a protein called tau. Tau is a protein that interacts with tubulin to stabilize microtubules and promote tubulin assembly into microtubules. In Alzheimer’s disease, tau proteins are excessively phosphorylated, impairing their function.

    • This question is part of the following fields:

      • Neurological System
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  • Question 66 - A 3 week old infant has been diagnosed with hydrocephalus due to congenital...

    Incorrect

    • A 3 week old infant has been diagnosed with hydrocephalus due to congenital spina bifida. Can you identify the location of cerebrospinal fluid (CSF) production?

      Your Answer: Arachnoid granulations

      Correct Answer: Choroid plexuses

      Explanation:

      The choroid plexuses, located in the ventricles of the brain, are responsible for the production of CSF. The cerebral aqueduct (or aqueduct of Sylvius) does not have a choroid plexus. The cribriform plate, which is a part of the ethmoid bone, does not produce or secrete anything but a fracture in it can cause CSF leakage into the nose and result in anosmia. The arachnoid granulations (or villi) serve as the communication between the subarachnoid space and the venous sinuses, allowing for the continuous reabsorption of CSF into the bloodstream. The pia mater, which is the innermost layer of the meninges around the brain, encloses the CSF within the subarachnoid space.

      Cerebrospinal Fluid: Circulation and Composition

      Cerebrospinal fluid (CSF) is a clear, colorless liquid that fills the space between the arachnoid mater and pia mater, covering the surface of the brain. The total volume of CSF in the brain is approximately 150ml, and it is produced by the ependymal cells in the choroid plexus or blood vessels. The majority of CSF is produced by the choroid plexus, accounting for 70% of the total volume. The remaining 30% is produced by blood vessels. The CSF is reabsorbed via the arachnoid granulations, which project into the venous sinuses.

      The circulation of CSF starts from the lateral ventricles, which are connected to the third ventricle via the foramen of Munro. From the third ventricle, the CSF flows through the cerebral aqueduct (aqueduct of Sylvius) to reach the fourth ventricle via the foramina of Magendie and Luschka. The CSF then enters the subarachnoid space, where it circulates around the brain and spinal cord. Finally, the CSF is reabsorbed into the venous system via arachnoid granulations into the superior sagittal sinus.

      The composition of CSF is essential for its proper functioning. The glucose level in CSF is between 50-80 mg/dl, while the protein level is between 15-40 mg/dl. Red blood cells are not present in CSF, and the white blood cell count is usually less than 3 cells/mm3. Understanding the circulation and composition of CSF is crucial for diagnosing and treating various neurological disorders.

    • This question is part of the following fields:

      • Neurological System
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  • Question 67 - A 90-year-old female arrives at the emergency department after experiencing a brief episode...

    Incorrect

    • A 90-year-old female arrives at the emergency department after experiencing a brief episode of aphasia. The episode lasted for 15 minutes, according to her daughter, and has never occurred before. She did not lose consciousness or sustain a head injury. The patient is currently taking atorvastatin, amlodipine, and sertraline. What diagnostic measures can be taken to confirm the diagnosis?

      Your Answer: Duration of symptoms lasting less than 24 hours

      Correct Answer: Referral to TIA clinic and consideration for MRI scan

      Explanation:

      The definition of a TIA has changed to be based on tissue rather than time. It is now defined as a temporary episode of neurological dysfunction caused by focal brain, spinal cord, or retinal ischemia without acute infarction. Based on the patient’s symptoms, it is likely that they have experienced a TIA. NICE guidelines recommend urgent referral to a specialist stroke physician within 24 hours for patients who have had a suspected TIA within the last 7 days. An MRI scan may be necessary to confirm the diagnosis. A referral to a TIA clinic is required for patients who have experienced a transient episode of aphasia. CT brain imaging is no longer recommended unless there is a clinical suspicion of an alternative diagnosis that a CT could detect. The ROSIER tool is used to identify patients likely suffering from an acute stroke, not TIA. An ultrasound of the carotids may be appropriate down the line to determine if a carotid endarterectomy is required to reduce the risk of future strokes and TIAs. The diagnosis of TIA is now tissue-based, not time-based, and determining the episode as a TIA based on the duration of symptoms would be inappropriate.

      A transient ischaemic attack (TIA) is a brief period of neurological deficit caused by a vascular issue, lasting less than an hour. The original definition of a TIA was based on time, but it is now recognized that even short periods of ischaemia can result in pathological changes to the brain. Therefore, a new ’tissue-based’ definition is now used. The clinical features of a TIA are similar to those of a stroke, but the symptoms resolve within an hour. Possible features include unilateral weakness or sensory loss, aphasia or dysarthria, ataxia, vertigo, or loss of balance, visual problems, sudden transient loss of vision in one eye (amaurosis fugax), diplopia, and homonymous hemianopia.

      NICE recommends immediate antithrombotic therapy, giving aspirin 300 mg immediately unless the patient has a bleeding disorder or is taking an anticoagulant. If aspirin is contraindicated, management should be discussed urgently with the specialist team. Specialist review is necessary if the patient has had more than one TIA or has a suspected cardioembolic source or severe carotid stenosis. Urgent assessment within 24 hours by a specialist stroke physician is required if the patient has had a suspected TIA in the last 7 days. Referral for specialist assessment should be made as soon as possible within 7 days if the patient has had a suspected TIA more than a week previously. The person should be advised not to drive until they have been seen by a specialist.

      Neuroimaging should be done on the same day as specialist assessment if possible. MRI is preferred to determine the territory of ischaemia or to detect haemorrhage or alternative pathologies. Carotid imaging is necessary as atherosclerosis in the carotid artery may be a source of emboli in some patients. All patients should have an urgent carotid doppler unless they are not a candidate for carotid endarterectomy.

      Antithrombotic therapy is recommended, with clopidogrel being the first-line treatment. Aspirin + dipyridamole should be given to patients who cannot tolerate clopidogrel. Carotid artery endarterectomy should only be considered if the patient has suffered a stroke or TIA in the carotid territory and is not severely disabled. It should only be recommended if carotid stenosis is greater

    • This question is part of the following fields:

      • Neurological System
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  • Question 68 - A 45-year-old female presents to the neurology clinic with diplopia and headache. Upon...

    Incorrect

    • A 45-year-old female presents to the neurology clinic with diplopia and headache. Upon examination, her visual acuity is 6/6, and there is pupillary dilatation. An MRI of her head reveals a post-communicating artery aneurysm. What cranial nerve palsy is probable in this patient?

      Your Answer: Fifth nerve palsy

      Correct Answer: Third nerve palsy

      Explanation:

      A third nerve palsy may be caused by an aneurysm in the posterior communicating artery.

      Understanding Third Nerve Palsy: Causes and Features

      Third nerve palsy is a neurological condition that affects the third cranial nerve, which controls the movement of the eye and eyelid. The condition is characterized by the eye being deviated ‘down and out’, ptosis, and a dilated pupil. In some cases, it may be referred to as a ‘surgical’ third nerve palsy due to the dilation of the pupil.

      There are several possible causes of third nerve palsy, including diabetes mellitus, vasculitis (such as temporal arteritis or SLE), uncal herniation through tentorium if raised ICP, posterior communicating artery aneurysm, and cavernous sinus thrombosis. In some cases, it may also be a false localizing sign. Weber’s syndrome, which is characterized by an ipsilateral third nerve palsy with contralateral hemiplegia, is caused by midbrain strokes. Other possible causes include amyloid and multiple sclerosis.

    • This question is part of the following fields:

      • Neurological System
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  • Question 69 - A 14-year-old boy presents to the general practitioner with complaints of deteriorating balance...

    Incorrect

    • A 14-year-old boy presents to the general practitioner with complaints of deteriorating balance and vision. His mother accompanies him to the appointment. Upon examination, the boy has a high arched palate and absent ankle tendon reflexes. The general practitioner refers the boy to a specialist who conducts genomic studies. The results reveal a trinucleotide repeat of GAA on chromosome 9.

      What is the probable diagnosis?

      Your Answer: Down syndrome

      Correct Answer: Friedreich's ataxia

      Explanation:

      Friedreich’s ataxia is caused by a GAA trinucleotide repeat resulting from a mutation in the FXN gene located on chromosome 9.

      Understanding Friedreich’s Ataxia

      Friedreich’s ataxia is a common hereditary ataxia that usually affects individuals at an early age. It is caused by a trinucleotide repeat disorder that affects the X25 gene on chromosome 9. Unlike other trinucleotide repeat disorders, Friedreich’s ataxia does not show the phenomenon of anticipation. The condition is characterised by gait ataxia and kyphoscoliosis, which are the most common presenting features. Other neurological features include absent ankle jerks/extensor plantars, optic atrophy, and spinocerebellar tract degeneration. In addition, hypertrophic obstructive cardiomyopathy is the most common cause of death in individuals with Friedreich’s ataxia, while diabetes mellitus affects 10-20% of patients. A high-arched palate is also a common feature.

