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  • Question 1 - A patient in their 60s presents to surgical outpatients with diffuse abdominal pain....

    Incorrect

    • A patient in their 60s presents to surgical outpatients with diffuse abdominal pain. As a second-line imaging investigation, a CT scan is requested. The radiologist looks through the images to write the report. Which of the following would they expect to find at the level of the transpyloric plane (L1)?

      Your Answer: Adrenal glands

      Correct Answer: Hila of the kidneys

      Explanation:

      The hila of the kidneys are at the level of the transpyloric plane, with the left kidney slightly higher than the right. The adrenal glands sit just above the kidneys at the level of T12. The neck of the pancreas, not the body, is at the level of the transpyloric plane. The coeliac trunk originates at the level of T12 and the inferior mesenteric artery originates at L3.

      The Transpyloric Plane and its Anatomical Landmarks

      The transpyloric plane is an imaginary horizontal line that passes through the body of the first lumbar vertebrae (L1) and the pylorus of the stomach. It is an important anatomical landmark used in clinical practice to locate various organs and structures in the abdomen.

      Some of the structures that lie on the transpyloric plane include the left and right kidney hilum (with the left one being at the same level as L1), the fundus of the gallbladder, the neck of the pancreas, the duodenojejunal flexure, the superior mesenteric artery, and the portal vein. The left and right colic flexure, the root of the transverse mesocolon, and the second part of the duodenum also lie on this plane.

      In addition, the upper part of the conus medullaris (the tapered end of the spinal cord) and the spleen are also located on the transpyloric plane. Knowing the location of these structures is important for various medical procedures, such as abdominal surgeries and diagnostic imaging.

      Overall, the transpyloric plane serves as a useful reference point for clinicians to locate important anatomical structures in the abdomen.

    • This question is part of the following fields:

      • Respiratory System
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  • Question 2 - Surgical occlusion of which of these structures will cause the most significant decrease...

    Incorrect

    • Surgical occlusion of which of these structures will cause the most significant decrease in hepatic blood flow?

      Your Answer:

      Correct Answer: Portal vein

      Explanation:

      The contents of the portal vein consist of digested products. Sinusoids distribute arterial and venous blood to the central veins of the liver lobules, which then empty into the hepatic veins and ultimately into the IVC. Unlike other hepatic veins, the caudate lobe directly drains into the IVC.

      Structure and Relations of the Liver

      The liver is divided into four lobes: the right lobe, left lobe, quadrate lobe, and caudate lobe. The right lobe is supplied by the right hepatic artery and contains Couinaud segments V to VIII, while the left lobe is supplied by the left hepatic artery and contains Couinaud segments II to IV. The quadrate lobe is part of the right lobe anatomically but functionally is part of the left, and the caudate lobe is supplied by both right and left hepatic arteries and lies behind the plane of the porta hepatis. The liver lobules are separated by portal canals that contain the portal triad: the hepatic artery, portal vein, and tributary of bile duct.

      The liver has various relations with other organs in the body. Anteriorly, it is related to the diaphragm, esophagus, xiphoid process, stomach, duodenum, hepatic flexure of colon, right kidney, gallbladder, and inferior vena cava. The porta hepatis is located on the postero-inferior surface of the liver and transmits the common hepatic duct, hepatic artery, portal vein, sympathetic and parasympathetic nerve fibers, and lymphatic drainage of the liver and nodes.

      The liver is supported by ligaments, including the falciform ligament, which is a two-layer fold of peritoneum from the umbilicus to the anterior liver surface and contains the ligamentum teres (remnant of the umbilical vein). The ligamentum venosum is a remnant of the ductus venosus. The liver is supplied by the hepatic artery and drained by the hepatic veins and portal vein. Its nervous supply comes from the sympathetic and parasympathetic trunks of the coeliac plexus.

    • This question is part of the following fields:

      • Gastrointestinal System
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  • Question 3 - A 63-year-old female is one day postoperative following a total thyroidectomy for thyroid...

    Incorrect

    • A 63-year-old female is one day postoperative following a total thyroidectomy for thyroid cancer. The surgery was successful with no unexpected blood loss. However, the patient has observed that her voice is hoarse and soft.

      During examination, the patient seems comfortable while resting and can maintain her airway without any problem. The surgical site looks normal, and there is no development of haematoma. On auscultation, her breath sounds are clear and equal in all lung fields.

      What is the most likely structure to have been injured during the surgery?

      Your Answer:

      Correct Answer: Right recurrent laryngeal nerve

      Explanation:

      The right recurrent laryngeal nerve is at a higher risk of injury during neck surgery due to its diagonal origin under the subclavian artery. In contrast, the left recurrent laryngeal nerve is less vulnerable to injury. It is important to note that injury to the left or right subclavian artery would typically result in shock symptoms rather than hoarseness, and there were no indications of significant blood loss during the surgery.

      The Recurrent Laryngeal Nerve: Anatomy and Function

      The recurrent laryngeal nerve is a branch of the vagus nerve that plays a crucial role in the innervation of the larynx. It has a complex path that differs slightly between the left and right sides of the body. On the right side, it arises anterior to the subclavian artery and ascends obliquely next to the trachea, behind the common carotid artery. It may be located either anterior or posterior to the inferior thyroid artery. On the left side, it arises left to the arch of the aorta, winds below the aorta, and ascends along the side of the trachea.

      Both branches pass in a groove between the trachea and oesophagus before entering the larynx behind the articulation between the thyroid cartilage and cricoid. Once inside the larynx, the recurrent laryngeal nerve is distributed to the intrinsic larynx muscles (excluding cricothyroid). It also branches to the cardiac plexus and the mucous membrane and muscular coat of the oesophagus and trachea.

      Damage to the recurrent laryngeal nerve, such as during thyroid surgery, can result in hoarseness. Therefore, understanding the anatomy and function of this nerve is crucial for medical professionals who perform procedures in the neck and throat area.

    • This question is part of the following fields:

      • Neurological System
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  • Question 4 - You have recently learned about the embryological origin of the palatine tonsils after...

    Incorrect

    • You have recently learned about the embryological origin of the palatine tonsils after being treated with antibiotics for a bacterial infection. Can you share where they are derived from?

      Your Answer:

      Correct Answer: 2nd pharyngeal pouch

      Explanation:

      The 2nd pharyngeal pouch gives rise to the palatine tonsils, while the 1st pharyngeal pouch gives rise to the auditory tube, middle ear, and mastoid antrum. The 3rd pharyngeal pouch gives rise to the inferior parathyroid glands and thymus, while the 4th pharyngeal pouch gives rise to the superior parathyroid glands and the musculature of the larynx.

