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  • Question 1 - Which muscle is not innervated by the trigeminal nerve? ...

    Incorrect

    • Which muscle is not innervated by the trigeminal nerve?

      Your Answer: Temporalis

      Correct Answer: Stylohyoid

      Explanation:

      The facial nerve provides innervation to the stylohyoid.

      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 2 - A 16-year-old female arrives at the emergency department accompanied by her father. According...

    Incorrect

    • A 16-year-old female arrives at the emergency department accompanied by her father. According to him, she was watching TV when she suddenly complained of a tingling sensation on the left side of her body. She then reported that her leg had gone numb. Her father mentions that both he and his sister have epilepsy. Given her altered spatial perception and sensation, you suspect that she may have experienced a seizure. What type of seizure is most probable?

      Your Answer:

      Correct Answer: Parietal lobe seizure

      Explanation:

      Paresthesia is a symptom that can help identify a parietal lobe seizure.

      When a patient experiences a parietal lobe seizure, they may feel a tingling sensation on one side of their body or even experience numbness in certain areas. This type of seizure is not very common and is typically associated with sensory symptoms.

      On the other hand, occipital lobe seizures tend to cause visual disturbances like seeing flashes or floaters. Temporal lobe seizures can lead to hallucinations, which can affect the senses of hearing, taste, and smell. Additionally, they may cause repetitive movements like lip smacking or grabbing.

      Absence seizures are more commonly seen in children between the ages of 3 and 10. These seizures are brief and cause the person to stop what they are doing and stare off into space with a blank expression. Fortunately, most children with absence seizures will outgrow them by adolescence.

      Finally, frontal lobe seizures often cause movements of the head or legs and can result in a period of weakness after the seizure has ended.

      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 3 - A 32-year-old man comes to the emergency department complaining of left-sided chest pain...

    Incorrect

    • A 32-year-old man comes to the emergency department complaining of left-sided chest pain following a fall from a ladder while doing some home repairs. During a chest X-ray, it is discovered that he has a cervical rib, which increases his risk of developing thoracic outlet syndrome (TOS).

      What is the most precise information to provide to the patient regarding this condition?

      Your Answer:

      Correct Answer: It involves compression of the vessels and/or nerves that supply his arm

      Explanation:

      Thoracic outlet syndrome (TOS) is a condition where the brachial plexus, subclavian artery or vein are compressed at the thoracic outlet. Those with cervical ribs are more likely to develop TOS.

      TOS does not impact the lungs, so breathing problems or pneumothorax are not a concern for patients.

      Regardless of which structure is affected, TOS typically causes pain in the arm rather than the shoulder.

      If the thoracic duct becomes blocked, usually due to cancer, an enlarged left supraclavicular lymph node (Virchow node) may occur.

      Understanding Thoracic Outlet Syndrome

      Thoracic outlet syndrome (TOS) is a condition that occurs when there is compression of the brachial plexus, subclavian artery, or vein at the thoracic outlet. This disorder can be either neurogenic or vascular, with the former accounting for 90% of cases. TOS is more common in young, thin women with long necks and drooping shoulders, and peak onset typically occurs in the fourth decade of life. The lack of widely agreed diagnostic criteria makes it difficult to determine the exact epidemiology of TOS.

      TOS can develop due to neck trauma in individuals with anatomical predispositions. Anatomical anomalies can be in the form of soft tissue or osseous structures, with cervical rib being a well-known osseous anomaly. Soft tissue causes include scalene muscle hypertrophy and anomalous bands. Patients with TOS typically have a history of neck trauma preceding the onset of symptoms.

      The clinical presentation of neurogenic TOS includes painless muscle wasting of hand muscles, hand weakness, and sensory symptoms such as numbness and tingling. If autonomic nerves are involved, patients may experience cold hands, blanching, or swelling. Vascular TOS, on the other hand, can lead to painful diffuse arm swelling with distended veins or painful arm claudication and, in severe cases, ulceration and gangrene.

      To diagnose TOS, a neurological and musculoskeletal examination is necessary, and stress maneuvers such as Adson’s maneuvers may be attempted. Imaging modalities such as chest and cervical spine plain radiographs, CT or MRI, venography, or angiography may also be helpful. Treatment options for TOS include conservative management with education, rehabilitation, physiotherapy, or taping as the first-line management for neurogenic TOS. Surgical decompression may be warranted where conservative management has failed, especially if there is a physical anomaly. In vascular TOS, surgical treatment may be preferred, and other therapies such as botox injection are being investigated.

    • This question is part of the following fields:

      • Neurological System
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  • Question 4 - Which of the following nerves passes through the greater sciatic foramen and provides...

    Incorrect

    • Which of the following nerves passes through the greater sciatic foramen and provides innervation to the perineum?