      Overall, understanding Friedreich’s ataxia is important for early diagnosis and management of the condition. With proper care and support, individuals with Friedreich’s ataxia can lead fulfilling lives despite the challenges posed by the condition.

    • This question is part of the following fields:

      • Neurological System
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  • Question 70 - A 22-year-old individual is brought to the medical team on call due to...

    Incorrect

    • A 22-year-old individual is brought to the medical team on call due to fever, neck stiffness, and altered Glasgow coma scale. The medical team suspects acute bacterial meningitis.

      What would be the most suitable antibiotic option for this patient?

      Your Answer: Teicoplanin and amikacin

      Correct Answer: Cefotaxime

      Explanation:

      Empirical Antibiotic Treatment for Acute Bacterial Meningitis

      Patients aged 16-50 years presenting with acute bacterial meningitis are most likely infected with Neisseria meningitidis or Streptococcus pneumoniae. The most appropriate empirical antibiotic choice for this age group is cefotaxime alone. However, if the patient has been outside the UK recently or has had multiple courses of antibiotics in the last 3 months, vancomycin may be added due to the increase in penicillin-resistant pneumococci worldwide.

      For infants over 3 months old up to adults of 50 years old, cefotaxime is the preferred antibiotic. If the patient is under 3 months or over 50 years old, amoxicillin is added to cover for Listeria monocytogenes meningitis, although this is rare. Ceftriaxone can be used instead of cefotaxime.

      Once the results of culture and sensitivity are available, the antibiotic choice can be modified for optimal treatment. Benzylpenicillin is usually first line, but it is not an option in this case. It is important to choose the appropriate antibiotic treatment to ensure the best possible outcome for the patient.

    • This question is part of the following fields:

      • Neurological System
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  • Question 71 - An 80-year-old man arrives at the emergency department with his daughter. They were...

    Incorrect

    • An 80-year-old man arrives at the emergency department with his daughter. They were having a conversation when she noticed he was having difficulty understanding her. He has a history of high blood pressure and has smoked for 40 years.

      During your assessment, you observe that he is able to speak fluently but makes some errors. However, his comprehension appears to be intact and he can correctly identify his daughter and name objects in the room. When asked to repeat certain words, he struggles and appears frustrated by his mistakes.

      Based on these symptoms, what is the likely diagnosis?

      Your Answer: Wernicke's aphasia

      Correct Answer: Conduction aphasia

      Explanation:

      The patient is experiencing conduction aphasia, which is characterized by fluent speech but poor repetition ability. However, their comprehension remains intact. This type of aphasia is typically caused by a stroke that affects the arcuate fasciculus, the part of the parietal lobe that connects Broca’s and Wernicke’s areas. Given the sudden onset of symptoms, it is likely an acute cause. The patient’s medical history and smoking habit put them at risk for stroke.

      Anomic aphasia, which causes difficulty in naming objects, is less likely as the patient was able to name some bedside objects correctly. This type of aphasia can be caused by damage to various areas, including Broca’s and Wernicke’s areas, the parietal lobe, and the temporal lobe, due to trauma or neurodegenerative disease.

      Broca’s aphasia, which results in non-fluent speech but intact comprehension, can be ruled out as the patient is fluent but struggles with repeating sentences. Broca’s area is located in the dominant hemisphere’s frontal lobe and can be damaged by a stroke or trauma.

      Global aphasia, which involves a lack of fluency and comprehension, is not the diagnosis as the patient has both. This type of aphasia is caused by extensive damage to multiple language centers in the dominant hemisphere, often due to a stroke, but can also be caused by a tumor, trauma, or infection.

      Types of Aphasia: Understanding the Different Forms of Language Impairment

      Aphasia is a language disorder that affects a person’s ability to communicate effectively. There are different types of aphasia, each with its own set of symptoms and underlying causes. Wernicke’s aphasia, also known as receptive aphasia, is caused by a lesion in the superior temporal gyrus. This area is responsible for forming speech before sending it to Broca’s area. People with Wernicke’s aphasia may speak fluently, but their sentences often make no sense, and they may use word substitutions and neologisms. Comprehension is impaired.

      Broca’s aphasia, also known as expressive aphasia, is caused by a lesion in the inferior frontal gyrus. This area is responsible for speech production. People with Broca’s aphasia may speak in a non-fluent, labored, and halting manner. Repetition is impaired, but comprehension is normal.

      Conduction aphasia is caused by a stroke affecting the arcuate fasciculus, the connection between Wernicke’s and Broca’s area. People with conduction aphasia may speak fluently, but their repetition is poor. They are aware of the errors they are making, but comprehension is normal.

      Global aphasia is caused by a large lesion affecting all three areas mentioned above, resulting in severe expressive and receptive aphasia. People with global aphasia may still be able to communicate using gestures. Understanding the different types of aphasia is important for proper diagnosis and treatment.

    • This question is part of the following fields:

      • Neurological System
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  • Question 72 - A 24-year-old male arrives at the Emergency Department after sustaining a head injury...

    Incorrect

    • A 24-year-old male arrives at the Emergency Department after sustaining a head injury while playing football. He was struck on the back of his head and lost consciousness for a brief period before regaining it. According to his friend, he appeared to be fine after regaining consciousness except for a headache. However, he has lost consciousness again unexpectedly.

      A biconvex blood collection is revealed on a head CT scan. It does not seem to cross the suture lines.

      Where is the probable location of the bleed?

      Your Answer: Beneath the dura mater

      Correct Answer: Between the dura mater and the skull

      Explanation:

      The outermost layer of the meninges is known as the dura mater. If a patient loses consciousness briefly after a head injury and then suddenly becomes unconscious again, it is likely that they have an extra-dural haematoma. This type of bleed is often caused by the middle meningeal artery, which supplies blood to the dura mater. The resulting blood collection between the skull and dura mater creates a biconvex shape on a CT scan that does not cross suture lines. In contrast, subdural haematomas occur in the potential space beneath the dura mater and are crescent-shaped on a CT scan that crosses suture lines. Subarachnoid bleeds typically cause a sudden, severe headache and appear as a lighter grey/white area in the subarachnoid space on a CT scan. A superficial scalp bleed would not be visible on a CT scan and is unlikely to cause loss of consciousness.

      The Three Layers of Meninges

      The meninges are a group of membranes that cover the brain and spinal cord, providing support to the central nervous system and the blood vessels that supply it. These membranes can be divided into three distinct layers: the dura mater, arachnoid mater, and pia mater.

      The outermost layer, the dura mater, is a thick fibrous double layer that is fused with the inner layer of the periosteum of the skull. It has four areas of infolding and is pierced by small areas of the underlying arachnoid to form structures called arachnoid granulations. The arachnoid mater forms a meshwork layer over the surface of the brain and spinal cord, containing both cerebrospinal fluid and vessels supplying the nervous system. The final layer, the pia mater, is a thin layer attached directly to the surface of the brain and spinal cord.

      The meninges play a crucial role in protecting the brain and spinal cord from injury and disease. However, they can also be the site of serious medical conditions such as subdural and subarachnoid haemorrhages. Understanding the structure and function of the meninges is essential for diagnosing and treating these conditions.

    • This question is part of the following fields:

      • Neurological System
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  • Question 73 - A 78-year-old, frail man is admitted to the geriatric ward and appears to...

    Correct

    • A 78-year-old, frail man is admitted to the geriatric ward and appears to be in poor health. He has been having difficulty cooperating with the nursing staff and physiotherapists, which is concerning the ward consultant. Prolonged bed-stay could increase his risk of pressure ulcers and nerve compression.

      During the examination, the consultant observes that the patient has lost plantar flexion, toe flexion, and weak foot inversion. The consultant suspects that the tibial nerve has been injured due to compression at its roots.

      Which nerve roots are likely to be affected in this patient?

      Your Answer: L4-S3

      Explanation:

      The tibial nerve originates from the spinal nerve roots of L4-S3, while the femoral nerve is derived from L2-L4. The lateral cutaneous nerve of the thigh is derived from L2-L3, and the genitofemoral nerve is derived from L1-L2. Additionally, the spinal nerve roots of L1-L4 contribute to the innervation of various regions of the lower extremities.

      The Tibial Nerve: Muscles Innervated and Termination

      The tibial nerve is a branch of the sciatic nerve that begins at the upper border of the popliteal fossa. It has root values of L4, L5, S1, S2, and S3. This nerve innervates several muscles, including the popliteus, gastrocnemius, soleus, plantaris, tibialis posterior, flexor hallucis longus, and flexor digitorum brevis. These muscles are responsible for various movements in the lower leg and foot, such as plantar flexion, inversion, and flexion of the toes.

