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  • Question 1 - A young patient visits the GP complaining of a dry cough and experiencing...

    Correct

    • A young patient visits the GP complaining of a dry cough and experiencing shortness of breath and feverishness. The patient discloses being an intravenous drug user and is referred to the sexual health clinic where HIV is diagnosed through blood tests. What is the cell surface protein utilized by HIV to enter cells?

      Your Answer: CD4

      Explanation:

      The fungus Pneumocystis jiroveci causes Pneumocystis pneumonia, a lung infection that affects patients with weakened immune systems. HIV enters cells by using CD4, which is why T helper cells are specifically reduced in HIV patients. CD3 is a cell surface protein present in all T cells, while CD5 is a cell surface marker typically found in mantle cell lymphomas. CD8 is a cell surface marker found on cytotoxic T cells.

      Cell Surface Proteins and Their Functions

      Cell surface proteins play a crucial role in identifying and distinguishing different types of cells. The table above lists the most common cell surface markers associated with particular cell types, such as CD34 for haematopoietic stem cells and CD19 for B cells. Meanwhile, the table below describes the major clusters of differentiation (CD) molecules and their functions. For instance, CD3 is the signalling component of the T cell receptor (TCR) complex, while CD4 is a co-receptor for MHC class II and is used by HIV to enter T cells. CD56, on the other hand, is a unique marker for natural killer cells, while CD95 acts as the FAS receptor and is involved in apoptosis.

      Understanding the functions of these cell surface proteins is crucial in various fields, such as immunology and cancer research. By identifying and targeting specific cell surface markers, researchers can develop more effective treatments for diseases and disorders.

    • This question is part of the following fields:

      • General Principles
      10.7
      Seconds
  • Question 2 - A 32-year-old man with a history of psoriasis visits his doctor complaining of...

    Incorrect

    • A 32-year-old man with a history of psoriasis visits his doctor complaining of new lesions on his back. He mentions that he has only ever had lesions on his knees and elbows before and is worried. Upon further inquiry, the patient discloses that he recently got a tattoo on his back, which is only a week old. He also notes that the new lesions appeared shortly after getting the tattoo. The doctor considers a phenomenon in which new psoriatic lesions develop after skin trauma in patients with psoriasis. What is the term for this phenomenon?

      Your Answer: Nikolsky

      Correct Answer: Koebner

      Explanation:

      The Koebner phenomenon is a term used to describe the appearance of skin lesions at the site of injury. Patients with a history of psoriasis and recent skin trauma are at risk of developing this phenomenon, which can also occur in individuals with other skin conditions like warts and vitiligo. Lichen planus is another condition where the Koebner phenomenon is observed. In contrast, the Nikolsky phenomenon is a dermatological phenomenon seen in pemphigus vulgaris, where the epidermis can be moved over the dermis upon palpation. Psoriatic arthritis is a type of arthritis that affects some individuals with psoriasis, causing joint inflammation, pain, stiffness, and swelling.

      The Koebner Phenomenon: Skin Lesions at the Site of Injury

      The Koebner phenomenon refers to the occurrence of skin lesions at the site of injury. This phenomenon is commonly observed in various skin conditions such as psoriasis, vitiligo, warts, lichen planus, lichen sclerosus, and molluscum contagiosum. In other words, if a person with any of these skin conditions experiences trauma or injury to their skin, they may develop new lesions in the affected area.

      This phenomenon is named after Heinrich Koebner, a German dermatologist who first described it in 1876. The exact mechanism behind the Koebner phenomenon is not fully understood, but it is believed to be related to the immune system’s response to injury. In some cases, the injury may trigger an autoimmune response, leading to the development of new lesions.

      The Koebner phenomenon can be a frustrating and challenging aspect of managing skin conditions. It is important for individuals with these conditions to take precautions to avoid injury to their skin, such as wearing protective clothing or avoiding activities that may cause trauma. Additionally, prompt treatment of any new lesions that develop can help prevent further spread of the condition.

    • This question is part of the following fields:

      • Musculoskeletal System And Skin
      32.2
      Seconds
  • Question 3 - A 32-year-old male is requested to hold a pen between his thumb and...

    Incorrect

    • A 32-year-old male is requested to hold a pen between his thumb and index finger. He finds it difficult to accomplish this task.

      What other activity is the patient likely to have difficulty with?

      Your Answer: Pronation of the wrist

      Correct Answer: Adduction of his fingers

      Explanation:

      If a patient exhibits a positive Froment’s sign, it suggests that they may have ulnar nerve palsy. The ulnar nerve is responsible for controlling finger adduction and abduction. Meanwhile, the median nerve is responsible for thumb abduction and wrist pronation, while the radial nerve controls wrist extension.

      Nerve signs are used to assess the function of specific nerves in the body. One such sign is Froment’s sign, which is used to assess for ulnar nerve palsy. During this test, the adductor pollicis muscle function is tested by having the patient hold a piece of paper between their thumb and index finger. The object is then pulled away, and if the patient is unable to hold the paper and flexes the flexor pollicis longus to compensate, it may indicate ulnar nerve palsy.

      Another nerve sign used to assess for carpal tunnel syndrome is Phalen’s test. This test is more sensitive than Tinel’s sign and involves holding the wrist in maximum flexion. If there is numbness in the median nerve distribution, the test is considered positive.

      Tinel’s sign is also used to assess for carpal tunnel syndrome. During this test, the median nerve at the wrist is tapped, and if the patient experiences tingling or electric-like sensations over the distribution of the median nerve, the test is considered positive. These nerve signs are important tools in diagnosing and assessing nerve function in patients.

    • This question is part of the following fields:

      • Musculoskeletal System And Skin
      28.4
      Seconds
  • Question 4 - A 20-year-old man is brought to the Emergency Department in an unconscious state,...

    Correct

    • A 20-year-old man is brought to the Emergency Department in an unconscious state, lying in a pool of blood with several stab wounds in his abdomen. How does the physiological compensatory mechanism differ in the short-term for a venous bleed versus an arterial bleed?

      Your Answer: A venous bleed causes reduced preload before reducing blood pressure and being detected by baroreceptors whilst an arterial bleed causes an instant blood pressure drop

      Explanation:

      A venous bleed is compensated for in a less direct manner compared to an arterial bleed. The reduction in preload caused by a venous bleed results in a decrease in cardiac output and subsequently, blood pressure. Baroreceptors detect this drop in blood pressure and trigger a physiological compensation response.

      In contrast, an arterial bleed causes an immediate drop in blood pressure, which is detected directly by baroreceptors.

      Both types of bleeding result in increased levels of angiotensin II and a heightened thirst drive. However, these compensatory mechanisms take longer to take effect than the immediate response triggered by baroreceptors.

      Understanding Bleeding and its Effects on the Body

      Bleeding, even if it is of a small volume, triggers a response in the body that causes generalised splanchnic vasoconstriction. This response is mediated by the activation of the sympathetic nervous system. The process of vasoconstriction is usually enough to maintain renal perfusion and cardiac output if the volume of blood lost is small. However, if greater volumes of blood are lost, the renin angiotensin system is activated, resulting in haemorrhagic shock.

      The body’s physiological measures can restore circulating volume if the source of bleeding ceases. Ongoing bleeding, on the other hand, will result in haemorrhagic shock. Blood loss is typically quantified by the degree of shock produced, which is determined by parameters such as blood loss volume, pulse rate, blood pressure, respiratory rate, urine output, and symptoms. Understanding the effects of bleeding on the body is crucial in managing and treating patients who experience blood loss.

    • This question is part of the following fields:

      • Renal System
      69.4
      Seconds
  • Question 5 - A 42-year-old male comes to the general physician with a painless lump. He...

