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Question 1
Correct
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A 63-year-old female is one day postoperative following a total thyroidectomy for thyroid cancer. The surgery was successful with no unexpected blood loss. However, the patient has observed that her voice is hoarse and soft.
During examination, the patient seems comfortable while resting and can maintain her airway without any problem. The surgical site looks normal, and there is no development of haematoma. On auscultation, her breath sounds are clear and equal in all lung fields.
What is the most likely structure to have been injured during the surgery?Your Answer: Right recurrent laryngeal nerve
Explanation:The right recurrent laryngeal nerve is at a higher risk of injury during neck surgery due to its diagonal origin under the subclavian artery. In contrast, the left recurrent laryngeal nerve is less vulnerable to injury. It is important to note that injury to the left or right subclavian artery would typically result in shock symptoms rather than hoarseness, and there were no indications of significant blood loss during the surgery.
The Recurrent Laryngeal Nerve: Anatomy and Function
The recurrent laryngeal nerve is a branch of the vagus nerve that plays a crucial role in the innervation of the larynx. It has a complex path that differs slightly between the left and right sides of the body. On the right side, it arises anterior to the subclavian artery and ascends obliquely next to the trachea, behind the common carotid artery. It may be located either anterior or posterior to the inferior thyroid artery. On the left side, it arises left to the arch of the aorta, winds below the aorta, and ascends along the side of the trachea.
Both branches pass in a groove between the trachea and oesophagus before entering the larynx behind the articulation between the thyroid cartilage and cricoid. Once inside the larynx, the recurrent laryngeal nerve is distributed to the intrinsic larynx muscles (excluding cricothyroid). It also branches to the cardiac plexus and the mucous membrane and muscular coat of the oesophagus and trachea.
Damage to the recurrent laryngeal nerve, such as during thyroid surgery, can result in hoarseness. Therefore, understanding the anatomy and function of this nerve is crucial for medical professionals who perform procedures in the neck and throat area.
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This question is part of the following fields:
- Neurological System
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Question 2
Correct
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A 35-year-old man suffers a neck stabbing that results in injury to his inferior brachial plexus trunk. Which modality is most likely to remain unaffected?
Your Answer: Initiating abduction of the shoulder
Explanation:The ulnar nerve is primarily affected in cases of injury to the inferior trunk of the brachial plexus, which is composed mainly of nerve roots C8 and T1. The medial cord, which is part of the inferior trunk, also contributes to the median nerve, resulting in some degree of grip impairment. However, such injuries are rare.
Understanding the Brachial Plexus and Cutaneous Sensation of the Upper Limb
The brachial plexus is a network of nerves that originates from the anterior rami of C5 to T1. It is divided into five sections: roots, trunks, divisions, cords, and branches. To remember these sections, a common mnemonic used is Real Teenagers Drink Cold Beer.
The roots of the brachial plexus are located in the posterior triangle and pass between the scalenus anterior and medius muscles. The trunks are located posterior to the middle third of the clavicle, with the upper and middle trunks related superiorly to the subclavian artery. The lower trunk passes over the first rib posterior to the subclavian artery. The divisions of the brachial plexus are located at the apex of the axilla, while the cords are related to the axillary artery.
The branches of the brachial plexus provide cutaneous sensation to the upper limb. This includes the radial nerve, which provides sensation to the posterior arm, forearm, and hand; the median nerve, which provides sensation to the palmar aspect of the thumb, index, middle, and half of the ring finger; and the ulnar nerve, which provides sensation to the palmar and dorsal aspects of the fifth finger and half of the ring finger.
Understanding the brachial plexus and its branches is important in diagnosing and treating conditions that affect the upper limb, such as nerve injuries and neuropathies. It also helps in understanding the cutaneous sensation of the upper limb and how it relates to the different nerves of the brachial plexus.
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This question is part of the following fields:
- Neurological System
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Question 3
Incorrect
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A 67-year-old man is brought to the emergency department by his daughter with an onset of confusion, since waking up in the morning. She tells you that her father is not making any sense when he talks. There is no history of cognitive impairment or recent head injury. His past medical history includes type 2 diabetes, pancreatitis and recurrent urinary tract infections.
On examination, his observations are stable. His motor and sensory examination are unremarkable. He is able to talk in full sentences but his answers are incomprehensible. He cannot repeat spoken phrases.
What is the most likely diagnosis?Your Answer: Conduction aphasia
Correct Answer: Wernicke's aphasia
Explanation:Types of Aphasia: Understanding the Different Forms of Language Impairment
Aphasia is a language disorder that affects a person’s ability to communicate effectively. There are different types of aphasia, each with its own set of symptoms and underlying causes. Wernicke’s aphasia, also known as receptive aphasia, is caused by a lesion in the superior temporal gyrus. This area is responsible for forming speech before sending it to Broca’s area. People with Wernicke’s aphasia may speak fluently, but their sentences often make no sense, and they may use word substitutions and neologisms. Comprehension is impaired.
Broca’s aphasia, also known as expressive aphasia, is caused by a lesion in the inferior frontal gyrus. This area is responsible for speech production. People with Broca’s aphasia may speak in a non-fluent, labored, and halting manner. Repetition is impaired, but comprehension is normal.
Conduction aphasia is caused by a stroke affecting the arcuate fasciculus, the connection between Wernicke’s and Broca’s area. People with conduction aphasia may speak fluently, but their repetition is poor. They are aware of the errors they are making, but comprehension is normal.
Global aphasia is caused by a large lesion affecting all three areas mentioned above, resulting in severe expressive and receptive aphasia. People with global aphasia may still be able to communicate using gestures. Understanding the different types of aphasia is important for proper diagnosis and treatment.
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This question is part of the following fields:
- Neurological System
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Question 4
Incorrect
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A 30-year-old man suffers a severe middle cranial fossa basal skull fracture. After his recovery, it is observed that he has reduced tear secretion. What is the most probable cause of this, resulting from which of the following damages?