      The tibial nerve terminates by dividing into the medial and lateral plantar nerves. These nerves continue to innervate muscles in the foot, such as the abductor hallucis, flexor digitorum brevis, and quadratus plantae. The tibial nerve plays a crucial role in the movement and function of the lower leg and foot, and any damage or injury to this nerve can result in significant impairments in mobility and sensation.

    • This question is part of the following fields:

      • Neurological System
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  • Question 74 - A 38-year-old male presents to a neurology clinic with complaints of recent falls...

    Incorrect

    • A 38-year-old male presents to a neurology clinic with complaints of recent falls and slurred speech. During examination, he exhibits horizontal nystagmus, difficulty with repetitive hand movements, and an intention tremor. What area of the brain is most likely affected by his lesion?

      Your Answer:

      Correct Answer: Cerebellum

      Explanation:

      Unconsciousness can be caused by lesions in the brainstem.

      Cerebellar syndrome is a condition that affects the cerebellum, a part of the brain responsible for coordinating movement and balance. When there is damage or injury to one side of the cerebellum, it can cause symptoms on the same side of the body. These symptoms can be remembered using the mnemonic DANISH, which stands for Dysdiadochokinesia, Dysmetria, Ataxia, Nystagmus, Intention tremour, Slurred staccato speech, and Hypotonia.

      There are several possible causes of cerebellar syndrome, including genetic conditions like Friedreich’s ataxia and ataxic telangiectasia, neoplastic growths like cerebellar haemangioma, strokes, alcohol use, multiple sclerosis, hypothyroidism, and certain medications or toxins like phenytoin or lead poisoning. In some cases, cerebellar syndrome may be a paraneoplastic condition, meaning it is a secondary effect of an underlying cancer like lung cancer. It is important to identify the underlying cause of cerebellar syndrome in order to provide appropriate treatment and management.

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      • Neurological System
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  • Question 75 - Sarah, a 23-year-old female, visits the clinic to have her 8-week plaster cast...

    Incorrect

    • Sarah, a 23-year-old female, visits the clinic to have her 8-week plaster cast removed from her lower limb. During the examination, it is observed that her right foot is in a plantar flexed position, indicating foot drop.

      The physician proceeds to assess the sensation in Sarah's lower limb and feet and discovers a reduction in the area innervated by the deep fibular nerve.

      What specific region of Sarah's lower limb or foot is likely to be impacted by this condition?

      Your Answer:

      Correct Answer: Webspace between the first and second toes

      Explanation:

      The webbing between the first and second toes is innervated by the deep fibular nerve. The saphenous nerve, which arises from the femoral nerve, provides cutaneous innervation to the medial aspect of the leg. The sural nerve, which arises from the common fibular and tibial nerves, innervates the lateral foot. The majority of innervation to the dorsum of the foot comes from the superficial fibular nerve.

      The common peroneal nerve originates from the dorsal divisions of the sacral plexus, specifically from L4, L5, S1, and S2. This nerve provides sensation to the skin and fascia of the anterolateral surface of the leg and dorsum of the foot, as well as innervating the muscles of the anterior and peroneal compartments of the leg, extensor digitorum brevis, and the knee, ankle, and foot joints. It is located laterally within the sciatic nerve and passes through the lateral and proximal part of the popliteal fossa, under the cover of biceps femoris and its tendon, to reach the posterior aspect of the fibular head. The common peroneal nerve divides into the deep and superficial peroneal nerves at the point where it winds around the lateral surface of the neck of the fibula in the body of peroneus longus, approximately 2 cm distal to the apex of the head of the fibula. It is palpable posterior to the head of the fibula. The nerve has several branches, including the nerve to the short head of biceps, articular branch (knee), lateral cutaneous nerve of the calf, and superficial and deep peroneal nerves at the neck of the fibula.

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  • Question 76 - Which option is false regarding the trigeminal nerve? ...

    Incorrect

    • Which option is false regarding the trigeminal nerve?

      Your Answer:

      Correct Answer: The posterior scalp is supplied by the trigeminal nerve

      Explanation:

      The blood supply to the posterior scalp is provided by the C2-C3 nerves.

      The trigeminal nerve is the main sensory nerve of the head and also innervates the muscles of mastication. It has sensory distribution to the scalp, face, oral cavity, nose and sinuses, and dura mater, and motor distribution to the muscles of mastication, mylohyoid, anterior belly of digastric, tensor tympani, and tensor palati. The nerve originates at the pons and has three branches: ophthalmic, maxillary, and mandibular. The ophthalmic and maxillary branches are sensory only, while the mandibular branch is both sensory and motor. The nerve innervates various muscles, including the masseter, temporalis, and pterygoids.

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  • Question 77 - A 35-year-old male who has recently traveled to Nigeria visits the GP complaining...

    Incorrect

    • A 35-year-old male who has recently traveled to Nigeria visits the GP complaining of muscle weakness. During the clinical examination, the doctor observes reduced tone in his limbs, diminished reflexes, and fasciculations.

      What is the probable diagnosis?

      Your Answer:

      Correct Answer: Poliomyelitis

      Explanation:

      Lower motor neuron signs are a common result of poliomyelitis, which is a viral infection that can cause reduced reflexes and tone. On the other hand, upper motor neuron signs are typically associated with conditions such as multiple sclerosis, stroke, and Huntington’s disease.

      Understanding Poliomyelitis and Its Immunisation

      Poliomyelitis is a sudden illness that occurs when one of the polio viruses invades the gastrointestinal tract. The virus then multiplies in the gastrointestinal tissues and targets the nervous system, particularly the anterior horn cells. This can lead to paralysis, which is usually unilateral and accompanied by lower motor neuron signs.

      To prevent the spread of polio, immunisation is crucial. In the UK, the live attenuated oral polio vaccine (OPV – Sabin) was used for routine immunisation until 2004. However, this vaccine carried a risk of vaccine-associated paralytic polio. As the risk of polio importation to the UK has decreased, the country switched to inactivated polio vaccine (IPV – Salk) in 2004. This vaccine is administered via an intramuscular injection and does not carry the same risk of vaccine-associated paralytic polio as the OPV.

      Certain factors can increase the risk of severe paralysis from polio, including being an adult, being pregnant, or having undergone a tonsillectomy. It is important to understand the features and risks associated with poliomyelitis to ensure proper prevention and treatment.

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  • Question 78 - A 58-year-old male presents to the GP with back pain. He tells you...

    Incorrect

    • A 58-year-old male presents to the GP with back pain. He tells you the pain started three weeks ago after helping a friend move where he was lifting lots of heavy boxes. He says the pain radiates down the lateral aspect of his right thigh and often feels a tingling sensation in this area. On clinical examination you find reduced sensation below the right knee but the knee reflex is intact. You suspect he may have damaged his sciatic nerve.

      Which other feature are you most likely to find?

      Your Answer:

      Correct Answer: Absent plantar reflex

      Explanation:

      When a patient experiences a loss of ankle and plantar reflexes but retains their knee jerk reflex, it may indicate a sciatic nerve lesion. The sciatic nerve is responsible for innervating the hamstring and adductor muscles and is supplied by L4-5 and S1-3. Other symptoms of sciatic nerve damage include paralysis of knee flexion and sensory loss below the knee.

      If a patient presents with a Trendelenburg sign, it may indicate an injury to the superior gluteal nerve. This nerve is responsible for thigh abduction by gluteus medius, and damage to it can cause weakness and a compensatory tilt of the body to the weakened gluteal side.

      Tinel’s sign is a feature of carpel tunnel syndrome and occurs when the median nerve is tapped at the wrist, causing tingling or electric-like sensations over the distribution of the median nerve.

      Damage to the obturator nerve can result in sensory loss at the medial thigh. This nerve is typically damaged in an anterior hip dislocation.

      Understanding Sciatic Nerve Lesion

      The sciatic nerve is a major nerve that is supplied by the L4-5, S1-3 vertebrae and divides into the tibial and common peroneal nerves. It is responsible for supplying the hamstring and adductor muscles. When the sciatic nerve is damaged, it can result in a range of symptoms that affect both motor and sensory functions.

      Motor symptoms of sciatic nerve lesion include paralysis of knee flexion and all movements below the knee. Sensory symptoms include loss of sensation below the knee. Reflexes may also be affected, with ankle and plantar reflexes lost while the knee jerk reflex remains intact.

      There are several causes of sciatic nerve lesion, including fractures of the neck of the femur, posterior hip dislocation, and trauma.

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  • Question 79 - A father brings his 14-year-old son into the Emergency Department, who he witnessed...

    Incorrect

    • A father brings his 14-year-old son into the Emergency Department, who he witnessed having a 'fit' 30 minutes ago. This occurred as his son was getting up from his chair. The father noticed some shaking of his son's arms, lasting approximately 10 minutes.

      His son has been very stressed with school projects over the past week, staying up late and often missing meals. His son's past medical and developmental history is non-significant.

      On examination, the son is alert and responsive.

      What are the associated factors with this condition?