    Incorrect

    • A 42-year-old male comes to the general physician with a painless lump. He is referred to urology and subsequent scans reveal a testicular seminoma with metastasis to the lymph nodes that receive lymphatic drainage from the scrotum.

      What are the lymph nodes that receive drainage from the scrotum?

      Your Answer: Internal iliac lymph nodes

      Correct Answer: Superficial inguinal nodes

      Explanation:

      The scrotum’s lymph drainage is received by the superficial inguinal nodes, which serve as the primary lymph node drainage site for this area.

      Lymphatic drainage is the process by which lymphatic vessels carry lymph, a clear fluid containing white blood cells, away from tissues and organs and towards lymph nodes. The lymphatic vessels that drain the skin and follow venous drainage are called superficial lymphatic vessels, while those that drain internal organs and structures follow the arteries and are called deep lymphatic vessels. These vessels eventually lead to lymph nodes, which filter and remove harmful substances from the lymph before it is returned to the bloodstream.

      The lymphatic system is divided into two main ducts: the right lymphatic duct and the thoracic duct. The right lymphatic duct drains the right side of the head and right arm, while the thoracic duct drains everything else. Both ducts eventually drain into the venous system.

      Different areas of the body have specific primary lymph node drainage sites. For example, the superficial inguinal lymph nodes drain the anal canal below the pectinate line, perineum, skin of the thigh, penis, scrotum, and vagina. The deep inguinal lymph nodes drain the glans penis, while the para-aortic lymph nodes drain the testes, ovaries, kidney, and adrenal gland. The axillary lymph nodes drain the lateral breast and upper limb, while the internal iliac lymph nodes drain the anal canal above the pectinate line, lower part of the rectum, and pelvic structures including the cervix and inferior part of the uterus. The superior mesenteric lymph nodes drain the duodenum and jejunum, while the inferior mesenteric lymph nodes drain the descending colon, sigmoid colon, and upper part of the rectum. Finally, the coeliac lymph nodes drain the stomach.

    • This question is part of the following fields:

      • Haematology And Oncology
      29.8
      Seconds
  • Question 6 - A 65-year-old man presents to the hospital with a 3-day history of headaches....

    Correct

    • A 65-year-old man presents to the hospital with a 3-day history of headaches. He has a medical history of type 2 diabetes mellitus and hypertension.

      During the examination, it is observed that his left pupil is constricted with enophthalmos and ptosis of the left eyelid. However, the right side of his face appears to be unaffected.

      What could be the probable reason for this patient's symptoms?

      Your Answer: Carotid artery dissection

      Explanation:

      Carotid artery dissection is the likely cause of the patient’s Horner’s syndrome, which presents with ptosis, enophthalmos, and miosis. This syndrome occurs when there is damage to the cervical sympathetic chain, resulting in the loss of sympathetic innervation to the head and neck. The patient’s history of hypertension and headache further support this diagnosis.

      Facial nerve schwannoma is an incorrect diagnosis, as it would present with facial nerve palsy rather than Horner’s syndrome.

      Microvascular oculomotor nerve palsy is also an incorrect diagnosis, as it typically presents with complete ptosis and an eye that is turned outwards and downwards, without pupil dilatation.

      Uncal herniation is another incorrect diagnosis, as it can cause an oculomotor nerve palsy with pupillary involvement, but typically presents with a ‘down and out’ facing eye, rather than Horner’s syndrome.

      Horner’s syndrome is a condition characterized by several features, including a small pupil (miosis), drooping of the upper eyelid (ptosis), a sunken eye (enophthalmos), and loss of sweating on one side of the face (anhidrosis). The cause of Horner’s syndrome can be determined by examining additional symptoms. For example, congenital Horner’s syndrome may be identified by a difference in iris color (heterochromia), while anhidrosis may be present in central or preganglionic lesions. Pharmacologic tests, such as the use of apraclonidine drops, can also be helpful in confirming the diagnosis and identifying the location of the lesion. Central lesions may be caused by conditions such as stroke or multiple sclerosis, while postganglionic lesions may be due to factors like carotid artery dissection or cluster headaches. It is important to note that the appearance of enophthalmos in Horner’s syndrome is actually due to a narrow palpebral aperture rather than true enophthalmos.

    • This question is part of the following fields:

      • Neurological System
      55
      Seconds
  • Question 7 - A 43-year-old woman presents to the respiratory ward with an 8-day history of...

    Incorrect

    • A 43-year-old woman presents to the respiratory ward with an 8-day history of fever, dry cough, and shortness of breath. She recently returned from a vacation in southern Spain. The patient has a medical history of type 1 diabetes.

      The chest x-ray shows bi-basal opacification. Blood tests reveal the following results: Na+ 127 mmol/L (135 - 145), K+ 5.0 mmol/L (3.5 - 5.0), Urea 12.1 mmol/L (2.0 - 7.0), Creatinine 200 µmol/L (55 - 120), and CRP 199 mg/L (< 5).

      What type of culture medium is required to cultivate the probable causative agent?

      Your Answer: Bordet-Gengou agar

      Correct Answer: Charcoal yeast agar

      Explanation:

      Charcoal yeast agar (with cysteine) is the correct culture medium for isolating Legionella pneumophila, the bacterium responsible for atypical pneumonia. This organism is commonly associated with individuals who have recently traveled and stayed in air-conditioned rooms, as seen in this patient’s clinical history. In addition to respiratory symptoms, Legionella pneumophila can also cause extra-pulmonary symptoms such as hyponatremia. Therefore, charcoal yeast agar is the appropriate medium for culturing this organism.

      Bordet-Gengou agar, chocolate agar, and Loeffler’s media are all incorrect choices for this patient’s presentation as they are used for culturing different organisms such as Bordetella pertussis, Haemophilus influenzae, and Corynebacterium diphtheriae, respectively.

      Culture Requirements for Common Organisms

      Different microorganisms require specific culture conditions to grow and thrive. The table above lists some of the culture requirements for the more common organisms. For instance, Neisseria gonorrhoeae requires Thayer-Martin agar, which is a variant of chocolate agar, and the addition of Vancomycin, Polymyxin, and Nystatin to inhibit Gram-positive, Gram-negative, and fungal growth, respectively. Haemophilus influenzae, on the other hand, grows on chocolate agar with factors V (NAD+) and X (hematin).

      To remember the culture requirements for some of these organisms, some mnemonics can be used. For example, Nice Homes have chocolate can help recall that Neisseria and Haemophilus grow on chocolate agar. If I Tell-U the Corny joke Right, you’ll Laugh can be used to remember that Corynebacterium diphtheriae grows on tellurite agar or Loeffler’s media. Lactating pink monkeys can help recall that lactose fermenting bacteria, such as Escherichia coli, grow on MacConkey agar resulting in pink colonies. Finally, BORDETella pertussis can be used to remember that Bordetella pertussis grows on Bordet-Gengou (potato) agar.

    • This question is part of the following fields:

      • General Principles
      8072.3
      Seconds
  • Question 8 - Abnormal conduction in the heart can result in arrhythmias, which may be caused...

    Correct

    • Abnormal conduction in the heart can result in arrhythmias, which may be caused by reduced blood flow in the coronary arteries leading to hypoxia. This can slow depolarisation in phase 0, resulting in slower conduction speeds.

      What ion movement is responsible for the rapid depolarisation observed in the cardiac action potential?

      Your Answer: Sodium influx

      Explanation:

      Rapid depolarization is caused by a rapid influx of sodium.

      During phase 2, the plateau period, calcium influx is responsible.

      To maintain the electrical gradient, there is potassium influx in phase 4, which is facilitated by inward rectifying K+ channels and the Na+/K+ ion exchange pump.

      Potassium efflux mainly occurs during phases 1 and 3.

