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Question 1
Incorrect
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At a routine appointment, a teenage girl is being educated by her GP about the ovarian cycle. The GP informs her that the theca of the pre-antral follicle has receptors for hormones that help in the production of significant amounts of hormones. What is the type of receptor present on the theca?
Your Answer: Progesterone receptors
Correct Answer: LH receptors
Explanation:LH binds to LH receptors on thecal cells, stimulating the production of androstenedione. This androgen is then converted into oestradiol by aromatase in the granulosa cells.
The process of follicle development can be divided into several stages. Primordial follicles contain an oocyte and granulosa cells. Primary follicles are characterized by the development of the zona pellucida and proliferation of granulosa cells. Pre-antral follicles develop a theca layer. Mature or Graafian follicles are marked by the presence of an antrum. Finally, the corpus luteum forms after the oocyte is released due to enzymatic breakdown of the follicular wall.
It is important to note that FSH, progesterone, testosterone, and oestrogen receptors are not involved in the production of oestradiol from androstenedione.
Anatomy of the Ovarian Follicle
The ovarian follicle is a complex structure that plays a crucial role in female reproductive function. It consists of several components, including granulosa cells, the zona pellucida, the theca, the antrum, and the cumulus oophorus.
Granulosa cells are responsible for producing oestradiol, which is essential for follicular development. Once the follicle becomes the corpus luteum, granulosa lutein cells produce progesterone, which is necessary for embryo implantation. The zona pellucida is a membrane that surrounds the oocyte and contains the protein ZP3, which is responsible for sperm binding.
The theca produces androstenedione, which is converted into oestradiol by granulosa cells. The antrum is a fluid-filled portion of the follicle that marks the transition of a primary oocyte into a secondary oocyte. Finally, the cumulus oophorus is a cluster of cells surrounding the oocyte that must be penetrated by spermatozoa for fertilisation to occur.
Understanding the anatomy of the ovarian follicle is essential for understanding female reproductive function and fertility. Each component plays a unique role in the development and maturation of the oocyte, as well as in the processes of fertilisation and implantation.
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This question is part of the following fields:
- Reproductive System
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Question 2
Incorrect
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An 80-year-old man arrives at the emergency department with sudden difficulty in speech, but is otherwise asymptomatic. Upon taking his medical history, it is noted that he is having trouble generating fluent speech, although the meaning of his speech is preserved and appropriate to the questions he is being asked. His Glasgow coma score is 15/15 and cranial nerves examination is unremarkable. Additionally, he has power 5/5 in all four limbs, and his tone, sensation, coordination, and reflexes are normal. A CT head scan reveals an ischaemic stroke in the left lateral aspect of the frontal lobe. Which vessel occlusion is responsible for his symptoms?
Your Answer: Left external carotid artery
Correct Answer: Superior left middle cerebral artery
Explanation:Broca’s area is located in the left inferior frontal gyrus and is supplied by the superior division of the left middle cerebral artery. If this artery becomes occluded, it can result in an acute onset of expressive aphasia, which is the type of aphasia that this man is experiencing.
It is important to note that Wernicke’s area is supplied by the inferior left middle cerebral artery, and occlusion of this branch would result in receptive aphasia instead of expressive aphasia.
The external carotid arteries supply blood to the face and neck, not the brain.
Occlusion of an internal carotid artery typically causes amaurosis fugax and does not supply blood to Broca’s area, so it would not result in expressive aphasia.
The anterior cerebral arteries supply the antero-medial areas of each hemisphere of the brain, but they do not have a temporal branch and do not supply Broca’s area, which is located on the temporal aspect of the frontal lobe.
Types of Aphasia: Understanding the Different Forms of Language Impairment
Aphasia is a language disorder that affects a person’s ability to communicate effectively. There are different types of aphasia, each with its own set of symptoms and underlying causes. Wernicke’s aphasia, also known as receptive aphasia, is caused by a lesion in the superior temporal gyrus. This area is responsible for forming speech before sending it to Broca’s area. People with Wernicke’s aphasia may speak fluently, but their sentences often make no sense, and they may use word substitutions and neologisms. Comprehension is impaired.
Broca’s aphasia, also known as expressive aphasia, is caused by a lesion in the inferior frontal gyrus. This area is responsible for speech production. People with Broca’s aphasia may speak in a non-fluent, labored, and halting manner. Repetition is impaired, but comprehension is normal.
Conduction aphasia is caused by a stroke affecting the arcuate fasciculus, the connection between Wernicke’s and Broca’s area. People with conduction aphasia may speak fluently, but their repetition is poor. They are aware of the errors they are making, but comprehension is normal.
Global aphasia is caused by a large lesion affecting all three areas mentioned above, resulting in severe expressive and receptive aphasia. People with global aphasia may still be able to communicate using gestures. Understanding the different types of aphasia is important for proper diagnosis and treatment.
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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 70-year-old-man arrives at the emergency department with dysphasia, right-sided neglect, and right-sided weakness. He has a medical history of hypertension, hypercholesterolemia, type two diabetes mellitus, and a 20-pack-year smoking history. His symptoms began 55 minutes ago.