      Your Answer:

      Correct Answer: Short postictal period

      Explanation:

      The recovery from syncopal episodes is rapid and the postictal period is short. In contrast, seizures have a much longer postictal period. The stem suggests that the syncope may be due to exam stress and poor nutrition habits. One way to differentiate between seizures and syncope is by the length of the postictal period, with syncope having a quick recovery. Lip smacking is not associated with syncope, but rather with focal seizures of the temporal lobe. The 10-minute postictal period described in the stem is not consistent with a seizure.

      Epilepsy is a neurological condition that causes recurrent seizures. In the UK, around 500,000 people have epilepsy, and two-thirds of them can control their seizures with antiepileptic medication. While epilepsy usually occurs in isolation, certain conditions like cerebral palsy, tuberous sclerosis, and mitochondrial diseases have an association with epilepsy. It’s important to note that seizures can also occur due to other reasons like infection, trauma, or metabolic disturbance.

      Seizures can be classified into focal seizures, which start in a specific area of the brain, and generalised seizures, which involve networks on both sides of the brain. Patients who have had generalised seizures may experience biting their tongue or incontinence of urine. Following a seizure, patients typically have a postictal phase where they feel drowsy and tired for around 15 minutes.

      Patients who have had their first seizure generally undergo an electroencephalogram (EEG) and neuroimaging (usually a MRI). Most neurologists start antiepileptics following a second epileptic seizure. Antiepileptics are one of the few drugs where it is recommended that we prescribe by brand, rather than generically, due to the risk of slightly different bioavailability resulting in a lowered seizure threshold.

      Patients who drive, take other medications, wish to get pregnant, or take contraception need to consider the possible interactions of the antiepileptic medication. Some commonly used antiepileptics include sodium valproate, carbamazepine, lamotrigine, and phenytoin. In case of a seizure that doesn’t terminate after 5-10 minutes, medication like benzodiazepines may be administered to terminate the seizure. If a patient continues to fit despite such measures, they are said to have status epilepticus, which is a medical emergency requiring hospital treatment.

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  • Question 80 - John Smith, a 81-year-old man, arrives at the emergency department after falling down...

    Incorrect

    • John Smith, a 81-year-old man, arrives at the emergency department after falling down a few steps. He complains of 7/10 groin pain and is administered pain relief.

      During the assessment, the doctor conducts a neurovascular examination and observes decreased sensation in the right medial thigh, indicating a possible nerve injury.

      Further investigations reveal a pubic rami fracture.

      Which nerve is likely to be affected in this situation, and which muscle compartment of the thigh does it supply?

      Your Answer:

      Correct Answer: Obturator nerve, ADductor compartment of the thigh

      Explanation:

      The adductor compartment of the thigh is innervated by the obturator nerve, which enters the thigh through the obturator canal after running laterally along the pelvic wall towards the obturator foramen. The muscles innervated by the obturator nerve include the adductor brevis, adductor longus, adductor magnus, gracilis, and obturator externus. The sciatic nerve also innervates the adductor magnus, while the femoral nerve innervates the anterior compartment of the thigh and the sciatic nerve innervates the posterior compartment of the thigh.

      Anatomy of the Obturator Nerve

      The obturator nerve is formed by branches from the ventral divisions of L2, L3, and L4 nerve roots, with L3 being the main contributor. It descends vertically in the posterior part of the psoas major muscle and emerges from its medial border at the lateral margin of the sacrum. After crossing the sacroiliac joint, it enters the lesser pelvis and descends on the obturator internus muscle to enter the obturator groove. The nerve lies lateral to the internal iliac vessels and ureter in the lesser pelvis and is joined by the obturator vessels lateral to the ovary or ductus deferens.

      The obturator nerve supplies the muscles of the medial compartment of the thigh, including the external obturator, adductor longus, adductor brevis, adductor magnus (except for the lower part supplied by the sciatic nerve), and gracilis. The cutaneous branch, which is often absent, supplies the skin and fascia of the distal two-thirds of the medial aspect of the thigh when present.

      The obturator canal connects the pelvis and thigh and contains the obturator artery, vein, and nerve, which divides into anterior and posterior branches. Understanding the anatomy of the obturator nerve is important in diagnosing and treating conditions that affect the medial thigh and pelvic region.

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  • Question 81 - A 68-year-old male presents to the emergency department with a sudden onset headache...

    Incorrect

    • A 68-year-old male presents to the emergency department with a sudden onset headache that he describes as the worst he has ever experienced. He has a history of a coiled brain aneurysm four years ago. There are no changes in his mental status, vision, or movement. A CT scan reveals a subarachnoid hemorrhage. What tissue will be immediately deep to the blood in this case?

      Your Answer:

      Correct Answer: Pia mater

      Explanation:

      The pia mater is the innermost layer of the meninges, which is directly adhered to the surface of the brain and connected to the arachnoid mater by trabeculae. It lies immediately deep to the blood in a subarachnoid haemorrhage.

      The arachnoid mater is the middle layer of the meninges, which is superficial to the subarachnoid space and deep to blood following a subdural haemorrhage or haematoma but not following a subarachnoid haemorrhage.

      The dura mater is the outermost layer of the meninges, which is formed from two layers – the inner, meningeal, layer and the outer, endosteal, layer. It is a thick fibrous layer that protects the brain from trauma and is superficial to the subarachnoid space.

      The cerebrum is the largest portion of the brain tissue, comprised of four main lobes. It is deep to the subarachnoid space, but it is not the tissue immediately deep to it.

      The corpus callosum is a band of nerve fibres that connects the two hemispheres of the brain. It is not immediately deep to the subarachnoid space, but it may be compressed and shifted away from its normal position following a subarachnoid haemorrhage, which can be seen on imaging.

      The Three Layers of Meninges

      The meninges are a group of membranes that cover the brain and spinal cord, providing support to the central nervous system and the blood vessels that supply it. These membranes can be divided into three distinct layers: the dura mater, arachnoid mater, and pia mater.

      The outermost layer, the dura mater, is a thick fibrous double layer that is fused with the inner layer of the periosteum of the skull. It has four areas of infolding and is pierced by small areas of the underlying arachnoid to form structures called arachnoid granulations. The arachnoid mater forms a meshwork layer over the surface of the brain and spinal cord, containing both cerebrospinal fluid and vessels supplying the nervous system. The final layer, the pia mater, is a thin layer attached directly to the surface of the brain and spinal cord.

      The meninges play a crucial role in protecting the brain and spinal cord from injury and disease. However, they can also be the site of serious medical conditions such as subdural and subarachnoid haemorrhages. Understanding the structure and function of the meninges is essential for diagnosing and treating these conditions.

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  • Question 82 - An 80-year-old man presents to the emergency department with complaints of headache, nausea,...

    Incorrect

    • An 80-year-old man presents to the emergency department with complaints of headache, nausea, and vomiting for the past 6 hours. His wife reports that he had a fall one week ago, but did not lose consciousness.

      Upon examination, the patient is oriented to person, but not to place and time. His vital signs are within normal limits except for a blood pressure of 150/90 mmHg. Deep tendon reflexes are 4+ on the right and 2+ on the left, and there is mild weakness of his left-sided muscles. Babinski's sign is present on the right. A non-contrast CT scan of the head reveals a hyperdense crescent across the left hemisphere.

      What is the likely underlying cause of this patient's presentation?

      Your Answer:

      Correct Answer: Rupture of bridging veins

      Explanation:

      Subdural hemorrhage occurs when damaged bridging veins between the cortex and venous sinuses bleed. In this patient’s CT scan, a hyperdense crescent-shaped collection is visible on the left hemisphere, indicating subdural hemorrhage. Given the patient’s age and symptoms, this diagnosis is likely.

      Ischemic stroke can result from blockage of the anterior or middle cerebral artery. The former typically presents with contralateral motor weakness, while the latter presents with contralateral motor weakness, sensory loss, and hemianopia. If the dominant hemisphere is affected, the patient may also experience aphasia, while hemineglect may occur if the non-dominant hemisphere is affected. Early CT scans may appear normal, but later scans may show hypodense areas in the contralateral parietal and temporal lobes.

      Subarachnoid hemorrhage is caused by an aneurysm rupture and presents acutely with a severe headache, photophobia, and meningism. The CT scan would show hyperdense material in the subarachnoid space.

      Epidural hematoma results from the rupture of the middle meningeal artery and appears as a biconvex hyperdense collection between the brain and skull.

      Understanding Subdural Haemorrhage

      Subdural haemorrhage is a condition where blood accumulates beneath the dural layer of the meninges. This type of bleeding is not within the brain tissue and is referred to as an extra-axial or extrinsic lesion. Subdural haematomas can be classified into three types based on their age: acute, subacute, and chronic.

      Acute subdural haematomas are caused by high-impact trauma and are associated with other brain injuries. Symptoms and severity of presentation vary depending on the size of the compressive acute subdural haematoma and the associated injuries. CT imaging is the first-line investigation, and surgical options include monitoring of intracranial pressure and decompressive craniectomy.