      Your Answer:

      Correct Answer: Pudendal

      Explanation:

      The pudendal nerve is divided into three branches: the rectal nerve, perineal nerve, and dorsal nerve of the penis/clitoris. All three branches pass through the greater sciatic foramen. The pudendal nerve provides innervation to the perineum and travels between the piriformis and coccygeus muscles, medial to the sciatic nerve.

      The gluteal region is composed of various muscles and nerves that play a crucial role in hip movement and stability. The gluteal muscles, including the gluteus maximus, medius, and minimis, extend and abduct the hip joint. Meanwhile, the deep lateral hip rotators, such as the piriformis, gemelli, obturator internus, and quadratus femoris, rotate the hip joint externally.

      The nerves that innervate the gluteal muscles are the superior and inferior gluteal nerves. The superior gluteal nerve controls the gluteus medius, gluteus minimis, and tensor fascia lata muscles, while the inferior gluteal nerve controls the gluteus maximus muscle.

      If the superior gluteal nerve is damaged, it can result in a Trendelenburg gait, where the patient is unable to abduct the thigh at the hip joint. This weakness causes the pelvis to tilt down on the opposite side during the stance phase, leading to compensatory movements such as trunk lurching to maintain a level pelvis throughout the gait cycle. As a result, the pelvis sags on the opposite side of the lesioned superior gluteal nerve.

    • This question is part of the following fields:

      • Neurological System
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  • Question 5 - An 80-year-old man comes to the neurology clinic accompanied by his daughter. She...

    Incorrect

    • An 80-year-old man comes to the neurology clinic accompanied by his daughter. She reports that his speech has been progressively harder to comprehend for the last six months. During the examination, you observe that his eyes twitch repeatedly, particularly when he gazes upwards. Based on these findings, where in his brain is the lesion most likely located?

      Your Answer:

      Correct Answer: Cerebellar vermis

      Explanation:

      Upbeat nystagmus can be caused by a lesion in the cerebellar vermis, which can result in uncontrolled repetitive eye movements that worsen when looking upwards. Other symptoms of cerebellar lesions may include slurred speech. Downbeat nystagmus, on the other hand, can be caused by a lesion in the foramen magnum, which is often seen in Arnold Chiari malformation. Parkinson’s disease, which is characterized by bradykinesia, tremors, and rigidity, can be caused by a lesion in the substantia nigra of the basal ganglia. Lesions in the temporal lobe can result in superior homonymous quadrantanopia, which is characterized by loss of vision in the same upper quadrant of each eye, as well as changes in speech such as word substitutions and neologisms. Finally, lesions in the hypothalamus can lead to Wernicke and Korsakoff syndrome, which can cause ataxia, nystagmus, ophthalmoplegia, confabulation, and amnesia.

      Understanding Nystagmus and its Causes

      Nystagmus is a condition characterized by involuntary eye movements that can occur in different directions. Upbeat nystagmus, for instance, is associated with lesions in the cerebellar vermis, while downbeat nystagmus is linked to foramen magnum lesions and Arnold-Chiari malformation.

      Upbeat nystagmus causes the eyes to move upwards and then jerk downwards, while downbeat nystagmus causes the eyes to move downwards and then jerk upwards. These movements can affect vision and balance, leading to symptoms such as dizziness, vertigo, and difficulty reading or focusing on objects.

      It is important to note that not all forms of nystagmus are pathological. Horizontal optokinetic nystagmus, for example, is a normal physiological response to visual stimuli. This type of nystagmus occurs when the eyes track a moving object, such as a passing car or a scrolling text on a screen.

    • This question is part of the following fields:

      • Neurological System
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  • Question 6 - A 25-year-old individual visits a maxillofacial clinic complaining of facial pain that has...

    Incorrect

    • A 25-year-old individual visits a maxillofacial clinic complaining of facial pain that has persisted for 3 months after sustaining a basal skull fracture in a car accident. According to neuroimaging reports, where is the lesion most likely located, indicating damage to the maxillary nerve as it traverses the sphenoid bone?

      Your Answer:

      Correct Answer: Foramen rotundum

      Explanation:

      The correct location for the passage of the maxillary nerve is the foramen rotundum. In the case of a basal skull fracture involving the sphenoid bone, the lesion is most likely located in the foramen rotundum. The foramen ovale is not the correct location as it is where the mandibular nerve passes through. The foramen spinosum is also not the correct location as it transmits the middle meningeal artery and vein, not the maxillary nerve. The hypoglossal canal is also not the correct location as it transmits the twelfth cranial nerve, not the maxillary nerve.

      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 7 - A 61-year-old woman comes to the Emergency Department with slurred speech and left-sided...

    Incorrect

    • A 61-year-old woman comes to the Emergency Department with slurred speech and left-sided facial drooping. You perform a cranial nerves examination and find that her vagus nerve has been impacted. What sign would you anticipate observing in this patient?