Which part of the brain is likely affected by this stroke based on the presented symptoms?Your Answer: Smaller arteries of anterior circulation e.g. upper or lower division of middle cerebral artery
Correct Answer: Middle and anterior cerebral arteries
Explanation:A total anterior circulation infarct affects the middle and anterior cerebral arteries, which is the correct answer (option 1). Option 2 is only true for a partial anterior circulation infarct, while option 3 is true for a lacunar infarct. Option 4 is true for a posterior circulation infarct, and option 5 would result in quadriplegia and lock-in-syndrome.
Stroke: A Brief Overview
Stroke is a significant cause of morbidity and mortality, with over 150,000 strokes occurring annually in the UK alone. It is the fourth leading cause of death in the UK, killing twice as many women as breast cancer each year. However, the prevention and treatment of strokes have undergone significant changes over the past decade. What was once considered an untreatable condition is now viewed as a ‘brain attack’ that requires emergency assessment to determine if patients may benefit from new treatments such as thrombolysis.
A stroke, also known as a cerebrovascular accident (CVA), is a sudden interruption in the vascular supply of the brain. There are two main types of strokes: ischaemic and haemorrhagic. Ischaemic strokes occur when there is a blockage in the blood vessel that stops blood flow, while haemorrhagic strokes occur when a blood vessel bursts, leading to a reduction in blood flow. Symptoms of a stroke may include motor weakness, speech problems, swallowing problems, visual field defects, and balance problems.
Patients with suspected stroke need to have emergency neuroimaging to determine if they are suitable for thrombolytic therapy to treat early ischaemic strokes. The two types of neuroimaging used in this setting are CT and MRI. If the stroke is ischaemic, and certain criteria are met, the patient should be offered thrombolysis. Once haemorrhagic stroke has been excluded, patients should be given aspirin 300mg as soon as possible, and antiplatelet therapy should be continued. If imaging confirms a haemorrhagic stroke, neurosurgical consultation should be considered for advice on further management. The vast majority of patients, however, are not suitable for surgical intervention. Management is therefore supportive as per haemorrhagic stroke.
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This question is part of the following fields:
- Neurological System
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Question 4
Correct
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As a junior doctor in a GP surgery, you are requested to examine an 82-year-old man who has reported a tremor in his left hand. What additional symptoms could indicate the presence of Parkinson's disease?
Your Answer: Bradykinesia and rigidity
Explanation:Parkinson’s disease is characterized by three main symptoms: tremor at rest, bradykinesia, and rigidity. Nystagmus is not a typical feature of Parkinson’s disease, while chorea is more commonly associated with Huntington’s disease. Although ataxia may be present in Parkinson’s disease, it is more frequently seen in cases of cerebellar lesions.
Parkinson’s disease is a progressive neurodegenerative disorder that occurs due to the degeneration of dopaminergic neurons in the substantia nigra. This leads to a classic triad of symptoms, including bradykinesia, tremor, and rigidity, which are typically asymmetrical. The disease is more common in men and is usually diagnosed around the age of 65. Bradykinesia is characterized by a poverty of movement, shuffling steps, and difficulty initiating movement. Tremors are most noticeable at rest and typically occur in the thumb and index finger. Rigidity can be either lead pipe or cogwheel, and other features include mask-like facies, flexed posture, and drooling of saliva. Psychiatric features such as depression, dementia, and sleep disturbances may also occur. Diagnosis is usually clinical, but if there is difficulty differentiating between essential tremor and Parkinson’s disease, 123I‑FP‑CIT single photon emission computed tomography (SPECT) may be considered.
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This question is part of the following fields:
- Neurological System
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Question 5
Incorrect
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Which one of the following is not a result of somatostatin?
Your Answer: It decreases glucagon release
Correct Answer: It stimulates pancreatic acinar cells to release lipase
Explanation:Understanding Gastric Secretions for Surgical Procedures
A basic understanding of gastric secretions is crucial for surgeons, especially when dealing with patients who have undergone acid-lowering procedures or are prescribed anti-secretory drugs. Gastric acid, produced by the parietal cells in the stomach, has a pH of around 2 and is maintained by the H+/K+ ATPase pump. Sodium and chloride ions are actively secreted from the parietal cell into the canaliculus, creating a negative potential across the membrane. Carbonic anhydrase forms carbonic acid, which dissociates, and the hydrogen ions formed by dissociation leave the cell via the H+/K+ antiporter pump. This leaves hydrogen and chloride ions in the canaliculus, which mix and are secreted into the lumen of the oxyntic gland.
There are three phases of gastric secretion: the cephalic phase, gastric phase, and intestinal phase. The cephalic phase is stimulated by the smell or taste of food and causes 30% of acid production. The gastric phase, which is caused by stomach distension, low H+, or peptides, causes 60% of acid production. The intestinal phase, which is caused by high acidity, distension, or hypertonic solutions in the duodenum, inhibits gastric acid secretion via enterogastrones and neural reflexes.
The regulation of gastric acid production involves various factors that increase or decrease production. Factors that increase production include vagal nerve stimulation, gastrin release, and histamine release. Factors that decrease production include somatostatin, cholecystokinin, and secretin. Understanding these factors and their associated pharmacology is essential for surgeons.