      Understanding the Cardiac Action Potential and Conduction Velocity

      The cardiac action potential is a series of electrical events that occur in the heart during each heartbeat. It is responsible for the contraction of the heart muscle and the pumping of blood throughout the body. The action potential is divided into five phases, each with a specific mechanism. The first phase is rapid depolarization, which is caused by the influx of sodium ions. The second phase is early repolarization, which is caused by the efflux of potassium ions. The third phase is the plateau phase, which is caused by the slow influx of calcium ions. The fourth phase is final repolarization, which is caused by the efflux of potassium ions. The final phase is the restoration of ionic concentrations, which is achieved by the Na+/K+ ATPase pump.

      Conduction velocity is the speed at which the electrical signal travels through the heart. The speed varies depending on the location of the signal. Atrial conduction spreads along ordinary atrial myocardial fibers at a speed of 1 m/sec. AV node conduction is much slower, at 0.05 m/sec. Ventricular conduction is the fastest in the heart, achieved by the large diameter of the Purkinje fibers, which can achieve velocities of 2-4 m/sec. This allows for a rapid and coordinated contraction of the ventricles, which is essential for the proper functioning of the heart. Understanding the cardiac action potential and conduction velocity is crucial for diagnosing and treating heart conditions.

    • This question is part of the following fields:

      • Cardiovascular System
      28.9
      Seconds
  • Question 9 - A 67-year-old patient is seeking treatment for their heart failure at the cardiology...

    Correct

    • A 67-year-old patient is seeking treatment for their heart failure at the cardiology outpatient clinic. The medical team has decided to prescribe a medication that will enhance their heart rate and strength.

      Which adrenoceptor class should be the focus of the treatment?

      Your Answer: Beta 1

      Explanation:

      Beta 1 adrenoceptors are responsible for increasing both heart rate and force, while alpha 1 adrenoceptors cause salivary secretion and relaxation of GI smooth muscle. Alpha 2 adrenoceptors are located presynaptically and work to inhibit neurotransmitter release. Beta 2 adrenoceptors, on the other hand, are responsible for relaxing smooth muscle in the respiratory tree, GI tract, and vasculature.

      Adrenoceptors are a type of receptor found in the body that respond to the hormone adrenaline. There are four main types of adrenoceptors: alpha-1, alpha-2, beta-1, and beta-2. Each type of adrenoceptor is responsible for different physiological responses in the body.

      Alpha-1 adrenoceptors are found in various tissues throughout the body and are responsible for vasoconstriction, relaxation of GI smooth muscle, salivary secretion, and hepatic glycogenolysis. On the other hand, alpha-2 adrenoceptors are mainly presynaptic and inhibit the release of neurotransmitters such as norepinephrine and acetylcholine from autonomic nerves. They also inhibit insulin and promote platelet aggregation.

      Beta-1 adrenoceptors are mainly located in the heart and are responsible for increasing heart rate and force. Beta-2 adrenoceptors, on the other hand, are found in various tissues such as the lungs, blood vessels, and GI tract. They are responsible for vasodilation, bronchodilation, and relaxation of GI smooth muscle. Lastly, beta-3 adrenoceptors are found in adipose tissue and promote lipolysis.

      All adrenoceptors are G-protein coupled, meaning they activate intracellular signaling pathways when activated by adrenaline. Alpha-1 adrenoceptors activate phospholipase C, which leads to the production of inositol triphosphate (IP3) and diacylglycerol (DAG). Alpha-2 adrenoceptors inhibit adenylate cyclase, while beta-1 and beta-2 adrenoceptors stimulate adenylate cyclase. Beta-3 adrenoceptors also stimulate adenylate cyclase.

      In summary, adrenoceptors play a crucial role in regulating various physiological responses in the body. Understanding their functions and signaling pathways can help in the development of drugs that target these receptors for therapeutic purposes.

    • This question is part of the following fields:

      • General Principles
      26
      Seconds
  • Question 10 - A 42-year-old woman has been admitted to the renal ward with acute kidney...

    Incorrect

    • A 42-year-old woman has been admitted to the renal ward with acute kidney injury. Her blood test shows that her potassium levels are above normal limits. While renal failure is a known cause of hyperkalaemia, the patient mentions having an endocrine disorder in the past but cannot recall its name. This information is crucial as certain endocrine disorders can also cause potassium disturbances. Which of the following endocrine disorders is commonly associated with hyperkalaemia?

      Your Answer: Hyperthyroidism

      Correct Answer: Addison's disease

      Explanation:

      The correct answer is Addison’s disease, which is a condition of primary adrenal insufficiency. One of the hormones that is deficient in this disease is aldosterone, which plays a crucial role in maintaining the balance of potassium in the body. Aldosterone activates Na+/K+ ATPase pumps on the cell wall, causing the movement of potassium into the cell and increasing renal potassium secretion. Therefore, a lack of aldosterone leads to hyperkalaemia.

      Phaeochromocytomas are tumours that produce catecholamines and typically arise in the adrenal medulla. They are associated with hypertension and hyperglycaemia, but not disturbances in potassium balance.

      Hyperthyroidism is a condition of excess thyroid hormone and does not affect potassium balance.

      Conn’s syndrome, on the other hand, is a type of primary hyperaldosteronism where there is excess aldosterone production. Aldosterone activates the Na+/K+ pump on the cell wall, causing the movement of potassium into the cell, which can lead to hypokalaemia.

      Addison’s disease is the most common cause of primary hypoadrenalism in the UK, with autoimmune destruction of the adrenal glands being the main culprit, accounting for 80% of cases. This results in reduced production of cortisol and aldosterone. Symptoms of Addison’s disease include lethargy, weakness, anorexia, nausea and vomiting, weight loss, and salt-craving. Hyperpigmentation, especially in palmar creases, vitiligo, loss of pubic hair in women, hypotension, hypoglycemia, and hyponatremia and hyperkalemia may also be observed. In severe cases, a crisis may occur, leading to collapse, shock, and pyrexia.

      Other primary causes of hypoadrenalism include tuberculosis, metastases (such as bronchial carcinoma), meningococcal septicaemia (Waterhouse-Friderichsen syndrome), HIV, and antiphospholipid syndrome. Secondary causes include pituitary disorders, such as tumours, irradiation, and infiltration. Exogenous glucocorticoid therapy can also lead to hypoadrenalism.

      It is important to note that primary Addison’s disease is associated with hyperpigmentation, while secondary adrenal insufficiency is not.

    • This question is part of the following fields:

      • Endocrine System
      29.8
      Seconds
  • Question 11 - A 72-year-old man is receiving an angiogram to investigate gastrointestinal bleeding. During the...

    Incorrect

    • A 72-year-old man is receiving an angiogram to investigate gastrointestinal bleeding. During the procedure, the radiologist inserts the catheter into the coeliac axis. What is the usual spinal level where this vessel originates from the aorta?

      Your Answer: None of the above

      Correct Answer: T12

      Explanation:

      The coeliac axis is positioned at T12 and branches off the aorta at an almost horizontal angle. It comprises three significant branches.

      Branches of the Abdominal Aorta

      The abdominal aorta is a major blood vessel that supplies oxygenated blood to the abdominal organs and lower extremities. It gives rise to several branches that supply blood to various organs and tissues. These branches can be classified into two types: parietal and visceral.

      The parietal branches supply blood to the walls of the abdominal cavity, while the visceral branches supply blood to the abdominal organs. The branches of the abdominal aorta include the inferior phrenic, coeliac, superior mesenteric, middle suprarenal, renal, gonadal, lumbar, inferior mesenteric, median sacral, and common iliac arteries.