      Your Answer:

      Correct Answer: Uvula deviated to the left

      Explanation:

      The uvula is deviated to the left, indicating a right-sided stroke affecting the vagus nerve (CN X). This can cause a loss of gag reflex and uvula deviation away from the site of the lesion. Loss of taste (anterior 2/3) is a symptom of facial nerve (CN VII) lesions, while tongue deviation to the right is a symptom of hypoglossal nerve (CN XII) lesions. Vertigo is a symptom of vestibulocochlear nerve (CN VIII) lesions.

      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 8 - A 28-year-old man visits his GP with complaints of bilateral numbness in his...

    Incorrect

    • A 28-year-old man visits his GP with complaints of bilateral numbness in his hands and feet, along with a feeling of muscle weakness that has been progressively worsening for the past 15 months. The man admits to avoiding hospitals and his GP, and has not reported these symptoms to anyone else. Upon examination, reduced bicep reflexes are noted bilaterally. Nerve conduction studies reveal evidence of peripheral nerve demyelination. What is the most probable underlying diagnosis?

      Your Answer:

      Correct Answer: Chronic inflammatory demyelinating polyneuropathy

      Explanation:

      Chronic inflammatory demyelinating polyneuropathy (CIDP) is a condition where the inflammation and infiltration of the endoneurium with inflammatory T cells are thought to be caused by antibodies. This results in the demyelination of peripheral nerves in a segmental manner.

      CIDP is characterized by generalized symptoms and chronicity, and nerve conduction tests can reveal demyelination of the nerves. Guillain Barré syndrome (GBS) is an incorrect answer as it is more acute and often triggered by prior infection, particularly Campylobacter gastrointestinal infection. Diabetic neuropathy is also an incorrect answer as it typically presents as a focal peripheral neuropathy with sensory impairment. Multiple sclerosis (MS) is another incorrect answer as it involves the central nervous system and can present with additional signs/symptoms such as visual impairment and muscle stiffness. MS is diagnosed using an MRI scan and checking for oligoclonal bands in the cerebrospinal fluid.

      Understanding Chronic Inflammatory Demyelinating Polyneuropathy

      Chronic inflammatory demyelinating polyneuropathy (CIDP) is a type of peripheral neuropathy that is caused by antibody-mediated inflammation resulting in segmental demyelination of peripheral nerves. This condition is more common in males than females and shares similar features with Guillain-Barre syndrome (GBS), with motor symptoms being predominant. However, CIDP has a more insidious onset, occurring over weeks to months, and is often considered the chronic version of GBS.

      One of the distinguishing features of CIDP is the high protein content found in the cerebrospinal fluid (CSF). Treatment for CIDP may involve the use of steroids and immunosuppressants, which is different from GBS.

    • This question is part of the following fields:

      • Neurological System
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  • Question 9 - A 27-year-old man is brought to the emergency department by paramedics following a...

    Incorrect

    • A 27-year-old man is brought to the emergency department by paramedics following a gunshot wound sustained during a violent altercation. Despite being conscious, he is experiencing severe pain and is unable to respond to any inquiries.

      Upon initial evaluation, his airway is unobstructed, he is breathing normally, and there are no indications of cardiovascular distress.

      During an examination of his lower extremities, a bullet wound is discovered 2 cm below his popliteal fossa. The emergency physician suspects that the tibial nerve, which runs just beneath the popliteal fossa, has been damaged.

      Which of the following clinical findings is most likely to be observed in this patient?

      Your Answer:

      Correct Answer: Loss of plantar flexion, loss of flexion of toes and weakened inversion

      Explanation:

      When the tibial nerve is damaged, it can cause a variety of symptoms such as the loss of plantar flexion, weakened inversion, and the inability to flex the toes. This type of injury is uncommon and can occur due to direct trauma, entrapment in a narrow space, or prolonged compression. It’s important to note that while the tibialis anterior muscle can still invert the foot, the overall strength of foot inversion is reduced. Other options that do not accurately describe the clinical signs of tibial nerve damage are incorrect.

      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 10 - A 54-year-old factory worker gets his arm caught in a metal grinder and...

    Incorrect

    • A 54-year-old factory worker gets his arm caught in a metal grinder and is rushed to the ER. Upon examination, he displays an inability to extend his metacarpophalangeal joints and abduct his shoulder. Additionally, he experiences weakness in his elbow and wrist. What specific injury has occurred?

      Your Answer:

      Correct Answer: Posterior cord of brachial plexus

      Explanation:

      Lesion of the posterior cord results in the impairment of the axillary and radial nerve, which are responsible for innervating various muscles such as the deltoid, triceps, brachioradialis, wrist extensors, finger extensors, subscapularis, teres minor, and latissimus dorsi.