Your Answer: Trigeminal nerve
Correct Answer: Greater petrosal nerve
Explanation:The Lacrimation Reflex
The lacrimation reflex is a response to conjunctival irritation or emotional events. When the conjunctiva is irritated, it sends signals via the ophthalmic nerve to the superior salivary center. From there, efferent signals pass via the greater petrosal nerve (parasympathetic preganglionic fibers) and the deep petrosal nerve (postganglionic sympathetic fibers) to the lacrimal apparatus. The parasympathetic fibers relay in the pterygopalatine ganglion, while the sympathetic fibers do not synapse.
This reflex is important for maintaining the health of the eye by keeping it moist and protecting it from foreign particles. It is also responsible for the tears that are shed during emotional events, such as crying. The lacrimal gland, which produces tears, is innervated by the secretomotor parasympathetic fibers from the pterygopalatine ganglion. The nasolacrimal duct, which carries tears from the eye to the nose, opens anteriorly in the inferior meatus of the nose. Overall, the lacrimal system plays a crucial role in maintaining the health and function of the eye.
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This question is part of the following fields:
- Neurological System
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Question 5
Correct
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At what age does the Moro reflex usually disappear?
Your Answer: 4-6 months
Explanation:The Moro reflex vanishes by the time the baby reaches 4 months of age.
Primitive Reflexes in Infants
Primitive reflexes are automatic movements that are present in infants from birth to a certain age. These reflexes are important for survival and development in the early stages of life. One of the most well-known primitive reflexes is the Moro reflex, which is triggered by head extension and causes the arms to first spread out and then come back together. This reflex is present from birth to around 3-4 months of age.
Another primitive reflex is the grasp reflex, which causes the fingers to flex when an object is placed in the infant’s palm. This reflex is present from birth to around 4-5 months of age and is important for the infant’s ability to grasp and hold objects.
The rooting reflex is another important primitive reflex that assists in breastfeeding. When the infant’s cheek is touched, they will turn their head towards the touch and open their mouth to suck. This reflex is present from birth to around 4 months of age.
Finally, the stepping reflex, also known as the walking reflex, is present from birth to around 2 months of age. When the infant’s feet touch a flat surface, they will make stepping movements as if they are walking. This reflex is important for the development of the infant’s leg muscles and coordination.
Overall, primitive reflexes are an important part of infant development and can provide insight into the health and functioning of the nervous system.
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This question is part of the following fields:
- Neurological System
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Question 6
Incorrect
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A 27-year-old male patient has a pelvic chondrosarcoma excision surgery, resulting in the sacrifice of the obturator nerve. Which muscle is the least likely to be affected by this procedure?
Your Answer: Gracilis
Correct Answer: Sartorius
Explanation:The accessory obturator nerve supplies the pectineus muscle in the population.
Anatomy of the Obturator Nerve
The obturator nerve is formed by branches from the ventral divisions of L2, L3, and L4 nerve roots, with L3 being the main contributor. It descends vertically in the posterior part of the psoas major muscle and emerges from its medial border at the lateral margin of the sacrum. After crossing the sacroiliac joint, it enters the lesser pelvis and descends on the obturator internus muscle to enter the obturator groove. The nerve lies lateral to the internal iliac vessels and ureter in the lesser pelvis and is joined by the obturator vessels lateral to the ovary or ductus deferens.
The obturator nerve supplies the muscles of the medial compartment of the thigh, including the external obturator, adductor longus, adductor brevis, adductor magnus (except for the lower part supplied by the sciatic nerve), and gracilis. The cutaneous branch, which is often absent, supplies the skin and fascia of the distal two-thirds of the medial aspect of the thigh when present.
The obturator canal connects the pelvis and thigh and contains the obturator artery, vein, and nerve, which divides into anterior and posterior branches. Understanding the anatomy of the obturator nerve is important in diagnosing and treating conditions that affect the medial thigh and pelvic region.
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This question is part of the following fields:
- Neurological System
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Question 7
Incorrect
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A 75-year-old male comes to the neurology clinic accompanied by his wife. He reports experiencing severe headaches for the past two months and losing a significant amount of weight in the last month. His wife adds that he constantly complains of feeling hot, despite trying to cool down. The patient has a history of lung cancer. The physician suspects a hypothalamic lesion may be responsible for his inability to regulate body temperature and orders an MRI of the brain.
What is the most likely nucleus in the hypothalamus where the lesion is located?Your Answer: Paraventricular nucleus
Correct Answer: Posterior nucleus
Explanation:Poikilothermia can be caused by lesions in the posterior nucleus of the hypothalamus, which is likely the case for this patient with lung cancer. Diabetes insipidus can result from a lesion in the supraoptic or paraventricular nucleus, which produce antidiuretic hormone. Anorexia can be caused by a lesion in the lateral nucleus, while hyperphagia can result from a lesion in the ventromedial nucleus, which is responsible for regulating satiety.
The hypothalamus is a part of the brain that plays a crucial role in maintaining the body’s internal balance, or homeostasis. It is located in the diencephalon and is responsible for regulating various bodily functions. The hypothalamus is composed of several nuclei, each with its own specific function. The anterior nucleus, for example, is involved in cooling the body by stimulating the parasympathetic nervous system. The lateral nucleus, on the other hand, is responsible for stimulating appetite, while lesions in this area can lead to anorexia. The posterior nucleus is involved in heating the body and stimulating the sympathetic nervous system, and damage to this area can result in poikilothermia. Other nuclei include the septal nucleus, which regulates sexual desire, the suprachiasmatic nucleus, which regulates circadian rhythm, and the ventromedial nucleus, which is responsible for satiety. Lesions in the paraventricular nucleus can lead to diabetes insipidus, while lesions in the dorsomedial nucleus can result in savage behavior.
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This question is part of the following fields:
- Neurological System
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Question 8
Incorrect
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Which one of the following structures is not transmitted by the jugular foramen?
Your Answer: Accessory nerve
Correct Answer: Hypoglossal nerve
Explanation:The jugular foramen contains three compartments. The anterior compartment transmits the inferior petrosal sinus, the middle compartment transmits cranial nerves IX, X, and XI, and the posterior compartment transmits the sigmoid sinus and some meningeal branches from the occipital and ascending pharyngeal arteries.