In summary, a working knowledge of gastric secretions is crucial for surgical procedures, especially when dealing with patients who have undergone acid-lowering procedures or are prescribed anti-secretory drugs. Understanding the phases of gastric secretion and the regulation of gastric acid production is essential for successful surgical outcomes.
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This question is part of the following fields:
- Gastrointestinal System
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Question 6
Incorrect
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A 79-year-old man with no prior medical history presents with symptoms of an ischaemic stroke. During the neurological examination in the emergency department, he is alert and able to answer questions appropriately. His limbs have normal tone, power, reflexes, and sensation, but he displays some lack of coordination. When asked to perform a finger-nose test, he accuses the examiner of cheating, claiming that he cannot see their finger or read their name tag. Which specific area of his brain is likely to be damaged, causing his visual deficits?
Your Answer: Medial geniculate nucleus
Correct Answer: Lateral geniculate nucleus
Explanation:Damage to the lateral geniculate nucleus in the thalamus can cause visual impairment, while damage to other brain regions such as the brainstem, medial geniculate nucleus, postcentral gyrus, and prefrontal cortex produce different neurological deficits. Understanding the functions of each brain region can aid in localising strokes.
The Thalamus: Relay Station for Motor and Sensory Signals
The thalamus is a structure located between the midbrain and cerebral cortex that serves as a relay station for motor and sensory signals. Its main function is to transmit these signals to the cerebral cortex, which is responsible for processing and interpreting them. The thalamus is composed of different nuclei, each with a specific function. The lateral geniculate nucleus relays visual signals, while the medial geniculate nucleus transmits auditory signals. The medial portion of the ventral posterior nucleus (VML) is responsible for facial sensation, while the ventral anterior/lateral nuclei relay motor signals. Finally, the lateral portion of the ventral posterior nucleus is responsible for body sensation, including touch, pain, proprioception, pressure, and vibration. Overall, the thalamus plays a crucial role in the transmission of sensory and motor information to the brain, allowing us to perceive and interact with the world around us.
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This question is part of the following fields:
- Neurological System
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Question 7
Correct
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A 32-year-old female patient complains of a disrupted menstrual cycle, decreased libido, and lactation despite never being pregnant. Upon blood testing, she is found to have elevated serum prolactin levels. Which medication is associated with causing hyperprolactinemia?
Your Answer: Cimetidine
Explanation:Hyperprolactinaemia in Women
Hyperprolactinaemia is a condition that affects women and is characterized by an excess of prolactin hormone in the body. This condition can present with various symptoms, including anovulatory infertility, reduced menstruation, production of breast milk, reduced libido, and vaginal dryness. The condition is caused by either disinhibition of the anterior pituitary or excess production due to a pituitary tumor. A serum prolactin concentration greater than 5000 mIU/L suggests a pituitary adenoma.
Moreover, hyperprolactinaemia can also be caused by certain prescription medications, including antihistamines, butyrophenones, cimetidine, methyldopa, metoclopramide, and phenothiazines. These medications are strongly associated with the condition and can lead to an increase in prolactin levels in the body.
It is important to understand the symptoms and causes of hyperprolactinaemia in women to seek appropriate medical attention and treatment. With proper diagnosis and management, women can effectively manage this condition and improve their quality of life.
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This question is part of the following fields:
- Pharmacology
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Question 8
Incorrect
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Which of the following symptoms is least commonly associated with salicylate overdose?
Your Answer: Tinnitus
Correct Answer: Tremor
Explanation:Salicylate overdose can cause a combination of respiratory alkalosis and metabolic acidosis. The respiratory center is initially stimulated, leading to hyperventilation and respiratory alkalosis. However, the direct acid effects of salicylates, combined with acute renal failure, can later cause metabolic acidosis. In children, metabolic acidosis tends to be more prominent. Other symptoms of salicylate overdose include tinnitus, lethargy, sweating, pyrexia, nausea/vomiting, hyperglycemia and hypoglycemia, seizures, and coma.
The treatment for salicylate overdose involves general measures such as airway, breathing, and circulation support, as well as administering activated charcoal. Urinary alkalinization with intravenous sodium bicarbonate can help eliminate aspirin in the urine. In severe cases, hemodialysis may be necessary. Indications for hemodialysis include a serum concentration of over 700 mg/L, metabolic acidosis that is resistant to treatment, acute renal failure, pulmonary edema, seizures, and coma.
Salicylates can also cause the uncoupling of oxidative phosphorylation, which leads to decreased adenosine triphosphate production, increased oxygen consumption, and increased carbon dioxide and heat production. It is important to recognize the symptoms of salicylate overdose and seek prompt medical attention to prevent serious complications.
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This question is part of the following fields:
- General Principles
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Question 9
Incorrect
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Which of the following clotting factors is unaffected by warfarin?
