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  • Question 1 - The initial root of the brachial plexus typically emerges at what level? ...

    Correct

    • The initial root of the brachial plexus typically emerges at what level?

      Your Answer: C5

      Explanation:

      The nerve plexus originates from the level of C5 and consists of 5 primary nerve roots. It ultimately gives rise to a total of 15 nerves, including the major nerves that innervate the upper limb such as the axillary, radial, ulnar, musculocutaneous, and median nerves.

      Understanding the Brachial Plexus and Cutaneous Sensation of the Upper Limb

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

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

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

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

    • This question is part of the following fields:

      • Neurological System
      15
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  • Question 2 - A 58-year-old woman with a history of lung cancer experiences malignant spinal cord...

    Correct

    • A 58-year-old woman with a history of lung cancer experiences malignant spinal cord compression, resulting in bilateral compression on the ventral horns of her spinal cord. What are the potential neurological symptoms that may present in this patient?

      Your Answer: Paresis below the level of the lesion

      Explanation:

      Anterior cord lesions result in motor deficits because the ventral (anterior) horns of the spinal cord contain motor neuron cell bodies. These motor neurons run along the ventral corticospinal tract, which is responsible for voluntary bodily movement. Therefore, compression of the ventral part of the spinal cord by a tumor may cause paresis or paralysis below the level of the lesion. However, pain and temperature loss below the level of the lesion would be from compression of the spinothalamic tract, which runs more laterally in the spinal cord. Proprioception loss below the level of the lesion is also incorrect as it is neurologically tied to the dorsal-column medial-lemniscus tract, which runs dorsally. Additionally, spinal lesions affect sensory experience below the level of the lesion rather than above.

      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.

    • This question is part of the following fields:

      • Neurological System
      28.9
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  • Question 3 - Which muscle is not innervated by the trigeminal nerve? ...

    Correct

    • Which muscle is not innervated by the trigeminal nerve?

      Your Answer: Stylohyoid

      Explanation:

      The facial nerve provides innervation to the stylohyoid.

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

    • This question is part of the following fields:

      • Neurological System
      16.8
      Seconds
  • Question 4 - A 67-year-old man presents to his doctor with a one month history of...

    Incorrect

    • A 67-year-old man presents to his doctor with a one month history of speech difficulty. He reports experiencing pronunciation difficulties which he has never had before. However, his reading ability remains intact.

      During the consultation, the doctor observes occasional pronunciation errors when the patient is asked to repeat certain words. Despite this, the patient is able to construct meaningful sentences with minimal grammatical errors. He also demonstrates the ability to comprehend questions and respond appropriately.

      The doctor performs a cranial nerve examination which yields normal results.

      Which area of the brain may be affected by a lesion to cause this presentation?

      Your Answer: Broca's area

      Correct Answer: Arcuate fasciculus

      Explanation:

      Conduction dysphasia is characterized by fluent speech but poor repetition ability, with relatively intact comprehension. This is a typical manifestation of conduction aphasia, which is caused by damage to the arcuate fasciculus connecting Broca’s and Wernicke’s areas. Patients with this condition may be aware of their pronunciation difficulties and may become frustrated when attempting to correct themselves.

      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
      36.3
      Seconds
  • Question 5 - A 32-year-old man is rushed to the emergency department after collapsing from a...

    Correct

    • A 32-year-old man is rushed to the emergency department after collapsing from a violent attack in an alleyway. He was struck with a wrench when he refused to hand over his phone. Upon arrival, his Glasgow coma scale was 11 (Eyes; 3, Voice; 4, Motor; 4). An urgent CT-scan revealed a large epidural hematoma on the left side of his brain. He was immediately referred to neurosurgery.

      The most likely cause of the epidural hematoma is a rupture of which artery that passes through a certain structure before supplying the dura mater?

      Your Answer: Foramen spinosum

      Explanation:

      The middle meningeal artery supplies the dura mater and passes through the foramen spinosum. Other foramina and the structures that pass through them include the vertebral arteries through the foramen magnum, the posterior auricular artery (stylomastoid branch) through the stylomastoid foramen, and the accessory meningeal artery through the foramen ovale.

      The Middle Meningeal Artery: Anatomy and Clinical Significance

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

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

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

    • This question is part of the following fields:

      • Neurological System
      43
      Seconds
  • Question 6 - Which option is false regarding the trigeminal nerve? ...

    Incorrect

    • Which option is false regarding the trigeminal nerve?

      Your Answer: The nerve originates at the pons

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

      Explanation:

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

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

    • This question is part of the following fields:

      • Neurological System
      25
      Seconds
  • Question 7 - A 45-year-old female comes to see you with concerns about her vision. She...

    Correct

    • A 45-year-old female comes to see you with concerns about her vision. She reports experiencing blurred vision for the past few weeks, which she first noticed while descending stairs. She now sees two images when looking at one object, with one image appearing below and tilted away from the other. She denies any changes in her taste or hearing. Upon examination, her pupils are equal and reactive to light, and there is no evidence of nystagmus. Based on these findings, which cranial nerve is most likely affected?

