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  • Question 1 - A 25-year-old man slips and falls at a nightclub, resulting in a shard...

    Incorrect

    • A 25-year-old man slips and falls at a nightclub, resulting in a shard of glass penetrating his skin at the level of the medial epicondyle. Which of the following outcomes is the least probable?

      Your Answer: Atrophy of the first dorsal interosseous muscle

      Correct Answer: Claw like appearance of the hand

      Explanation:

      When the ulnar nerve is injured in the mid to distal forearm, it can result in a claw hand. This means that the 4th and 5th interphalangeal joints will flex while the metacarpophalangeal joints will extend. The severity of the clawing can be increased if the flexor digitorum profundus is not affected. However, if the ulnar nerve lesion is more proximal, the clinical picture will be milder due to the simultaneous paralysis of the ulnar half of the flexor digitorum profundus. This is known as the ‘ulnar paradox’. In this case, the hand may not have a claw-like appearance that is typically seen in more distal injuries. The ulnar nerve also supplies the first dorsal interosseous muscle, which will be affected by the injury.

      The ulnar nerve originates from the medial cord of the brachial plexus, specifically from the C8 and T1 nerve roots. It provides motor innervation to various muscles in the hand, including the medial two lumbricals, adductor pollicis, interossei, hypothenar muscles (abductor digiti minimi, flexor digiti minimi), and flexor carpi ulnaris. Sensory innervation is also provided to the medial 1 1/2 fingers on both the palmar and dorsal aspects. The nerve travels through the posteromedial aspect of the upper arm and enters the palm of the hand via Guyon’s canal, which is located superficial to the flexor retinaculum and lateral to the pisiform bone.

      The ulnar nerve has several branches that supply different muscles and areas of the hand. The muscular branch provides innervation to the flexor carpi ulnaris and the medial half of the flexor digitorum profundus. The palmar cutaneous branch arises near the middle of the forearm and supplies the skin on the medial part of the palm, while the dorsal cutaneous branch supplies the dorsal surface of the medial part of the hand. The superficial branch provides cutaneous fibers to the anterior surfaces of the medial one and one-half digits, and the deep branch supplies the hypothenar muscles, all the interosseous muscles, the third and fourth lumbricals, the adductor pollicis, and the medial head of the flexor pollicis brevis.

      Damage to the ulnar nerve at the wrist can result in a claw hand deformity, where there is hyperextension of the metacarpophalangeal joints and flexion at the distal and proximal interphalangeal joints of the 4th and 5th digits. There may also be wasting and paralysis of intrinsic hand muscles (except for the lateral two lumbricals), hypothenar muscles, and sensory loss to the medial 1 1/2 fingers on both the palmar and dorsal aspects. Damage to the nerve at the elbow can result in similar symptoms, but with the addition of radial deviation of the wrist. It is important to diagnose and treat ulnar nerve damage promptly to prevent long-term complications.

    • This question is part of the following fields:

      • Neurological System
      23.2
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  • Question 2 - During a ward round on the stroke ward, you notice a patient in...

    Correct

    • During a ward round on the stroke ward, you notice a patient in their 60s responds to questions with unrelated words and phrases. His speech is technically good and fluent but the sentences make no sense. He does not appear to be aware of this and struggles to understand questions when written down.

      Where is the location of the lesion producing this sign?

      Your Answer: Superior temporal gyrus

      Explanation:

      Wernicke’s aphasia is caused by damage to the superior temporal gyrus, resulting in fluent speech but poor comprehension and characteristic ‘word salad’. Patients with this type of aphasia are often unaware of their errors.

      Conduction aphasia, on the other hand, is caused by damage to the arcuate fasciculus, which connects Wernicke’s and Broca’s areas. This results in fluent speech with poor repetition, but patients are usually aware of their errors.

      A lesion of the corpus callosum can cause more widespread problems with motor and sensory deficits due to impaired communication between the hemispheres.

      Broca’s area, located in the inferior frontal gyrus, is responsible for expressive aphasia, where speech is non-fluent but comprehension is intact.

      It’s important to note that true aphasia does not involve any motor deficits, so damage to the primary motor cortex would not be the cause.

      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 3 - A 55-year-old male has been suffering from chronic pain for many years due...

    Incorrect

    • A 55-year-old male has been suffering from chronic pain for many years due to an industrial accident he had in his thirties. The WHO defines chronic pain as pain that persists for how long?

      Your Answer: 8 weeks

      Correct Answer: 12 weeks

      Explanation:

      Chronic pain is defined by the WHO as pain that lasts for more than 12 weeks. Therefore, the correct answer is 12 weeks, and all other options are incorrect.

      Guidelines for Managing Chronic Pain

      Chronic pain is defined as pain that lasts for more than 12 weeks and can include conditions such as musculoskeletal pain, neuropathic pain, vascular insufficiency, and degenerative disorders. In 2013, the Scottish Intercollegiate Guidelines Network (SIGN) produced guidelines for the management of chronic, non-cancer related pain.

      Non-pharmacological interventions are recommended by SIGN, including self-management information, exercise, manual therapy, and transcutaneous electrical nerve stimulation (TENS). Exercise has been shown to be effective in improving chronic pain, and specific support such as referral to an exercise program is recommended. Manual therapy is particularly effective for spinal pain, while TENS can also be helpful.

      Pharmacological interventions may be necessary, but if medications are not effective after 2-4 weeks, they are unlikely to be effective. For neuropathic pain, SIGN recommends gabapentin or amitriptyline as first-line treatments. NICE also recommends pregabalin or duloxetine as first-line treatments. For fibromyalgia, duloxetine or fluoxetine are recommended.

