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  • Question 1 - As a medical student on wards in the endocrinology department, you come across...

    Incorrect

    • As a medical student on wards in the endocrinology department, you come across a patient suffering from syndrome of inappropriate antidiuretic hormone secretion. During the ward round, the consultant leading the team decides to test your knowledge and asks about the normal release of antidiuretic hormone (ADH) in the brain.

      Can you explain the pathway that leads to the release of this hormone causing the patient's condition?

      Your Answer: ADH is released from the anterior pituitary gland via neural cells which extend from the hypothalamus

      Correct Answer: ADH is released from the posterior pituitary gland via neural cells which extend from the hypothalamus

      Explanation:

      The posterior pituitary gland is formed by neural cells’ axons that extend directly from the hypothalamus.

      In contrast to the anterior pituitary gland, which has separate hormone-secreting cells controlled by hormonal stimulation, the posterior pituitary gland only contains neural cells that extend from the hypothalamus. Therefore, the hormones (ADH and oxytocin) released from the posterior pituitary gland are released from the axons of cells extending from the hypothalamus.

      All anterior pituitary hormone release is controlled through hormonal stimulation from the hypothalamus.

      The adrenal medulla directly releases epinephrine, norepinephrine, and small amounts of dopamine from sympathetic neural cells.

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

    • This question is part of the following fields:

      • Neurological System
      27.1
      Seconds
  • Question 2 - Which upper limb muscle is not supplied by the radial nerve? ...

    Incorrect

    • Which upper limb muscle is not supplied by the radial nerve?

      Your Answer: Brachioradialis

      Correct Answer: Abductor digiti minimi

      Explanation:

      The mnemonic for the muscles innervated by the radial nerve is BEST, which stands for Brachioradialis, Extensors, Supinator, and Triceps. On the other hand, the ulnar nerve innervates the Abductor Digiti Minimi muscle.

      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
      19.4
      Seconds
  • Question 3 - An 80-year-old man arrives at the emergency department with sudden difficulty in speech,...

    Correct

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

      Your Answer: Superior left middle cerebral artery

      Explanation:

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

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

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

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

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

      Types of Aphasia: Understanding the Different Forms of Language Impairment

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

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

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

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

    • This question is part of the following fields:

      • Neurological System
      75.9
      Seconds
  • Question 4 - 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: Parasympathetic output from the sacral plexus

      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
      35.5
      Seconds
  • Question 5 - A 54-year-old man comes to the eye emergency department with painless vision loss...

    Incorrect

    • A 54-year-old man comes to the eye emergency department with painless vision loss in his left eye since waking up this morning. He has a medical history of hypertension and diabetes, and is currently taking ramipril and metformin. Upon examination, the patient has decreased visual acuity in his left eye. The doctor suspects that atherosclerotic changes have caused blockage of the short posterior ciliary arteries.

      What clinical findings would indicate this diagnosis?

      Your Answer: A down-and-out left eye palsy

      Correct Answer: Relative afferent pupil defect (RAPD)

      Explanation:

      Painless monocular loss of vision and RAPD can be caused by occlusion of the short posterior ciliary arteries.

      Non-arteritic anterior ischaemic optic neuropathy is more likely to occur in males aged 40-60 with hypertension, diabetes, and arteriopathy.

      Giant cell arteritis should be suspected in patients with jaw claudication and weight loss.

      A down and out palsy is a symptom of oculomotor nerve palsy, not optic neuropathy.

      Sudden loss of vision can be a scary symptom for patients, but it can be caused by a variety of factors. Transient monocular visual loss (TMVL) is a term used to describe a sudden, temporary loss of vision that lasts less than 24 hours. The most common causes of sudden painless loss of vision include ischaemic/vascular issues, vitreous haemorrhage, retinal detachment, and retinal migraine.

      Ischaemic/vascular issues, also known as ‘amaurosis fugax’, can be caused by a wide range of factors such as thrombosis, embolism, temporal arteritis, and hypoperfusion. It may also represent a form of transient ischaemic attack (TIA) and should be treated similarly with aspirin 300mg. Altitudinal field defects are often seen, and ischaemic optic neuropathy can occur due to occlusion of the short posterior ciliary arteries.