      Your Answer: Trochlea

      Explanation:

      Torsional diplopia is a symptom that is commonly associated with a fourth nerve palsy, also known as a trochlear nerve palsy. This condition is characterized by the perception of tilted objects, as the affected individual sees one object as two images, with one image appearing slightly tilted in relation to the other. Fourth nerve palsy can also cause vertical diplopia, where two images of one object are seen, with one image appearing above the other. The affected eye may be deviated upwards and rotated outwards.

      Lesions in the eighth cranial nerve, also known as the vestibulocochlear nerve, can lead to symptoms such as hearing loss, vertigo, and nystagmus.

      Sixth nerve palsy, or abducens nerve palsy, can cause horizontal diplopia, where two images of one object are seen side by side. This is due to defective abduction, which prevents the eye from moving laterally.

      Third nerve palsy, or oculomotor nerve palsy, can result in diplopia, as well as a down and out eye with a fixed, dilated pupil.

      Seventh nerve palsy, or facial nerve palsy, can cause flaccid paralysis of the upper and lower face, loss of corneal reflex, loss of taste, and hyperacusis.

      Understanding Fourth Nerve Palsy

      Fourth nerve palsy is a condition that affects the superior oblique muscle, which is responsible for depressing the eye and moving it inward. One of the main features of this condition is vertical diplopia, which is double vision that occurs when looking straight ahead. This is often noticed when reading a book or going downstairs. Another symptom is subjective tilting of objects, also known as torsional diplopia. Patients may also develop a head tilt, which they may or may not be aware of. When looking straight ahead, the affected eye appears to deviate upwards and is rotated outwards. Understanding the symptoms of fourth nerve palsy can help individuals seek appropriate treatment and management for this condition.

    • This question is part of the following fields:

      • Neurological System
      36.4
      Seconds
  • Question 8 - A 55-year-old male is seen in an outpatient neurology clinic after experiencing a...

    Incorrect

    • A 55-year-old male is seen in an outpatient neurology clinic after experiencing a stroke 3 weeks ago. He reports sudden, uncontrollable flailing movements in his right arm and leg. The movements are strong and involuntary, originating from the proximal sections of his limbs.

      What area of the brain is likely to be impacted in this scenario?

      Your Answer: Amygdala

      Correct Answer: Subthalamic nucleus of the basal ganglia

      Explanation:

      Hemiballism is a rare hyperkinetic movement disorder that can be caused by a lesion to the subthalamic nucleus of the basal ganglia. This patient is exhibiting symptoms of hemiballism, including intense, flailing movements of the limbs that originate in the proximal area of the limb. It is important to distinguish hemiballism from chorea, which originates in the distal area of the limb.

      Kluver-Bucy syndrome is associated with a lesion to the amygdala and presents with symptoms such as hypersexuality, hyperorality, hyperphagia, and visual agnosia.

      Gait ataxia, characterized by an unsteady and uncoordinated gait, is associated with midline cerebellar lesions. However, this would not account for the hyperkinetic movements seen in this patient.

      A stroke affecting the substantia nigra of the basal ganglia can cause Parkinson’s disease, which is characterized by bradykinesia, resting tremor, and shuffling gait.

      A lesion to the temporal lobe can result in Wernicke’s aphasia, which is characterized by disorderly but fluent speech due to damage to Broca’s area.

      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
      40.6
      Seconds
  • Question 9 - Can you rephrase this inquiry and adjust the age a bit while maintaining...

    Incorrect

    • Can you rephrase this inquiry and adjust the age a bit while maintaining the same paragraph format?

      Your Answer: Extensor digitorum longus

      Correct Answer: Flexor digitorum brevis

      Explanation:

      The tibial nerve supplies the flexor digitorum.

      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
      30.4
      Seconds
  • Question 10 - Sarah is a 31-year-old woman presenting with diplopia. She has a history of...

    Incorrect

    • Sarah is a 31-year-old woman presenting with diplopia. She has a history of type 1 diabetes and multiple sclerosis. Over the past 3 days, she has been experiencing double vision, particularly when looking to the right.

      Sarah denies any associated double vision when looking vertically. She has not noticed any difficulty in moving her eyelids, increased sensitivity to light, or redness in her eye.

      During examination, both eyelids display normal strength. With the left eye closed, the right eye displays a full range of movement. However, with the right eye closed, the left eye fails to adduct when looking towards the right. Nystagmus on the right eye is noted when the patient is asked to look to the right with both eyes. On convergence, both eyes can adduct towards the midline. The pupillary exam is normal with both pupils reacting appropriately to light.

      What is the underlying pathology responsible for Sarah's diplopia?

      Your Answer: Intrinsic vascular damage to the left oculomotor nerve

      Correct Answer: Lesion on the left paramedian area of the midbrain and pons

      Explanation:

      The medial longitudinal fasciculus is located in the midbrain and pons and is responsible for conjugate gaze. Lesions in this area can cause internuclear ophthalmoplegia, which affects adduction but not convergence. A 3rd nerve palsy affects multiple muscles and can involve the pupil, while abducens nerve lesions affect abduction. Lesions in the midbrain and superior pons contain the centres of vision.

      Understanding Internuclear Ophthalmoplegia

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

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

    • This question is part of the following fields:

      • Neurological System
      85.3
      Seconds

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