      Brachial Plexus Cords and their Origins

      The brachial plexus cords are categorized based on their position in relation to the axillary artery. These cords pass over the first rib near the lung’s dome and under the clavicle, just behind the subclavian artery. The lateral cord is formed by the anterior divisions of the upper and middle trunks and gives rise to the lateral pectoral nerve, which originates from C5, C6, and C7. The medial cord is formed by the anterior division of the lower trunk and gives rise to the medial pectoral nerve, the medial brachial cutaneous nerve, and the medial antebrachial cutaneous nerve, which originate from C8, T1, and C8, T1, respectively. The posterior cord is formed by the posterior divisions of the three trunks (C5-T1) and gives rise to the upper and lower subscapular nerves, the thoracodorsal nerve to the latissimus dorsi (also known as the middle subscapular nerve), and the axillary and radial nerves.

    • This question is part of the following fields:

      • Neurological System
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  • Question 11 - A 35-year-old motorcyclist is in a road traffic collision resulting in a severely...

    Incorrect

    • A 35-year-old motorcyclist is in a road traffic collision resulting in a severely displaced humerus fracture. During surgical repair, the surgeon observes an injury to the radial nerve. Which of the following muscles is most likely to be unaffected by this injury?

      Your Answer:

      Correct Answer: None of the above

      Explanation:

      BEST

      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
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  • Question 12 - A teenage boy is on a date with a partner he met on...

    Incorrect

    • A teenage boy is on a date with a partner he met on a mobile dating app. After the date, they engage in sexual intercourse. Which neural pathway is responsible for his ejaculation, controlled by the autonomic nervous system?

      Your Answer:

      Correct Answer: Sympathetic output from the sympathetic trunk at L1

      Explanation:

      The L1 level of the sympathetic outflow controls ejaculation, while the parasympathetic branch controls the erection of the penis. This can be remembered as ‘Point and Shoot’, with the parasympathetic controlling the ‘point’ of the erection and the sympathetic controlling the ‘shoot’ of ejaculation. If there is damage to the L1 level or lumbar ganglia, it can result in the inability to achieve ejaculation.

      Anatomy of the Sympathetic Nervous System

      The sympathetic nervous system is responsible for the fight or flight response in the body. The preganglionic efferent neurons of this system are located in the lateral horn of the grey matter of the spinal cord in the thoraco-lumbar regions. These neurons leave the spinal cord at levels T1-L2 and pass to the sympathetic chain. The sympathetic chain lies on the vertebral column and runs from the base of the skull to the coccyx. It is connected to every spinal nerve through lateral branches, which then pass to structures that receive sympathetic innervation at the periphery.

      The sympathetic ganglia are also an important part of this system. The superior cervical ganglion lies anterior to C2 and C3, while the middle cervical ganglion (if present) is located at C6. The stellate ganglion is found anterior to the transverse process of C7 and lies posterior to the subclavian artery, vertebral artery, and cervical pleura. The thoracic ganglia are segmentally arranged, and there are usually four lumbar ganglia.

      Interruption of the head and neck supply of the sympathetic nerves can result in an ipsilateral Horners syndrome. For the treatment of hyperhidrosis, sympathetic denervation can be achieved by removing the second and third thoracic ganglia with their rami. However, removal of T1 is not performed as it can cause a Horners syndrome. In patients with vascular disease of the lower limbs, a lumbar sympathetomy may be performed either radiologically or surgically. The ganglia of L2 and below are disrupted, but if L1 is removed, ejaculation may be compromised, and little additional benefit is conferred as the preganglionic fibres do not arise below L2.

    • This question is part of the following fields:

      • Neurological System
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  • Question 13 - A 65-year-old male arrives at the emergency department with a sudden onset of...

    Incorrect

    • 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:

      Correct 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 14 - As a medical student, currently, based on the GP practice your tutor asks...

    Incorrect

    • As a medical student, currently, based on the GP practice your tutor asks you to perform an abbreviated mental test (AMT) examination on a 70-year-old patient with known Alzheimer's disease. They score 4/10. Besides beta-amyloid plaques, what other histological features would you anticipate observing in a patient with Alzheimer's disease?

      Your Answer:

      Correct Answer: Neurofibrillary tangles

      Explanation:

      Alzheimer’s disease is characterized by the presence of cortical plaques, which are caused by the deposition of type A-Beta-amyloid protein, and intraneuronal neurofibrillary tangles, which are caused by abnormal aggregation of the tau protein.

      Tau proteins are abundant in the CNS and play a role in stabilizing microtubules. When they become defective, they accumulate as hyperphosphorylated tau and form paired helical filaments that aggregate inside nerve cell bodies as neurofibrillary tangles.

      Amyloid precursor protein (APP) is an integral membrane protein that is expressed in many tissues and concentrated in the synapses of neurons. While its primary function is not known, it has been implicated as a regulator of synaptic formation, neural plasticity, and iron export. APP is best known as a precursor molecule, and proteolysis generates beta amyloid, which is the primary component of amyloid plaques found in the brains of Alzheimer’s disease.