      Embryology of Branchial (Pharyngeal) Pouches

      During embryonic development, the branchial (pharyngeal) pouches give rise to various structures in the head and neck region. The first pharyngeal pouch forms the Eustachian tube, middle ear cavity, and mastoid antrum. The second pharyngeal pouch gives rise to the palatine tonsils. The third pharyngeal pouch divides into dorsal and ventral wings, with the dorsal wings forming the inferior parathyroid glands and the ventral wings forming the thymus. Finally, the fourth pharyngeal pouch gives rise to the superior parathyroid glands.

      Understanding the embryology of the branchial pouches is important in the diagnosis and treatment of certain congenital abnormalities and diseases affecting these structures. By knowing which structures arise from which pouches, healthcare professionals can better understand the underlying pathophysiology and develop appropriate management strategies. Additionally, knowledge of the embryology of these structures can aid in the development of new treatments and therapies for related conditions.

    • This question is part of the following fields:

      • General Principles
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  • Question 5 - A 79-year-old man is brought to the emergency department after a witnessed fall...

    Incorrect

    • A 79-year-old man is brought to the emergency department after a witnessed fall from standing. He is complaining of severe pain at his left hip.

      Examination of the lower limb reveals that he is unable to flex his left knee or mobilise his left ankle at all. His left knee reflex is present but he has an absent left-sided ankle jerk reflex. On the left side, sensation is lost below the knee. His right leg reveals no sensory or motor disturbance. An X-ray of both hips reveals a left-sided intracapsular neck of femur fracture.

      Based on the above information, what nerve is most likely to have been affected?

      Your Answer:

      Correct Answer: Sciatic nerve

      Explanation:

      When the sciatic nerve is damaged, the ankle and plantar reflexes become lost, but the knee jerk reflex remains intact. This type of nerve injury can cause weakness in knee flexion and all movements below the knee, as well as sensory loss below the knee and reduced ankle reflexes. A common cause of sciatic nerve damage is a neck of femur fracture.

      It’s important to note that the common fibular nerve, which is a branch of the sciatic nerve, is located too low to be affected by a neck of femur fracture. If this nerve is injured, it will result in weakness in dorsiflexion and eversion at the ankle, as well as extension at the digits, but knee flexion will not be affected.

      In contrast, damage to the femoral nerve will cause weakness in knee extension, not flexion. This type of nerve injury will also result in weakness in hip flexion and loss of sensation in the anteromedial thigh and medial leg and foot.

      Obturator nerve damage can occur after abdominal or pelvic surgery, or in rare cases, from a posterior hip dislocation. This type of nerve injury will cause weakness in thigh adduction and sensory loss in the medial thigh.

      Finally, a lesion in the superior gluteal nerve will result in the inability to abduct the hip, which will produce a positive Trendelenburg test.

      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
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  • Question 6 - A 65-year-old patient reports to their physician with a complaint of taste loss....

    Incorrect

    • A 65-year-old patient reports to their physician with a complaint of taste loss. After taking a thorough medical history, the doctor notes no recent infections. However, the patient does mention being able to taste normally when only using the tip of their tongue, such as when licking ice cream.

      Which cranial nerve is impacted in this situation?

      Your Answer:

      Correct Answer: Glossopharyngeal nerve

      Explanation:

      The loss of taste in the posterior third of the tongue is due to a problem with the glossopharyngeal nerve (CN IX). This is because the patient can taste when licking the ice cream, indicating that the anterior two-thirds of the tongue are functioning normally. The facial nerve also provides taste sensation, but only to the anterior two-thirds of the tongue, so it is not responsible for the loss of taste in the posterior third. The hypoglossal nerve is not involved in taste sensation, but rather in motor innervation of the tongue. The olfactory nerve innervates the nose, not the tongue, and there is no indication of a problem with the patient’s sense of smell.

      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
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  • Question 7 - A 29-year-old man is stabbed outside a nightclub in the upper arm. The...

    Incorrect

    • A 29-year-old man is stabbed outside a nightclub in the upper arm. The median nerve is transected. Which one of the following muscles will demonstrate impaired function as a result?

      Your Answer:

      Correct Answer: Abductor pollicis brevis

      Explanation:

      Palmaris brevis is innervated by the ulnar nerve, as are the palmar interossei and adductor pollicis. The abductor pollicis longus, on the other hand, is innervated by the posterior interosseous nerve.

      Anatomy and Function of the Median Nerve

      The median nerve is a nerve that originates from the lateral and medial cords of the brachial plexus. It descends lateral to the brachial artery and passes deep to the bicipital aponeurosis and the median cubital vein at the elbow. The nerve then passes between the two heads of the pronator teres muscle and runs on the deep surface of flexor digitorum superficialis. Near the wrist, it becomes superficial between the tendons of flexor digitorum superficialis and flexor carpi radialis, passing deep to the flexor retinaculum to enter the palm.

      The median nerve has several branches that supply the upper arm, forearm, and hand. These branches include the pronator teres, flexor carpi radialis, palmaris longus, flexor digitorum superficialis, flexor pollicis longus, and palmar cutaneous branch. The nerve also provides motor supply to the lateral two lumbricals, opponens pollicis, abductor pollicis brevis, and flexor pollicis brevis muscles, as well as sensory supply to the palmar aspect of the lateral 2 ½ fingers.

      Damage to the median nerve can occur at the wrist or elbow, resulting in various symptoms such as paralysis and wasting of thenar eminence muscles, weakness of wrist flexion, and sensory loss to the palmar aspect of the fingers. Additionally, damage to the anterior interosseous nerve, a branch of the median nerve, can result in loss of pronation of the forearm and weakness of long flexors of the thumb and index finger. Understanding the anatomy and function of the median nerve is important in diagnosing and treating conditions that affect this nerve.

    • This question is part of the following fields:

      • Neurological System
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  • Question 8 - A 35-year-old pregnant woman undergoes an ABG test. What is the anticipated outcome...

    Incorrect

    • A 35-year-old pregnant woman undergoes an ABG test. What is the anticipated outcome for a healthy pregnant woman?

      Your Answer:

      Correct Answer: Compensated respiratory alkalosis

      Explanation:

      During pregnancy, a woman’s increased tidal volume leads to a decrease in carbon dioxide levels, resulting in alkalosis. This is because carbon dioxide generates acid, and reduced levels of it lead to a decrease in acid. The kidneys eventually adapt to this change by reducing the amount of alkaline bicarbonate in the body. Therefore, pregnancy causes a compensated respiratory alkalosis.

      If a woman’s bicarbonate levels remain normal, she would have simple respiratory alkalosis.

      On the other hand, if a woman produces excess acid, she would have metabolic acidosis, which is the opposite of what occurs during pregnancy.

      Arterial Blood Gas Interpretation: A 5-Step Approach

      Arterial blood gas interpretation is a crucial aspect of patient care, particularly in critical care settings. The Resuscitation Council (UK) recommends a 5-step approach to interpreting arterial blood gas results. The first step is to assess the patient’s overall condition. The second step is to determine if the patient is hypoxaemic, with a PaO2 on air of less than 10 kPa. The third step is to assess if the patient is acidaemic (pH <7.35) or alkalaemic (pH >7.45).