      If patients are using more than 180 mg/day morphine equivalent, experiencing significant distress, or rapidly escalating their dose without pain relief, SIGN recommends referring them to specialist pain management services.

      Overall, the management of chronic pain requires a comprehensive approach that includes both non-pharmacological and pharmacological interventions, as well as referral to specialist services when necessary.

    • This question is part of the following fields:

      • Neurological System
      6.3
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  • Question 4 - A patient experiencing a loss of taste in the front two-thirds of their...

    Incorrect

    • A patient experiencing a loss of taste in the front two-thirds of their tongue may have incurred damage to which nerve?

      Your Answer: Hypoglossal nerve

      Correct Answer: Facial nerve

      Explanation:

      The anterior 2/3 of the tongue receives taste sensation from the facial nerve, while general sensation, which pertains to touch, is provided by the mandibular branch of the trigeminal nerve. The glossopharyngeal nerve is responsible for providing both taste and general sensation to the posterior 1/3 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.

    • This question is part of the following fields:

      • Neurological System
      6.3
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  • Question 5 - A 56-year-old patient has undergone surgery for thyroid cancer and his family has...

    Correct

    • A 56-year-old patient has undergone surgery for thyroid cancer and his family has noticed a change in his voice, becoming more hoarse a week after the surgery. Which nerve is likely to have been damaged during the surgery to cause this change in his voice?

      Your Answer: Recurrent laryngeal nerve

      Explanation:

      During surgeries of the thyroid and parathyroid glands, the recurrent laryngeal nerve is at risk due to its close proximity to the inferior thyroid artery. This nerve is responsible for supplying all intrinsic muscles of the larynx (excluding the cricothyroid muscle) that control the opening and closing of the vocal folds, as well as providing sensory innervation below the vocal folds. If damaged, it can result in hoarseness of voice or, in severe cases, aphonia.

      The glossopharyngeal nerve, on the other hand, does not play a role in voice production. Its primary areas of innervation include the posterior part of the tongue, the middle ear, part of the pharynx, the carotid body and carotid sinus, and the parotid gland. It also provides motor supply to the stylopharyngeus muscle. Damage to this nerve typically presents with impaired swallowing and changes in taste.

      The ansa cervicalis is located in the carotid triangle and is unlikely to be damaged during thyroid surgery. However, it may be used to re-innervate the vocal folds in the event of damage to the recurrent laryngeal nerve post-thyroidectomy. The ansa cervicalis primarily innervates the majority of infrahyoid muscles, with the exception of the stylohyoid and thyrohyoid. Damage to these muscles would primarily result in difficulty swallowing.

      Finally, the superior laryngeal nerve is responsible for innervating the cricothyroid muscle. If this nerve is paralyzed, it can cause an inability to produce high-pitched voice, which may go unnoticed in many patients for an extended period of time.

      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
      15.8
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  • Question 6 - A 29 week pregnant 26-year-old has been informed that her baby has hypoplasia...

    Incorrect

    • A 29 week pregnant 26-year-old has been informed that her baby has hypoplasia of the cerebellar vermis, as shown by antenatal ultrasound and subsequent MRI. The baby has been diagnosed with Dandy-Walker syndrome. The neurologist explains to the mother that during embryonic development, the brain is formed from different swellings or vesicles of the neural tube, which eventually becomes the central nervous system.

      What specific embryological vesicle has not developed properly in the affected baby?

      Your Answer: Diencephalon

      Correct Answer: Metencephalon

      Explanation:

      During embryonic development, the metencephalon is responsible for the formation of the pons and cerebellum.

      As the prosencephalon grows, it splits into two ear-shaped structures: the telencephalon (which develops into the hemispheres) and the diencephalon (which develops into the thalamus and hypothalamus).

      The mesencephalon grows slowly, and its central cavity eventually becomes the cerebral aqueduct.

      The rhombencephalon divides into two parts: the metencephalon (which forms the pons and cerebellum) and the myelencephalon (which forms the medulla).

      Embryonic Development of the Nervous System

      The nervous system develops from the embryonic neural tube, which gives rise to the brain and spinal cord. The neural tube is divided into five regions, each of which gives rise to specific structures in the nervous system. The telencephalon gives rise to the cerebral cortex, lateral ventricles, and basal ganglia. The diencephalon gives rise to the thalamus, hypothalamus, optic nerves, and third ventricle. The mesencephalon gives rise to the midbrain and cerebral aqueduct. The metencephalon gives rise to the pons, cerebellum, and superior part of the fourth ventricle. The myelencephalon gives rise to the medulla and inferior part of the fourth ventricle.

      The neural tube is also divided into two plates: the alar plate and the basal plate. The alar plate gives rise to sensory neurons, while the basal plate gives rise to motor neurons. This division of the neural tube into different regions and plates is crucial for the proper development and function of the nervous system. Understanding the embryonic development of the nervous system is important for understanding the origins of neurological disorders and for developing new treatments for these disorders.

    • This question is part of the following fields:

      • Neurological System
      11.4
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  • Question 7 - A 79-year-old man with no prior medical history presents with symptoms of an...

    Correct

    • A 79-year-old man with no prior medical history presents with symptoms of an ischaemic stroke. During the neurological examination in the emergency department, he is alert and able to answer questions appropriately. His limbs have normal tone, power, reflexes, and sensation, but he displays some lack of coordination. When asked to perform a finger-nose test, he accuses the examiner of cheating, claiming that he cannot see their finger or read their name tag. Which specific area of his brain is likely to be damaged, causing his visual deficits?