      The inferior phrenic artery arises from the upper border of the abdominal aorta and supplies blood to the diaphragm. The coeliac artery supplies blood to the liver, stomach, spleen, and pancreas. The superior mesenteric artery supplies blood to the small intestine, cecum, and ascending colon. The middle suprarenal artery supplies blood to the adrenal gland. The renal arteries supply blood to the kidneys. The gonadal arteries supply blood to the testes or ovaries. The lumbar arteries supply blood to the muscles and skin of the back. The inferior mesenteric artery supplies blood to the descending colon, sigmoid colon, and rectum. The median sacral artery supplies blood to the sacrum and coccyx. The common iliac arteries are the terminal branches of the abdominal aorta and supply blood to the pelvis and lower extremities.

      Understanding the branches of the abdominal aorta is important for diagnosing and treating various medical conditions that affect the abdominal organs and lower extremities.

    • This question is part of the following fields:

      • Gastrointestinal System
      18.1
      Seconds
  • Question 12 - A 68-year-old woman has been diagnosed with laryngeal cancer and has quit smoking....

    Incorrect

    • A 68-year-old woman has been diagnosed with laryngeal cancer and has quit smoking. Surgery is planned to remove the cancer through a laryngectomy. What vertebral level/levels will the organ be located during the procedure?

      Your Answer: C1 to C2

      Correct Answer: C3 to C6

      Explanation:

      The larynx is situated in the front of the neck at the level of the C3-C6 vertebrae. This is the correct location for accessing the larynx during a laryngectomy. The larynx is not located at the C1-C2 level, as these are the atlas bones. It is also not located at the C2-C3 level, which is where the hyoid bone can be found. The C7 level is where the isthmus of the thyroid gland is located, not the larynx.

      Anatomy of the Larynx

      The larynx is located in the front of the neck, between the third and sixth cervical vertebrae. It is made up of several cartilaginous segments, including the paired arytenoid, corniculate, and cuneiform cartilages, as well as the single thyroid, cricoid, and epiglottic cartilages. The cricoid cartilage forms a complete ring. The laryngeal cavity extends from the laryngeal inlet to the inferior border of the cricoid cartilage and is divided into three parts: the laryngeal vestibule, the laryngeal ventricle, and the infraglottic cavity.

      The vocal folds, also known as the true vocal cords, control sound production. They consist of the vocal ligament and the vocalis muscle, which is the most medial part of the thyroarytenoid muscle. The glottis is composed of the vocal folds, processes, and rima glottidis, which is the narrowest potential site within the larynx.

      The larynx is also home to several muscles, including the posterior cricoarytenoid, lateral cricoarytenoid, thyroarytenoid, transverse and oblique arytenoids, vocalis, and cricothyroid muscles. These muscles are responsible for various actions, such as abducting or adducting the vocal folds and relaxing or tensing the vocal ligament.

      The larynx receives its arterial supply from the laryngeal arteries, which are branches of the superior and inferior thyroid arteries. Venous drainage is via the superior and inferior laryngeal veins. Lymphatic drainage varies depending on the location within the larynx, with the vocal cords having no lymphatic drainage and the supraglottic and subglottic parts draining into different lymph nodes.

      Overall, understanding the anatomy of the larynx is important for proper diagnosis and treatment of various conditions affecting this structure.

    • This question is part of the following fields:

      • Respiratory System
      14.7
      Seconds
  • Question 13 - A 45-year-old woman presents to the emergency department with a severe headache that...

    Incorrect

    • A 45-year-old woman presents to the emergency department with a severe headache that started suddenly during exercise. She reports vomiting and recurrent vertigo sensations. On examination, she has an ataxic gait, left-sided horizontal nystagmus, and an intention tremor during the 'finger-to-nose' test. An urgent CT scan is ordered. Which arteries provide blood supply to the affected area of the brain?

      Your Answer: Anterior and middle cerebral arteries

      Correct Answer: Basilar and the vertebral arteries

      Explanation:

      The correct answer is the basilar and vertebral arteries, which form branches that supply the cerebellum. The patient’s sudden onset headache, vomiting, and vertigo suggest a pathology focused on the brain, with ataxia, nystagmus, and intention tremor indicating cerebellar syndrome. A CT scan is necessary to rule out a cerebellar haemorrhage or stroke, as the basilar and vertebral arteries are the main arterial supply to the cerebellum.

      The incorrect answer is the anterior and middle cerebral arteries, which supply the cerebral cortex and would present with different symptoms. The anterior and posterior spinal arteries are also incorrect, as they supply the spine and would present with different symptoms. The ophthalmic and central retinal artery is also incorrect, as it would only present with visual symptoms and not the other symptoms seen in this patient.

      The Circle of Willis is an anastomosis formed by the internal carotid arteries and vertebral arteries on the bottom surface of the brain. It is divided into two halves and is made up of various arteries, including the anterior communicating artery, anterior cerebral artery, internal carotid artery, posterior communicating artery, and posterior cerebral arteries. The circle and its branches supply blood to important areas of the brain, such as the corpus striatum, internal capsule, diencephalon, and midbrain.

      The vertebral arteries enter the cranial cavity through the foramen magnum and lie in the subarachnoid space. They then ascend on the anterior surface of the medulla oblongata and unite to form the basilar artery at the base of the pons. The basilar artery has several branches, including the anterior inferior cerebellar artery, labyrinthine artery, pontine arteries, superior cerebellar artery, and posterior cerebral artery.

      The internal carotid arteries also have several branches, such as the posterior communicating artery, anterior cerebral artery, middle cerebral artery, and anterior choroid artery. These arteries supply blood to different parts of the brain, including the frontal, temporal, and parietal lobes. Overall, the Circle of Willis and its branches play a crucial role in providing oxygen and nutrients to the brain.

    • This question is part of the following fields:

      • Cardiovascular System
      24.3
      Seconds
  • Question 14 - An 82-year-old woman with a history of chronic kidney disease presents to the...

    Incorrect

    • An 82-year-old woman with a history of chronic kidney disease presents to the general practice with a painful left foot. The pain is sharp in nature and is felt mostly towards the posterior of the sole of the foot. The pain is most severe when the patient takes her first few steps after getting out of bed in the morning. There is no history of trauma. You diagnose plantar fasciitis. The usual treatment of plantar fasciitis is with NSAIDs. However, NSAIDs are contraindicated in severe renal disease. What is the effect of NSAIDs on the glomerular filtration pressure?

      Your Answer: Vasodilation of the efferent arteriole

      Correct Answer: Vasoconstriction of the afferent arteriole

      Explanation:

      The correct answer is vasoconstriction of the afferent arteriole, as explained in the following notes.

      ACE inhibitors and ARBs cause vasodilation of the efferent arteriole, which reduces glomerular filtration pressure. This effect is particularly significant in individuals with renal artery stenosis, as their kidneys receive limited perfusion, including the glomeruli.

      In a healthy individual, the afferent arteriole remains dilated, while the efferent arteriole remains constricted to maintain a fine balance of glomerular pressure. Vasodilation of the afferent arteriole or vasoconstriction of the efferent arteriole would both increase glomerular filtration pressure.

      The patient in the given question is experiencing symptoms that suggest plantar fasciitis, a common condition caused by inflammation of the plantar fascia in the foot.

      The Impact of NSAIDs on Kidney Function

      NSAIDs are commonly used anti-inflammatory drugs that work by inhibiting the enzymes COX-1 and COX-2, which are responsible for the synthesis of prostanoids such as prostaglandins and thromboxanes. In the kidneys, prostaglandins play a crucial role in vasodilating the afferent arterioles of the glomeruli, allowing for increased blood flow and a higher glomerular filtration rate (GFR).

      However, when NSAIDs inhibit the COX enzymes, the levels of prostaglandins decrease, leading to a reduction in afferent arteriole vasodilation and subsequently, a decrease in renal perfusion and GFR. This can have negative consequences for kidney function, particularly in individuals with pre-existing kidney disease or those taking high doses of NSAIDs for prolonged periods of time.