      Central retinal vein occlusion is more common than arterial occlusion and can be caused by glaucoma, polycythaemia, and hypertension. Severe retinal haemorrhages are usually seen on fundoscopy. Central retinal artery occlusion, on the other hand, is due to thromboembolism or arteritis and features include afferent pupillary defect and a ‘cherry red’ spot on a pale retina.

      Vitreous haemorrhage can be caused by diabetes, bleeding disorders, and anticoagulants. Features may include sudden visual loss and dark spots. Retinal detachment may be preceded by flashes of light or floaters, which are also symptoms of posterior vitreous detachment. Differentiating between these conditions can be done by observing the specific symptoms such as a veil or curtain over the field of vision, straight lines appearing curved, and central visual loss. Large bleeds can cause sudden visual loss, while small bleeds may cause floaters.

    • This question is part of the following fields:

      • Neurological System
      86.6
      Seconds
  • Question 6 - A 58-year-old man has arrived at the emergency department via ambulance following a...

    Correct

    • A 58-year-old man has arrived at the emergency department via ambulance following a sudden onset of symptoms during lunch with his daughter. He reports feeling extremely dizzy and nauseous, and has since lost hearing in his left ear and the ability to move the left side of his face. An urgent CT scan reveals a thrombus blocking an artery in his brain. Which artery is most likely affected by the thrombus?

      Your Answer: Anterior inferior cerebellar artery

      Explanation:

      The correct answer is the anterior inferior cerebellar artery, as sudden onset vertigo and vomiting, ipsilateral facial paralysis, and deafness are all symptoms of lesions in this area.

      The middle cerebral artery is an incorrect answer, as lesions in this area cause contralateral hemiparesis and sensory loss, contralateral homonymous hemianopia, and aphasia.

      The posterior cerebral artery is also an incorrect answer, as lesions in this area cause contralateral homonymous hemianopia with macular sparing and visual agnosia.

      Similarly, the posterior inferior cerebellar artery is an incorrect answer, as lesions in this area cause ipsilateral facial pain and temperature loss, contralateral limb/torso pain and temperature loss, ataxia, and nystagmus.

      Stroke can affect different parts of the brain depending on which artery is affected. If the anterior cerebral artery is affected, the person may experience weakness and loss of sensation on the opposite side of the body, with the lower extremities being more affected than the upper. If the middle cerebral artery is affected, the person may experience weakness and loss of sensation on the opposite side of the body, with the upper extremities being more affected than the lower. They may also experience vision loss and difficulty with language. If the posterior cerebral artery is affected, the person may experience vision loss and difficulty recognizing objects.

      Lacunar strokes are a type of stroke that are strongly associated with hypertension. They typically present with isolated weakness or loss of sensation on one side of the body, or weakness with difficulty coordinating movements. They often occur in the basal ganglia, thalamus, or internal capsule.

    • This question is part of the following fields:

      • Neurological System
      163
      Seconds
  • Question 7 - A 50-year-old man with multiple sclerosis is prescribed baclofen by your consultant to...

    Correct

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

      What is the mechanism of action of baclofen?

      Your Answer: GABA receptor agonist

      Explanation:

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

    • This question is part of the following fields:

      • Neurological System
      28.8
      Seconds
  • Question 8 - As a 6th year medical student observing a neurosurgeon, I am witnessing the...

    Incorrect

    • As a 6th year medical student observing a neurosurgeon, I am witnessing the removal of a cerebellar astrocytoma in a 9-year-old girl. If the cancer were to spread to the occipital lobes, which structure would it have to breach?

      Your Answer: Falx cerebelli

      Correct Answer: Tentorium cerebelli

      Explanation:

      The tentorium cerebelli, a fold of the dura mater, acts as a barrier between the cerebellum and brainstem and the occipital lobes. Therefore, for the boy’s cancer to reach the occipital lobes, it would need to breach this fold.