      The fourth step is to evaluate the respiratory component of the arterial blood gas results. A PaCO2 level greater than 6.0 kPa suggests respiratory acidosis, while a PaCO2 level less than 4.7 kPa suggests respiratory alkalosis. The fifth step is to assess the metabolic component of the arterial blood gas results. A bicarbonate level less than 22 mmol/l or a base excess less than -2mmol/l suggests metabolic acidosis, while a bicarbonate level greater than 26 mmol/l or a base excess greater than +2mmol/l suggests metabolic alkalosis.

      To remember the relationship between pH, PaCO2, and bicarbonate, the acronym ROME can be used. Respiratory acidosis or alkalosis is opposite to the pH level, while metabolic acidosis or alkalosis is equal to the pH level. This 5-step approach and the ROME acronym can aid healthcare professionals in interpreting arterial blood gas results accurately and efficiently.

    • This question is part of the following fields:

      • Respiratory System
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  • Question 9 - A 23-year-old woman with known allergies presents to the emergency department with difficulty...

    Incorrect

    • A 23-year-old woman with known allergies presents to the emergency department with difficulty breathing after eating at a restaurant.

      Upon arrival, she exhibits an audible wheeze, swelling of her lips and tongue, and a widespread urticarial rash. Intramuscular adrenaline is promptly administered, resulting in rapid improvement of her condition.

      After being observed for a period of time, she is discharged with two auto-injectors containing the same medication for future use and a plan for outpatient follow-up at an allergy clinic.

      What is the receptor targeted by this medication?

      Your Answer:

      Correct Answer: G protein-coupled

      Explanation:

      Adrenaline exerts its effects through G protein-coupled receptors, which are transmembrane proteins that activate intracellular signaling pathways. This mechanism is responsible for the vasoconstriction induced by adrenaline, which is used to counteract the vasodilation and increased vascular permeability seen in anaphylaxis. However, adrenaline does not act on guanylate cyclase receptors, ligand-gated ion channel receptors, or serine/threonine kinase receptors, which are other types of transmembrane proteins that respond to different chemical messengers.

      Membrane receptors are proteins located on the surface of cells that receive signals from outside the cell and transmit them inside. There are four main types of membrane receptors: ligand-gated ion channel receptors, tyrosine kinase receptors, guanylate cyclase receptors, and G protein-coupled receptors. Ligand-gated ion channel receptors mediate fast responses and include nicotinic acetylcholine, GABA-A & GABA-C, and glutamate receptors. Tyrosine kinase receptors include receptor tyrosine kinase such as insulin, insulin-like growth factor (IGF), and epidermal growth factor (EGF), and non-receptor tyrosine kinase such as PIGG(L)ET, which stands for Prolactin, Immunomodulators (cytokines IL-2, Il-6, IFN), GH, G-CSF, Erythropoietin, and Thrombopoietin.

      Guanylate cyclase receptors contain intrinsic enzyme activity and include atrial natriuretic factor and brain natriuretic peptide. G protein-coupled receptors generally mediate slow transmission and affect metabolic processes. They are activated by a wide variety of extracellular signals such as peptide hormones, biogenic amines (e.g. adrenaline), lipophilic hormones, and light. These receptors have 7-helix membrane-spanning domains and consist of 3 main subunits: alpha, beta, and gamma. The alpha subunit is linked to GDP. Ligand binding causes conformational changes to the receptor, GDP is phosphorylated to GTP, and the alpha subunit is activated. G proteins are named according to the alpha subunit (Gs, Gi, Gq).

      The mechanism of G protein-coupled receptors varies depending on the type of G protein involved. Gs stimulates adenylate cyclase, which increases cAMP and activates protein kinase A. Gi inhibits adenylate cyclase, which decreases cAMP and inhibits protein kinase A. Gq activates phospholipase C, which splits PIP2 to IP3 and DAG and activates protein kinase C. Examples of G protein-coupled receptors include beta-1 receptors (epinephrine, norepinephrine, dobutamine), beta-2 receptors (epinephrine, salbuterol), H2 receptors (histamine), D1 receptors (dopamine), V2 receptors (vas

    • This question is part of the following fields:

      • General Principles
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  • Question 10 - A 26-year-old female presents with a fever of 38ºC, a widespread maculopapular rash,...

    Incorrect

    • A 26-year-old female presents with a fever of 38ºC, a widespread maculopapular rash, chills and a headache. The signs and symptoms appeared a few hours earlier. The patient was given a single antibiotic dose earlier that day, which completed the required course.

      What is the most probable infection that she is suffering from?

      Your Answer:

      Correct Answer: Syphilis

      Explanation:

      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.

    • This question is part of the following fields:

      • General Principles
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  • Question 11 - As a third year medical student in an outpatient department with a dermatology...

    Incorrect

    • As a third year medical student in an outpatient department with a dermatology consultant, you are evaluating a 27-year-old patient who is unresponsive to current hyperhidrosis treatment. The consultant suggests starting botox injections to prevent sweating. Can you explain the mechanism of action of botulinum toxin at the neuromuscular junction?

      Your Answer:

      Correct Answer: Inhibits vesicles containing acetylcholine binding to presynaptic membrane

      Explanation:

      Botulinum Toxin and its Mechanism of Action

      Botulinum toxin is becoming increasingly popular in the medical field for treating various conditions such as cervical dystonia and achalasia. The toxin works by binding to the presynaptic cleft on the neurotransmitter and forming a complex with the attached receptor. This complex then invaginates the plasma membrane of the presynaptic cleft around the attached toxin. Once inside the cell, the toxin cleaves an important cytoplasmic protein that is required for efficient binding of the vesicles containing acetylcholine to the presynaptic membrane. This prevents the release of acetylcholine across the neurotransmitter.

      It is important to note that the blockage of Ca2+ channels on the presynaptic membrane occurs in Lambert-Eaton syndrome, which is associated with small cell carcinoma of the lung and is a paraneoplastic syndrome. However, this is not related to the mechanism of action of botulinum toxin.

      The effects of botox typically last for two to six months. Once complete denervation has occurred, the synapse produces new axonal terminals which bind to the motor end plate in a process called neurofibrillary sprouting. This allows for interrupted release of acetylcholine. Overall, botulinum toxin is a powerful tool in the medical field for treating various conditions by preventing the release of acetylcholine across the neurotransmitter.

    • This question is part of the following fields:

      • Pharmacology
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  • Question 12 - A 65-year-old man visits his doctor complaining of night sweats, fatigue, and painless...

    Incorrect

    • A 65-year-old man visits his doctor complaining of night sweats, fatigue, and painless lumps in his neck that have been present for the past 4 months. He has also lost 6kg of weight without any apparent reason. Upon conducting a routine blood test, the doctor observes normocytic anaemia and refers the patient for a core needle lymph node biopsy.