Your Answer: Factor X
Correct Answer: Factor XII
Explanation:Understanding Warfarin: Mechanism of Action, Indications, Monitoring, Factors, and Side-Effects
Warfarin is an oral anticoagulant that has been widely used for many years to manage venous thromboembolism and reduce stroke risk in patients with atrial fibrillation. However, it has been largely replaced by direct oral anticoagulants (DOACs) due to their ease of use and lack of need for monitoring. Warfarin works by inhibiting epoxide reductase, which prevents the reduction of vitamin K to its active hydroquinone form. This, in turn, affects the carboxylation of clotting factor II, VII, IX, and X, as well as protein C.
Warfarin is indicated for patients with mechanical heart valves, with the target INR depending on the valve type and location. Mitral valves generally require a higher INR than aortic valves. It is also used as a second-line treatment after DOACs for venous thromboembolism and atrial fibrillation, with target INRs of 2.5 and 3.5 for recurrent cases. Patients taking warfarin are monitored using the INR, which may take several days to achieve a stable level. Loading regimes and computer software are often used to adjust the dose.
Factors that may potentiate warfarin include liver disease, P450 enzyme inhibitors, cranberry juice, drugs that displace warfarin from plasma albumin, and NSAIDs that inhibit platelet function. Warfarin may cause side-effects such as haemorrhage, teratogenic effects, skin necrosis, temporary procoagulant state, thrombosis, and purple toes.
In summary, understanding the mechanism of action, indications, monitoring, factors, and side-effects of warfarin is crucial for its safe and effective use in patients. While it has been largely replaced by DOACs, warfarin remains an important treatment option for certain patients.
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This question is part of the following fields:
- Cardiovascular System
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Question 10
Incorrect
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Sarah is a 28-year-old teacher who has presented to the emergency department with a sudden onset of a severe headache and visual disturbances. Her medical history is significant only for asthma. She does not take any medications, does not smoke nor drink alcohol.
Upon examination, Sarah is alert and oriented but in obvious pain. Neurological examination reveals a fixed, dilated, non-reactive left pupil that is hypersensitive to light. All extra ocular movements are intact and there is no relative afferent pupillary defect. Systematic enquiry reveals no other abnormalities.
What is the most likely cause of Sarah's symptoms?Your Answer: Migraine
Correct Answer: Posterior communicating artery aneurysm
Explanation:Understanding Third Nerve Palsy: Causes and Features
Third nerve palsy is a neurological condition that affects the third cranial nerve, which controls the movement of the eye and eyelid. The condition is characterized by the eye being deviated ‘down and out’, ptosis, and a dilated pupil. In some cases, it may be referred to as a ‘surgical’ third nerve palsy due to the dilation of the pupil.
There are several possible causes of third nerve palsy, including diabetes mellitus, vasculitis (such as temporal arteritis or SLE), uncal herniation through tentorium if raised ICP, posterior communicating artery aneurysm, and cavernous sinus thrombosis. In some cases, it may also be a false localizing sign. Weber’s syndrome, which is characterized by an ipsilateral third nerve palsy with contralateral hemiplegia, is caused by midbrain strokes. Other possible causes include amyloid and multiple sclerosis.
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This question is part of the following fields:
- Neurological System
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Question 11
Correct
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Oliver is a 32-year-old male who has been diagnosed with syphilis. He receives treatment with intramuscular benzathine penicillin, but experiences a sudden onset of fever, chills, headache, and an intensification of his rash. What is the reason for this reaction, known as the Jarisch-Herxheimer reaction?
Your Answer: Release of endotoxins into bloodstream following bacterial cell lysis
Explanation:The Jarisch-Herxheimer reaction is a response that can occur after antibiotic treatment for syphilis, as well as other spirochetal infections like Lyme disease and leptospirosis. It is caused by the release of endotoxins into the bloodstream when bacterial cells are destroyed by antibiotics. This leads to a systemic inflammatory response, resulting in symptoms such as fever, rash, chills, and headache. The reaction is self-limiting and can be treated symptomatically with oral paracetamol. Anaphylaxis can be caused by the binding of IgE to mast cells, resulting in histamine release, or by non-immunologic mechanisms such as direct degranulation of mast cells and basophils. Febrile non-haemolytic transfusion reactions are caused by antibodies against HLA antigens, which can result in a febrile reaction after blood transfusion. It is important to note that the Jarisch-Herxheimer reaction is not caused by re-activation of syphilis.
Managing Syphilis
Syphilis can be managed through the administration of intramuscular benzathine penicillin, which is the first-line treatment. In cases where this is not possible, doxycycline may be used as an alternative. After treatment, it is important to monitor nontreponemal titres (such as rapid plasma reagin or Venereal Disease Research Laboratory) to assess the response. A fourfold decline in titres is often considered an adequate response to treatment.
It is important to note that the Jarisch-Herxheimer reaction may occur following treatment. This is characterized by symptoms such as fever, rash, and tachycardia after the first dose of antibiotic. Unlike anaphylaxis, there is no wheezing or hypotension. This reaction is thought to be due to the release of endotoxins following bacterial death and typically occurs within a few hours of treatment. No treatment is needed for this reaction other than antipyretics if required.