      Although Ach receptors are reduced in Alzheimer’s disease, they are not visible on histology.

      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 15 - 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:

      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 16 - A 55-year-old male arrives at the emergency department complaining of a painful red...

    Incorrect

    • A 55-year-old male arrives at the emergency department complaining of a painful red eye. He has vomited once since the onset of pain and reports seeing haloes around lights.

      What is the mechanism of action of pilocarpine?

      Immediate management involves administering latanoprost and pilocarpine, and an urgent referral to ophthalmology is necessary.

      Your Answer:

      Correct Answer: Muscarinic receptor agonist

      Explanation:

      Pilocarpine stimulates muscarinic receptors, leading to constriction of the pupil and increased uveoscleral outflow. However, muscarinic receptor antagonists like atropine and hyoscine are not used in treating glaucoma. Nicotine and acetylcholine are examples of nicotinic receptor agonists, while succinylcholine, atracurium, vecuronium, and bupropion are nicotinic receptor antagonists.

      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.

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  • Question 17 - A 78-year-old man is referred to the memory clinic for recent memory problems....

    Incorrect

    • A 78-year-old man is referred to the memory clinic for recent memory problems. His family is worried about his ability to take care of himself at home. After evaluation, he is diagnosed with Alzheimer's dementia. What is the pathophysiological process involving tau that occurs in this condition?

      Your Answer:

      Correct Answer: Hyperphosphorylation of tau prevents it from binding normally to microtubules

      Explanation:

      The binding of tau to microtubules is negatively regulated by phosphorylation. In a healthy adult brain, tau promotes the assembly of microtubules, but in Alzheimer’s disease, hyperphosphorylation of tau inhibits its ability to bind to microtubules normally. This leads to the formation of neurofibrillary tangles instead of promoting microtubule assembly. It is important to note that tau is not a product of Alzheimer’s disease pathology, but rather a physiological protein that becomes involved in the pathophysiological process. Additionally, amyloid beta and tau are not phosphorylated together to form a tangle, and tau does not become bound to microtubules by amyloid beta to form plaques. Lastly, in Alzheimer’s disease, tau is hyperphosphorylated, not inadequately phosphorylated.

      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.

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  • Question 18 - A 20-year-old male has been referred to a neurologist for persistent headache, nausea,...

    Incorrect

    • A 20-year-old male has been referred to a neurologist for persistent headache, nausea, and vomiting. After an MRI scan, a biopsy reveals a low-grade tumor with associated cysts. Which type of cell is responsible for removing excess potassium ions from the cerebrospinal fluid in the central nervous system?

      Your Answer:

      Correct Answer: Astrocytes

      Explanation:

      Astrocytes play a crucial role in eliminating surplus potassium ions from the cerebrospinal fluid. They also provide structural support to neurons, aid in the formation of the blood-brain barrier, and assist in the physical repair of neuronal tissues. In a medical context, the low-grade tumor is likely to be a pilocytic astrocytoma.

      Schwann cells are responsible for myelinating peripheral axons, while microglia function as phagocytes in the central nervous system. Oligodendrocytes, on the other hand, are responsible for myelinating axons in the central nervous system.

      The nervous system is composed of various types of cells, each with their own unique functions. Oligodendroglia cells are responsible for producing myelin in the central nervous system (CNS) and are affected in multiple sclerosis. Schwann cells, on the other hand, produce myelin in the peripheral nervous system (PNS) and are affected in Guillain-Barre syndrome. Astrocytes provide physical support, remove excess potassium ions, help form the blood-brain barrier, and aid in physical repair. Microglia are specialised CNS phagocytes, while ependymal cells provide the inner lining of the ventricles.

      In summary, the nervous system is made up of different types of cells, each with their own specific roles. Oligodendroglia and Schwann cells produce myelin in the CNS and PNS, respectively, and are affected in certain diseases. Astrocytes provide physical support and aid in repair, while microglia are specialised phagocytes in the CNS. Ependymal cells line the ventricles. Understanding the functions of these cells is crucial in understanding the complex workings of the nervous system.

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  • Question 19 - A 25-year-old female comes to the emergency department with complaints of severe pain...

    Incorrect

    • A 25-year-old female comes to the emergency department with complaints of severe pain and tingling sensation in the lower part of her left leg and dorsum of her left foot after twisting her ankle during a football match. The possibility of entrapment of the superficial peroneal nerve is suspected. Which muscle is supplied by this nerve?

      Your Answer:

      Correct Answer: Peroneus longus

      Explanation:

      The superficial peroneal nerve is responsible for supplying the peroneus longus and peroneus brevis muscles in the lateral compartment of the leg. These muscles are involved in eversion of the foot and plantar flexion. The peroneus tertius muscle in the anterior compartment of the lower limb is innervated by the deep peroneal nerve and is responsible for dorsiflexion of the ankle and eversion of the foot. The tibialis posterior muscle in the deep posterior compartment of the lower limb is innervated by the tibial nerve and is responsible for plantar flexion and inversion of the foot. The soleus muscle in the superficial posterior compartment of the lower limb is also innervated by the tibial nerve and is responsible for plantar flexion.