      The biopsy results reveal effacement of the germinal centre and the presence of numerous centroblasts. The patient is informed that he has follicular lymphoma.

      What genetic alteration is most likely to be detected in the neoplastic cells of this patient?

      Your Answer:

      Correct Answer: T(14:18)

      Explanation:

      The hallmark chromosomal translocation associated with follicular lymphoma is T(14:18). This translocation brings the BCL2 anti-apoptosis gene on chromosome 18 adjacent to the immunoglobulin heavy chain gene on chromosome 14, making follicular lymphoma cells highly resistant to apoptosis. Retinoblastoma gene missense mutation, T(9:22), and trisomy 12 are not associated with follicular lymphoma, but may be observed in other types of cancer such as retinoblastoma, chronic myeloid leukaemia, and chronic lymphocytic leukaemia, respectively.

      Oncogenes are genes that promote cancer and are derived from normal genes called proto-oncogenes. Proto-oncogenes play a crucial role in cellular growth and differentiation. However, a gain of function in oncogenes increases the risk of cancer. Only one mutated copy of the gene is needed for cancer to occur, making it a dominant effect. Oncogenes are responsible for up to 20% of human cancers and can become oncogenes through mutation, chromosomal translocation, or increased protein expression.

      In contrast, tumor suppressor genes restrict or repress cellular proliferation in normal cells. Their inactivation through mutation or germ line incorporation is implicated in various cancers, including renal, colonic, breast, and bladder cancer. Tumor suppressor genes, such as p53, offer protection by causing apoptosis of damaged cells. Other well-known genes include BRCA1 and BRCA2. Loss of function in tumor suppressor genes results in an increased risk of cancer, while gain of function in oncogenes increases the risk of cancer.

    • This question is part of the following fields:

      • General Principles
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  • Question 13 - Which of the following aims to address confounding factors in the planning phase...

    Incorrect

    • Which of the following aims to address confounding factors in the planning phase of a research, while ensuring proper spacing between paragraphs?

      Your Answer:

      Correct Answer: Randomisation

      Explanation:

      Understanding Confounding in Statistics

      Confounding is a term used in statistics to describe a situation where a variable is correlated with other variables in a study, leading to inaccurate or spurious results. For instance, in a case-control study that examines whether low-dose aspirin can prevent colorectal cancer, age could be a confounding factor if the case and control groups are not matched for age. This is because older people are more likely to take aspirin and also more likely to develop cancer. Similarly, in a study that finds a link between coffee consumption and heart disease, smoking could be a confounding factor as it is associated with both drinking coffee and heart disease.

      Confounding occurs when there is a non-random distribution of risk factors in the populations being studied. Common causes of confounding include age, sex, and social class. To control for confounding in the design stage of an experiment, randomization can be used to produce an even distribution of potential risk factors in two populations. In the analysis stage, confounding can be controlled for by stratification. Understanding confounding is crucial in ensuring that research findings are accurate and reliable.

    • This question is part of the following fields:

      • General Principles
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  • Question 14 - A 25-year-old female presents to the emergency department with a splenic rupture without...

    Incorrect

    • A 25-year-old female presents to the emergency department with a splenic rupture without any history of trauma. Which infection is known to cause spontaneous splenic rupture?

      Your Answer:

      Correct Answer: Epstein-Barr virus

      Explanation:

      Generalized lymphadenopathy may be caused by the Epstein-Barr Virus, which can also be linked to splenomegaly. This enlargement has been known to result in spontaneous rupture.

      The Anatomy and Function of the Spleen

      The spleen is an organ located in the left upper quadrant of the abdomen. Its size can vary depending on the amount of blood it contains, but the typical adult spleen is 12.5cm long and 7.5cm wide, with a weight of 150g. The spleen is almost entirely covered by peritoneum and is separated from the 9th, 10th, and 11th ribs by both diaphragm and pleural cavity. Its shape is influenced by the state of the colon and stomach, with gastric distension causing it to resemble an orange segment and colonic distension causing it to become more tetrahedral.

      The spleen has two folds of peritoneum that connect it to the posterior abdominal wall and stomach: the lienorenal ligament and gastrosplenic ligament. The lienorenal ligament contains the splenic vessels, while the short gastric and left gastroepiploic branches of the splenic artery pass through the layers of the gastrosplenic ligament. The spleen is in contact with the phrenicocolic ligament laterally.

      The spleen has two main functions: filtration and immunity. It filters abnormal blood cells and foreign bodies such as bacteria, and produces properdin and tuftsin, which help target fungi and bacteria for phagocytosis. The spleen also stores 40% of platelets, utilizes iron, and stores monocytes. Disorders of the spleen include massive splenomegaly, myelofibrosis, chronic myeloid leukemia, visceral leishmaniasis, malaria, Gaucher’s syndrome, portal hypertension, lymphoproliferative disease, haemolytic anaemia, infection, infective endocarditis, sickle-cell, thalassaemia, and rheumatoid arthritis.

    • This question is part of the following fields:

      • Haematology And Oncology
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  • Question 15 - A 65-year-old male comes to the head and neck clinic for his postoperative...

    Incorrect

    • A 65-year-old male comes to the head and neck clinic for his postoperative check-up following the removal of a tumour from his mouth. He reports experiencing numbness and tingling in the floor of his mouth after the surgery. It is suspected that the sensory nerve to the floor of his mouth may have been affected.

      What is the most probable nerve that has been damaged?

      Your Answer:

      Correct Answer: Lingual nerve

      Explanation:

      The lingual nerve provides sensation to the floor of the mouth, a portion of the tongue, and the gingivae of the mandibular lingual. The mandibular nerve transmits sensory fibers to the submandibular glands, while the greater auricular nerve is responsible for sensation in the parotid gland. The hypoglossal nerve, the twelfth cranial nerve, controls tongue movement, and the facial nerve, the seventh cranial nerve, is responsible for salivation, lacrimation, facial movement, and taste in the anterior two-thirds of the tongue.

      Lingual Nerve: Sensory Nerve to the Tongue and Mouth

      The lingual nerve is a sensory nerve that provides sensation to the mucosa of the presulcal part of the tongue, floor of the mouth, and mandibular lingual gingivae. It arises from the posterior trunk of the mandibular nerve and runs past the tensor veli palatini and lateral pterygoid muscles. At this point, it is joined by the chorda tympani branch of the facial nerve.

      After emerging from the cover of the lateral pterygoid, the lingual nerve proceeds antero-inferiorly, lying on the surface of the medial pterygoid and close to the medial aspect of the mandibular ramus. At the junction of the vertical and horizontal rami of the mandible, it is anterior to the inferior alveolar nerve. The lingual nerve then passes below the mandibular attachment of the superior pharyngeal constrictor and lies on the periosteum of the root of the third molar tooth.