Foramina of the Base of the Skull
The base of the skull contains several openings called foramina, which allow for the passage of nerves, blood vessels, and other structures. The foramen ovale, located in the sphenoid bone, contains the mandibular nerve, otic ganglion, accessory meningeal artery, and emissary veins. The foramen spinosum, also in the sphenoid bone, contains the middle meningeal artery and meningeal branch of the mandibular nerve. The foramen rotundum, also in the sphenoid bone, contains the maxillary nerve.
The foramen lacerum, located in the sphenoid bone, is initially occluded by a cartilaginous plug and contains the internal carotid artery, nerve and artery of the pterygoid canal, and the base of the medial pterygoid plate. The jugular foramen, located in the temporal bone, contains the inferior petrosal sinus, glossopharyngeal, vagus, and accessory nerves, sigmoid sinus, and meningeal branches from the occipital and ascending pharyngeal arteries.
The foramen magnum, located in the occipital bone, contains the anterior and posterior spinal arteries, vertebral arteries, and medulla oblongata. The stylomastoid foramen, located in the temporal bone, contains the stylomastoid artery and facial nerve. Finally, the superior orbital fissure, located in the sphenoid bone, contains the oculomotor nerve, recurrent meningeal artery, trochlear nerve, lacrimal, frontal, and nasociliary branches of the ophthalmic nerve, and abducent nerve.
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This question is part of the following fields:
- Neurological System
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Question 9
Incorrect
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A 75-year-old man presents to the ophthalmology clinic with complaints of gradually worsening peripheral vision and a progressive headache that is worse at night. During the cranial nerve exam, a superior homonymous quadrantanopia is observed, but eye movements are intact. The rest of the cranial nerve and neurological examinations are unremarkable.
Which region of the brain is likely affected by the lesion causing these symptoms?Your Answer: Superior optic chiasm
Correct Answer: Temporal lobe
Explanation:Superior homonymous quadrantanopias occur when there are lesions in the inferior optic radiations located in the temporal lobe. The location of the lesion can be determined by analyzing the pattern of the visual field defect. Lesions in front of the optic chiasm cause incongruous defects, while lesions at the optic chiasm cause bitemporal/binasal hemianopias. Lesions behind the optic chiasm result in homonymous hemianopias, such as the superior homonymous quadrantanopia in this case. The optic radiations carry nerve signals from the optic chiasm to the occipital lobe. Lesions in the inferior aspect of the optic radiation cause superior visual field defects, while lesions in the superior aspect of the optic radiation cause inferior visual field defects. Therefore, the lesion causing the superior homonymous quadrantanopia in this woman must be located in the inferior aspect of the optic radiation in the temporal lobe. Lesions compressing the lateral aspect of the optic chiasm cause nasal/binasal visual field defects, while lesions to the optic nerve before the optic chiasm result in an incongruous homonymous hemianopia affecting the same eye. Parietal lobe lesions can cause inferior homonymous quadrantanopias, but not superior homonymous quadrantanopias. Compression of the superior optic chiasm causes bitemporal hemianopias, not homonymous hemianopias.
Understanding Visual Field Defects
Visual field defects can occur due to various reasons, including lesions in the optic tract, optic radiation, or occipital cortex. A left homonymous hemianopia indicates a visual field defect to the left, which is caused by a lesion in the right optic tract. On the other hand, homonymous quadrantanopias can be categorized into PITS (Parietal-Inferior, Temporal-Superior) and can be caused by lesions in the inferior or superior optic radiations in the temporal or parietal lobes.
When it comes to congruous and incongruous defects, the former refers to complete or symmetrical visual field loss, while the latter indicates incomplete or asymmetric visual field loss. Incongruous defects are caused by optic tract lesions, while congruous defects are caused by optic radiation or occipital cortex lesions. In cases where there is macula sparing, it is indicative of a lesion in the occipital cortex.
Bitemporal hemianopia, on the other hand, is caused by a lesion in the optic chiasm. The type of defect can indicate the location of the compression, with an upper quadrant defect being more common in inferior chiasmal compression, such as a pituitary tumor, and a lower quadrant defect being more common in superior chiasmal compression, such as a craniopharyngioma.
Understanding visual field defects is crucial in diagnosing and treating various neurological conditions. By identifying the type and location of the defect, healthcare professionals can provide appropriate interventions to improve the patient’s quality of life.
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This question is part of the following fields:
- Neurological System
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Question 10
Correct
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A 14-year-old boy presents to the general practitioner with complaints of deteriorating balance and vision. His mother accompanies him to the appointment. Upon examination, the boy has a high arched palate and absent ankle tendon reflexes. The general practitioner refers the boy to a specialist who conducts genomic studies. The results reveal a trinucleotide repeat of GAA on chromosome 9.
What is the probable diagnosis?Your Answer: Friedreich's ataxia
Explanation:Friedreich’s ataxia is caused by a GAA trinucleotide repeat resulting from a mutation in the FXN gene located on chromosome 9.
Understanding Friedreich’s Ataxia
Friedreich’s ataxia is a common hereditary ataxia that usually affects individuals at an early age. It is caused by a trinucleotide repeat disorder that affects the X25 gene on chromosome 9. Unlike other trinucleotide repeat disorders, Friedreich’s ataxia does not show the phenomenon of anticipation. The condition is characterised by gait ataxia and kyphoscoliosis, which are the most common presenting features. Other neurological features include absent ankle jerks/extensor plantars, optic atrophy, and spinocerebellar tract degeneration. In addition, hypertrophic obstructive cardiomyopathy is the most common cause of death in individuals with Friedreich’s ataxia, while diabetes mellitus affects 10-20% of patients. A high-arched palate is also a common feature.
Overall, understanding Friedreich’s ataxia is important for early diagnosis and management of the condition. With proper care and support, individuals with Friedreich’s ataxia can lead fulfilling lives despite the challenges posed by the condition.
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This question is part of the following fields:
- Neurological System
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Question 11
Incorrect
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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: Lesion of the left abducens 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.