      The filum terminale is a strand of the pia mater that extends from the conus medullaris.

      The sellar diaphragm is a small dural fold that covers the pituitary gland.

      The falx cerebelli is a small dural fold that partially separates the cerebral hemispheres.

      The falx cerebri is a dural fold that separates the cerebral hemispheres.

      The Three Layers of Meninges

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

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

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

    • This question is part of the following fields:

      • Neurological System
      31.7
      Seconds
  • Question 9 - A 42-year-old man is stabbed in the back. During examination, it is observed...

    Incorrect

    • A 42-year-old man is stabbed in the back. During examination, it is observed that he has a total absence of sensation at the nipple level. Which specific dermatome is accountable for this?

      Your Answer: T3

      Correct Answer: T4

      Explanation:

      The dermatome for T4 can be found at the nipples, which can be remembered as Teat Pore.

      Understanding Dermatomes: Major Landmarks and Mnemonics

      Dermatomes are areas of skin that are innervated by a single spinal nerve. Understanding dermatomes is important in diagnosing and treating various neurological conditions. The major dermatome landmarks are listed in the table above, along with helpful mnemonics to aid in memorization.

      Starting at the top of the body, the C2 dermatome covers the posterior half of the skull, resembling a cap. Moving down to C3, it covers the area of a high turtleneck shirt, while C4 covers the area of a low-collar shirt. The C5 dermatome runs along the ventral axial line of the upper limb, while C6 covers the thumb and index finger. To remember this, make a 6 with your left hand by touching the tip of your thumb and index finger together.

      Moving down to the middle finger and palm of the hand, the C7 dermatome is located here, while the C8 dermatome covers the ring and little finger. The T4 dermatome is located at the nipples, while T5 covers the inframammary fold. The T6 dermatome is located at the xiphoid process, and T10 covers the umbilicus. To remember this, think of BellybuT-TEN.

      The L1 dermatome covers the inguinal ligament, while L4 covers the knee caps. To remember this, think of being Down on aLL fours with the number 4 representing the knee caps. The L5 dermatome covers the big toe and dorsum of the foot (except the lateral aspect), while the S1 dermatome covers the lateral foot and small toe. To remember this, think of S1 as the smallest one. Finally, the S2 and S3 dermatomes cover the genitalia.

      Understanding dermatomes and their landmarks can aid in diagnosing and treating various neurological conditions. The mnemonics provided can help in memorizing these important landmarks.

    • This question is part of the following fields:

      • Neurological System
      86.8
      Seconds
  • Question 10 - A 67-year-old man comes to the hospital with a sudden onset of vision...

    Incorrect

    • A 67-year-old man comes to the hospital with a sudden onset of vision changes while watching TV. He has a history of hypertension and atrial fibrillation but admits to poor adherence to his medication regimen.

      During the eye exam, there are no apparent changes in the sclera. The visual field test shows a homonymous quadrantanopia with a loss of the left inferior aspect of vision. All eye movements are normal, pupils are equal and reactive to light, and fundoscopy appears normal.

      Based on these findings, where is the most likely location of the lesion in this patient?

      Your Answer: Right superior optic radiations in the parietal lobe

      Correct Answer: Left superior optic radiations in the parietal lobe

      Explanation:

      The patient is likely experiencing an inferior homonymous quadrantanopia due to a lesion in the superior optic radiations of the parietal lobe. This type of visual field defect occurs when there is damage to the opposite side of the brain from where the defect is present. Lesions in the inferior temporal lobe result in superior defects, while lesions in the superior parietal lobe result in inferior defects. It is important to note that the left superior optic radiations are located in the parietal lobe, not the temporal lobe, and therefore a lesion in the left superior optic radiations in the temporal lobe is not possible. Additionally, a lesion in the right inferior optic radiations in the parietal lobe or the right superior optic radiations in the temporal lobe would not cause a defect on the patient’s right side, as the lesion must be on the opposite side of the brain from the defect.

      Understanding Visual Field Defects

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

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

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

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

    • This question is part of the following fields:

      • Neurological System
      16
      Seconds

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