      Your Answer: Lateral geniculate nucleus

      Explanation:

      Damage to the lateral geniculate nucleus in the thalamus can cause visual impairment, while damage to other brain regions such as the brainstem, medial geniculate nucleus, postcentral gyrus, and prefrontal cortex produce different neurological deficits. Understanding the functions of each brain region can aid in localising strokes.

      The Thalamus: Relay Station for Motor and Sensory Signals

      The thalamus is a structure located between the midbrain and cerebral cortex that serves as a relay station for motor and sensory signals. Its main function is to transmit these signals to the cerebral cortex, which is responsible for processing and interpreting them. The thalamus is composed of different nuclei, each with a specific function. The lateral geniculate nucleus relays visual signals, while the medial geniculate nucleus transmits auditory signals. The medial portion of the ventral posterior nucleus (VML) is responsible for facial sensation, while the ventral anterior/lateral nuclei relay motor signals. Finally, the lateral portion of the ventral posterior nucleus is responsible for body sensation, including touch, pain, proprioception, pressure, and vibration. Overall, the thalamus plays a crucial role in the transmission of sensory and motor information to the brain, allowing us to perceive and interact with the world around us.

    • This question is part of the following fields:

      • Neurological System
      42.7
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  • Question 8 - A 63-year-old man arrives at the emergency department with difficulty speaking and weakness...

    Correct

    • A 63-year-old man arrives at the emergency department with difficulty speaking and weakness on his right side. The symptoms appeared suddenly, and he did not experience any trauma or pain. During the examination, you observe weakness in his right upper limb. Although he comprehends your inquiries, he struggles to find the right words to respond. There are no alterations in his sensation. You suspect that he has suffered a stroke. Which region of the brain is responsible for expressive dysphasia?

      Your Answer: Broca's area

      Explanation:

      Broca’s area, located in the inferior posterior frontal lobe, is associated with expressive dysphasia, which is characterized by difficulty producing language and non-fluent speech. This condition is sometimes referred to as Broca’s dysphasia. On the other hand, the primary motor cortex, located in the posterior frontal lobe, is responsible for motor control, and lesions in this area can result in motor deficits affecting the opposite side of the body.

      Wernicke’s area, another brain region involved in speech, is primarily responsible for language comprehension and understanding. Lesions in this area can lead to receptive dysphasia, which is characterized by a lack of comprehension and understanding of language. Patients with receptive dysphasia may speak fluently, but their sentences may not make sense and may include neologisms.

      The occipital lobe, located at the back of the brain, is responsible for visual processing. Lesions in this area can result in homonymous hemianopia (with sparing of the macula), agnosias, and cortical blindness.

      Finally, the primary sensory cortex, located in the anterior region of the parietal lobe, receives sensory innervation. Lesions in this area can lead to loss of sensation, proprioception, fine touch, and vibration sense on the opposite side of the body.

      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
      25.8
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  • Question 9 - A 40-year-old male visits his doctor with concerns about his family history. His...

    Incorrect

    • A 40-year-old male visits his doctor with concerns about his family history. His father and paternal grandmother both developed Alzheimer's disease at the age of 68 and 75 respectively. Which allele is associated with an elevated risk, but not a guaranteed factor, for the onset of the disease?

      Your Answer: E2

      Correct Answer: E4

      Explanation:

      The primary genetic determinant of sporadic Alzheimer’s disease risk is the presence of polymorphic alleles in the APOE gene. Those who carry the ε4 allele are at the greatest risk.

      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
      6
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  • Question 10 - A 45-year-old woman presents with unsteadiness on her feet. She reports leaning to...

    Incorrect

    • A 45-year-old woman presents with unsteadiness on her feet. She reports leaning to her right and has sustained scrapes on her right arm from falling on this side. During her walk to the examination room, she displays a broad-based ataxic gait, with a tendency to lean to the right.

      Upon neurological examination, she exhibits an intention tremor and dysdiadochokinesia of her right hand. Her right lower limb is positive for the heel-shin test. Additionally, there is a gaze-evoked nystagmus of the right eye.

      What is the likely location of the brain lesion?

      Your Answer: Left temporal

      Correct Answer: Right cerebellum

      Explanation:

      Unilateral damage to the cerebellum results in symptoms that are on the same side as the lesion. In this case, if the right cerebellum is damaged, the individual may experience dysdiadochokinesia, ataxia, nystagmus, intention tremor, scanning dysarthria, and a positive heel-shin test. Damage to the left cerebellum would not cause symptoms on the right side. Damage to the left temporal lobe may result in changes in behavior and emotions, forgetfulness, disruptions in the sense of smell, taste, and hearing, and language and speech disorders. Damage to the right parietal lobe may cause alexia, agraphia, acalculia, left-sided hemi-spatial neglect, homonymous inferior quadrantanopia, loss of sensations like touch, apraxias, or astereognosis.

      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
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  • Question 11 - Which one of the following nerves is the primary source of innervation to...

    Incorrect

    • Which one of the following nerves is the primary source of innervation to the anterior skin of the scrotum?

      Your Answer: Femoral branch of the genitofemoral nerve

      Correct Answer: Ilioinguinal nerve

      Explanation:

      The pudendal nerve innervates the posterior skin of the scrotum, while the ilioinguinal nerve primarily innervates the anterior scrotum. The genital branch of the genitofemoral nerve also provides some innervation.