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This question is part of the following fields:
- Neurological System
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Question 12
Incorrect
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Sarah, a 65-year-old woman, undergoes a routine MRI scan of her head due to persistent headaches. The scan reveals a small lesion situated on the right side of the cerebellum. Although Sarah does not exhibit any neurological symptoms at present, she is worried about the potential development of symptoms if the lesion is left untreated.
What part of the body is most likely to experience symptoms in Sarah's situation?Your Answer: Right side of his body
Correct Answer: Left side of his body
Explanation:If Mark has a unilateral cerebellar lesion, he is likely to experience symptoms on the same side of his body as the lesion, which would be the left side in this case. The signs associated with cerebellar lesions include dysdiadochokinesia & dysmetria, ataxia, nystagmus, intention tremor, slurred speech, and hypotonia, and they would be more pronounced on the affected side of the body. As the lesion grows and affects both hemispheres, both sides of the body may become affected, but initially, left-sided symptoms are more likely. It is unlikely that Mark would develop right-sided symptoms, as this would be contralateral to the lesion. The location of the lesion within each hemisphere determines whether the upper or lower parts of the body are more affected.
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 ataxia telangiectasia, neoplastic growths like cerebellar haemangioma, strokes, alcohol use, multiple sclerosis, hypothyroidism, and certain medications or toxins like phenytoin or lead poisoning. In some cases, cerebellar syndrome may be a paraneoplastic condition, meaning it is a secondary effect of an underlying cancer like lung cancer. It is important to identify the underlying cause of cerebellar syndrome in order to provide appropriate treatment and management.
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This question is part of the following fields:
- Neurological System
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Question 13
Incorrect
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A young man presents with loss of fine-touch and vibration sensation on the right side of his body. He also shows a loss of proprioception on the same side. What anatomical structure is likely to have been damaged?
Your Answer: Right spinocerebellar tract
Correct Answer: Right dorsal column
Explanation:Spinal cord lesions can affect different tracts and result in various clinical symptoms. Motor lesions, such as amyotrophic lateral sclerosis and poliomyelitis, affect either upper or lower motor neurons, resulting in spastic paresis or lower motor neuron signs. Combined motor and sensory lesions, such as Brown-Sequard syndrome, subacute combined degeneration of the spinal cord, Friedrich’s ataxia, anterior spinal artery occlusion, and syringomyelia, affect multiple tracts and result in a combination of spastic paresis, loss of proprioception and vibration sensation, limb ataxia, and loss of pain and temperature sensation. Multiple sclerosis can involve asymmetrical and varying spinal tracts and result in a combination of motor, sensory, and ataxia symptoms. Sensory lesions, such as neurosyphilis, affect the dorsal columns and result in loss of proprioception and vibration sensation.
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This question is part of the following fields:
- Neurological System
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Question 14
Incorrect
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A senior citizen presents to the emergency department with recent onset of vision loss. A stroke is suspected, and an MRI is conducted. The scan reveals an acute ischemic infarct in the thalamus.
Which specific nucleus of the thalamus has been impacted by this infarct?Your Answer: Ventro-posterior lateral nucleus
Correct Answer: Lateral geniculate nucleus
Explanation:Visual impairment can occur when there is damage to the lateral geniculate nucleus, which is responsible for carrying visual information from the optic tracts to the occipital lobe via the optic radiations. This can result in a loss of vision in the contralateral visual field, often with preservation of central vision. The medial geniculate nucleus is responsible for processing auditory information, while the ventral anterior nucleus and ventro-posterior medial and lateral nuclei relay information related to motor function and somatosensation, respectively.
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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This question is part of the following fields:
- Neurological System
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Question 15
Correct
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A 28-year-old man has just begun taking haloperidol and is worried about developing Parkinsonism due to some motor symptoms he has been experiencing. What sign during the examination would suggest a different diagnosis?
Your Answer: Babinski's sign
Explanation:Extrapyramidal symptoms such as akathisia, bradykinesia, dystonia, and tardive dyskinesia are commonly observed in Parkinsonian conditions. Babinski’s sign, which is the upward movement of the big toe upon stimulation of the sole of the foot, is normal in infants but may indicate upper motor neuron dysfunction in older individuals. The presence of these symptoms suggests a possible diagnosis of Parkinsonism, as discussed in the case.
Parkinsonism is a condition that can be caused by various factors. One of the most common causes is Parkinson’s disease, which is a degenerative disorder of the nervous system. Other causes include drug-induced Parkinsonism, which can occur as a side effect of certain medications such as antipsychotics and metoclopramide. Progressive supranuclear palsy, multiple system atrophy, Wilson’s disease, post-encephalitis, dementia pugilistica, and exposure to toxins such as carbon monoxide and MPTP can also lead to Parkinsonism.
It is important to note that not all medications that can cause Parkinsonism have the same effect. For example, domperidone does not cross the blood-brain barrier and therefore does not cause extrapyramidal side-effects. Parkinsonism can have a significant impact on a person’s quality of life, and it is important to identify the underlying cause in order to provide appropriate treatment and management. With proper care and management, individuals with Parkinsonism can lead fulfilling lives.
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This question is part of the following fields:
- Neurological System
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Question 16
Correct
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A 75-year-old man with a history of type 2 diabetes mellitus comes to the Emergency Department complaining of diplopia and ophthalmoplegia. Upon physical examination, it is found that his pupils are equal and reactive to light with an intact accommodation reflex. However, his right eye is abducted and looking downwards, while the rest of the examination is normal.
Which cranial nerve is impacted in this case?Your Answer: Cranial nerve III
Explanation:A patient with a ‘down and out’ eye is likely experiencing a lesion to cranial nerve III, also known as the oculomotor nerve. This nerve controls all extraocular muscles except for the lateral rectus and superior oblique muscles, and a lesion can result in unopposed action of these muscles, causing the ‘down and out’ gaze. Possible causes of cranial nerve III palsy include a posterior communicating artery aneurysm or diabetic ophthalmoplegia. In this case, the patient’s history of type 2 diabetes mellitus and absence of pupillary dilation suggest that diabetes is the more likely cause. Lesions to other cranial nerves, such as II, IV, V, or VI, would present with different symptoms.