      It is important for healthcare providers to consider the potential impact of NSAIDs on kidney function and to monitor patients accordingly, especially those at higher risk for kidney damage. Alternative treatments or lower doses of NSAIDs may be recommended to minimize the risk of kidney injury.

    • This question is part of the following fields:

      • Renal System
      76.6
      Seconds
  • Question 15 - A 55-year-old man visits his general practitioner complaining of pain in the back...

    Incorrect

    • A 55-year-old man visits his general practitioner complaining of pain in the back of his leg. The doctor suspects a sciatic nerve injury.

      During the examination, which reflexes are expected to be absent?

      Your Answer: Patellar (knee) reflex

      Correct Answer: Ankle reflex

      Explanation:

      When the sciatic nerve is damaged, the reflexes in the ankle and plantar areas are lost, but the knee jerk reflex remains intact. This can cause pain and numbness in the back of the leg. If the damage occurs at the pelvic outlet, the ability to flex the knee may be lost, but the knee jerk reflex will still be present. During a neurological examination of the upper limb, the reflexes in the biceps, brachioradialis, and triceps are tested. Additionally, the sural and tibial nerve reflexes are cutaneous reflexes that are activated during walking.

      Understanding Sciatic Nerve Lesion

      The sciatic nerve is a major nerve that is supplied by the L4-5, S1-3 vertebrae and divides into the tibial and common peroneal nerves. It is responsible for supplying the hamstring and adductor muscles. When the sciatic nerve is damaged, it can result in a range of symptoms that affect both motor and sensory functions.

      Motor symptoms of sciatic nerve lesion include paralysis of knee flexion and all movements below the knee. Sensory symptoms include loss of sensation below the knee. Reflexes may also be affected, with ankle and plantar reflexes lost while the knee jerk reflex remains intact.

      There are several causes of sciatic nerve lesion, including fractures of the neck of the femur, posterior hip dislocation, and trauma.

    • This question is part of the following fields:

      • Neurological System
      15.1
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  • Question 16 - Liam, who is also suffering from chronic pancreatitis, undergoes a distal pancreatectomy. During...

    Incorrect

    • Liam, who is also suffering from chronic pancreatitis, undergoes a distal pancreatectomy. During a post-surgery consultation, he expresses his concern to the doctor about the possibility of experiencing poor food digestion after the operation, as he has read about others who have had the same issue. What measures can the doctor take to prevent this from happening to Liam?

      Your Answer: Refer her to a dietitian for advice regarding her diet

      Correct Answer: Prescribe pancreatic enzymes (e.g. Creon)

      Explanation:

      To aid digestion of food in patients with chronic pancreatitis, the management plan includes the replacement of pancreatic enzymes such as Creon. Inadequacy of pancreatic enzymes due to pancreatic surgery can also lead to poor digestion of food, which can be prevented by providing patients with pancreatic enzyme supplements like Creon. However, proton pump inhibitors or probiotics are not effective in replacing pancreatic enzymes. Fiona does not require a low fibre diet.

      Understanding Chronic Pancreatitis

      Chronic pancreatitis is a condition characterized by inflammation that can affect both the exocrine and endocrine functions of the pancreas. While alcohol excess is the leading cause of this condition, up to 20% of cases are unexplained. Other causes include genetic factors such as cystic fibrosis and haemochromatosis, as well as ductal obstruction due to tumors, stones, and structural abnormalities.

      Symptoms of chronic pancreatitis include pain that worsens 15 to 30 minutes after a meal, steatorrhoea, and diabetes mellitus. Abdominal x-rays and CT scans are used to detect pancreatic calcification, which is present in around 30% of cases. Functional tests such as faecal elastase may also be used to assess exocrine function if imaging is inconclusive.

      Management of chronic pancreatitis involves pancreatic enzyme supplements, analgesia, and antioxidants. While there is limited evidence to support the use of antioxidants, one study suggests that they may be beneficial in early stages of the disease. Overall, understanding the causes and symptoms of chronic pancreatitis is crucial for effective management and treatment.

    • This question is part of the following fields:

      • Gastrointestinal System
      86.5
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  • Question 17 - A 75-year-old woman visits her GP complaining of difficulty eating and weight loss...

    Correct

    • A 75-year-old woman visits her GP complaining of difficulty eating and weight loss that has persisted for three months. She has a medical history of hypertension, type 2 diabetes mellitus, dyslipidemia, and osteoporosis.

      During the examination, the patient's body appears cachectic. Fasciculation of the tongue is observed in the oral cavity, and when asked to stick her tongue out, it deviates to the left. The patient is unable to move her tongue towards her right side.

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

      Your Answer: Left hypoglossal nerve

      Explanation:

      The tongue deviates towards the side of the lesion in a hypoglossal nerve palsy, with the left hypoglossal nerve being the correct answer. Lesions of the Edinger-Westphal nucleus, left facial nerve, and right facial nerve would not cause tongue deviation as they do not control tongue movements.

      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.

    • This question is part of the following fields:

      • Neurological System
      40.6
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  • Question 18 - A 58-year-old woman presents to her GP with a 4-week history of abdominal...

    Incorrect

    • A 58-year-old woman presents to her GP with a 4-week history of abdominal pain, fatigue and bruising. After various investigations, she is diagnosed with chronic myeloid leukaemia. What is the probable pathophysiology responsible for her abdominal pain?

      Your Answer: Duodenal ulcer

      Correct Answer: Splenomegaly

      Explanation:

      Massive splenomegaly can be a symptom of chronic myeloid leukaemia (CML), which is the known diagnosis of this woman. Left-sided swelling, increased tendency to bruise or bleed, and abdominal pain may also be present. However, a duodenal ulcer is more likely to cause indigestion and is not commonly associated with CML. While hepatomegaly may occur in CML, it is less common and less marked than splenomegaly. Large bowel obstruction is not typically associated with CML, but may be a presenting symptom of undiagnosed colorectal cancer. Although splenic rupture can cause abdominal pain, it is more likely to lead to an acute presentation due to complications of acute intra-abdominal bleeding.

      Understanding Chronic Myeloid Leukaemia and its Management

      Chronic myeloid leukaemia (CML) is a type of cancer that affects the blood and bone marrow. It is characterized by the presence of the Philadelphia chromosome in more than 95% of patients. This chromosome is formed due to a translocation between chromosomes 9 and 22, resulting in the fusion of the ABL proto-oncogene and the BCR gene. The resulting BCR-ABL gene produces a fusion protein that has excessive tyrosine kinase activity.

      CML typically affects individuals between the ages of 60-70 years and presents with symptoms such as anaemia, weight loss, sweating, and splenomegaly. The condition is also associated with an increase in granulocytes at different stages of maturation and thrombocytosis. In some cases, CML may undergo blast transformation, leading to acute myeloid leukaemia (AML) or acute lymphoblastic leukaemia (ALL).

      The management of CML involves various treatment options, including imatinib, which is considered the first-line treatment. Imatinib is an inhibitor of the tyrosine kinase associated with the BCR-ABL defect and has a very high response rate in chronic phase CML. Other treatment options include hydroxyurea, interferon-alpha, and allogeneic bone marrow transplant. With proper management, individuals with CML can lead a normal life.

    • This question is part of the following fields:

      • Haematology And Oncology
      22.2
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  • Question 19 - A 30-year-old female visits her GP complaining of visual disturbance that has been...

    Incorrect

    • A 30-year-old female visits her GP complaining of visual disturbance that has been ongoing for 2 days. She reports experiencing blurry vision in her left eye and pain when moving it. She denies having any signs of infection. About 4 months ago, she had a brief episode of weakness and tingling in her left arm that resolved on its own.

      What is the probable diagnosis for this patient, and which cells are likely to be targeted by her immune system in this condition?