      Finally, the lingual nerve passes medial to the mandibular origin of mylohyoid and then passes forwards on the inferior surface of this muscle. Overall, the lingual nerve plays an important role in providing sensory information to the tongue and mouth.

    • This question is part of the following fields:

      • Neurological System
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  • Question 16 - What enzyme is accountable for linking Okazaki fragments, which are around 150-200 base...

    Incorrect

    • What enzyme is accountable for linking Okazaki fragments, which are around 150-200 base pairs long, during the DNA replication process in eukaryotic human cells?

      Your Answer:

      Correct Answer: DNA ligase

      Explanation:

      DNA ligase is an enzyme that connects Okazaki fragments on the lagging strand to create a continuous strand. This process is essential for the completion of DNA replication. DNA helicase, on the other hand, unwinds the DNA strand to allow other enzymes to access and copy the genetic information. DNA polymerase I is only present in prokaryotic cells and is not involved in joining Okazaki fragments. Similarly, DNA polymerase beta is responsible for repairing base errors in DNA replication and does not play a role in connecting Okazaki fragments.

      DNA Replication in Prokaryotes vs Eukaryotes

      DNA replication is the process by which genetic information is copied and passed on to the next generation of cells. In prokaryotes, DNA replication occurs in the cytoplasm, while in eukaryotes, it occurs in the nucleus. Additionally, prokaryotes have a single origin of replication, while eukaryotes have multiple origins.

      During DNA replication, the double helix is unzipped by DNA helicase, creating a replication fork. Single-stranded binding proteins prevent the DNA from reannealing. DNA polymerase III elongates the leading strand in a 5′-3′ direction, while DNA polymerase I removes RNA primers and replaces them with DNA. DNA ligase seals up the fragments.

      While the basic mechanisms of DNA replication are similar in prokaryotes and eukaryotes, there are some differences in the process. Understanding these differences can help researchers better understand the genetic processes of different organisms.

    • This question is part of the following fields:

      • General Principles
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  • Question 17 - A 31-year-old man arrives at the emergency department following a skateboard accident. He...

    Incorrect

    • A 31-year-old man arrives at the emergency department following a skateboard accident. He reports experiencing intense pain in his left lower leg. The patient has no significant medical history and is typically self-sufficient and healthy.

      During the examination, the physician notes palpable tenderness and significant bruising on the lateral side of the left leg, just below the knee. The patient is unable to dorsiflex his left foot.

      Which anatomical structure is most likely to be impacted?

      Your Answer:

      Correct Answer: Common peroneal nerve

      Explanation:

      The patient is experiencing foot drop, which is characterized by the inability to dorsiflex the foot, following a fibular neck fracture. This injury commonly affects the common peroneal nerve, which supplies the dorsum of the foot and lower, lateral part of the leg. The patient’s history of falling from a skateboard and tenderness and bruising over the lower left leg support this diagnosis.

      Achilles tendon rupture, on the other hand, presents with sudden-onset pain and a popping sensation at the back of the heel. It is more common in athletes or those taking certain medications. The deltoid ligament, which stabilizes the ankle against eversion injury, is less commonly injured and would not cause foot drop. The femoral nerve, which supplies the quadriceps muscles and plays a role in knee extension, is not affected by a fibular neck fracture and does not cause foot drop. The tibial nerve, responsible for foot plantarflexion and inversion, is not directly involved in foot drop, although its lack of opposing action from the anterior muscle group of the lower leg may contribute to the foot’s plantarflexed position.

      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 popliteral 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.

    • This question is part of the following fields:

      • Musculoskeletal System And Skin
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  • Question 18 - A 22-year-old male arrives at the emergency department with excessive epistaxis. Despite applying...

    Incorrect

    • A 22-year-old male arrives at the emergency department with excessive epistaxis. Despite applying pressure on the anterior nares for the past four hours, the bleeding has not stopped. Nasal packing has also failed to control the bleeding. The on-call ENT specialist administers topical tranexamic acid to a visibly bleeding artery, which results in a reduction in bleeding.

      What is the mode of action of tranexamic acid?

      Your Answer:

      Correct Answer: Prevents plasmin from breaking down fibrin clots

      Explanation:

      Tranexamic acid prevents major haemorrhage by binding to plasminogen and preventing plasmin from breaking down fibrin clots. Its mechanism of action is not related to increasing the availability of vitamin K or inhibiting anticlotting factors protein C and S. Similarly, reducing the availability of vitamin K would not be the mechanism of action of tranexamic acid. While stimulating anticlotting factors protein C and S would maintain clots, it is not the mechanism of action of tranexamic acid.

      Understanding Tranexamic Acid

      Tranexamic acid is a synthetic derivative of lysine that acts as an antifibrinolytic. Its primary function is to bind to lysine receptor sites on plasminogen or plasmin, preventing plasmin from degrading fibrin. This medication is commonly prescribed to treat menorrhagia.

      In addition to its use in treating menorrhagia, tranexamic acid has been investigated for its role in trauma. The CRASH 2 trial found that administering tranexamic acid within the first 3 hours of bleeding trauma can be beneficial. In cases of major haemorrhage, tranexamic acid is given as an IV bolus followed by an infusion.

      Ongoing research is also exploring the potential of tranexamic acid in treating traumatic brain injury. Overall, tranexamic acid is a medication with important applications in managing bleeding disorders and trauma.

    • This question is part of the following fields:

      • Haematology And Oncology
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  • Question 19 - A 25-year-old soldier sustains a gunshot wound to the abdomen resulting in severe...

    Incorrect

    • A 25-year-old soldier sustains a gunshot wound to the abdomen resulting in severe damage to the abdominal aorta. The surgeons opt to place a vascular clamp just below the diaphragm to control the bleeding. What is the potential risk of injury to one of the vessels during this procedure?

      Your Answer:

      Correct Answer: Inferior phrenic arteries

      Explanation:

      The inferior phrenic arteries, which are the first branches of the abdominal aorta, are most vulnerable. On the other hand, the superior phrenic arteries are located in the thorax. The area around the diaphragmatic hiatus could be a valuable location for aortic occlusion, but keeping the clamp on for more than 10-15 minutes typically results in unfavorable results.

      The abdominal aorta is a major blood vessel that originates from the 12th thoracic vertebrae and terminates at the fourth lumbar vertebrae. It is located in the abdomen and is surrounded by various organs and structures. The posterior relations of the abdominal aorta include the vertebral bodies of the first to fourth lumbar vertebrae. The anterior relations include the lesser omentum, liver, left renal vein, inferior mesenteric vein, third part of the duodenum, pancreas, parietal peritoneum, and peritoneal cavity. The right lateral relations include the right crus of the diaphragm, cisterna chyli, azygos vein, and inferior vena cava (which becomes posterior distally). The left lateral relations include the fourth part of the duodenum, duodenal-jejunal flexure, and left sympathetic trunk. Overall, the abdominal aorta is an important blood vessel that supplies oxygenated blood to various organs in the abdomen.