      Scrotal Sensation and Nerve Innervation

      The scrotum is a sensitive area of the male body that is innervated by two main nerves: the ilioinguinal nerve and the pudendal nerve. The ilioinguinal nerve originates from the first lumbar vertebrae and passes through the internal oblique muscle before reaching the superficial inguinal ring. From there, it provides sensation to the anterior skin of the scrotum.

      The pudendal nerve, on the other hand, is the primary nerve of the perineum. It arises from three nerve roots in the pelvis and passes through the greater and lesser sciatic foramina to enter the perineal region. Its perineal branches then divide into posterior scrotal branches, which supply the skin and fascia of the perineum. The pudendal nerve also communicates with the inferior rectal nerve.

      Overall, the innervation of the scrotum is complex and involves multiple nerves. However, understanding the anatomy and function of these nerves is important for maintaining proper scrotal sensation and overall male health.

    • This question is part of the following fields:

      • Neurological System
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  • Question 12 - A middle-aged woman with migraine seeks medical attention for her worsening symptoms. Her...

    Incorrect

    • A middle-aged woman with migraine seeks medical attention for her worsening symptoms. Her physician recommends identifying triggers to prevent future attacks. What is a known trigger associated with migraines?

      Your Answer: Progestogen-only pill

      Correct Answer: Chocolate

      Explanation:

      Migraine is a primary headache syndrome that often includes a prodrome, aura, migraine attack, and postdrome. The prodrome phase can involve changes in mood, fatigue, and hunger that occur hours to days before the migraine attack. The aura phase typically involves visual disturbances, such as wiggly lines in the visual field, and occurs 1-1.5 hours before the migraine attack. The migraine attack itself can last anywhere from 4-72 hours. The postdrome phase may include symptoms such as soreness, fatigue, mood changes, and gastrointestinal issues.

      Understanding Migraine: Symptoms, Triggers, and Diagnostic Criteria

      Migraine is a primary headache that affects a significant portion of the population. It is characterized by a severe, throbbing headache that is usually felt on one side of the head. Other symptoms include nausea, sensitivity to light and sound, and a general feeling of discomfort. Migraine attacks can last up to 72 hours, and patients often seek relief in a dark and quiet room.

      There are several triggers that can cause a migraine attack, including stress, lack of sleep, certain foods, and hormonal changes. Women are three times more likely to experience migraines than men, and the prevalence in women is around 18%.

      To diagnose migraine, doctors use a set of criteria established by the International Headache Society. These criteria include at least five attacks that last between 4-72 hours, with at least two of the following characteristics: unilateral location, pulsating quality, moderate to severe pain intensity, and aggravation by routine physical activity. During the headache, patients must also experience nausea and/or vomiting, as well as sensitivity to light and sound. The diagnosis is ruled out if the headache is caused by another disorder or if it occurs for the first time in close temporal relation to another disorder.

    • This question is part of the following fields:

      • Neurological System
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  • Question 13 - A 67-year-old man visits the clinic with a concern about a lump he...

    Correct

    • A 67-year-old man visits the clinic with a concern about a lump he has noticed at the corner of his jaw. Apart from this, he reports feeling well. During the examination, there is no visible swelling, but on palpation, you detect a hard, immovable mass located about 2 cm above the angle of the mandible. Based on your assessment, you suspect that the patient may have a parotid gland tumor. If this is the case, the tumor may cause additional symptoms if it affects the cranial nerve that passes through the parotid gland. Which cranial nerve has a path that runs through the substance of the parotid gland?

      Your Answer: Facial nerve

      Explanation:

      The parotid gland contains the facial nerve, which divides into five branches: the temporal, zygomatic, buccal, marginal mandibular, and cervical branches. The mandibular nerve, a division of the trigeminal nerve, carries both sensory and motor fibers, providing sensation to the lower lip, lower teeth and gums, chin, and jaw, and motor innervation to muscles involved in chewing and other functions. The glossopharyngeal nerve, the ninth cranial nerve, has various functions, including carrying taste and sensation from the back of the tongue, pharyngeal wall, tonsils, middle ear, external auditory canal, and auricle, as well as supplying the parotid gland with parasympathetic fibers. The maxillary nerve, another division of the trigeminal nerve, carries only sensory fibers, providing sensation to the lower eyelid and cheeks, upper teeth and gums, palate, nasal cavity, and certain paranasal sinuses. The hypoglossal nerve, the twelfth cranial nerve, supplies the intrinsic muscles of the tongue and most of the extrinsic muscles, except for the palatoglossus. A parotid tumor, which is usually benign, can cause symptoms such as a mass, tenderness of the gland, facial nerve palsy, or lymphatic infiltration.

      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 14 - You are requested to assess a 45-year-old man who was previously healthy but...

    Correct

    • You are requested to assess a 45-year-old man who was previously healthy but has been stabbed in the back after an attack. A puncture wound measuring 3 cm is observed just to the right of the T5 vertebrae. During the examination, a reduction in fine touch sensation is detected on the right side.

      Where would you anticipate detecting a decrease in temperature sensation, if any?

      Your Answer: Left side, below the lesion

      Explanation:

      The spinothalamic tract crosses over at the same level where the nerve root enters the spinal cord, while the corticospinal tract, dorsal column medial lemniscus, and spinocerebellar tracts cross over at the medulla within the brain. Quick response stimuli such as pain and temperature cross over first.

      Brown-Sequard syndrome is a result of the body’s unique anatomy. Understanding which types of nerve fibers cross over at the spinal level versus within the brain is crucial in diagnosing this syndrome.