      Anatomy of the Superficial Peroneal Nerve

      The superficial peroneal nerve is responsible for supplying the lateral compartment of the leg, specifically the peroneus longus and peroneus brevis muscles which aid in eversion and plantar flexion. It also provides sensation over the dorsum of the foot, excluding the first web space which is innervated by the deep peroneal nerve.

      The nerve passes between the peroneus longus and peroneus brevis muscles along the proximal one-third of the fibula. Approximately 10-12 cm above the tip of the lateral malleolus, the nerve pierces the fascia. It then bifurcates into intermediate and medial dorsal cutaneous nerves about 6-7 cm distal to the fibula.

      Understanding the anatomy of the superficial peroneal nerve is important in diagnosing and treating conditions that affect the lateral compartment of the leg and dorsum of the foot. Injuries or compression of the nerve can result in weakness or numbness in the affected areas.

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  • Question 20 - A 65-year-old man presents to the hospital with a 3-day history of headaches....

    Incorrect

    • A 65-year-old man presents to the hospital with a 3-day history of headaches. He has a medical history of type 2 diabetes mellitus and hypertension.

      During the examination, it is observed that his left pupil is constricted with enophthalmos and ptosis of the left eyelid. However, the right side of his face appears to be unaffected.

      What could be the probable reason for this patient's symptoms?

      Your Answer:

      Correct Answer: Carotid artery dissection

      Explanation:

      Carotid artery dissection is the likely cause of the patient’s Horner’s syndrome, which presents with ptosis, enophthalmos, and miosis. This syndrome occurs when there is damage to the cervical sympathetic chain, resulting in the loss of sympathetic innervation to the head and neck. The patient’s history of hypertension and headache further support this diagnosis.

      Facial nerve schwannoma is an incorrect diagnosis, as it would present with facial nerve palsy rather than Horner’s syndrome.

      Microvascular oculomotor nerve palsy is also an incorrect diagnosis, as it typically presents with complete ptosis and an eye that is turned outwards and downwards, without pupil dilatation.

      Uncal herniation is another incorrect diagnosis, as it can cause an oculomotor nerve palsy with pupillary involvement, but typically presents with a ‘down and out’ facing eye, rather than Horner’s syndrome.

      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.

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  • Question 21 - The femoral nerve is accidentally severed by a negligent surgeon during a failed...

    Incorrect

    • The femoral nerve is accidentally severed by a negligent surgeon during a failed femoro-popliteal bypass surgery. What function will be affected?

      Your Answer:

      Correct Answer: Extension of the knee joint

      Explanation:

      The quadriceps muscle, which is responsible for knee joint extension, is supplied by the femoral nerve.

      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.

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  • Question 22 - A 99-year-old woman visits her GP complaining of recent facial weakness and slurred...

    Incorrect

    • A 99-year-old woman visits her GP complaining of recent facial weakness and slurred speech. The GP suspects a stroke and conducts a thorough neurological evaluation. During the cranial nerve examination, the GP observes that the glossopharyngeal nerve is unaffected. What are the roles and responsibilities of this nerve?

      Your Answer:

      Correct Answer: Motor, sensory and autonomic

      Explanation:

      The jugular foramen serves as the pathway for the glossopharyngeal nerve. This nerve has autonomic functions for the parotid gland, motor functions for the stylopharyngeus muscle, and sensory functions for the posterior third of the tongue, palatine tonsils, oropharynx, middle ear mucosa, pharyngeal tympanic tube, and carotid bodies.

      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 23 - A 30-year-old man suffers a severe middle cranial fossa basal skull fracture. After...

    Incorrect

    • A 30-year-old man suffers a severe middle cranial fossa basal skull fracture. After his recovery, it is observed that he has reduced tear secretion. What is the most probable cause of this, resulting from which of the following damages?

      Your Answer:

      Correct Answer: Greater petrosal nerve

      Explanation:

      The Lacrimation Reflex

      The lacrimation reflex is a response to conjunctival irritation or emotional events. When the conjunctiva is irritated, it sends signals via the ophthalmic nerve to the superior salivary center. From there, efferent signals pass via the greater petrosal nerve (parasympathetic preganglionic fibers) and the deep petrosal nerve (postganglionic sympathetic fibers) to the lacrimal apparatus. The parasympathetic fibers relay in the pterygopalatine ganglion, while the sympathetic fibers do not synapse.