      Chronic subdural haematomas, on the other hand, are collections of blood within the subdural space that have been present for weeks to months. They are caused by the rupture of small bridging veins within the subdural space, which leads to slow bleeding. Elderly and alcoholic patients are particularly at risk of subdural haematomas due to brain atrophy and fragile or taut bridging veins. Infants can also experience subdural haematomas due to fragile bridging veins rupturing in shaken baby syndrome.

      Chronic subdural haematomas typically present with a progressive history of confusion, reduced consciousness, or neurological deficit. CT imaging shows a crescentic shape, not restricted by suture lines, and compresses the brain. Unlike acute subdurals, chronic subdurals are hypodense compared to the substance of the brain. Treatment options depend on the size and severity of the haematoma, with conservative management or surgical decompression with burr holes being the main options.

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  • Question 83 - A 65-year-old man visits his GP complaining of double vision. He reports that...

    Incorrect

    • A 65-year-old man visits his GP complaining of double vision. He reports that the issue started three days ago after he fell off a ladder while doing some home repairs. During the examination, the doctor notices some minor bruising on the patient's head. Upon testing the patient's cranial nerves, the doctor observes vertical diplopia that is exacerbated by looking downwards and inwards.

      Which cranial nerve is most likely to have been affected by the patient's fall?

      Your Answer:

      Correct Answer: Trochlear (CN IV)

      Explanation:

      Cranial nerves are a set of 12 nerves that emerge from the brain and control various functions of the head and neck. Each nerve has a specific function, such as smell, sight, eye movement, facial sensation, and tongue movement. Some nerves are sensory, some are motor, and some are both. A useful mnemonic to remember the order of the nerves is Some Say Marry Money But My Brother Says Big Brains Matter Most, with S representing sensory, M representing motor, and B representing both.

      In addition to their specific functions, cranial nerves also play a role in various reflexes. These reflexes involve an afferent limb, which carries sensory information to the brain, and an efferent limb, which carries motor information from the brain to the muscles. Examples of cranial nerve reflexes include the corneal reflex, jaw jerk, gag reflex, carotid sinus reflex, pupillary light reflex, and lacrimation reflex. Understanding the functions and reflexes of the cranial nerves is important in diagnosing and treating neurological disorders.

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  • Question 84 - A patient in their mid-30s has suffered a carotid canal fracture due to...

    Incorrect

    • A patient in their mid-30s has suffered a carotid canal fracture due to a traffic collision resulting in severe head trauma. The medical team must evaluate the potential damage to the adjacent structures. What structure is located directly posterior to the fracture?

      Your Answer:

      Correct Answer: Jugular foramen

      Explanation:

      The jugular foramen is situated at the back of the carotid canal, while the foramen magnum is even further posterior within the skull. The mental foramen can be found on the front surface of the mandible, while the optic canal is located in the sphenoid bone and serves as a passage for the optic nerve. The femoral canal is not relevant to the skull and is therefore an inappropriate answer to this question.

      Foramina of the Skull

      The foramina of the skull are small openings in the bones that allow for the passage of nerves and blood vessels. These foramina are important for the proper functioning of the body and can be tested on exams. Some of the major foramina include the optic canal, superior and inferior orbital fissures, foramen rotundum, foramen ovale, and jugular foramen. Each of these foramina has specific vessels and nerves that pass through them, such as the ophthalmic artery and optic nerve in the optic canal, and the mandibular nerve in the foramen ovale. It is important to have a basic understanding of these foramina and their contents in order to understand the anatomy and physiology of the head and neck.

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  • Question 85 - A young woman comes in with a sudden and severe headache at the...

    Incorrect

    • A young woman comes in with a sudden and severe headache at the back of her head, which quickly leads to seizures. Upon examination, doctors discover an aneurysm. During the assessment, they observe that her right eye is displaced downwards and to the side. What could be the probable reason for this?

      Your Answer:

      Correct Answer: Oculomotor nerve palsy

      Explanation:

      When someone has oculomotor nerve palsy, their medial rectus muscle is disabled, which causes the lateral rectus muscle to move the eye uncontrollably to the side. Additionally, the superior rectus, inferior rectus, and inferior oblique muscles are also affected, causing the eye to move downwards due to the unopposed action of the superior oblique muscle. This condition also results in ptosis, or drooping of the eyelid, due to paralysis of the levator palpebrae superioris muscle, and mydriasis, or dilation of the pupil, due to damage to the parasympathetic fibers.

      Disorders of the Oculomotor System: Nerve Path and Palsy Features

      The oculomotor system is responsible for controlling eye movements and pupil size. Disorders of this system can result in various nerve path and palsy features. The oculomotor nerve has a large nucleus at the midbrain and its fibers pass through the red nucleus and the pyramidal tract, as well as through the cavernous sinus into the orbit. When this nerve is affected, patients may experience ptosis, eye down and out, and an inability to move the eye superiorly, inferiorly, or medially. The pupil may also become fixed and dilated.

      The trochlear nerve has the longest intracranial course and is the only nerve to exit the dorsal aspect of the brainstem. Its nucleus is located at the midbrain and it passes between the posterior cerebral and superior cerebellar arteries, as well as through the cavernous sinus into the orbit. When this nerve is affected, patients may experience vertical diplopia (diplopia on descending the stairs) and an inability to look down and in.

      The abducens nerve has its nucleus in the mid pons and is responsible for the convergence of eyes in primary position. When this nerve is affected, patients may experience lateral diplopia towards the side of the lesion and the eye may deviate medially. Understanding the nerve path and palsy features of the oculomotor system can aid in the diagnosis and treatment of disorders affecting this important system.

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  • Question 86 - A 30-year-old male visits the ophthalmology outpatient department with symptoms of redness, photophobia,...

    Incorrect

    • A 30-year-old male visits the ophthalmology outpatient department with symptoms of redness, photophobia, and lacrimation. His pupils constrict in response to light.

      What is the neurotransmitter responsible for this pupillary response?

      Your Answer:

      Correct Answer: Acetylcholine

      Explanation:

      The primary neurotransmitter used by the parasympathetic nervous system is acetylcholine (ACh). This pathway is responsible for activities such as lacrimation and pupil constriction, which are also mediated by ACh.

      On the other hand, the sympathetic pathway uses epinephrine as its neurotransmitter, which is involved in pupil dilation. Norepinephrine is also a neurotransmitter of the sympathetic pathway.

      In the brain, gamma-aminobutyric acid acts as an inhibitory neurotransmitter.

      Understanding the Autonomic Nervous System

      The autonomic nervous system is responsible for regulating involuntary functions in the body, such as heart rate, digestion, and sexual arousal. It is composed of two main components, the sympathetic and parasympathetic nervous systems, as well as a sensory division. The sympathetic division arises from the T1-L2/3 region of the spinal cord and synapses onto postganglionic neurons at paravertebral or prevertebral ganglia. The parasympathetic division arises from cranial nerves and the sacral spinal cord and synapses with postganglionic neurons at parasympathetic ganglia. The sensory division includes baroreceptors and chemoreceptors that monitor blood levels of oxygen, carbon dioxide, and glucose, as well as arterial pressure and the contents of the stomach and intestines.

      The autonomic nervous system releases neurotransmitters such as noradrenaline and acetylcholine to achieve necessary functions and regulate homeostasis. The sympathetic nervous system causes fight or flight responses, while the parasympathetic nervous system causes rest and digest responses. Autonomic dysfunction refers to the abnormal functioning of any part of the autonomic nervous system, which can present in many forms and affect any of the autonomic systems. To assess a patient for autonomic dysfunction, a detailed history should be taken, and the patient should undergo a full neurological examination and further testing if necessary. Understanding the autonomic nervous system is crucial in diagnosing and treating autonomic dysfunction.

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  • Question 87 - A senior citizen comes in with indications and manifestations in line with Parkinson's...

    Incorrect

    • A senior citizen comes in with indications and manifestations in line with Parkinson's disease, such as a tremor on one side, stiffness, and reduced movement speed. Which anatomical structure is primarily linked to the malfunction of this condition?

      Your Answer:

      Correct Answer: Substantia nigra pars compacta

      Explanation:

      The degeneration of the substantia nigra, particularly the substantia nigra pars compacta, is linked to Parkinson’s disease. This region has a high concentration of dopaminergic neurons. While the disease’s extrapyramidal symptoms may involve the cerebral cortex, cerebellum, or pituitary gland, Parkinson’s disease is not typically associated with dysfunction in these areas. However, due to its complex origins, the disease may involve these regions.