      Pain and temperature are carried in the spinothalamic tract, which crosses over at the spinal level it enters at. Therefore, a hemisection of the cord will result in contralateral loss of these functions. On the other hand, the corticospinal tract, dorsal column medial lemniscus pathway, and spinocerebellar tract all cross over above the spinal cord, resulting in ipsilateral loss of these functions with a hemisection.

      In the case of a puncture wound on the right side, the contralateral loss would present on the left side below the lesion, as the fibers run in a caudocranial direction. Bilateral loss would only occur with a complete severing of the cord.

      The spinal cord is a central structure located within the vertebral column that provides it with structural support. It extends rostrally to the medulla oblongata of the brain and tapers caudally at the L1-2 level, where it is anchored to the first coccygeal vertebrae by the filum terminale. The cord is characterised by cervico-lumbar enlargements that correspond to the brachial and lumbar plexuses. It is incompletely divided into two symmetrical halves by a dorsal median sulcus and ventral median fissure, with grey matter surrounding a central canal that is continuous with the ventricular system of the CNS. Afferent fibres entering through the dorsal roots usually terminate near their point of entry but may travel for varying distances in Lissauer’s tract. The key point to remember is that the anatomy of the cord will dictate the clinical presentation in cases of injury, which can be caused by trauma, neoplasia, inflammatory diseases, vascular issues, or infection.

      One important condition to remember is Brown-Sequard syndrome, which is caused by hemisection of the cord and produces ipsilateral loss of proprioception and upper motor neuron signs, as well as contralateral loss of pain and temperature sensation. Lesions below L1 tend to present with lower motor neuron signs. It is important to keep a clinical perspective in mind when revising CNS anatomy and to understand the ways in which the spinal cord can become injured, as this will help in diagnosing and treating patients with spinal cord injuries.

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      • Neurological System
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  • Question 15 - Which muscle is innervated by the cervical branch of the facial nerve? ...

    Correct

    • Which muscle is innervated by the cervical branch of the facial nerve?

      Your Answer: Platysma

      Explanation:

      Platysma is innervated by the cervical branch of the facial nerve.

      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 16 - An 88-year-old male is brought to the emergency department by his carer due...

    Incorrect

    • An 88-year-old male is brought to the emergency department by his carer due to complaints of numbness and tingling in his face upon waking up. His medical history includes hypertension and type 2 diabetes mellitus. Upon examination, he exhibits altered sensation limited to his face, with no signs of limb weakness, visual changes, or hearing loss. An MRI scan confirms ischaemia to the thalamus. Which specific nucleus of the thalamus is most likely affected?

      Your Answer: Ventral posterolateral nucleus

      Correct Answer: Ventral posteromedial nucleus

      Explanation:

      If the medial portion of the ventral posterior nucleus of the thalamus is damaged, it can lead to changes in facial sensation. In contrast, damage to other areas of the thalamus can affect different functions. For example, damage to the medial geniculate nucleus can affect hearing, while damage to the lateral geniculate nucleus can affect vision. Damage to the ventral anterior nucleus can cause problems with movement, and damage to the ventral posterolateral nucleus can affect body sensation such as touch, pain, and pressure.

      The Thalamus: Relay Station for Motor and Sensory Signals

      The thalamus is a structure located between the midbrain and cerebral cortex that serves as a relay station for motor and sensory signals. Its main function is to transmit these signals to the cerebral cortex, which is responsible for processing and interpreting them. The thalamus is composed of different nuclei, each with a specific function. The lateral geniculate nucleus relays visual signals, while the medial geniculate nucleus transmits auditory signals. The medial portion of the ventral posterior nucleus (VML) is responsible for facial sensation, while the ventral anterior/lateral nuclei relay motor signals. Finally, the lateral portion of the ventral posterior nucleus is responsible for body sensation, including touch, pain, proprioception, pressure, and vibration. Overall, the thalamus plays a crucial role in the transmission of sensory and motor information to the brain, allowing us to perceive and interact with the world around us.

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      • Neurological System
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  • Question 17 - A 27-year-old male with a history of paraplegia, due to C5 spinal cord...

    Incorrect

    • A 27-year-old male with a history of paraplegia, due to C5 spinal cord injury sustained 8 weeks prior, is currently admitted to an orthopaedic and spinal ward. One night, he wakes up in distress with a headache and diaphoresis above the level of his spinal cord injury. His blood pressure is currently 160/110 mmHg. It was recorded 2 hours ago as 110/70mmHg. His pulse rate is 50. The patient also has an indwelling catheter which was changed earlier today.

      The healthcare provider on-call suspects that autonomic dysreflexia might be the cause of the patient's symptoms.

      What is the most common life-threatening outcome associated with this condition?

      Your Answer: Seizures

      Correct Answer: Haemorrhagic stroke

      Explanation:

      Autonomic dysreflexia is a condition that occurs in patients who have suffered a spinal cord injury at or above the T6 spinal level. It is caused by a reflex response triggered by various stimuli, such as faecal impaction or urinary retention, which sends signals through the thoracolumbar outflow. However, due to the spinal cord lesion, the usual parasympathetic response is prevented, leading to an unbalanced physiological response. This response is characterized by extreme hypertension, flushing, and sweating above the level of the cord lesion, as well as agitation. If left untreated, severe consequences such as haemorrhagic stroke can occur. The management of autonomic dysreflexia involves removing or controlling the stimulus and treating any life-threatening hypertension and/or bradycardia.