Cranial nerves are a set of 12 nerves that emerge from the brain and control various functions of the head and neck. Each nerve has a specific function, such as smell, sight, eye movement, facial sensation, and tongue movement. Some nerves are sensory, some are motor, and some are both. A useful mnemonic to remember the order of the nerves is Some Say Marry Money But My Brother Says Big Brains Matter Most, with S representing sensory, M representing motor, and B representing both.
In addition to their specific functions, cranial nerves also play a role in various reflexes. These reflexes involve an afferent limb, which carries sensory information to the brain, and an efferent limb, which carries motor information from the brain to the muscles. Examples of cranial nerve reflexes include the corneal reflex, jaw jerk, gag reflex, carotid sinus reflex, pupillary light reflex, and lacrimation reflex. Understanding the functions and reflexes of the cranial nerves is important in diagnosing and treating neurological disorders.
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This question is part of the following fields:
- Neurological System
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Question 17
Incorrect
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A 20-year-old man is admitted to the emergency department after being stabbed in the back. The knife has penetrated his spinal column at a perpendicular angle, causing damage to the termination of his spinal cord.
Which spinal level has been affected by the knife's penetration?Your Answer: L3
Correct Answer: L1
Explanation:In adults, the level of L1 is where the spinal cord usually ends.
Lumbar Puncture Procedure
Lumbar puncture is a medical procedure that involves obtaining cerebrospinal fluid. In adults, the procedure is typically performed at the L3/L4 or L4/5 interspace, which is located below the spinal cord’s terminates at L1.
During the procedure, the needle passes through several layers. First, it penetrates the supraspinous ligament, which connects the tips of spinous processes. Then, it passes through the interspinous ligaments between adjacent borders of spinous processes. Next, the needle penetrates the ligamentum flavum, which may cause a give. Finally, the needle passes through the dura mater into the subarachnoid space, which is marked by a second give. At this point, clear cerebrospinal fluid should be obtained.
Overall, the lumbar puncture procedure is a complex process that requires careful attention to detail. By following the proper steps and guidelines, medical professionals can obtain cerebrospinal fluid safely and effectively.
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This question is part of the following fields:
- Neurological System
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Question 18
Incorrect
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A 68-year-old male comes to the emergency department with hemiparesis. During your conversation with him, you discover that his speech is fluent but his repetition is poor. He is conscious of his inability to repeat words accurately but persists in trying. You suspect that a stroke may be the cause of this condition.
Which region of the brain has been impacted by the stroke?Your Answer: Superior temporal gyrus
Correct Answer: Arcuate fasciculus
Explanation:The patient is exhibiting symptoms of conduction aphasia, which is typically caused by a stroke that affects the arcuate fasciculus.
If the lesion is in the parietal lobe, the patient may experience sensory inattention and inferior homonymous quadrantanopia.
Lesions in the inferior frontal gyrus can cause speech to become non-fluent, labored, and halting.
Occipital lobe lesions can result in visual changes.
If the lesion is in the superior temporal gyrus, the patient may produce sentences that don’t make sense, use word substitution, and create neologisms, but their speech will still be fluent.
Types of Aphasia: Understanding the Different Forms of Language Impairment
Aphasia is a language disorder that affects a person’s ability to communicate effectively. There are different types of aphasia, each with its own set of symptoms and underlying causes. Wernicke’s aphasia, also known as receptive aphasia, is caused by a lesion in the superior temporal gyrus. This area is responsible for forming speech before sending it to Broca’s area. People with Wernicke’s aphasia may speak fluently, but their sentences often make no sense, and they may use word substitutions and neologisms. Comprehension is impaired.
Broca’s aphasia, also known as expressive aphasia, is caused by a lesion in the inferior frontal gyrus. This area is responsible for speech production. People with Broca’s aphasia may speak in a non-fluent, labored, and halting manner. Repetition is impaired, but comprehension is normal.
Conduction aphasia is caused by a stroke affecting the arcuate fasciculus, the connection between Wernicke’s and Broca’s area. People with conduction aphasia may speak fluently, but their repetition is poor. They are aware of the errors they are making, but comprehension is normal.
Global aphasia is caused by a large lesion affecting all three areas mentioned above, resulting in severe expressive and receptive aphasia. People with global aphasia may still be able to communicate using gestures. Understanding the different types of aphasia is important for proper diagnosis and treatment.
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This question is part of the following fields:
- Neurological System
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Question 19
Incorrect
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A 23-year-old man is in a physical altercation and suffers a cut on the back of his wrist. Upon examination in the ER, it is discovered that the laceration runs horizontally over the area of the extensor retinaculum, which remains undamaged. Which of the following structures is the least probable to have been harmed in this situation?
Your Answer: Superficial branch of the radial nerve
Correct Answer: Tendon of extensor indicis
Explanation:The extensor retinaculum starts its attachment to the radius near the styloid and then moves diagonally and downwards to wrap around the ulnar styloid without attaching to it. As a result, the extensor tendons are situated beneath the extensor retinaculum and are less prone to injury compared to the superficial structures.
The Extensor Retinaculum and its Related Structures
The extensor retinaculum is a thick layer of deep fascia that runs across the back of the wrist, holding the long extensor tendons in place. It attaches to the pisiform and triquetral bones medially and the end of the radius laterally. The retinaculum has six compartments that contain the extensor muscle tendons, each with its own synovial sheath.
Several structures are related to the extensor retinaculum. Superficial to the retinaculum are the basilic and cephalic veins, the dorsal cutaneous branch of the ulnar nerve, and the superficial branch of the radial nerve. Deep to the retinaculum are the tendons of the extensor carpi ulnaris, extensor digiti minimi, extensor digitorum, extensor indicis, extensor pollicis longus, extensor carpi radialis longus, extensor carpi radialis brevis, abductor pollicis longus, and extensor pollicis brevis.