    • This question is part of the following fields:

      • Gastrointestinal System
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  • Question 20 - A 25-year-old male presents to his GP with complaints of fatigue. He has...

    Incorrect

    • A 25-year-old male presents to his GP with complaints of fatigue. He has been feeling increasingly tired since he switched to a vegan diet a year ago. Despite taking daily vitamin B12 supplements, he is unsure why he is experiencing these symptoms. The GP suspects iron deficiency anemia and orders blood tests for confirmation. What measures can be taken to enhance the absorption of dietary iron?

      Your Answer:

      Correct Answer: Consuming iron in its ferrous (Fe2+) form

      Explanation:

      Iron deficiency anaemia is a prevalent condition worldwide, with preschool-age children being the most affected. The lack of iron in the body leads to a decrease in red blood cells and haemoglobin, resulting in anaemia. The primary causes of iron deficiency anaemia are excessive blood loss, inadequate dietary intake, poor intestinal absorption, and increased iron requirements. Menorrhagia is the most common cause of blood loss in pre-menopausal women, while gastrointestinal bleeding is the most common cause in men and postmenopausal women. Vegans and vegetarians are more likely to develop iron deficiency anaemia due to the lack of meat in their diet. Coeliac disease and other conditions affecting the small intestine can prevent sufficient iron absorption. Children and pregnant women have increased iron demands, and the latter may experience dilution due to an increase in plasma volume.

      The symptoms of iron deficiency anaemia include fatigue, shortness of breath on exertion, palpitations, pallor, nail changes, hair loss, atrophic glossitis, post-cricoid webs, and angular stomatitis. To diagnose iron deficiency anaemia, a full blood count, serum ferritin, total iron-binding capacity, transferrin, and blood film tests are performed. Endoscopy may be necessary to rule out malignancy, especially in males and postmenopausal females with unexplained iron-deficiency anaemia.

      The management of iron deficiency anaemia involves identifying and treating the underlying cause. Oral ferrous sulfate is commonly prescribed, and patients should continue taking iron supplements for three months after the iron deficiency has been corrected to replenish iron stores. Iron-rich foods such as dark-green leafy vegetables, meat, and iron-fortified bread can also help. It is crucial to exclude malignancy by taking an adequate history and appropriate investigations if warranted.

    • This question is part of the following fields:

      • Haematology And Oncology
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  • Question 21 - As a neurology doctor, you have been requested to assess a 36-year-old woman...

    Incorrect

    • As a neurology doctor, you have been requested to assess a 36-year-old woman who was in a car accident and suffered a significant head injury.

      Upon arrival, she is unconscious, and there are some minor twitching movements in her right arm and leg. When she wakes up, these movements become more severe, with her right arm and leg repeatedly flinging out with different amplitudes.

      Based on the likely diagnosis, where is the lesion most likely located?

      Your Answer:

      Correct Answer: Left basal ganglia

      Explanation:

      The patient is exhibiting signs of hemiballismus, which is characterized by involuntary and sudden jerking movements on one side of the body. These movements typically occur on the side opposite to the lesion and may decrease in intensity during periods of relaxation or sleep. The most common location for the lesion causing hemiballismus is the basal ganglia, specifically on the contralateral side. A lesion in the left motor cortex would result in decreased function on the right side of the body, and psychosomatic factors are not the cause of this movement disorder. A lesion in the right basal ganglia would cause movement disorders on the left side of the body.

      Understanding Hemiballism

      Hemiballism is a condition that arises from damage to the subthalamic nucleus. It is characterized by sudden, involuntary, and jerking movements that occur on the side opposite to the lesion. The movements primarily affect the proximal limb muscles, while the distal muscles may display more choreiform-like movements. Interestingly, the symptoms may decrease while the patient is asleep.

      The main treatment for hemiballism involves the use of antidopaminergic agents such as Haloperidol. These medications help to reduce the severity of the symptoms and improve the patient’s quality of life. It is important to note that early diagnosis and treatment are crucial in managing this condition. With proper care and management, individuals with hemiballism can lead fulfilling lives.

    • This question is part of the following fields:

      • Neurological System
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  • Question 22 - A 35-year-old woman arrives at the emergency department with lock-jaw and muscle spasms...

    Incorrect

    • A 35-year-old woman arrives at the emergency department with lock-jaw and muscle spasms throughout her body, particularly in the abdomen and back. She reports cutting her hand on a rusty knife covered in soil while gardening a week ago.

      During the examination, the patient displays trismus, an arched back, and visible distress. The palm of her hand shows a four-inch cut with redness, warmth, and pus.

      Which neurotransmitter is involved in the pathophysiology of the probable diagnosis?

      Your Answer:

      Correct Answer: GABA

      Explanation:

      The correct answer is GABA. Tetanus toxin, also known as tetanospasmin, inhibits the release of GABA and glycine, which are neurotransmitters that normally prevent excessive motor neuron activity. When these inhibitory neurotransmitters are blocked, the motor neurons become overactive, leading to muscle spasms and lockjaw. If left untreated, this can progress to respiratory paralysis, which is a medical emergency.

      Acetylcholine is not the correct answer. While acetylcholine is an excitatory neurotransmitter at some neuromuscular synapses, it is not involved in tetanus toxin release. Botulinum toxin, on the other hand, blocks the release of acetylcholine, causing muscle paralysis.

      Glutamate is also not the correct answer. While glutamate is an excitatory neurotransmitter in the central nervous system, it is not involved in the peripheral nervous system, which is affected by tetanus toxin.

      Noradrenaline is not the correct answer either. Noradrenaline is not released in the peripheral somatic system and does not affect skeletal muscles. It is primarily released in the sympathetic nervous system and acts on smooth muscle in various parts of the body.

      Exotoxins vs Endotoxins: Understanding the Differences

      Exotoxins and endotoxins are two types of toxins produced by bacteria. Exotoxins are secreted by bacteria, while endotoxins are only released when the bacterial cell is lysed. Exotoxins are typically produced by Gram-positive bacteria, with some exceptions like Vibrio cholerae and certain strains of E. coli.

      Exotoxins can be classified based on their primary effects, which include pyrogenic toxins, enterotoxins, neurotoxins, tissue invasive toxins, and miscellaneous toxins. Pyrogenic toxins stimulate the release of cytokines, resulting in fever and rash. Enterotoxins act on the gastrointestinal tract, causing either diarrheal or vomiting illness. Neurotoxins act on the nerves or neuromuscular junction, causing paralysis. Tissue invasive toxins cause damage to tissues, while miscellaneous toxins have various effects.

      On the other hand, endotoxins are lipopolysaccharides that are released from Gram-negative bacteria like Neisseria meningitidis. These toxins can cause fever, sepsis, and shock. Unlike exotoxins, endotoxins are not actively secreted by bacteria but are instead released when the bacterial cell is lysed.