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      • Neurological System
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  • Question 18 - A 55-year-old man with a history of diabetes visits his ophthalmologist for his...

    Correct

    • A 55-year-old man with a history of diabetes visits his ophthalmologist for his yearly diabetic retinopathy screening. During the examination, the physician observes venous beading. What other clinical manifestation would be present due to the same underlying pathophysiology?

      Your Answer: Cotton wool spots

      Explanation:

      Cotton wool spots found in diabetic retinopathy are indicative of retinal infarction resulting from ischemic disruption. Venous beading, on the other hand, is characterized by irregular constriction and dilation of venules in the retina due to retinal ischemia. It is important to note that cupping of the optic disc is not associated with diabetic retinopathy but rather with open-angle glaucoma. Similarly, lipid exudates are not a feature of diabetic retinopathy as they occur at the border between thickened and non-thickened retina, resulting in extravasated lipoprotein.

      Understanding Diabetic Retinopathy

      Diabetic retinopathy is a leading cause of blindness in adults aged 35-65 years-old. The condition is caused by hyperglycaemia, which leads to abnormal metabolism in the retinal vessel walls, causing damage to endothelial cells and pericytes. This damage leads to increased vascular permeability, which causes exudates seen on fundoscopy. Pericyte dysfunction predisposes to the formation of microaneurysms, while neovascularization is caused by the production of growth factors in response to retinal ischaemia.

      Patients with diabetic retinopathy are typically classified into those with non-proliferative diabetic retinopathy (NPDR), proliferative retinopathy (PDR), and maculopathy. NPDR is further classified into mild, moderate, and severe, depending on the presence of microaneurysms, blot haemorrhages, hard exudates, cotton wool spots, venous beading/looping, and intraretinal microvascular abnormalities. PDR is characterized by retinal neovascularization, which may lead to vitreous haemorrhage, and fibrous tissue forming anterior to the retinal disc. Maculopathy is based on location rather than severity and is more common in Type II DM.

      Management of diabetic retinopathy involves optimizing glycaemic control, blood pressure, and hyperlipidemia, as well as regular review by ophthalmology. For maculopathy, intravitreal vascular endothelial growth factor (VEGF) inhibitors are used if there is a change in visual acuity. Non-proliferative retinopathy is managed through regular observation, while severe/very severe cases may require panretinal laser photocoagulation. Proliferative retinopathy is treated with panretinal laser photocoagulation, intravitreal VEGF inhibitors, and vitreoretinal surgery in severe or vitreous haemorrhage cases. Examples of VEGF inhibitors include ranibizumab, which has a strong evidence base for slowing the progression of proliferative diabetic retinopathy and improving visual acuity.

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      • Neurological System
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  • Question 19 - A 47-year-old woman is experiencing muscle spasticity due to relapsing-remitting multiple sclerosis. Baclofen...

    Correct

    • A 47-year-old woman is experiencing muscle spasticity due to relapsing-remitting multiple sclerosis. Baclofen is prescribed to alleviate the pain associated with spasticity.

      What is the mechanism of action of Baclofen?

      Your Answer: Gamma-aminobutyric acid (GABA) receptor agonist

      Explanation:

      Baclofen is a medication that acts as an agonist at GABA receptors in the central nervous system. It is primarily used as a muscle relaxant to treat spasticity conditions such as multiple sclerosis and cerebral palsy. It should be noted that baclofen is not a GABA antagonist like flumazenil, nor does it act as an NMDA agonist like the toxin responsible for Amanita muscaria poisoning. Additionally, baclofen does not exert its effects at muscarinic receptors like buscopan, which is commonly used to treat pain associated with bowel wall spasm and respiratory secretions during end-of-life care. Instead, baclofen specifically targets GABA receptors.

      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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      • Neurological System
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  • Question 20 - A 14-month-old infant is undergoing investigation by community paediatrics for developmental delay. The...

    Incorrect

    • A 14-month-old infant is undergoing investigation by community paediatrics for developmental delay. The mother has observed that the child has poor balance, cannot take steps alone, and walks on tiptoes with support. The infant was delivered via c-section at 28 weeks gestation and weighed 1400 grams at birth.

      During the assessment, the infant exhibits hyperreflexia, increased tone in the lower limbs, and sustained clonus in both ankles. The suspected diagnosis is cerebral palsy.

      What type of cerebral palsy is likely to be present in this infant based on the observed symptoms?

      Your Answer: Ataxic cerebral palsy

      Correct Answer: Spastic cerebral palsy

      Explanation:

      Understanding Cerebral Palsy

      Cerebral palsy is a condition that affects movement and posture due to damage to the motor pathways in the developing brain. It is the most common cause of major motor impairment and affects 2 in 1,000 live births. The causes of cerebral palsy can be antenatal, intrapartum, or postnatal. Antenatal causes include cerebral malformation and congenital infections such as rubella, toxoplasmosis, and CMV. Intrapartum causes include birth asphyxia or trauma, while postnatal causes include intraventricular hemorrhage, meningitis, and head trauma.

      Children with cerebral palsy may exhibit abnormal tone in early infancy, delayed motor milestones, abnormal gait, and feeding difficulties. They may also have associated non-motor problems such as learning difficulties, epilepsy, squints, and hearing impairment. Cerebral palsy can be classified into spastic, dyskinetic, ataxic, or mixed types.

      Managing cerebral palsy requires a multidisciplinary approach. Treatments for spasticity include oral diazepam, oral and intrathecal baclofen, botulinum toxin type A, orthopedic surgery, and selective dorsal rhizotomy. Anticonvulsants and analgesia may also be required. Understanding cerebral palsy and its management is crucial in providing appropriate care and support for individuals with this condition.