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This question is part of the following fields:
- General Principles
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Question 12
Incorrect
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A 79-year-old man visits his doctor complaining of chest pain that occurs during physical activity and subsides after rest for the past three months. The doctor diagnoses him with angina and prescribes medications. Due to contraindications, beta blockers and calcium channel blockers are not suitable for this patient, so the doctor starts him on ranolazine. What is the main mechanism of action of ranolazine?
Your Answer: Increased release of nitric oxide
Correct Answer: Inhibition of persistent or late inward sodium current
Explanation:Ranolazine is a medication that works by inhibiting persistent or late sodium current in various voltage-gated sodium channels in heart muscle. This results in a decrease in intracellular calcium levels, which in turn reduces tension in the heart muscle and lowers its oxygen demand.
Other medications used to treat angina include ivabradine, which inhibits funny channels, trimetazidine, which inhibits fatty acid metabolism, nitrates, which increase nitric oxide, and several drugs that reduce heart rate, such as beta blockers and calcium channel blockers.
It is important to note that ranolazine is not typically the first medication prescribed for angina. The drug management of angina may vary depending on the individual patient’s needs and medical history.
Angina pectoris can be managed through lifestyle changes, medication, percutaneous coronary intervention, and surgery. In 2011, NICE released guidelines for the management of stable angina. Medication is an important aspect of treatment, and all patients should receive aspirin and a statin unless there are contraindications. Sublingual glyceryl trinitrate can be used to abort angina attacks. NICE recommends using either a beta-blocker or a calcium channel blocker as first-line treatment, depending on the patient’s comorbidities, contraindications, and preferences. If a calcium channel blocker is used as monotherapy, a rate-limiting one such as verapamil or diltiazem should be used. If used in combination with a beta-blocker, a longer-acting dihydropyridine calcium channel blocker like amlodipine or modified-release nifedipine should be used. Beta-blockers should not be prescribed concurrently with verapamil due to the risk of complete heart block. If initial treatment is ineffective, medication should be increased to the maximum tolerated dose. If a patient is still symptomatic after monotherapy with a beta-blocker, a calcium channel blocker can be added, and vice versa. If a patient cannot tolerate the addition of a calcium channel blocker or a beta-blocker, long-acting nitrate, ivabradine, nicorandil, or ranolazine can be considered. If a patient is taking both a beta-blocker and a calcium-channel blocker, a third drug should only be added while awaiting assessment for PCI or CABG.
Nitrate tolerance is a common issue for patients who take nitrates, leading to reduced efficacy. NICE advises patients who take standard-release isosorbide mononitrate to use an asymmetric dosing interval to maintain a daily nitrate-free time of 10-14 hours to minimize the development of nitrate tolerance. However, this effect is not seen in patients who take once-daily modified-release isosorbide mononitrate.
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This question is part of the following fields:
- Cardiovascular System
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Question 13
Incorrect
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A 28-year-old female arrives at the emergency department with an abrupt onset of pain in the right upper quadrant. Upon examination, the doctor observes hepatomegaly and ascites, and diagnoses the patient with Budd-Chiari syndrome. The doctor prescribes anticoagulants and conducts a thrombophilia screening, which reveals the presence of a Factor V Leiden mutation.
What is the mechanism by which this mutation causes hypercoagulability?Your Answer: Antithrombin deficiency
Correct Answer: Activated protein C resistance
Explanation:The presence of a Factor V Leiden mutation can lead to activated protein C resistance, which is a common cause of thrombophilia. Budd-Chiari syndrome, characterized by abdominal pain, ascites, and hepatomegaly, may require a thrombophilia screen to identify potential causes. Antithrombin deficiency, caused by a mutation in the SERPINC1 gene, is another type of thrombophilia. Antiphospholipid syndrome, an immunological disorder that increases the risk of thrombosis, is not related to Factor V Leiden mutations. Protein C deficiency, caused by mutations in the PROC gene, is another type of thrombophilia.
Understanding Factor V Leiden
Factor V Leiden is a common inherited thrombophilia, affecting around 5% of the UK population. It is caused by a mutation in the Factor V Leiden protein, resulting in activated factor V being inactivated 10 times more slowly by activated protein C than normal. This leads to activated protein C resistance, which increases the risk of venous thrombosis. Heterozygotes have a 4-5 fold risk of venous thrombosis, while homozygotes have a 10 fold risk, although the prevalence of homozygotes is much lower at 0.05%.
Despite its prevalence, screening for Factor V Leiden is not recommended, even after a venous thromboembolism. This is because a previous thromboembolism itself is a risk factor for further events, and specific management should be based on this rather than the particular thrombophilia identified.
Other inherited thrombophilias include Prothrombin gene mutation, Protein C deficiency, Protein S deficiency, and Antithrombin III deficiency. The table below shows the prevalence and relative risk of venous thromboembolism for each of these conditions.
Overall, understanding Factor V Leiden and other inherited thrombophilias can help healthcare professionals identify individuals at higher risk of venous thrombosis and provide appropriate management to prevent future events.