The radial artery also passes between the lateral collateral ligament of the wrist joint and the tendons of the abductor pollicis longus and extensor pollicis brevis. Understanding the topography of these structures is important for diagnosing and treating wrist injuries and conditions.
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This question is part of the following fields:
- Neurological System
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Question 20
Incorrect
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Mary, a 65-year-old female, arrives at the emergency department after experiencing a stroke. She has decreased sensation and mobility in her left upper and lower extremities.
During the examination, the emergency department physician conducts a comprehensive neurological assessment of Mary's upper and lower limbs. Among the various indications, the doctor observes hyperreflexia of the left ankle reflex.
Which nerve roots are responsible for this reflex?Your Answer: S2, S3
Correct Answer: S1, S2
Explanation:The ankle reflex is a test that checks the function of the S1 and S2 nerve roots by tapping the Achilles tendon with a tendon hammer. This reflex is often delayed in individuals with L5 and S1 disk prolapses.
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This question is part of the following fields:
- Neurological System
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Question 21
Correct
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An 80-year-old woman comes to the emergency department with a painless visual disturbance that started 2 hours ago. She has a medical history of hypertension and dyslipidemia.
During the examination, there is no facial asymmetry, and the patient appears comfortable. The visual field test shows homonymous hemianopia on the right side, and automated perimetry indicates macular sparing. The patient is unable to name familiar objects, such as a pen or a spoon.
Which artery is most likely to have been occluded?Your Answer: Posterior cerebral artery
Explanation:The correct answer is the posterior cerebral artery. When a lesion occurs in the posterior cerebral artery, it can result in contralateral homonymous hemianopia with macular sparing and visual agnosia. This is because the visual cortex is supplied by the posterior cerebral artery, which is responsible for the patient’s symptoms. The macula is usually spared because the posterior pole of the occipital cortex, which processes visual signals from the macula, receives collateral flow from the middle cerebral artery.
On the other hand, lesions in the anterior cerebral artery, which supplies the frontal cortex, can cause contralateral hemiparesis, altered sensorium, and aphasia. Meanwhile, occlusion of the anterior inferior cerebellar artery, which supplies the lateral pons, can lead to sudden onset vertigo, vomiting, ataxia, nystagmus, and dysarthria.
Lastly, the central retinal artery is not the correct answer as occlusion of this artery typically results in amaurosis fugax, which is a painless transient ‘descending curtain’ visual field defect, rather than homonymous hemianopia.
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.
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This question is part of the following fields:
- Neurological System
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Question 22
Incorrect
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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:
Correct 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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This question is part of the following fields:
- Neurological System
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Question 23
Incorrect
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A 6-year-old boy has been experiencing recurring headaches. During his evaluation, an MRI scan of his brain was conducted, revealing an enlargement of the lateral and third ventricles. What is the probable location of the obstruction?
Your Answer:
Correct Answer: Aqueduct of Sylvius
Explanation:The Aqueduct of Sylvius is the pathway through which the CSF moves from the 3rd to the 4th ventricle.
Cerebrospinal Fluid: Circulation and Composition
Cerebrospinal fluid (CSF) is a clear, colorless liquid that fills the space between the arachnoid mater and pia mater, covering the surface of the brain. The total volume of CSF in the brain is approximately 150ml, and it is produced by the ependymal cells in the choroid plexus or blood vessels. The majority of CSF is produced by the choroid plexus, accounting for 70% of the total volume. The remaining 30% is produced by blood vessels. The CSF is reabsorbed via the arachnoid granulations, which project into the venous sinuses.
The circulation of CSF starts from the lateral ventricles, which are connected to the third ventricle via the foramen of Munro. From the third ventricle, the CSF flows through the cerebral aqueduct (aqueduct of Sylvius) to reach the fourth ventricle via the foramina of Magendie and Luschka. The CSF then enters the subarachnoid space, where it circulates around the brain and spinal cord. Finally, the CSF is reabsorbed into the venous system via arachnoid granulations into the superior sagittal sinus.
The composition of CSF is essential for its proper functioning. The glucose level in CSF is between 50-80 mg/dl, while the protein level is between 15-40 mg/dl. Red blood cells are not present in CSF, and the white blood cell count is usually less than 3 cells/mm3. Understanding the circulation and composition of CSF is crucial for diagnosing and treating various neurological disorders.
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This question is part of the following fields:
- Neurological System
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Question 24
Incorrect
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The blood-brain barrier is not easily penetrated by which of the following substances?
Your Answer:
Correct Answer: Hydrogen ions
Explanation:The blood brain barrier restricts the passage of highly dissociated compounds.
Cerebrospinal Fluid: Circulation and Composition
Cerebrospinal fluid (CSF) is a clear, colorless liquid that fills the space between the arachnoid mater and pia mater, covering the surface of the brain. The total volume of CSF in the brain is approximately 150ml, and it is produced by the ependymal cells in the choroid plexus or blood vessels. The majority of CSF is produced by the choroid plexus, accounting for 70% of the total volume. The remaining 30% is produced by blood vessels. The CSF is reabsorbed via the arachnoid granulations, which project into the venous sinuses.
The circulation of CSF starts from the lateral ventricles, which are connected to the third ventricle via the foramen of Munro. From the third ventricle, the CSF flows through the cerebral aqueduct (aqueduct of Sylvius) to reach the fourth ventricle via the foramina of Magendie and Luschka. The CSF then enters the subarachnoid space, where it circulates around the brain and spinal cord. Finally, the CSF is reabsorbed into the venous system via arachnoid granulations into the superior sagittal sinus.
The composition of CSF is essential for its proper functioning. The glucose level in CSF is between 50-80 mg/dl, while the protein level is between 15-40 mg/dl. Red blood cells are not present in CSF, and the white blood cell count is usually less than 3 cells/mm3. Understanding the circulation and composition of CSF is crucial for diagnosing and treating various neurological disorders.
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This question is part of the following fields:
- Neurological System
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Question 25
Incorrect
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A 32-year-old woman is scheduled for an open carpal tunnel decompression. As part of the consent process, the surgeon discusses the potential risks of the procedure, including the possibility of damaging important structures.