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      • Neurological System
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  • Question 21 - A 16-year-old girl presents with a gradual weakness and muscle wasting of her...

    Correct

    • A 16-year-old girl presents with a gradual weakness and muscle wasting of her left hand over the last 4 years. She has been a competitive long-distance runner for the past 5 years.

      Upon neurological examination, there is significant atrophy and weakness of all intrinsic muscles, particularly the thenar muscles in the left hand. Sensation is reduced along the ulnar aspect of the hand and forearm. There are no tender areas or swelling over the shoulder joint, and shoulder movement is unimpeded.

      A chest x-ray reveals the presence of cervical ribs on both sides.

      What is the most probable diagnosis?

      Your Answer: Neurogenic thoracic outlet syndrome

      Explanation:

      Thoracic outlet syndrome (TOS) is a condition where the brachial plexus, subclavian artery or vein is compressed at the thoracic outlet. One possible cause of TOS is the presence of a cervical rib, an extra rib that grows from the cervical spine. This can increase the risk of nerve or blood vessel compression, especially in individuals who engage in repetitive swimming activities.

      Erb’s palsy, also known as Erb-Duchenne palsy, is a type of obstetric brachial plexus palsy that occurs when the upper brachial plexus is injured during birth. This can result in the loss of shoulder lateral rotators, arm flexors, and hand extensor muscles, leading to the characteristic Waiter’s tip deformity.

      Klumpke paralysis is a neuropathy of the lower brachial plexus that can occur during a difficult delivery. It is typically caused by hyper-abduction traction and can result in a claw hand presentation, where the wrist and fingers are flexed and the forearm is supinated.

      Carpal tunnel syndrome is a condition where the median nerve is compressed as it passes through the wrist, leading to numbness, tingling, burning, and pain in the thumb and fingers. However, this patient’s symptoms of reduced sensation along the ulnar aspect of the hand and forearm are not consistent with carpal tunnel syndrome.

      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.

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      • Neurological System
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  • Question 22 - A 32-year-old male complains of a sudden onset of severe headache that has...

    Correct

    • A 32-year-old male complains of a sudden onset of severe headache that has been ongoing for an hour. He has no significant medical history. Upon examination, he appears to be in pain, with a pulse rate of 106 bpm, blood pressure of 138/70 mmHg, and a temperature of 37°C. He also exhibits neck stiffness and mild photophobia, but no specific neurological deficit is observed. What is the probable diagnosis?

      Your Answer: Subarachnoid haemorrhage

      Explanation:

      Sudden and Severe Headache with Meningism: Possible Subarachnoid Haemorrhage

      This young male is experiencing a sudden and severe headache with meningism, which may indicate subarachnoid haemorrhage. To confirm the diagnosis, the presence of red cells in the cerebrospinal fluid (CSF) or xanthochromia in the CSF may be demonstrated. Meningitis is unlikely due to the acute onset of headache and apyrexia, while subdural haematomas are not common unless there is associated trauma. On the other hand, HSV meningitis typically affects the temporal lobe and may cause symptoms of memory or personality changes.

      Overall, a sudden and severe headache with meningism should be taken seriously as it may indicate a potentially life-threatening condition such as subarachnoid haemorrhage. Prompt diagnosis and treatment are crucial to prevent further complications and improve the patient’s prognosis.

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      • Neurological System
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  • Question 23 - A different patient, presenting with symptoms of fatigue, polyuria and bone pains, is...

    Incorrect

    • A different patient, presenting with symptoms of fatigue, polyuria and bone pains, is found to have a history of renal stones and depression. Blood tests reveal high serum calcium and parathyroid hormone levels, and low phosphate levels, leading to a suspected diagnosis of hyperparathyroidism. Imaging confirms the presence of a parathyroid adenoma, and the patient is started on treatment including a phosphate supplement for symptom relief. In this patient, where will the supplementary electrolyte primarily be reabsorbed?

      Your Answer: Terminal ileum

      Correct Answer: Proximal tubule

      Explanation:

      The proximal tubule is responsible for the reabsorption of phosphate. This patient’s symptoms are consistent with hyperparathyroidism, which causes an increase in serum calcium levels and a decrease in phosphate levels due to increased osteoclast activity, increased renal and intestinal absorption of calcium, and reduced renal reabsorption of phosphate from the proximal tubule. Treatment for primary hyperparathyroidism typically involves a parathyroidectomy, but medical treatment can be used if surgery is not possible.

      The distal tubules absorb electrolytes such as sodium, potassium, and calcium, and play a role in pH regulation through the absorption and secretion of bicarbonate and protons. However, only a minimal amount of phosphate is reabsorbed in the distal tubules.

      The duodenum and jejunum are responsible for the absorption of iron and folate, respectively, but only a small amount of phosphate is reabsorbed in the gastrointestinal tract as a whole.

      The loop of Henle reabsorbs several electrolytes, including sodium, potassium, chloride, magnesium, and calcium, but only a relatively small amount of phosphate is reabsorbed in this aspect of the renal tract.

      The terminal ileum absorbs vitamin B12 and bile salts, but again, only a very small amount of phosphate is reabsorbed in the GI tract.

      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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      • Neurological System
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  • Question 24 - A 23-year-old man gets into a brawl outside a nightclub and is stabbed...