      This reflex is important for maintaining the health of the eye by keeping it moist and protecting it from foreign particles. It is also responsible for the tears that are shed during emotional events, such as crying. The lacrimal gland, which produces tears, is innervated by the secretomotor parasympathetic fibers from the pterygopalatine ganglion. The nasolacrimal duct, which carries tears from the eye to the nose, opens anteriorly in the inferior meatus of the nose. Overall, the lacrimal system plays a crucial role in maintaining the health and function of the eye.

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  • Question 24 - A 72-year-old male visits the neurology clinic with a complaint of experiencing difficulty...

    Incorrect

    • A 72-year-old male visits the neurology clinic with a complaint of experiencing difficulty in walking over the last three months. During the clinical examination, you conduct the finger-to-nose test and observe that he has a tremor that intensifies as his finger approaches his nose.

      Which part of the brain is the most probable site of damage?

      Your Answer:

      Correct Answer: Cerebellum

      Explanation:

      An intention tremor can be caused by cerebellar disease, which is evident in this patient’s presentation. Other symptoms associated with cerebellar disease include ataxia and dysdiadochokinesia.

      Resting tremors are more commonly associated with basal ganglia dysfunction.

      Alzheimer’s disease is linked to lesions in the hippocampus.

      Kluver-Bucy syndrome, characterized by hypersexuality, hyperorality, and visual agnosia, is more likely to occur when the amygdala is affected.

      Wernicke and Korsakoff syndrome, which presents with nystagmus, ataxia, ophthalmoplegia, amnesia, and confabulation, is more likely to occur when the hypothalamus is affected.

      Tremor: Causes and Characteristics

      Tremor is a common neurological symptom that can be caused by various conditions. The table below lists the main characteristics of the most important causes of tremor. Parkinsonism is characterized by a resting, ‘pill-rolling’ tremor, bradykinesia, rigidity, flexed posture, short, shuffling steps, micrographia, ‘mask-like’ face, and common depression and dementia. Essential tremor is a postural tremor that worsens if arms are outstretched, but improves with alcohol and rest, and often has a strong family history. Anxiety is often associated with a history of depression, while thyrotoxicosis is characterized by usual thyroid signs such as weight loss, tachycardia, and feeling hot. Hepatic encephalopathy is associated with a history of chronic liver disease, while carbon dioxide retention is associated with a history of chronic obstructive pulmonary disease. Cerebellar disease is characterized by an intention tremor and cerebellar signs such as past-pointing and nystagmus. Other causes of tremor include drug withdrawal from alcohol and opiates. Understanding the characteristics of different types of tremor can help in the diagnosis and management of patients with this symptom.

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  • Question 25 - A 82-year-old man arrives at the emergency department complaining of bone and abdominal...

    Incorrect

    • 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:

      Correct 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.

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  • Question 26 - A 75-year-old man presents to the ophthalmology clinic with complaints of gradually worsening...

    Incorrect

    • A 75-year-old man presents to the ophthalmology clinic with complaints of gradually worsening peripheral vision and a progressive headache that is worse at night. During the cranial nerve exam, a superior homonymous quadrantanopia is observed, but eye movements are intact. The rest of the cranial nerve and neurological examinations are unremarkable.

      Which region of the brain is likely affected by the lesion causing these symptoms?

      Your Answer:

      Correct Answer: Temporal lobe

      Explanation:

      Superior homonymous quadrantanopias occur when there are lesions in the inferior optic radiations located in the temporal lobe. The location of the lesion can be determined by analyzing the pattern of the visual field defect. Lesions in front of the optic chiasm cause incongruous defects, while lesions at the optic chiasm cause bitemporal/binasal hemianopias. Lesions behind the optic chiasm result in homonymous hemianopias, such as the superior homonymous quadrantanopia in this case. The optic radiations carry nerve signals from the optic chiasm to the occipital lobe. Lesions in the inferior aspect of the optic radiation cause superior visual field defects, while lesions in the superior aspect of the optic radiation cause inferior visual field defects. Therefore, the lesion causing the superior homonymous quadrantanopia in this woman must be located in the inferior aspect of the optic radiation in the temporal lobe. Lesions compressing the lateral aspect of the optic chiasm cause nasal/binasal visual field defects, while lesions to the optic nerve before the optic chiasm result in an incongruous homonymous hemianopia affecting the same eye. Parietal lobe lesions can cause inferior homonymous quadrantanopias, but not superior homonymous quadrantanopias. Compression of the superior optic chiasm causes bitemporal hemianopias, not homonymous 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.

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  • Question 27 - Which one of the following is not a branch of the posterior cord...

    Incorrect

    • Which one of the following is not a branch of the posterior cord of the brachial plexus?

      Your Answer:

      Correct Answer: Musculocutaneous nerve

      Explanation:

      The posterior cord gives rise to mnemonic branches, including the subscapular (upper and lower), thoracodorsal, axillary, and radial nerves. On the other hand, the musculocutaneous nerve is a branch originating from the lateral cord.