What is accurate regarding the risks linked to open carpal tunnel decompression?Your Answer:
Correct Answer: Ulnar nerve is at a risk of damage during open carpal tunnel decompression
Explanation:The ulnar nerve is at risk of damage during open carpal tunnel decompression, making the second answer incorrect. The extensor digitorum tendon is not encountered during a carpal tunnel release as it is found dorsal to the radius and ulna. There is no known association between carpal tunnel decompression and the risk of rheumatoid arthritis or osteoporosis.
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.
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This question is part of the following fields:
- Neurological System
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Question 26
Incorrect
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A 9-year-old girl visits her GP with blisters around her mouth. The doctor diagnoses her with non-bullous impetigo and expresses concern about the possibility of an intracranial infection spreading from her face to her cranial cavity through a connected venous structure. Which venous structure is the facial vein linked to that could result in this spread?
Your Answer:
Correct Answer: Cavernous sinus
Explanation:The facial vein is connected to the ophthalmic vein, which can lead to infections spreading to the cranial cavity. However, the dual venous sinus and other external venous systems do not directly connect to the intracerebral structure.
Understanding the Cavernous Sinus
The cavernous sinuses are a pair of structures located on the sphenoid bone, running from the superior orbital fissure to the petrous temporal bone. They are situated between the pituitary fossa and the sphenoid sinus on the medial side, and the temporal lobe on the lateral side. The cavernous sinuses contain several important structures, including the oculomotor, trochlear, ophthalmic, and maxillary nerves, as well as the internal carotid artery and sympathetic plexus, and the abducens nerve.
The lateral wall components of the cavernous sinuses include the oculomotor, trochlear, ophthalmic, and maxillary nerves, while the contents of the sinus run from medial to lateral and include the internal carotid artery and sympathetic plexus, and the abducens nerve. The blood supply to the cavernous sinuses comes from the ophthalmic vein, superficial cortical veins, and basilar plexus of veins posteriorly. The cavernous sinuses drain into the internal jugular vein via the superior and inferior petrosal sinuses.
In summary, the cavernous sinuses are important structures located on the sphenoid bone that contain several vital nerves and blood vessels. Understanding their location and contents is crucial for medical professionals in diagnosing and treating various conditions that may affect these structures.
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This question is part of the following fields:
- Neurological System
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Question 27
Incorrect
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A 28-year-old woman presents to the emergency department with a suspected heroin overdose. Her Glasgow Coma Scale (GCS) score is 9, with only eye opening to trapezial squeeze and incoherent speech with inappropriate words. During her evaluation, the physician orders an arterial blood gas test.
What are the expected arterial blood gas results in this situation?Your Answer:
Correct Answer: Uncompensated respiratory acidosis
Explanation:Respiratory acidosis can occur as a result of opioid overdose due to the depression of the central nervous system, which leads to a reduction in respiratory rate. This causes an accumulation of carbon dioxide in the blood, resulting in the formation of carbonic acid and a subsequent decrease in blood pH.
It is unlikely that the respiratory acidosis in an acute opioid overdose would be compensated by the kidneys within the short time frame. Therefore, a normal arterial blood gas (ABG) result would be incorrect.
Partially compensated respiratory acidosis is also unlikely in this case, as the patient’s respiratory acidosis is unlikely to have been compensated at this stage.
However, partially compensated respiratory alkalosis may occur if the patient has an increased respiratory rate. This leads to a decrease in carbon dioxide levels in the blood, resulting in an alkalotic state. Over time, the bicarbonate levels in the blood will decrease to correct the pH.
Understanding Opioids: Types, Receptors, and Clinical Uses
Opioids are a class of chemical compounds that act upon opioid receptors located within the central nervous system (CNS). These receptors are G-protein coupled receptors that have numerous actions throughout the body. There are three clinically relevant groups of opioid receptors: mu (µ), kappa (κ), and delta (δ) receptors. Endogenous opioids, such as endorphins, dynorphins, and enkephalins, are produced by specific cells within the CNS and their actions depend on whether µ-receptors or δ-receptors and κ-receptors are their main target.
Drugs targeted at opioid receptors are the largest group of analgesic drugs and form the second and third steps of the WHO pain ladder of managing analgesia. The choice of which opioid drug to use depends on the patient’s needs and the clinical scenario. The first step of the pain ladder involves non-opioids such as paracetamol and non-steroidal anti-inflammatory drugs. The second step involves weak opioids such as codeine and tramadol, while the third step involves strong opioids such as morphine, oxycodone, methadone, and fentanyl.
The strength, routes of administration, common uses, and significant side effects of these opioid drugs vary. Weak opioids have moderate analgesic effects without exposing the patient to as many serious adverse effects associated with strong opioids. Strong opioids have powerful analgesic effects but are also more liable to cause opioid-related side effects such as sedation, respiratory depression, constipation, urinary retention, and addiction. The sedative effects of opioids are also useful in anesthesia with potent drugs used as part of induction of a general anesthetic.
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This question is part of the following fields:
- Neurological System
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Question 28
Incorrect
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A child with severe hydrocephalus is exhibiting a lack of upward gaze. What specific area of the brain is responsible for this impairment?
Your Answer:
Correct Answer: Superior colliculi
Explanation:The superior colliculi play a crucial role in upward gaze and are located on both sides of the tectal or quadrigeminal plate. Damage or compression of the superior colliculi, such as in severe hydrocephalus, can result in the inability to look up, known as sunsetting of the eyes.
The optic chiasm serves as the connection between the anterior and posterior optic pathways. The nasal fibers of the optic nerves cross over at the chiasm, leading to monocular visual field deficits with anterior pathway lesions and binocular visual field deficits with posterior pathway lesions.
The lateral geniculate body in the thalamus is where the optic tract connects with the optic radiations, while the inferior colliculi and medial geniculate bodies are responsible for processing auditory stimuli.