Condition | Prevalence | Relative risk of VTE
— | — | —
Factor V Leiden (heterozygous) | 5% | 4
Factor V Leiden (homozygous) | 0.05% | 10
Prothrombin gene mutation (heterozygous) | 1.5% | 3
Protein C deficiency | 0.3% | 10
Protein S deficiency | 0.1% | 5-10
Antithrombin III deficiency | 0.02% | 10-20 -
This question is part of the following fields:
- Haematology And Oncology
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Question 14
Correct
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A 45-year-old man's prostate-specific antigen (PSA) level is 8.2 ng/mL. He wants to know the likelihood of having prostate cancer.
What statistical parameter is required to answer his query?Your Answer: Positive predictive value
Explanation:The positive predictive value (PPV) is the probability that a patient has a condition if the diagnostic test is positive. For example, if a patient has a raised PSA level, the PPV would be the chance that they have prostate cancer. It is calculated by dividing the number of true positives by the sum of true positives and false positives.
On the other hand, the negative predictive value (NPV) is the probability that a patient does not have the condition if the screening test is negative. For instance, if a patient has low PSA levels, the NPV would be the likelihood that they do not have prostate cancer.
The likelihood ratio is a measure of the usefulness of a diagnostic test. It indicates how much more likely a person with the disease is to have a positive test result compared to a person without the disease. If a patient has already been diagnosed with prostate cancer, a positive likelihood ratio would suggest that the probability of having high PSA levels is higher in patients with prostate cancer than those without it.
Finally, sensitivity is the proportion of patients with the condition who have a positive test result.
Precision refers to the consistency of a test in producing the same results when repeated multiple times. It is an important aspect of test reliability and can impact the accuracy of the results. In order to assess precision, multiple tests are performed on the same sample and the results are compared. A test with high precision will produce similar results each time it is performed, while a test with low precision will produce inconsistent results. It is important to consider precision when interpreting test results and making clinical decisions.
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This question is part of the following fields:
- General Principles
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Question 15
Incorrect
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A histopathologist receives multiple muscle tissue specimens and wants to identify the muscle type based on the presence of nuclei. Which muscle type has a single nucleus located centrally along the muscle fiber?
Your Answer: Skeletal muscle
Correct Answer: Cardiac and smooth muscle
Explanation:There are three categories of muscle: skeletal, cardiac, and smooth.
The Process of Muscle Contraction
Muscle contraction is a complex process that involves several steps. It begins with an action potential reaching the neuromuscular junction, which causes a calcium ion influx through voltage-gated calcium channels. This influx leads to the release of acetylcholine into the extracellular space, which activates nicotinic acetylcholine receptors, triggering an action potential. The action potential then spreads through the T-tubules, activating L-type voltage-dependent calcium channels in the T-tubule membrane, which are close to calcium-release channels in the adjacent sarcoplasmic reticulum. This causes the sarcoplasmic reticulum to release calcium, which binds to troponin C, causing a conformational change that allows tropomyosin to move, unblocking the binding sites. Myosin then binds to the newly released binding site, releasing ADP and pulling the Z bands towards each other. ATP binds to myosin, releasing actin.
The components involved in muscle contraction include the sarcomere, which is the basic unit of muscles that gives skeletal and cardiac muscles their striated appearance. The I-band is the zone of thin filaments that is not superimposed by thick filaments, while the A-band contains the entire length of a single thick filament. The H-zone is the zone of the thick filaments that is not superimposed by the thin filaments, and the M-line is in the middle of the sarcomere, cross-linking myosin. The sarcoplasmic reticulum releases calcium ion in response to depolarization, while actin is the thin filaments that transmit the forces generated by myosin to the ends of the muscle. Myosin is the thick filaments that bind to the thin filament, while titin connects the Z-line to the thick filament, altering the structure of tropomyosin. Tropomyosin covers the myosin-binding sites on actin, while troponin-C binds with calcium ions. The T-tubule is an invagination of the sarcoplasmic reticulum that helps co-ordinate muscular contraction.
There are two types of skeletal muscle fibres: type I and type II. Type I fibres have a slow contraction time, are red in colour due to the presence of myoglobin, and are used for sustained force. They have a high mitochondrial density and use triglycerides as
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 16
Incorrect
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A 57-year-old patient arrives at the emergency department by ambulance following a car accident. Upon examination, it is observed that his hip is in flexion, abduction, and external rotation. An X-ray reveals that the right femoral head is larger than the left and is positioned medially to the acetabulum. No fractures or skin lesions are detected. The patient undergoes closed reduction with traction while under sedation. Later, during a physiotherapy evaluation, it is discovered that he is unable to adduct his thigh. What nerve is most likely to have been damaged?
Your Answer: Femoral nerve
Correct Answer: Obturator nerve
Explanation:If a patient is unable to adduct their thigh after an anterior hip dislocation, it is likely due to damage to the obturator nerve. This nerve supplies the hip adductor muscles and sensation to the medial thigh. In contrast, damage to the femoral nerve would result in an inability to flex the hip or extend the knee, making it an unlikely cause for this specific symptom. Compression of the inferior gluteal nerve can cause piriformis syndrome, while compression of the lateral femoral cutaneous nerve can lead to meralgia paresthetica, but neither of these would affect the patient’s ability to adduct their leg. Damage to the superior gluteal nerve would result in a positive Trendelenburg’s sign.