      Understanding the differences between exotoxins and endotoxins is important in diagnosing and treating bacterial infections. While exotoxins can be targeted with specific treatments like antitoxins, endotoxins are more difficult to treat and often require supportive care.

    • This question is part of the following fields:

      • General Principles
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  • Question 23 - A 75-year-old man comes to the clinic with haemoptysis and is suspected to...

    Incorrect

    • A 75-year-old man comes to the clinic with haemoptysis and is suspected to have lung cancer. During the examination, an enlarged supraclavicular lymph node is detected. What is the most probable feature that will be found on histological examination?

      Your Answer:

      Correct Answer: Increased mitoses

      Explanation:

      Malignant cell transformation often results in an increase in mitotic activity. Metastatic cancer rarely exhibits apoptosis. Female somatic cells undergo X chromosome inactivation, resulting in the formation of Barr Bodies.

      Characteristics of Malignancy in Histopathology

      Histopathology is the study of tissue architecture and cellular changes in disease. In malignancy, there are several distinct characteristics that differentiate it from normal tissue or benign tumors. These features include abnormal tissue architecture, coarse chromatin, invasion of the basement membrane, abnormal mitoses, angiogenesis, de-differentiation, areas of necrosis, and nuclear pleomorphism.

      Abnormal tissue architecture refers to the disorganized and irregular arrangement of cells within the tissue. Coarse chromatin refers to the appearance of the genetic material within the nucleus, which appears clumped and irregular. Invasion of the basement membrane is a hallmark of invasive malignancy, as it indicates that the cancer cells have broken through the protective layer that separates the tissue from surrounding structures. Abnormal mitoses refer to the process of cell division, which is often disrupted in cancer cells. Angiogenesis is the process by which new blood vessels are formed, which is necessary for the growth and spread of cancer cells. De-differentiation refers to the loss of specialized functions and characteristics of cells, which is common in cancer cells. Areas of necrosis refer to the death of tissue due to lack of blood supply or other factors. Finally, nuclear pleomorphism refers to the variability in size and shape of the nuclei within cancer cells.

      Overall, these characteristics are important for the diagnosis and treatment of malignancy, as they help to distinguish cancer cells from normal tissue and benign tumors. By identifying these features in histopathology samples, doctors can make more accurate diagnoses and develop more effective treatment plans for patients with cancer.

    • This question is part of the following fields:

      • Haematology And Oncology
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  • Question 24 - A 65-year-old man presents to the clinic with a complaint of losing 1...

    Incorrect

    • A 65-year-old man presents to the clinic with a complaint of losing 1 stone in weight over the past three months. Apart from this, he has no significant medical history. During the physical examination, his abdomen is soft, and no palpable masses are detected. A normal PR examination is also observed. The patient's blood tests reveal a haemoglobin level of 80 g/L (120-160) and an MCV of 70 fL (80-96). What is the most appropriate initial investigation for this patient?

      Your Answer:

      Correct Answer: Upper GI endoscopy and colonoscopy

      Explanation:

      Possible GI Malignancy in a Man with Weight Loss and Microcytic Anaemia

      This man is experiencing weight loss and has an unexplained microcytic anaemia. The most probable cause of his blood loss is from the gastrointestinal (GI) tract, as there is no other apparent explanation. This could be due to an occult GI malignancy, which is why the recommended initial investigations are upper and lower GI endoscopy. These tests will help to identify any potential sources of bleeding in the GI tract and determine if there is an underlying malignancy. It is important to diagnose and treat any potential malignancy as early as possible to improve the patient’s prognosis. Therefore, prompt investigation and management are crucial in this case.

    • This question is part of the following fields:

      • Gastrointestinal System
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  • Question 25 - A 75-year-old man presents with a sizable abdominal aortic aneurysm. While undergoing a...

    Incorrect

    • A 75-year-old man presents with a sizable abdominal aortic aneurysm. While undergoing a laparotomy for scheduled surgical intervention, the medical team discovers that the aneurysm is situated much closer to the origin of the SMA. While dissecting the area, a transverse vessel running across the aorta sustains damage. What is the most probable identity of this vessel?

      Your Answer:

      Correct Answer: Left renal vein

      Explanation:

      During the repair of a juxtarenal aneurysm, intentional ligation of the left renal vein may be necessary as it travels over the aorta.

      The abdominal aorta is a major blood vessel that originates from the 12th thoracic vertebrae and terminates at the fourth lumbar vertebrae. It is located in the abdomen and is surrounded by various organs and structures. The posterior relations of the abdominal aorta include the vertebral bodies of the first to fourth lumbar vertebrae. The anterior relations include the lesser omentum, liver, left renal vein, inferior mesenteric vein, third part of the duodenum, pancreas, parietal peritoneum, and peritoneal cavity. The right lateral relations include the right crus of the diaphragm, cisterna chyli, azygos vein, and inferior vena cava (which becomes posterior distally). The left lateral relations include the fourth part of the duodenum, duodenal-jejunal flexure, and left sympathetic trunk. Overall, the abdominal aorta is an important blood vessel that supplies oxygenated blood to various organs in the abdomen.

    • This question is part of the following fields:

      • Gastrointestinal System
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  • Question 26 - A 67-year-old man with a stable angina history for two years visits his...

    Incorrect

    • A 67-year-old man with a stable angina history for two years visits his cardiologist for a regular check-up. During the review, the cardiologist observes that the patient's heart rate is low at 46 bpm. As a result, the cardiologist decides to replace his beta-blocker with a new anti-anginal drug called nicorandil.

      What is the mode of action of the patient's new medication?

      Your Answer:

      Correct Answer: Potassium channel activator through activation of guanylyl cyclase

      Explanation:

      Nicorandil activates potassium channels, leading to vasodilation. This activation triggers guanylyl cyclase, which increases the production of cyclic GMP (cGMP) and activates protein kinase G (PKG). PKG phosphorylates and inhibits GTPase RhoA, reducing Rho-kinase activity and increasing myosin phosphatase activity. As a result, the smooth muscle becomes less sensitive to calcium, leading to dilation of the large coronary arteries and improved perfusion. Nicorandil does not significantly affect calcium or sodium channels. This mechanism helps alleviate anginal symptoms.

      Nicorandil is a medication that is commonly used to treat angina. It works by activating potassium channels, which leads to vasodilation. This process is achieved through the activation of guanylyl cyclase, which results in an increase in cGMP. However, there are some adverse effects associated with the use of nicorandil, including headaches, flushing, and the development of ulcers on the skin, mucous membranes, and eyes. Additionally, gastrointestinal ulcers, including anal ulceration, may also occur. It is important to note that nicorandil should not be used in patients with left ventricular failure.

    • This question is part of the following fields:

      • Cardiovascular System
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  • Question 27 - A 25-year-old male visits his doctor with concerns about his upcoming job interview....