      Your Answer: Schwann cells

      Correct Answer: Oligodendrocytes

      Explanation:

      The production of myelin in the CNS is the responsibility of oligodendrocytes.

      The nervous system is composed of various types of cells, each with their own unique functions. Oligodendroglia cells are responsible for producing myelin in the central nervous system (CNS) and are affected in multiple sclerosis. Schwann cells, on the other hand, produce myelin in the peripheral nervous system (PNS) and are affected in Guillain-Barre syndrome. Astrocytes provide physical support, remove excess potassium ions, help form the blood-brain barrier, and aid in physical repair. Microglia are specialised CNS phagocytes, while ependymal cells provide the inner lining of the ventricles.

      In summary, the nervous system is made up of different types of cells, each with their own specific roles. Oligodendroglia and Schwann cells produce myelin in the CNS and PNS, respectively, and are affected in certain diseases. Astrocytes provide physical support and aid in repair, while microglia are specialised phagocytes in the CNS. Ependymal cells line the ventricles. Understanding the functions of these cells is crucial in understanding the complex workings of the nervous system.

    • This question is part of the following fields:

      • Neurological System
      17.7
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  • Question 20 - As a final year medical student in the emergency department, you encounter a...

    Correct

    • As a final year medical student in the emergency department, you encounter a 70-year-old woman who presents with a history of falling down the stairs at home. She reports a sudden onset of difficulty with speech and loss of the left side of her field of vision, and is currently experiencing vomiting. The department staff have arranged for a CT scan of her head, with a tentative diagnosis of either a stroke or transient ischaemic attack (TIA).

      What is the distinguishing factor between these two potential diagnoses?

      Your Answer: TIAs do not cause acute infarction

      Explanation:

      The definition of a TIA has been updated to be based on tissue rather than time. It now refers to a temporary episode of neurological dysfunction caused by focal brain, spinal cord, or retinal ischemia, without resulting in acute infarction. Both TIAs and strokes can affect the spinal cord, brain, and retina, and both can cause symptoms that may require hospitalization. However, neither condition typically results in a significant troponin rise, which is more commonly associated with cardiac events.

      A transient ischaemic attack (TIA) is a brief period of neurological deficit caused by a vascular issue, lasting less than an hour. The original definition of a TIA was based on time, but it is now recognized that even short periods of ischaemia can result in pathological changes to the brain. Therefore, a new ’tissue-based’ definition is now used. The clinical features of a TIA are similar to those of a stroke, but the symptoms resolve within an hour. Possible features include unilateral weakness or sensory loss, aphasia or dysarthria, ataxia, vertigo, or loss of balance, visual problems, sudden transient loss of vision in one eye (amaurosis fugax), diplopia, and homonymous hemianopia.

      NICE recommends immediate antithrombotic therapy, giving aspirin 300 mg immediately unless the patient has a bleeding disorder or is taking an anticoagulant. If aspirin is contraindicated, management should be discussed urgently with the specialist team. Specialist review is necessary if the patient has had more than one TIA or has a suspected cardioembolic source or severe carotid stenosis. Urgent assessment within 24 hours by a specialist stroke physician is required if the patient has had a suspected TIA in the last 7 days. Referral for specialist assessment should be made as soon as possible within 7 days if the patient has had a suspected TIA more than a week previously. The person should be advised not to drive until they have been seen by a specialist.

      Neuroimaging should be done on the same day as specialist assessment if possible. MRI is preferred to determine the territory of ischaemia or to detect haemorrhage or alternative pathologies. Carotid imaging is necessary as atherosclerosis in the carotid artery may be a source of emboli in some patients. All patients should have an urgent carotid doppler unless they are not a candidate for carotid endarterectomy.

      Antithrombotic therapy is recommended, with clopidogrel being the first-line treatment. Aspirin + dipyridamole should be given to patients who cannot tolerate clopidogrel. Carotid artery endarterectomy should only be considered if the patient has suffered a stroke or TIA in the carotid territory and is not severely disabled. It should only be recommended if carotid stenosis is greater

    • This question is part of the following fields:

      • Neurological System
      63.3
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  • Question 21 - A 68-year-old man presented to the emergency department with sudden onset double vision...

    Incorrect

    • A 68-year-old man presented to the emergency department with sudden onset double vision on rightward gaze. He had a history of ischaemic heart disease and hypercholesterolemia, and smoked 10 cigarettes per day.

      Upon examination, his gait and peripheral neurological examination were normal. However, his left eye did not adduct on rightward gaze and his right eye exhibited nystagmus. The pupils were equal and reactive to light.

      To rule out a possible stroke, an urgent MRI of the brain was arranged. Where is the neurological lesion that could explain this clinical presentation?

      Your Answer: Right oculomotor nucleus

      Correct Answer: Left medial longitudinal fasciculus

      Explanation:

      Internuclear ophthalmoplegia is caused by a lesion in the medial longitudinal fasciculus (MLF), which affects conjugate eye movements. The MLF connects the abducens nucleus to the contralateral oculomotor nucleus. A lesion in the MLF results in a failure of conjugate gaze and diplopia. Horizontal nystagmus of the affected eye is explained by Hering’s law of equal innervation. Lesions of the abducens or oculomotor nuclei would result in more profound ophthalmoplegias. The patient is at high risk for a stroke.

      Understanding Internuclear Ophthalmoplegia

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

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

    • This question is part of the following fields:

      • Neurological System
      60.6
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  • Question 22 - A 28-year-old woman presents to the haematology ward with a 3-month history of...

    Correct

    • A 28-year-old woman presents to the haematology ward with a 3-month history of fatigue, weight loss, and neck swelling. She reports experiencing intermittent fevers. The patient has no significant medical history. Upon examination, non-tender cervical and axillary lymphadenopathy is observed. A blood film is taken and reveals the presence of Reed-Sternberg cells. What is the probable diagnosis?

      Your Answer: Hodgkin's lymphoma

      Explanation:

      Hodgkin’s lymphoma is characterized by the presence of Reed-Sternberg cells.

      Hodgkin’s lymphoma is a type of blood cancer that is often accompanied by painless swelling of the lymph nodes, as well as symptoms such as fever, weight loss, and night sweats. One of the defining features of this disease is the presence of Reed-Sternberg cells, which are large, abnormal lymphocytes that can have multiple nuclei. These cells are not typically seen in other types of blood cancer, such as acute lymphoblastic leukemia (ALL), acute myeloid leukemia (AML), or chronic lymphocytic leukemia (CLL). Instead, each of these diseases has its own characteristic features that can be identified through laboratory testing and other diagnostic methods.

      Understanding Hodgkin’s Lymphoma: Symptoms and Risk Factors

      Hodgkin’s lymphoma is a type of cancer that affects the lymphocytes and is characterized by the presence of Reed-Sternberg cells. It is most commonly seen in people in their third and seventh decades of life. There are certain risk factors that increase the likelihood of developing Hodgkin’s lymphoma, such as HIV and the Epstein-Barr virus.

      The most common symptom of Hodgkin’s lymphoma is lymphadenopathy, which is the enlargement of lymph nodes. This is usually painless, non-tender, and asymmetrical, and is most commonly seen in the neck, followed by the axillary and inguinal regions. In some cases, alcohol-induced lymph node pain may be present, but this is seen in less than 10% of patients. Other symptoms of Hodgkin’s lymphoma include weight loss, pruritus, night sweats, and fever (Pel-Ebstein). A mediastinal mass may also be present, which can cause symptoms such as coughing. In some cases, Hodgkin’s lymphoma may be found incidentally on a chest x-ray.

      When investigating Hodgkin’s lymphoma, normocytic anaemia may be present, which can be caused by factors such as hypersplenism, bone marrow replacement by HL, or Coombs-positive haemolytic anaemia. Eosinophilia may also be present, which is caused by the production of cytokines such as IL-5. LDH levels may also be raised.