Lower limb anatomy is an important topic that often appears in examinations. One aspect of this topic is the nerves that control motor and sensory functions in the lower limb. The femoral nerve controls knee extension and thigh flexion, and provides sensation to the anterior and medial aspect of the thigh and lower leg. It is commonly injured in cases of hip and pelvic fractures, as well as stab or gunshot wounds. The obturator nerve controls thigh adduction and provides sensation to the medial thigh. It can be injured in cases of anterior hip dislocation. The lateral cutaneous nerve of the thigh provides sensory function to the lateral and posterior surfaces of the thigh, and can be compressed near the ASIS, resulting in a condition called meralgia paraesthetica. The tibial nerve controls foot plantarflexion and inversion, and provides sensation to the sole of the foot. It is not commonly injured as it is deep and well protected, but can be affected by popliteal lacerations or posterior knee dislocation. The common peroneal nerve controls foot dorsiflexion and eversion, and can be injured at the neck of the fibula, resulting in foot drop. The superior gluteal nerve controls hip abduction and can be injured in cases of misplaced intramuscular injection, hip surgery, pelvic fracture, or posterior hip dislocation. Injury to this nerve can result in a positive Trendelenburg sign. The inferior gluteal nerve controls hip extension and lateral rotation, and is generally injured in association with the sciatic nerve. Injury to this nerve can result in difficulty rising from a seated position, as well as difficulty jumping or climbing stairs.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 17
Correct
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A 17-year-old boy is out on a movie date with his girlfriend. During the film, he keeps his arm over her seat. However, when the movie ends, he realizes that he has limited wrist movement. Upon examination, he is unable to extend his wrist and has reduced sensation in his anatomical snuff box. Which nerve did he damage while at the cinema?
Your Answer: Radial
Explanation:Saturday night syndrome is a condition where the brachial plexus is compressed due to sleeping with the arm over the back of a chair. This can result in a radial nerve palsy, commonly known as wrist drop, where the patient is unable to extend their wrist and it hangs flaccidly.
Upper limb anatomy is a common topic in examinations, and it is important to know certain facts about the nerves and muscles involved. The musculocutaneous nerve is responsible for elbow flexion and supination, and typically only injured as part of a brachial plexus injury. The axillary nerve controls shoulder abduction and can be damaged in cases of humeral neck fracture or dislocation, resulting in a flattened deltoid. The radial nerve is responsible for extension in the forearm, wrist, fingers, and thumb, and can be damaged in cases of humeral midshaft fracture, resulting in wrist drop. The median nerve controls the LOAF muscles and can be damaged in cases of carpal tunnel syndrome or elbow injury. The ulnar nerve controls wrist flexion and can be damaged in cases of medial epicondyle fracture, resulting in a claw hand. The long thoracic nerve controls the serratus anterior and can be damaged during sports or as a complication of mastectomy, resulting in a winged scapula. The brachial plexus can also be damaged, resulting in Erb-Duchenne palsy or Klumpke injury, which can cause the arm to hang by the side and be internally rotated or associated with Horner’s syndrome, respectively.
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This question is part of the following fields:
- Musculoskeletal System And Skin
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Question 18
Incorrect
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You are requested to assess a patient in the emergency department who has experienced abrupt onset chest pain, dyspnoea and diaphoresis. After reviewing the patient's ECG, you identify changes within a specific section and promptly arrange for transfer to the catheterisation laboratory.
What is the underlying process indicated by the affected section of the ECG?Your Answer: Ventricular repolarisation
Correct Answer: Period between ventricular depolarisation and repolarisation
Explanation:The ST segment on an ECG indicates the period when the entire ventricle is depolarized. In the case of a suspected myocardial infarction, it is crucial to examine the ST segment for any elevation or depression, which can indicate a STEMI or NSTEMI, respectively.
The ECG does not have a specific section that corresponds to the firing of the sino-atrial node, which triggers atrial depolarization (represented by the p wave). The T wave represents ventricular repolarization.
In atrial fibrillation, the p wave is absent or abnormal due to the irregular firing of the atria.
Understanding the Normal ECG
The electrocardiogram (ECG) is a diagnostic tool used to assess the electrical activity of the heart. The normal ECG consists of several waves and intervals that represent different phases of the cardiac cycle. The P wave represents atrial depolarization, while the QRS complex represents ventricular depolarization. The ST segment represents the plateau phase of the ventricular action potential, and the T wave represents ventricular repolarization. The Q-T interval represents the time for both ventricular depolarization and repolarization to occur.
The P-R interval represents the time between the onset of atrial depolarization and the onset of ventricular depolarization. The duration of the QRS complex is normally 0.06 to 0.1 seconds, while the duration of the P wave is 0.08 to 0.1 seconds. The Q-T interval ranges from 0.2 to 0.4 seconds depending upon heart rate. At high heart rates, the Q-T interval is expressed as a ‘corrected Q-T (QTc)’ by taking the Q-T interval and dividing it by the square root of the R-R interval.