    Correct

    • A 23-year-old man gets into a brawl outside a nightclub and is stabbed in the back, on the left side, about 3 cm below the 12th rib in the mid scapular line. Which structure is most likely to be injured first as a result of this incident?

      Your Answer: Left kidney

      Explanation:

      The most probable structure to be injured is the left kidney, which is situated in this area. The left adrenal and ureter are unlikely to be injured alone, while the spleen is located higher up.

      Anatomical Planes and Levels in the Human Body

      The human body can be divided into different planes and levels to aid in anatomical study and medical procedures. One such plane is the transpyloric plane, which runs horizontally through the body of L1 and intersects with various organs such as the pylorus of the stomach, left kidney hilum, and duodenojejunal flexure. Another way to identify planes is by using common level landmarks, such as the inferior mesenteric artery at L3 or the formation of the IVC at L5.

      In addition to planes and levels, there are also diaphragm apertures located at specific levels in the body. These include the vena cava at T8, the esophagus at T10, and the aortic hiatus at T12. By understanding these planes, levels, and apertures, medical professionals can better navigate the human body during procedures and accurately diagnose and treat various conditions.

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      • Neurological System
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  • Question 25 - A 58-year-old male presents to the GP with back pain. He tells you...

    Correct

    • 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: 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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      • Neurological System
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  • Question 26 - 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: Amyloid beta and tau are phosphorylated together to form a tangle

      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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      • Neurological System
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  • Question 27 - 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.

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  • Question 28 - During a carotid endarterectomy, if the internal carotid artery is cross-clamped without a...

    Correct

    • During a carotid endarterectomy, if the internal carotid artery is cross-clamped without a shunt, which vessels will not experience reduced or absent flow?

      Assuming that no shunt is inserted, which vessels will not have diminished or absent flow as a result during a carotid endarterectomy where the internal carotid artery is cross-clamped?

      Your Answer: Maxillary artery

      Explanation:

      The external carotid artery gives rise to the maxillary artery.

      The internal carotid artery originates from the common carotid artery near the upper border of the thyroid cartilage and travels upwards to enter the skull through the carotid canal. It then passes through the cavernous sinus and divides into the anterior and middle cerebral arteries. In the neck, it is surrounded by various structures such as the longus capitis, pre-vertebral fascia, sympathetic chain, and superior laryngeal nerve. It is also closely related to the external carotid artery, the wall of the pharynx, the ascending pharyngeal artery, the internal jugular vein, the vagus nerve, the sternocleidomastoid muscle, the lingual and facial veins, and the hypoglossal nerve. Inside the cranial cavity, the internal carotid artery bends forwards in the cavernous sinus and is closely related to several nerves such as the oculomotor, trochlear, ophthalmic, and maxillary nerves. It terminates below the anterior perforated substance by dividing into the anterior and middle cerebral arteries and gives off several branches such as the ophthalmic artery, posterior communicating artery, anterior choroid artery, meningeal arteries, and hypophyseal arteries.

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      • Neurological System
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  • Question 29 - A 22-year-old woman presented to the hospital with a sudden onset headache. She...

    Correct

    • A 22-year-old woman presented to the hospital with a sudden onset headache. She reports no history of trauma prior to the headache. The pain began at the back of her head while she was watching TV and quickly reached its peak intensity within 2 seconds, rated at 10/10. She has never experienced a headache before.

      The patient also reported photophobia and neck stiffness after the headache. Neurological examination did not reveal any focal deficits, and her Glasgow Coma Scale score was 15/15.

      What is the most probable underlying diagnosis?

      Your Answer: Subarachnoid haemorrhage

      Explanation:

      If you experience a sudden headache in the occipital region, it could be a sign of subarachnoid haemorrhage. This is especially true if you also develop sensitivity to light and stiffness in the neck. To investigate this possibility, a CT scan of the head may be ordered. If the results are inconclusive, a lumbar puncture with xanthochromia screen may be performed.

      In contrast, intracerebral haemorrhage typically causes focal neurological deficits or a decrease in consciousness. It is often associated with risk factors such as hypertension and diabetes.

      Extradural haemorrhage, on the other hand, usually occurs after head trauma, particularly to the temporal regions. It is caused by injury to the middle meningeal artery and can cause a lucid patient to lose consciousness gradually over several hours. As intracranial pressure increases, patients may also experience focal neurological deficits and cranial nerve palsies.

      There are different types of traumatic brain injury, including focal (contusion/haematoma) or diffuse (diffuse axonal injury). Diffuse axonal injury occurs due to mechanical shearing following deceleration, causing disruption and tearing of axons. Intracranial haematomas can be extradural, subdural or intracerebral, while contusions may occur adjacent to (coup) or contralateral (contre-coup) to the side of impact. Secondary brain injury occurs when cerebral oedema, ischaemia, infection, tonsillar or tentorial herniation exacerbates the original injury.

    • This question is part of the following fields:

      • Neurological System
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      Seconds
  • Question 30 - A 32-year-old man suffers an injury from farm machinery resulting in a laceration...

    Correct

    • A 32-year-old man suffers an injury from farm machinery resulting in a laceration at the superolateral aspect of the popliteal fossa and a laceration of the medial aspect of the biceps femoris. What is the most vulnerable underlying structure to injury in this case?

      Your Answer: Common peroneal nerve

      Explanation:

      The greatest risk of injury lies with the common peroneal nerve, which is located beneath the medial aspect of the biceps femoris. Although not mentioned, the tibial nerve may also be affected by this type of injury. The sural nerve branches off at a lower point.

      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.

    • This question is part of the following fields:

      • Neurological System
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