      In summary, Hodgkin’s lymphoma is a type of cancer that affects the lymphocytes and is characterized by the presence of Reed-Sternberg cells. It is most commonly seen in people in their third and seventh decades of life and is associated with risk factors such as HIV and the Epstein-Barr virus. Symptoms of Hodgkin’s lymphoma include lymphadenopathy, weight loss, pruritus, night sweats, and fever. When investigating Hodgkin’s lymphoma, normocytic anaemia, eosinophilia, and raised LDH levels may be present.

    • This question is part of the following fields:

      • Haematology And Oncology
      85.6
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  • Question 23 - A 67-year-old woman is scheduled for a total hip replacement on her right...

    Incorrect

    • A 67-year-old woman is scheduled for a total hip replacement on her right side. The surgeon plans to use the lateral approach to access the hip joint, which involves dividing the tensor fascia lata, as well as the gluteus medius and minimus muscles. However, this approach poses a risk to the nerve supply of these muscles. Can you identify the nerve that innervates the tensor fascia lata and gluteus medius muscles?

      Your Answer: Posterior branch of obturator nerve

      Correct Answer: Superior gluteal nerve

      Explanation:

      Nerves and Approaches to the Hip Joint

      The superior gluteal nerve originates from L4-S1 and exits the pelvis through the greater sciatic foramen. It provides innervation to the gluteus medius, gluteus minimus, and tensor fascia lata muscles. However, the nerves in danger depend on the approach used to access the hip joint.

      The posterior approach involves an incision through the deep fascia and gluteus maximus, followed by division of the external rotators. This approach puts the sciatic nerve at risk. On the other hand, the anterior approach involves the planes between tensor fascia lata and sartorius, and then rectus femoris and gluteus medius. This approach endangers the lateral femoral cutaneous nerve of the thigh.

      In summary, the nerves at risk during hip joint access depend on the approach used. The posterior approach puts the sciatic nerve in danger, while the anterior approach endangers the lateral femoral cutaneous nerve of the thigh. It is important for medical professionals to be aware of these potential risks to minimize complications during hip joint procedures.

    • This question is part of the following fields:

      • Clinical Sciences
      31.3
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  • Question 24 - A 54-year-old man complains of facial pain and discomfort during meals. He has...

    Incorrect

    • A 54-year-old man complains of facial pain and discomfort during meals. He has been experiencing halitosis and a dry mouth. Additionally, he has a lump under his left mandible. What is the probable underlying diagnosis?

      Your Answer: Squamous cell carcinoma of the submandibular gland

      Correct Answer: Stone impacted in Whartons duct

      Explanation:

      The signs are indicative of sialolithiasis, which usually involves the formation of stones in the submandibular gland and can block Wharton’s duct. Stensen’s duct, on the other hand, is responsible for draining the parotid gland.

      Diseases of the Submandibular Glands

      The submandibular glands are responsible for producing mixed seromucinous secretions, which can range from more serous to more mucinous depending on parasympathetic activity. These glands secrete approximately 800-1000ml of saliva per day, with parasympathetic fibers derived from the chorda tympani nerves and the submandibular ganglion. However, several conditions can affect the submandibular glands.

      One such condition is sialolithiasis, which occurs when salivary gland calculi form in the submandibular gland. These stones are usually composed of calcium phosphate or calcium carbonate and can cause colicky pain and postprandial swelling of the gland. Sialography is used to investigate the site of obstruction and associated stones, with impacted stones in the distal aspect of Wharton’s duct potentially removed orally. However, other stones and chronic inflammation may require gland excision.

      Sialadenitis is another condition that can affect the submandibular glands, usually as a result of Staphylococcus aureus infection. This can cause pus to leak from the duct and erythema to be noted. A submandibular abscess may develop, which is a serious complication as it can spread through other deep fascial spaces and occlude the airway.

      Finally, submandibular tumors can also affect these glands, with only 8% of salivary gland tumors affecting the submandibular gland. Of these, 50% are malignant, usually adenoid cystic carcinoma. Diagnosis usually involves fine needle aspiration cytology, with imaging using CT and MRI. Due to the high prevalence of malignancy, all masses of the submandibular glands should generally be excised.

    • This question is part of the following fields:

      • Respiratory System
      49.1
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  • Question 25 - A six-month-old infant is brought to the emergency department due to sudden abdominal...

    Incorrect

    • A six-month-old infant is brought to the emergency department due to sudden abdominal pain and distension. The infant has a history of lethargy, growth restriction, and overall weakness. Upon abdominal examination, splenomegaly is noted. Further investigations reveal a diagnosis of sickle cell disease, with the acute presentation believed to be an acute crisis. Based on this information, what is the most probable haemoglobin trait in this patient?

      Your Answer: HbA HbS

      Correct Answer: HbS HbS

      Explanation:

      Understanding Sickle-Cell Anaemia

      Sickle-cell anaemia is a genetic disorder that occurs when an abnormal haemoglobin chain, known as HbS, is synthesized due to an autosomal recessive condition. This condition is more common in people of African descent, as the heterozygous condition offers some protection against malaria. In the UK, around 10% of Afro-Caribbean individuals are carriers of HbS. Symptoms in homozygotes typically do not develop until 4-6 months when the abnormal HbSS molecules take over from fetal haemoglobin.

      The pathophysiology of sickle-cell anaemia involves the substitution of the polar amino acid glutamate with the non-polar valine in each of the two beta chains (codon 6) of haemoglobin. This substitution decreases the water solubility of deoxy-Hb, causing HbS molecules to polymerize and sickle in the deoxygenated state. HbAS patients sickle at p02 2.5 – 4 kPa, while HbSS patients sickle at p02 5 – 6 kPa. Sickle cells are fragile and can cause haemolysis, block small blood vessels, and lead to infarction.

      To diagnose sickle-cell anaemia, haemoglobin electrophoresis is the definitive test. It is essential to understand the pathophysiology and symptoms of sickle-cell anaemia to provide appropriate care and management for affected individuals.

    • This question is part of the following fields:

      • Haematology And Oncology
      16.9
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  • Question 26 - A 65 year old man is scheduled for a lymph node biopsy on...

    Incorrect

    • A 65 year old man is scheduled for a lymph node biopsy on the posterolateral aspect of his right neck due to suspected lymphoma. Which nerve is most vulnerable in this procedure?

      Your Answer: Facial

      Correct Answer: Accessory

      Explanation:

      The accessory nerve is at risk of injury due to its superficial location and proximity to the platysma muscle. It may be divided during the initial stages of a procedure.

      The Accessory Nerve and Its Functions

      The accessory nerve is the eleventh cranial nerve that provides motor innervation to the sternocleidomastoid and trapezius muscles. It is important to examine the function of this nerve by checking for any loss of muscle bulk in the shoulders, asking the patient to shrug their shoulders against resistance, and turning their head against resistance.

      Iatrogenic injury, which is caused by medical treatment or procedures, is a common cause of isolated accessory nerve lesions. This is especially true for surgeries in the posterior cervical triangle, such as lymph node biopsy. It is important to be aware of the potential for injury to the accessory nerve during these procedures to prevent any long-term complications.

    • This question is part of the following fields:

      • Neurological System
      23.1
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  • Question 27 - A 63-year-old man comes to his doctor complaining of painful axillary lymphadenopathy that...

    Correct

    • A 63-year-old man comes to his doctor complaining of painful axillary lymphadenopathy that developed just one day ago. Upon further inquiry, the patient discloses that he sustained a scratch while gardening a couple of days prior. The patient states that he cleaned the wound at the time, but it has since deteriorated and is now oozing yellow fluid.

      During the examination, the wound appears hyperemic, and there is a purulent exudate.

      Where is the wound most likely located?