      Parkinson’s disease is a progressive neurodegenerative disorder that occurs due to the degeneration of dopaminergic neurons in the substantia nigra. This leads to a classic triad of symptoms, including bradykinesia, tremor, and rigidity, which are typically asymmetrical. The disease is more common in men and is usually diagnosed around the age of 65. Bradykinesia is characterized by a poverty of movement, shuffling steps, and difficulty initiating movement. Tremors are most noticeable at rest and typically occur in the thumb and index finger. Rigidity can be either lead pipe or cogwheel, and other features include mask-like facies, flexed posture, and drooling of saliva. Psychiatric features such as depression, dementia, and sleep disturbances may also occur. Diagnosis is usually clinical, but if there is difficulty differentiating between essential tremor and Parkinson’s disease, 123I‑FP‑CIT single photon emission computed tomography (SPECT) may be considered.

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  • Question 88 - A 30-year-old patient visits their GP with complaints of muscle wasting in their...

    Incorrect

    • A 30-year-old patient visits their GP with complaints of muscle wasting in their legs, foot drop, and a high-arched foot. The patient has a medical history of type 1 diabetes mellitus. The GP observes that the patient's legs resemble 'champagne bottles'. The patient denies any recent trauma, sensory deficits, or back pain.

      What is the probable diagnosis?

      Your Answer:

      Correct Answer: Charcot-Marie-Tooth disease

      Explanation:

      Charcot-Marie-Tooth syndrome is characterized by classic signs such as foot drop and a high-arched foot. The initial symptom often observed is foot drop, which is caused by chronic motor neuropathy leading to muscular atrophy. This can result in the distinctive champagne bottle appearance of the foot.

      Diabetic neuropathy is an incorrect answer as it typically presents with significant sensory deficits in a ‘glove and stocking’ pattern.

      Cauda equina syndrome is also an incorrect answer as it typically results in more severe symptoms such as loss of bladder control and significant sensory deficits, as well as back and spine pain. While foot drop may be present, it is unlikely to cause atrophy of the distal muscles.

      CIDP is another incorrect answer as patients with this condition typically experience significant proximal and distal atrophy, which would not lead to the champagne bottle appearance. Additionally, sensory symptoms are present but less noticeable than the motor symptoms.

      Charcot-Marie-Tooth Disease is a prevalent genetic peripheral neuropathy that primarily affects motor function. Unfortunately, there is no known cure for this condition, and treatment is mainly centered around physical and occupational therapy. Some common symptoms of Charcot-Marie-Tooth Disease include a history of frequent ankle sprains, foot drop, high-arched feet (also known as pes cavus), hammer toes, distal muscle weakness and atrophy, hyporeflexia, and the stork leg deformity.

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  • Question 89 - A 14-year-old boy comes to his doctor complaining of swollen testicles. He mentions...

    Incorrect

    • A 14-year-old boy comes to his doctor complaining of swollen testicles. He mentions being hit by a baseball during a game. The boy feels fine and has not experienced any vomiting.

      During the examination, the physician notices a slight swelling in his testicles. The boy also has decreased sensation in the skin of his scrotum's front.

      Which nerve provides sensory innervation to the skin in the front of the scrotum?

      Your Answer:

      Correct Answer: Genital branch of the genitofemoral nerve

      Explanation:

      The anterior scrotal skin receives sensory sensation from the genital branch of the genitofemoral nerve. The ilioinguinal and genitofemoral nerves (genital branch) innervate the front of the scrotum, while the perineal branches of the pudendal nerves innervate the back. The dorsal branch of the pudendal nerve provides sensory innervation to the erectile tissue of the penis/clitoris and the skin over the foreskin, glans, and penis/foreskin’s dorsolateral aspect. The posterior scrotal nerves supply sensory innervation to the skin on the back of the scrotum. The cavernous nerves are responsible for facilitating penile erection and are postganglionic parasympathetic nerves.

      The Genitofemoral Nerve: Anatomy and Function

      The genitofemoral nerve is responsible for supplying a small area of the upper medial thigh. It arises from the first and second lumbar nerves and passes through the psoas major muscle before emerging from its medial border. The nerve then descends on the surface of the psoas major, under the cover of the peritoneum, and divides into genital and femoral branches.

      The genital branch of the genitofemoral nerve passes through the inguinal canal within the spermatic cord to supply the skin overlying the scrotum’s skin and fascia. On the other hand, the femoral branch enters the thigh posterior to the inguinal ligament, lateral to the femoral artery. It supplies an area of skin and fascia over the femoral triangle.

      Injuries to the genitofemoral nerve may occur during abdominal or pelvic surgery or inguinal hernia repairs. Understanding the anatomy and function of this nerve is crucial in preventing such injuries and ensuring proper treatment.

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      • Neurological System
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  • Question 90 - A pregnant woman at 32 weeks gestation comes to you worried that her...

    Incorrect

    • A pregnant woman at 32 weeks gestation comes to you worried that her baby boy may have Duchenne muscular dystrophy (DMD) after reading about it in a magazine. She is a nursing student who has taken a break for a year. You educate her on the likelihood of her child having DMD and the genetic mutation that causes it.

      Which gene is impacted by a deletion mutation in DMD?

      Your Answer:

      Correct Answer: Dystrophin gene

      Explanation:

      The cause of Duchenne muscular dystrophy is a mutation in the dystrophin gene. While mutations in the myostatin gene can lead to myostatin-induced muscle hypertrophy, there is no known association with DMD. The dysferlin gene is involved in skeletal muscle repair and mutations can result in various muscular myopathies, but there is no known association with DMD. It should be noted that the myodystrophin gene is fictitious and does not exist.

      Dystrophinopathies are a group of genetic disorders that are inherited in an X-linked recessive manner. These disorders are caused by mutations in the dystrophin gene located on the X chromosome at position Xp21. Dystrophin is a protein that is part of a larger membrane-associated complex in muscle cells. It connects the muscle membrane to actin, which is a component of the muscle cytoskeleton.

      Duchenne muscular dystrophy is a severe form of dystrophinopathy that is caused by a frameshift mutation in the dystrophin gene. This mutation results in the loss of one or both binding sites, leading to progressive proximal muscle weakness that typically begins around the age of 5 years. Children with Duchenne muscular dystrophy may also exhibit calf pseudohypertrophy and Gower’s sign, which is when they use their arms to stand up from a squatted position. Approximately 30% of patients with Duchenne muscular dystrophy also have intellectual impairment.

      In contrast, Becker muscular dystrophy is a milder form of dystrophinopathy that typically develops after the age of 10 years. It is caused by a non-frameshift insertion in the dystrophin gene, which preserves both binding sites. Intellectual impairment is much less common in individuals with Becker muscular dystrophy.

    • This question is part of the following fields:

      • Neurological System
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  • Question 91 - A 15-year-old boy arrived at the Emergency Department with knife wounds on his...

    Incorrect

    • A 15-year-old boy arrived at the Emergency Department with knife wounds on his right lower limb following a gang altercation. During the assessment, it was discovered that he had lost sensation in the right 1st webbed space, but sensation remained intact across the rest of the dorsum of his right foot. Additionally, he was unable to dorsiflex his foot. Which nerve is the most probable to have been affected?

      Your Answer:

      Correct Answer: Deep fibular/peroneal nerve

      Explanation:

      The deep fibular/peroneal nerve is responsible for providing sensation to the first web space of the foot and supplying the dorsiflexors of the foot. It is a branch of the common fibular/peroneal nerve, which bifurcates from the sciatic nerve at the popliteal fossa. The deep fibular/peroneal nerve travels alongside the anterior tibial artery in the anterior compartment of the leg, crosses the ankle joint, and terminates deep to the extensor retinaculum. Its medial branch provides cutaneous sensory innervation to the first web space between the great toe and second toe. The deep fibular/peroneal nerve also supplies motor function to the dorsiflexors of the foot, including the tibialis anterior, extensor hallucis longus, extensor digitorum longus, and fibularis/peroneus tertius muscles. Damage to this nerve can result in weakness in these muscles.

      The Deep Peroneal Nerve: Origin, Course, and Actions

      The deep peroneal nerve is a branch of the common peroneal nerve that originates at the lateral aspect of the fibula, deep to the peroneus longus muscle. It is composed of nerve root values L4, L5, S1, and S2. The nerve pierces the anterior intermuscular septum to enter the anterior compartment of the lower leg and passes anteriorly down to the ankle joint, midway between the two malleoli. It terminates in the dorsum of the foot.

      The deep peroneal nerve innervates several muscles, including the tibialis anterior, extensor hallucis longus, extensor digitorum longus, peroneus tertius, and extensor digitorum brevis. It also provides cutaneous innervation to the web space of the first and second toes. The nerve’s actions include dorsiflexion of the ankle joint, extension of all toes (extensor hallucis longus and extensor digitorum longus), and inversion of the foot.

      After its bifurcation past the ankle joint, the lateral branch of the deep peroneal nerve innervates the extensor digitorum brevis and the extensor hallucis brevis, while the medial branch supplies the web space between the first and second digits. Understanding the origin, course, and actions of the deep peroneal nerve is essential for diagnosing and treating conditions that affect this nerve, such as foot drop and nerve entrapment syndromes.