Understanding the Diencephalon: An Overview of Brain Anatomy
The diencephalon is a part of the brain that is located between the cerebral hemispheres and the brainstem. It is composed of several structures, including the thalamus, hypothalamus, epithalamus, and subthalamus. Each of these structures plays a unique role in regulating various bodily functions and behaviors.
The thalamus is responsible for relaying sensory information from the body to the cerebral cortex, which is responsible for processing and interpreting this information. The hypothalamus, on the other hand, is involved in regulating a wide range of bodily functions, including hunger, thirst, body temperature, and sleep. It also plays a role in regulating the release of hormones from the pituitary gland.
The epithalamus is a small structure that is involved in regulating the sleep-wake cycle and the production of melatonin, a hormone that helps to regulate sleep. The subthalamus is involved in regulating movement and is part of the basal ganglia, a group of structures that are involved in motor control.
Overall, the diencephalon plays a crucial role in regulating many of the body’s essential functions and behaviors. Understanding its anatomy and function can help us better understand how the brain works and how we can maintain optimal health and well-being.
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This question is part of the following fields:
- Neurological System
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Question 29
Incorrect
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A 35-year-old man presents with a gradual onset loss of feeling in his feet. His past medical history includes alcohol misuse.
Upper and lower limb motor examinations identify bilateral extensor plantar reflexes with absent knee jerks. Sensory examination identifies reduced sensation to vibration and proprioception distal to the elbows and knees, and reduced light touch sensation in a stocking distribution.
Blood tests:
Hb 118 g/L Male: (135-180)
Platelets 170 * 109/L (150 - 400)
MCV 112 fL (80 - 100)
Fasting blood glucose 4.5 mmol/L (3.9-5.6)
Serum vitamin B12 125 ng/L (190-950)
Serum folate 2.3 ng/ml (2.7-17.0)
Which affected areas of the nervous system are causing his symptoms?Your Answer:
Correct Answer: Lateral corticospinal tracts and dorsal columns
Explanation:The patient is suffering from subacute combined degeneration of the spinal cord, which affects the dorsal columns and lateral corticospinal tracts. This condition is often caused by a vitamin B12 deficiency resulting from alcohol misuse. The patient’s examination reveals upper motor neuron signs, reduced proprioception, and vibration sense. The anterior corticospinal tract, anterior spinocerebellar tract, anterior spinothalamic pathway, and lateral spinothalamic pathway are all unaffected by this condition.
Subacute Combined Degeneration of Spinal Cord
Subacute combined degeneration of spinal cord is a condition that occurs due to a deficiency of vitamin B12. The dorsal columns and lateral corticospinal tracts are affected, leading to the loss of joint position and vibration sense. The first symptoms are usually distal paraesthesia, followed by the development of upper motor neuron signs in the legs, such as extensor plantars, brisk knee reflexes, and absent ankle jerks. If left untreated, stiffness and weakness may persist.
This condition is a serious concern and requires prompt medical attention. It is important to maintain a healthy diet that includes sufficient amounts of vitamin B12 to prevent the development of subacute combined degeneration of spinal cord.
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This question is part of the following fields:
- Neurological System
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Question 30
Incorrect
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A 36-year-old man comes to the emergency department with a complaint of severe headaches upon waking up for the past three days. He has also been experiencing blurred vision for the past three weeks, and has been feeling increasingly nauseated and has vomited four times in the past 24 hours. Upon ophthalmoscopy, bilateral papilloedema is observed. A CT head scan reveals dilation of the lateral, third, and fourth ventricles, with a lesion obstructing the flow of cerebrospinal fluid (CSF) from the fourth ventricle into the cisterna magna. What is the usual pathway for CSF to flow from the fourth ventricle directly into the cisterna magna?
Your Answer:
Correct Answer: Median aperture (foramen of Magendie)
Explanation:The correct answer is the foramen of Magendie, also known as the median aperture.
The interventricular foramina connect the two lateral ventricles to the third ventricle, which is located in the midline between the thalami of the two hemispheres. The third ventricle communicates with the fourth ventricle via the cerebral aqueduct of Sylvius.
CSF flows from the third ventricle into the fourth ventricle through the cerebral aqueduct. From the fourth ventricle, CSF exits through one of four openings: the foramen of Magendie, which drains CSF into the cisterna magna; the foramina of Luschka, which drain CSF into the cerebellopontine angle cistern; the central canal at the obex, which runs through the center of the spinal cord.
The superior sagittal sinus is a large venous sinus located along the midline of the superior cranial cavity. Arachnoid villi project from the subarachnoid space into the superior sagittal sinus to allow for the absorption of CSF.
A patient presenting with symptoms and signs of raised intracranial pressure may have a variety of underlying causes, including mass lesions and neoplasms. In this case, a mass is obstructing the normal flow of CSF from the fourth ventricle, leading to increased pressure in all four ventricles.
Cerebrospinal Fluid: Circulation and Composition
Cerebrospinal fluid (CSF) is a clear, colorless liquid that fills the space between the arachnoid mater and pia mater, covering the surface of the brain. The total volume of CSF in the brain is approximately 150ml, and it is produced by the ependymal cells in the choroid plexus or blood vessels. The majority of CSF is produced by the choroid plexus, accounting for 70% of the total volume. The remaining 30% is produced by blood vessels. The CSF is reabsorbed via the arachnoid granulations, which project into the venous sinuses.
The circulation of CSF starts from the lateral ventricles, which are connected to the third ventricle via the foramen of Munro. From the third ventricle, the CSF flows through the cerebral aqueduct (aqueduct of Sylvius) to reach the fourth ventricle via the foramina of Magendie and Luschka. The CSF then enters the subarachnoid space, where it circulates around the brain and spinal cord. Finally, the CSF is reabsorbed into the venous system via arachnoid granulations into the superior sagittal sinus.
The composition of CSF is essential for its proper functioning. The glucose level in CSF is between 50-80 mg/dl, while the protein level is between 15-40 mg/dl. Red blood cells are not present in CSF, and the white blood cell count is usually less than 3 cells/mm3. Understanding the circulation and composition of CSF is crucial for diagnosing and treating various neurological disorders.
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This question is part of the following fields:
- Neurological System
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