Understanding the normal ECG is important for healthcare professionals to accurately interpret ECG results and diagnose cardiac conditions. By analyzing the different waves and intervals, healthcare professionals can identify abnormalities in the electrical activity of the heart and provide appropriate treatment.
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This question is part of the following fields:
- Cardiovascular System
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Question 19
Incorrect
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Samantha is a 63-year-old female who has just been diagnosed with hypertension. Her physician informs her that her average blood pressure is influenced by various bodily processes, such as heart function, nervous system activity, and blood vessel diameter. Assuming an average cardiac output (CO) of 4L/min, Samantha's mean arterial pressure (MAP) is recorded at 140mmHg during her examination.
What is Samantha's systemic vascular resistance (SVR) based on these measurements?Your Answer: 400mmHg⋅min⋅mL-1
Correct Answer: 35 mmhg⋅min⋅mL-1
Explanation:The equation used to calculate systemic vascular resistance is SVR = MAP / CO. For example, if the mean arterial pressure (MAP) is 140 mmHg and the cardiac output (CO) is 4 mL/min, then the SVR would be 35 mmHg⋅min⋅mL-1. Although the theoretical equation for SVR is more complex, it is often simplified by assuming that central venous pressure (CVP) is negligible. However, in reality, MAP is typically measured directly or indirectly using arterial pressure measurements. The equation for calculating MAP at rest is MAP = diastolic pressure + 1/3(pulse pressure), where pulse pressure is calculated as systolic pressure minus diastolic pressure.
Cardiovascular physiology involves the study of the functions and processes of the heart and blood vessels. One important measure of heart function is the left ventricular ejection fraction, which is calculated by dividing the stroke volume (the amount of blood pumped out of the left ventricle with each heartbeat) by the end diastolic LV volume (the amount of blood in the left ventricle at the end of diastole) and multiplying by 100%. Another key measure is cardiac output, which is the amount of blood pumped by the heart per minute and is calculated by multiplying stroke volume by heart rate.
Pulse pressure is another important measure of cardiovascular function, which is the difference between systolic pressure (the highest pressure in the arteries during a heartbeat) and diastolic pressure (the lowest pressure in the arteries between heartbeats). Factors that can increase pulse pressure include a less compliant aorta (which can occur with age) and increased stroke volume.
Finally, systemic vascular resistance is a measure of the resistance to blood flow in the systemic circulation and is calculated by dividing mean arterial pressure (the average pressure in the arteries during a heartbeat) by cardiac output. Understanding these measures of cardiovascular function is important for diagnosing and treating cardiovascular diseases.
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This question is part of the following fields:
- Cardiovascular System
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Question 20
Incorrect
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A 16-year-old girl arrives at the hospital with a 4-day history of headache, photophobia, and fevers, and is diagnosed with meningococcal meningitis. She reveals that she attended a sleepover 6-days ago with several of her friends.
To prevent the spread of the disease, rifampicin is prescribed to the patient's close contacts.
What is the mode of action of this medication?Your Answer: Inhibition of DNA gyrase
Correct Answer: Inhibition of DNA-dependent RNA polymerase
Explanation:The mechanism of rifampicin is the inhibition of bacterial DNA-dependent RNA polymerase, which prevents the transcription of DNA into mRNA. Rifampicin is an antibiotic that can be used as a prophylactic treatment for contacts of individuals diagnosed with meningococcal meningitis. Its side effects may include orange urine, and it is important to note that rifampicin is an enzyme-inducer that can reduce the effectiveness of drugs such as the combined oral contraceptive pill.
It is important to distinguish rifampicin from other antibiotics with different mechanisms of action. Fluoroquinolone antibiotics, such as ciprofloxacin and levofloxacin, inhibit DNA gyrase. Isoniazid, an antibiotic used to treat tuberculosis, inhibits mycolic acid synthesis, which is found in the cell walls of mycobacteria. Glycopeptide antibiotics, such as vancomycin and teicoplanin, inhibit peptidoglycan synthesis.
Tuberculosis is a bacterial infection that can be treated with a combination of drugs. Each drug has a specific mechanism of action and can also cause side-effects. Rifampicin works by inhibiting bacterial DNA dependent RNA polymerase, which prevents the transcription of DNA into mRNA. However, it is a potent liver enzyme inducer and can cause hepatitis, orange secretions, and flu-like symptoms.
Isoniazid, on the other hand, inhibits mycolic acid synthesis. It can cause peripheral neuropathy, which can be prevented with pyridoxine (Vitamin B6). It can also cause hepatitis and agranulocytosis, but it is a liver enzyme inhibitor.
Pyrazinamide is converted by pyrazinamidase into pyrazinoic acid, which inhibits fatty acid synthase (FAS) I. However, it can cause hyperuricaemia, leading to gout, as well as arthralgia and myalgia. It can also cause hepatitis.
Finally, Ethambutol inhibits the enzyme arabinosyl transferase, which polymerizes arabinose into arabinan. However, it can cause optic neuritis, so it is important to check visual acuity before and during treatment. The dose also needs adjusting in patients with renal impairment.
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This question is part of the following fields:
- General Principles
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