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  • Question 92 - An 80-year-old man arrives at the emergency department with sudden difficulty in speech,...

    Incorrect

    • An 80-year-old man arrives at the emergency department with sudden difficulty in speech, but is otherwise asymptomatic. Upon taking his medical history, it is noted that he is having trouble generating fluent speech, although the meaning of his speech is preserved and appropriate to the questions he is being asked. His Glasgow coma score is 15/15 and cranial nerves examination is unremarkable. Additionally, he has power 5/5 in all four limbs, and his tone, sensation, coordination, and reflexes are normal. A CT head scan reveals an ischaemic stroke in the left lateral aspect of the frontal lobe. Which vessel occlusion is responsible for his symptoms?

      Your Answer:

      Correct Answer: Superior left middle cerebral artery

      Explanation:

      Broca’s area is located in the left inferior frontal gyrus and is supplied by the superior division of the left middle cerebral artery. If this artery becomes occluded, it can result in an acute onset of expressive aphasia, which is the type of aphasia that this man is experiencing.

      It is important to note that Wernicke’s area is supplied by the inferior left middle cerebral artery, and occlusion of this branch would result in receptive aphasia instead of expressive aphasia.

      The external carotid arteries supply blood to the face and neck, not the brain.

      Occlusion of an internal carotid artery typically causes amaurosis fugax and does not supply blood to Broca’s area, so it would not result in expressive aphasia.

      The anterior cerebral arteries supply the antero-medial areas of each hemisphere of the brain, but they do not have a temporal branch and do not supply Broca’s area, which is located on the temporal aspect of the frontal lobe.

      Types of Aphasia: Understanding the Different Forms of Language Impairment

      Aphasia is a language disorder that affects a person’s ability to communicate effectively. There are different types of aphasia, each with its own set of symptoms and underlying causes. Wernicke’s aphasia, also known as receptive aphasia, is caused by a lesion in the superior temporal gyrus. This area is responsible for forming speech before sending it to Broca’s area. People with Wernicke’s aphasia may speak fluently, but their sentences often make no sense, and they may use word substitutions and neologisms. Comprehension is impaired.

      Broca’s aphasia, also known as expressive aphasia, is caused by a lesion in the inferior frontal gyrus. This area is responsible for speech production. People with Broca’s aphasia may speak in a non-fluent, labored, and halting manner. Repetition is impaired, but comprehension is normal.

      Conduction aphasia is caused by a stroke affecting the arcuate fasciculus, the connection between Wernicke’s and Broca’s area. People with conduction aphasia may speak fluently, but their repetition is poor. They are aware of the errors they are making, but comprehension is normal.

      Global aphasia is caused by a large lesion affecting all three areas mentioned above, resulting in severe expressive and receptive aphasia. People with global aphasia may still be able to communicate using gestures. Understanding the different types of aphasia is important for proper diagnosis and treatment.

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  • Question 93 - A 26-year-old female presents to her physician complaining of tingling in her left...

    Incorrect

    • A 26-year-old female presents to her physician complaining of tingling in her left arm and double vision for the past three days. She reports feeling fatigued for the past six months. She has no significant medical history and is not taking any medications. She smokes five cigarettes per day, drinks one bottle of wine per week, and works as a journalist.

      During the neurological examination, the physician observed reduced sensation in the patient's left upper limb. Additionally, the patient's right eye failed to adduct and her left eye demonstrated nystagmus on left lateral gaze. Based on these findings, where is the anatomical location of the lesion causing the eye signs on examination likely to be?

      Your Answer:

      Correct Answer: Medial longitudinal fasciculus

      Explanation:

      The correct answer is the medial longitudinal fasciculus, which is a myelinated structure located in the brainstem responsible for conjugate eye movements. In this case, the patient’s symptoms and examination findings suggest a diagnosis of internuclear ophthalmoplegia, which is a disorder of conjugate lateral gaze caused by a lesion in the medial longitudinal fasciculus. This is often associated with multiple sclerosis. The affected eye fails to adduct when attempting to look contralaterally, and the contralateral eye demonstrates nystagmus. Mamillary bodies, neuromuscular junction, and optic nerve are not the likely causes of the patient’s symptoms.

      Understanding Internuclear Ophthalmoplegia

      Internuclear ophthalmoplegia is a condition that affects the horizontal movement of the eyes. It is caused by a lesion in the medial longitudinal fasciculus (MLF), which is responsible for interconnecting the IIIrd, IVth, and VIth cranial nuclei. This area is located in the paramedian region of the midbrain and pons. The main feature of this condition is impaired adduction of the eye on the same side as the lesion, along with horizontal nystagmus of the abducting eye on the opposite side.

      The most common causes of internuclear ophthalmoplegia are multiple sclerosis and vascular disease. It is important to note that this condition can also be a sign of other underlying neurological disorders.

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  • Question 94 - A 49-year-old male presents to the ENT clinic with a 9-month history of...

    Incorrect

    • A 49-year-old male presents to the ENT clinic with a 9-month history of constant right-sided deafness and a sensation of feeling off-balance. He has no significant medical history. Upon examination, an audiogram reveals reduced hearing to both bone and air conduction on the right side. A cranial nerve exam shows an absent corneal reflex on the right side and poor balance. Otoscopy of both ears is unremarkable. What is the probable underlying pathology responsible for this patient's symptoms and signs?

      Your Answer:

      Correct Answer: Vestibular schwannoma (acoustic neuroma)

      Explanation:

      Vestibular schwannomas, also known as acoustic neuromas, make up about 5% of intracranial tumors and 90% of cerebellopontine angle tumors. These tumors typically present with a combination of vertigo, hearing loss, tinnitus, and an absent corneal reflex. The specific symptoms can be predicted based on which cranial nerves are affected. For example, cranial nerve VIII involvement can cause vertigo, unilateral sensorineural hearing loss, and unilateral tinnitus. Bilateral vestibular schwannomas are associated with neurofibromatosis type 2.

      If a vestibular schwannoma is suspected, it is important to refer the patient to an ear, nose, and throat specialist urgently. However, it is worth noting that these tumors are often benign and slow-growing, so observation may be appropriate initially. The diagnosis is typically confirmed with an MRI of the cerebellopontine angle, and audiometry is also important as most patients will have some degree of hearing loss. Treatment options include surgery, radiotherapy, or continued observation.

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      • Neurological System
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  • Question 95 - A 61-year-old male comes to the clinic complaining of a sudden onset headache,...

    Incorrect

    • A 61-year-old male comes to the clinic complaining of a sudden onset headache, describing it as 'the worst pain in his life'. He has a medical history of hypertension and type 2 diabetes. He has been smoking for 25 years and drinks 18 units of alcohol per week.

      After a head CT scan, it is revealed that there is evidence of a bleed. The bleed has occurred below a specific layer of the meninges that is designed to protect the brain and spinal cord from impact.

      What is the name of the layer of the meninges that the bleed has occurred below?

      Your Answer:

      Correct Answer: Arachnoid mater

      Explanation:

      The middle layer of the meninges is known as the arachnoid mater. If a male with a history of hypertension and heavy smoking experiences a sudden and severe headache, it may indicate a subarachnoid haemorrhage, which has a high mortality rate.

      A CT head scan can reveal the presence of blood in the subarachnoid cisterns, which would normally appear black. The arachnoid mater is responsible for protecting the brain from sudden impact and is one of three layers of the meninges, with the outermost layer being the dura mater and the innermost layer being the pia mater.

      It is important to note that the dural venous sinuses and occipital bone are not considered part of the meninges.

      The Three Layers of Meninges

      The meninges are a group of membranes that cover the brain and spinal cord, providing support to the central nervous system and the blood vessels that supply it. These membranes can be divided into three distinct layers: the dura mater, arachnoid mater, and pia mater.

      The outermost layer, the dura mater, is a thick fibrous double layer that is fused with the inner layer of the periosteum of the skull. It has four areas of infolding and is pierced by small areas of the underlying arachnoid to form structures called arachnoid granulations. The arachnoid mater forms a meshwork layer over the surface of the brain and spinal cord, containing both cerebrospinal fluid and vessels supplying the nervous system. The final layer, the pia mater, is a thin layer attached directly to the surface of the brain and spinal cord.

      The meninges play a crucial role in protecting the brain and spinal cord from injury and disease. However, they can also be the site of serious medical conditions such as subdural and subarachnoid haemorrhages. Understanding the structure and function of the meninges is essential for diagnosing and treating these conditions.

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  • Question 96 - A 46-year-old homeless man is admitted to the emergency department due to intoxication....