    Incorrect

    • A 25-year-old male visits his doctor with concerns about his upcoming job interview. He is feeling extremely anxious and believes that he will not perform well.

      The doctor reassures him that this is a typical reaction triggered by the sympathetic nervous system, also referred to as the 'fight or flight' response.

      What type of receptors are responsible for mediating this response?

      Your Answer:

      Correct Answer: G protein-coupled receptors

      Explanation:

      Adrenergic receptors, which mediate responses involving hormones, local mediators, and neurotransmitters, are the largest of all cell surface receptors and are classified as G protein-coupled receptors. These receptors activate trimeric GTP binding proteins (G-proteins) that, in turn, activate an enzyme or an ion channel (effector) in the plasma membrane, initiating a sequence of other effects. In contrast, enzyme-coupled receptors, such as tyrosine kinase associated receptors and histidine kinase associated receptors, act as enzymes or associate with enzymes inside cells to activate various intracellular signaling pathways. Finally, ligand-gated ion channel receptors, also known as ionotropic receptors, are responsible for the rapid transmission of signals across synapses in the nervous system by causing changes in membrane potential.

      Adrenergic receptors are a type of G protein-coupled receptors that respond to the catecholamines epinephrine and norepinephrine. These receptors are primarily involved in the sympathetic nervous system. There are four types of adrenergic receptors: α1, α2, β1, and β2. Each receptor has a different potency order and primary action. The α1 receptor responds equally to norepinephrine and epinephrine, causing smooth muscle contraction. The α2 receptor has mixed effects and responds equally to both catecholamines. The β1 receptor responds equally to epinephrine and norepinephrine, causing cardiac muscle contraction. The β2 receptor responds much more strongly to epinephrine than norepinephrine, causing smooth muscle relaxation.

    • This question is part of the following fields:

      • General Principles
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  • Question 28 - A 67-year-old male presents with sudden onset of abdominal pain on the left...

    Incorrect

    • A 67-year-old male presents with sudden onset of abdominal pain on the left side that radiates to his back. He also reports vomiting. The patient has no significant medical history.

      Upon examination, the patient has a temperature of 37.5°C, a respiratory rate of 28/min, a pulse of 110/min, and a blood pressure of 160/82 mmHg. The abdomen is tender to touch, especially over the hypochondrium, and bowel sounds are present. Urinalysis reveals amylase 3+ with glucose 2+.

      What is the most likely diagnosis?

      Your Answer:

      Correct Answer: Acute pancreatitis

      Explanation:

      Possible Causes of Acute Abdominal Pain with Radiation to the Back

      The occurrence of acute abdominal pain with radiation to the back can be indicative of two possible conditions: a dissection or rupture of an aortic aneurysm or pancreatitis. However, the presence of amylase in the urine suggests that the latter is more likely. Pancreatitis is a condition characterized by inflammation of the pancreas, which can cause severe abdominal pain that radiates to the back. The presence of amylase in the urine is a common diagnostic marker for pancreatitis.

      In addition, acute illness associated with pancreatitis can lead to impaired insulin release and increased gluconeogenesis, which can cause elevated glucose levels. Therefore, glucose levels may also be monitored in patients with suspected pancreatitis. It is important to promptly diagnose and treat pancreatitis as it can lead to serious complications such as pancreatic necrosis, sepsis, and organ failure.

    • This question is part of the following fields:

      • Cardiovascular System
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  • Question 29 - A 23-year-old semi-professional rugby player is playing a game when he is tackled...

    Incorrect

    • A 23-year-old semi-professional rugby player is playing a game when he is tackled by other players and experiences a dislocation at the glenohumeral joint.

      What is the structure responsible for deepening the glenoid fossa?

      Your Answer:

      Correct Answer: Glenoid labrum

      Explanation:

      The Glenoid Labrum and Other Shoulder Joint Structures

      The glenoid labrum is a type of cartilage that helps to deepen the glenoid cavity, which is a shallow depression on the lateral border of the scapula bone. This cavity forms the glenohumeral joint with the humerus bone, and the labrum helps to stabilize this joint. If the labrum is injured, it can lead to recurrent dislocations of the shoulder joint.

      Another important structure in the shoulder joint is the conoid ligament, which is an extension of the coracoclavicular ligament. This ligament helps to connect the clavicle bone to the scapula bone and provides additional stability to the joint.

      The inferior and superior angles are two points on the scapula bone that refer to the lower and upper corners of the bone, respectively. These angles are important landmarks for identifying the position and orientation of the scapula in relation to other bones in the shoulder joint.

      Overall, the glenoid labrum, conoid ligament, and angles of the scapula are all important structures that contribute to the stability and function of the shoulder joint. these structures can help healthcare professionals diagnose and treat injuries and conditions that affect the shoulder joint.

    • This question is part of the following fields:

      • Clinical Sciences
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  • Question 30 - A 58-year-old man presents to the emergency department with fast atrial fibrillation. Despite...

    Incorrect

    • A 58-year-old man presents to the emergency department with fast atrial fibrillation. Despite beta-blocker therapy, he requires cardioversion and is subsequently prescribed flecainide by the cardiologist. What is the mechanism of action of flecainide?

      Your Answer:

      Correct Answer: Blocking the Nav1.5 sodium channels in the heart

      Explanation:

      Flecainide, Procainamide, and Ibutilide all affect the heart’s electrical activity by blocking or prolonging certain ion channels. Flecainide and Procainamide block sodium channels, while Ibutilide blocks potassium channels. Bisoprolol works by blocking beta one adrenergic receptors, which reduces stimulation of the heart muscle. Dronedarone’s mechanism of action is not fully understood, but it is believed to affect both potassium and calcium channels.

      Flecainide: A Sodium Channel Blocker for Cardiac Arrhythmias

      Flecainide is a type of antiarrhythmic drug that belongs to the Vaughan Williams class 1c. It works by blocking the Nav1.5 sodium channels, which slows down the conduction of the action potential. This can cause the QRS complex to widen and the PR interval to prolong. Flecainide is commonly used to treat atrial fibrillation and supraventricular tachycardia associated with accessory pathways like Wolff-Parkinson-White syndrome.

      However, it is important to note that flecainide is contraindicated in certain situations. For instance, it should not be used in patients who have recently experienced a myocardial infarction or have structural heart disease like heart failure. It is also not recommended for those with sinus node dysfunction or second-degree or greater AV block, as well as those with atrial flutter.

      Like any medication, flecainide can cause adverse effects. It may have a negative inotropic effect, which means it can weaken the heart’s contractions. It can also cause bradycardia, proarrhythmic effects, oral paraesthesia, and visual disturbances. Therefore, it is important to use flecainide only under the guidance of a healthcare professional and to report any unusual symptoms immediately.

    • This question is part of the following fields:

      • General Principles
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