      Your Answer: C6 dermatome

      Explanation:

      The upper limb drains into the axillary lymph nodes, which can become painful and may lead to lymphadenitis in cases of secondary bacterial infection. The correct dermatome for sensory innervation of the lateral half of the forearm is C6, while C2 provides sensory innervation to the posterior half of the head, L2 to the anterior thighs, and T8 to a horizontal band around the torso below the umbilicus (T10), all of which are drained by different lymph nodes.

      Lymphatic drainage is the process by which lymphatic vessels carry lymph, a clear fluid containing white blood cells, away from tissues and organs and towards lymph nodes. The lymphatic vessels that drain the skin and follow venous drainage are called superficial lymphatic vessels, while those that drain internal organs and structures follow the arteries and are called deep lymphatic vessels. These vessels eventually lead to lymph nodes, which filter and remove harmful substances from the lymph before it is returned to the bloodstream.

      The lymphatic system is divided into two main ducts: the right lymphatic duct and the thoracic duct. The right lymphatic duct drains the right side of the head and right arm, while the thoracic duct drains everything else. Both ducts eventually drain into the venous system.

      Different areas of the body have specific primary lymph node drainage sites. For example, the superficial inguinal lymph nodes drain the anal canal below the pectinate line, perineum, skin of the thigh, penis, scrotum, and vagina. The deep inguinal lymph nodes drain the glans penis, while the para-aortic lymph nodes drain the testes, ovaries, kidney, and adrenal gland. The axillary lymph nodes drain the lateral breast and upper limb, while the internal iliac lymph nodes drain the anal canal above the pectinate line, lower part of the rectum, and pelvic structures including the cervix and inferior part of the uterus. The superior mesenteric lymph nodes drain the duodenum and jejunum, while the inferior mesenteric lymph nodes drain the descending colon, sigmoid colon, and upper part of the rectum. Finally, the coeliac lymph nodes drain the stomach.

    • This question is part of the following fields:

      • Haematology And Oncology
      22.9
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  • Question 28 - A 28-year-old woman, with two children, visits her doctor at 32 weeks gestation...

    Correct

    • A 28-year-old woman, with two children, visits her doctor at 32 weeks gestation to receive her pertussis vaccine. She consents to participate in a research study that aims to assess the levels of immunoglobulins produced in response to the vaccine.

      Following the vaccination, a specific immunoglobulin is observed to have a significantly elevated concentration. This immunoglobulin is capable of fixing complement and crossing the blood-placental barrier to enter the fetal circulation.

      Which immunoglobulin is being referred to in this scenario?

      Your Answer: IgG

      Explanation:

      The antibody subtype that is capable of fixing complement and passing through the blood-placental barrier to enter the fetal circulation is IgG.

      Immunoglobulins, also known as antibodies, are proteins produced by the immune system to help fight off infections and diseases. There are five types of immunoglobulins found in the body, each with their own unique characteristics.

      IgG is the most abundant type of immunoglobulin in blood serum and plays a crucial role in enhancing phagocytosis of bacteria and viruses. It also fixes complement and can be passed to the fetal circulation.

      IgA is the most commonly produced immunoglobulin in the body and is found in the secretions of digestive, respiratory, and urogenital tracts and systems. It provides localized protection on mucous membranes and is transported across the interior of the cell via transcytosis.

      IgM is the first immunoglobulin to be secreted in response to an infection and fixes complement, but does not pass to the fetal circulation. It is also responsible for producing anti-A, B blood antibodies.

      IgD’s role in the immune system is largely unknown, but it is involved in the activation of B cells.

      IgE is the least abundant type of immunoglobulin in blood serum and is responsible for mediating type 1 hypersensitivity reactions. It provides immunity to parasites such as helminths and binds to Fc receptors found on the surface of mast cells and basophils.

    • This question is part of the following fields:

      • General Principles
      21.2
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  • Question 29 - Which hormone triggers the breakdown of glycogen in the liver during fasting? ...

    Incorrect

    • Which hormone triggers the breakdown of glycogen in the liver during fasting?

      Your Answer: Insulin

      Correct Answer: Glucagon

      Explanation:

      Glycogen Formation and Degradation

      In normal circumstances, glucose in the blood is converted into glycogen by the liver with the help of insulin and rising glucose levels. This process requires several enzymes such as phosphoglucomutase, glucose-1-phosphate uridyltransferase, glycogen synthase, and branching enzyme. However, when glucose is scarce, glycogen must be broken down to release glucose into the blood. This process is mainly stimulated by the hormone glucagon and requires the enzymes glycogen phosphorylase and debranching enzyme. Defects in either glycogen formation or degradation can lead to fasting hypoglycemia, which is a common feature of many glycogen storage disorders (GSDs).

      One such disorder is glycogen synthase deficiency (GSD type 0), which typically presents in childhood with symptoms of hypoglycemia after an overnight fast. However, symptoms can be improved by administering glucose, and patients can be given corn starch to prevent symptoms in the morning. A liver biopsy will show very little glycogen, and the disease is inherited as an autosomal recessive trait. Overall, the balance between glycogen formation and degradation is crucial in maintaining normal blood sugar levels.

    • This question is part of the following fields:

      • Clinical Sciences
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  • Question 30 - A 65-year-old man presents to the Emergency Department with confusion, drowsiness, and nausea...

    Incorrect

    • A 65-year-old man presents to the Emergency Department with confusion, drowsiness, and nausea accompanied by vomiting. His daughter reports that he has been feeling fatigued and unwell with a persistent cough, and he has been smoking 20 cigarettes per day for 45 years. The patient is unable to provide a complete medical history due to his confusion, but he mentions that he sometimes coughs up blood and his urine has been darker than usual. On examination, he appears to be short of breath but euvolaemic. Blood tests reveal low serum sodium, high urinary sodium, low plasma osmolality, and high urinary osmolality. Renal and thyroid function tests are normal. A chest x-ray shows a lung carcinoma, leading you to suspect that this presentation may be caused by a syndrome of inappropriate antidiuretic hormone secretion.

      What is the underlying mechanism responsible for the hyponatraemia?

      Your Answer: Inhibition of sodium-glucose symporters

      Correct Answer: Insertion of aquaporin-2 channels

      Explanation:

      The insertion of aquaporin-2 channels is promoted by antidiuretic hormone, which facilitates water reabsorption. However, in the case of syndrome of inappropriate antidiuretic hormone secretion (SiADH), which is caused by small cell lung cancer, the normal negative feedback loop fails, resulting in the continuous production of ADH even when serum osmolality returns to normal. This leads to euvolemic hyponatremia, where the body retains water but continues to lose sodium, resulting in concentrated urine. The underlying mechanism of this condition is the persistent increase in the number of aquaporin-2 channels, which promotes water reabsorption, rather than any effect on sodium transport mechanisms.

      Understanding Antidiuretic Hormone (ADH)

      Antidiuretic hormone (ADH) is a hormone that is produced in the supraoptic nuclei of the hypothalamus and released by the posterior pituitary gland. Its primary function is to conserve body water by promoting water reabsorption in the collecting ducts of the kidneys through the insertion of aquaporin-2 channels.

      ADH secretion is regulated by various factors. An increase in extracellular fluid osmolality, a decrease in volume or pressure, and the presence of angiotensin II can all increase ADH secretion. Conversely, a decrease in extracellular fluid osmolality, an increase in volume, a decrease in temperature, or the absence of ADH can decrease its secretion.

      Diabetes insipidus (DI) is a condition that occurs when there is either a deficiency of ADH (cranial DI) or an insensitivity to ADH (nephrogenic DI). Cranial DI can be treated with desmopressin, which is an analog of ADH.

      Overall, understanding the role of ADH in regulating water balance in the body is crucial for maintaining proper hydration and preventing conditions like DI.

    • This question is part of the following fields:

      • Endocrine System
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