    Incorrect

    • A 46-year-old homeless man is admitted to the emergency department due to intoxication. He reports experiencing progressive weakness in his lower limbs, as well as tingling and numbness in his hands. Additionally, he has been having issues with his memory and vision. Upon examination, there is generalised weakness and reduced proprioception and vibration sensation in the distal limbs, worse in the hands than the feet. Romberg's test is negative, but Babinski is positive. The patient's knee reflexes are brisk, and ankle jerks are absent. Based on this presentation, which spinal pathways are affected?

      Your Answer:

      Correct Answer: Dorsal column & lateral corticospinal tracts

      Explanation:

      Subacute combined degeneration of the spinal cord (SACD) is characterized by the patchy loss of myelin, primarily affecting the ascending dorsal columns and descending lateral corticospinal tracts. This results in a range of symptoms, including progressive weakness, tingling, numbness, and upper motor neuron signs in the lower limbs. Vision changes and cognitive decline may also occur.

      While the dorsal column is affected in SACD, the ascending anterior spinothalamic tract, which carries crude touch and pressure information, is typically not involved. Muscle weakness due to lateral corticospinal tract involvement is a hallmark of SACD.

      The anterior spinocerebellar tract, which carries unconscious proprioceptive and cutaneous information from the lower body, is not typically affected in SACD. Similarly, the lateral spinothalamic tract, which carries pain and temperature information, is not commonly involved.

      The reticulospinal and vestibulospinal tracts, which are primarily involved in locomotion, postural control, and changes in head orientation, are also not commonly affected in SACD.

      Subacute Combined Degeneration of Spinal Cord

      Subacute combined degeneration of spinal cord is a condition that occurs due to a deficiency of vitamin B12. The dorsal columns and lateral corticospinal tracts are affected, leading to the loss of joint position and vibration sense. The first symptoms are usually distal paraesthesia, followed by the development of upper motor neuron signs in the legs, such as extensor plantars, brisk knee reflexes, and absent ankle jerks. If left untreated, stiffness and weakness may persist.

      This condition is a serious concern and requires prompt medical attention. It is important to maintain a healthy diet that includes sufficient amounts of vitamin B12 to prevent the development of subacute combined degeneration of spinal cord.

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  • Question 97 - A 50-year-old man with multiple sclerosis is prescribed baclofen by your consultant to...

    Incorrect

    • A 50-year-old man with multiple sclerosis is prescribed baclofen by your consultant to treat muscle spasms.

      What is the mechanism of action of baclofen?

      Your Answer:

      Correct Answer: GABA receptor agonist

      Explanation:

      Baclofen is a medication that is commonly prescribed to alleviate muscle spasticity in individuals with conditions like multiple sclerosis, cerebral palsy, and spinal cord injuries. It works by acting as an agonist of GABA receptors in the central nervous system, which includes both the brain and spinal cord. Essentially, this means that baclofen helps to enhance the effects of a neurotransmitter called GABA, which can help to reduce the activity of certain neurons and ultimately lead to a reduction in muscle spasticity. Overall, baclofen is an important medication for individuals with these conditions, as it can help to improve their quality of life and reduce the impact of muscle spasticity on their daily activities.

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  • Question 98 - A 15-year-old boy fell from a height of 2 meters while climbing a...

    Incorrect

    • A 15-year-old boy fell from a height of 2 meters while climbing a tree and caught himself with his right arm on a branch just before hitting the ground. He immediately felt pain in his hand and lower neck. Despite the pain, he managed to lower himself to the ground and make his way to the hospital.

      Upon examination, there are no visible wounds or fractures, but there is a noticeable reduction in movement and power of the intrinsic hand muscles. All other joints in the upper limb appear to be normal.

      What nerve root injury pattern did the boy sustain?

      Your Answer:

      Correct Answer: T1

      Explanation:

      Brachial Plexus Injuries: Erb-Duchenne and Klumpke’s Paralysis

      Erb-Duchenne paralysis is a type of brachial plexus injury that results from damage to the C5 and C6 roots. This can occur during a breech presentation, where the baby’s head and neck are pulled to the side during delivery. Symptoms of Erb-Duchenne paralysis include weakness or paralysis of the arm, shoulder, and hand, as well as a winged scapula.

      On the other hand, Klumpke’s paralysis is caused by damage to the T1 root of the brachial plexus. This type of injury typically occurs due to traction, such as when a baby’s arm is pulled during delivery. Klumpke’s paralysis can result in a loss of intrinsic hand muscles, which can affect fine motor skills and grip strength.

      It is important to note that brachial plexus injuries can have long-term effects on a person’s mobility and quality of life. Treatment options may include physical therapy, surgery, or a combination of both. Early intervention is key to improving outcomes and minimizing the impact of these injuries.

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  • Question 99 - A 75-year-old woman has experienced a TIA during her hospital stay. An ultrasound...

    Incorrect

    • A 75-year-old woman has experienced a TIA during her hospital stay. An ultrasound revealed an 80% blockage in one of her carotid arteries, leading to a carotid endarterectomy. After the procedure, the doctor examines the patient and notices that when asked to stick out her tongue, it deviates towards the left side.

      Which cranial nerve has been affected in this scenario?

      Your Answer:

      Correct Answer: Right hypoglossal nerve

      Explanation:

      When the hypoglossal nerve is damaged, the tongue deviates towards the side of the lesion. This is because the genioglossus muscle, which normally pushes the tongue to the opposite side, is weakened. In the case of a carotid endarterectomy, the hypoglossal nerve may be damaged as it passes through the hypoglossal canal and down the neck. A good memory aid is the tongue never lies as it points towards the side of the lesion. The correct answer in this case is the right hypoglossal nerve, as the patient’s tongue deviates towards the right. Lesions of the left glossopharyngeal nerve, right glossopharyngeal nerve, left hypoglossal nerve, and left trigeminal nerve would result in different symptoms and are therefore incorrect answers.

      Cranial nerves are a set of 12 nerves that emerge from the brain and control various functions of the head and neck. Each nerve has a specific function, such as smell, sight, eye movement, facial sensation, and tongue movement. Some nerves are sensory, some are motor, and some are both. A useful mnemonic to remember the order of the nerves is Some Say Marry Money But My Brother Says Big Brains Matter Most, with S representing sensory, M representing motor, and B representing both.

      In addition to their specific functions, cranial nerves also play a role in various reflexes. These reflexes involve an afferent limb, which carries sensory information to the brain, and an efferent limb, which carries motor information from the brain to the muscles. Examples of cranial nerve reflexes include the corneal reflex, jaw jerk, gag reflex, carotid sinus reflex, pupillary light reflex, and lacrimation reflex. Understanding the functions and reflexes of the cranial nerves is important in diagnosing and treating neurological disorders.

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  • Question 100 - A 65-year-old man has recently undergone parotidectomy on his left side due to...

    Incorrect

    • A 65-year-old man has recently undergone parotidectomy on his left side due to a malignant parotid gland tumor. He has been back on the surgical ward for a few hours when he reports feeling weakness on the left side of his mouth. Upon examination, you observe facial asymmetry and weakness on the left side. He is unable to hold air under pressure in his mouth and cannot raise his left lip to show his teeth. This complication is likely due to damage to which nerve?

      Your Answer:

      Correct Answer: Facial nerve

      Explanation:

      The facial nerve is the seventh cranial nerve and innervates the muscles of facial expression. It runs through the parotid gland and can be injured during parotidectomy. The maxillary nerve is the second division of the trigeminal nerve and carries sensory fibres from the lower eyelid, cheeks, upper teeth, palate, nasal cavity, and paranasal sinuses. The glossopharyngeal nerve is the ninth cranial nerve and has various functions, including carrying taste and sensation from the posterior third of the tongue and supplying parasympathetic innervation to the parotid gland. The mandibular nerve is the third division of the trigeminal nerve and carries sensory and motor fibres, supplying motor innervation to the muscles of mastication. The hypoglossal nerve is the twelfth cranial nerve and supplies the intrinsic muscles of the tongue.

      The facial nerve is responsible for supplying the muscles of facial expression, the digastric muscle, and various glandular structures. It also contains a few afferent fibers that originate in the genicular ganglion and are involved in taste. Bilateral facial nerve palsy can be caused by conditions such as sarcoidosis, Guillain-Barre syndrome, Lyme disease, and bilateral acoustic neuromas. Unilateral facial nerve palsy can be caused by these conditions as well as lower motor neuron issues like Bell’s palsy and upper motor neuron issues like stroke.

      The upper motor neuron lesion typically spares the upper face, specifically the forehead, while a lower motor neuron lesion affects all facial muscles. The facial nerve’s path includes the subarachnoid path, where it originates in the pons and passes through the petrous temporal bone into the internal auditory meatus with the vestibulocochlear nerve. The facial canal path passes superior to the vestibule of the inner ear and contains the geniculate ganglion at the medial aspect of the middle ear. The stylomastoid foramen is where the nerve passes through the tympanic cavity anteriorly and the mastoid antrum posteriorly, and it also includes the posterior auricular nerve and branch to the posterior belly of the digastric and stylohyoid muscle.

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