      Understanding the Brachial Plexus and Cutaneous Sensation of the Upper Limb

      The brachial plexus is a network of nerves that originates from the anterior rami of C5 to T1. It is divided into five sections: roots, trunks, divisions, cords, and branches. To remember these sections, a common mnemonic used is Real Teenagers Drink Cold Beer.

      The roots of the brachial plexus are located in the posterior triangle and pass between the scalenus anterior and medius muscles. The trunks are located posterior to the middle third of the clavicle, with the upper and middle trunks related superiorly to the subclavian artery. The lower trunk passes over the first rib posterior to the subclavian artery. The divisions of the brachial plexus are located at the apex of the axilla, while the cords are related to the axillary artery.

      The branches of the brachial plexus provide cutaneous sensation to the upper limb. This includes the radial nerve, which provides sensation to the posterior arm, forearm, and hand; the median nerve, which provides sensation to the palmar aspect of the thumb, index, middle, and half of the ring finger; and the ulnar nerve, which provides sensation to the palmar and dorsal aspects of the fifth finger and half of the ring finger.

      Understanding the brachial plexus and its branches is important in diagnosing and treating conditions that affect the upper limb, such as nerve injuries and neuropathies. It also helps in understanding the cutaneous sensation of the upper limb and how it relates to the different nerves of the brachial plexus.

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  • Question 28 - A 35-year-old woman visits her GP after observing alterations in her facial appearance....

    Incorrect

    • A 35-year-old woman visits her GP after observing alterations in her facial appearance. She realized that the left side of her face was sagging that morning, and she couldn't entirely shut her left eye, and her smile was uneven. She is healthy and not taking any other medications. During the examination of her facial nerve, you observe that the left facial nerve has a complete lower motor neuron paralysis. What is the probable reason for this?

      Your Answer:

      Correct Answer: Bell's palsy

      Explanation:

      Bells palsy is believed to be caused by inflammation, which leads to swelling and compression of the facial nerve. This results in one-sided paralysis, with the most noticeable symptom being drooping of the mouth corner. The onset of symptoms occurs within 1-3 days and typically resolves within 1-3 months. It is more prevalent in individuals over the age of 40, and while most people recover, some may experience weakness.

      Bell’s palsy is a sudden, one-sided facial nerve paralysis of unknown cause. It typically affects individuals between the ages of 20 and 40, and is more common in pregnant women. The condition is characterized by a lower motor neuron facial nerve palsy that affects the forehead, while sparing the upper face. Patients may also experience postauricular pain, altered taste, dry eyes, and hyperacusis.

      The management of Bell’s palsy has been a topic of debate, with various treatment options proposed in the past. However, there is now consensus that all patients should receive oral prednisolone within 72 hours of onset. The addition of antiviral medications is still a matter of discussion, with some experts recommending it for severe cases. Eye care is also crucial to prevent exposure keratopathy, and patients may need to use artificial tears and eye lubricants. If they are unable to close their eye at bedtime, they should tape it closed using microporous tape.

      Follow-up is essential for patients who show no improvement after three weeks, as they may require urgent referral to ENT. Those with more long-standing weakness may benefit from a referral to plastic surgery. The prognosis for Bell’s palsy is generally good, with most patients making a full recovery within three to four months. However, untreated cases can result in permanent moderate to severe weakness in around 15% of patients.

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  • Question 29 - A 75-year-old man is brought to his family doctor by his wife, who...

    Incorrect

    • A 75-year-old man is brought to his family doctor by his wife, who reports that her husband has been misplacing items around the house, such as putting his wallet in the fridge. She also mentions that he has gotten lost on two occasions while trying to find his way home. The man has difficulty remembering recent events but can recall his childhood and early adulthood with clarity. He denies experiencing any visual or auditory hallucinations or issues with his mobility. The wife notes that her husband's behavioral changes have been gradual rather than sudden. A CT scan reveals significant widening of the brain sulci. What is the most likely diagnosis for this man, and what is the underlying pathology?

      Your Answer:

      Correct Answer: Extracellular amyloid plaques and intracellular fibrillary tangles

      Explanation:

      Alzheimer’s disease is caused by the deposition of insoluble beta-amyloid protein, leading to the formation of cortical plaques, and abnormal aggregation of the tau protein, resulting in intraneuronal neurofibrillary tangles. This disease is characterized by a gradual onset of memory and behavioral problems, as well as brain atrophy visible on CT scans. Vascular dementia, on the other hand, is caused by multiple ischemic insults to the brain, resulting in a stepwise decline in cognition. Prion disease, such as Creutzfeldt-Jakob disease, is characterized by the presence of insoluble beta-pleated protein sheets. Lacunar infarcts, caused by obstruction of small penetrating arteries in the brain, can be detected by MRI or CT scans. Lewy body dementia is characterized by the presence of intracellular Lewy bodies, along with symptoms of dementia and Parkinson’s disease.

      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.

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  • Question 30 - 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:

      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.

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