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  • Question 1 - A 25-year-old athlete is collaborating with the cardiovascular physiology department to enhance their...

    Correct

    • A 25-year-old athlete is collaborating with the cardiovascular physiology department to enhance their performance. They are observing their heart rate to optimize their training routine. After a rigorous treadmill test, their heart rate rises from 56 beats per minute (BPM) to 184 BPM, leading to an increase in their cardiac output.

      What is the most accurate description of the alterations in stroke volume during the treadmill test?

      Your Answer: Increased venous return from the muscles, increases preload and increases stroke volume

      Explanation:

      When the body is exercising, the heart needs to increase its output to meet the increased demand for oxygen in the muscles. This is achieved by increasing the heart rate, but there is a limit to how much the heart rate can increase. To achieve a total increase in cardiac output, the stroke volume must also increase. This is done by increasing the preload, which is facilitated by an increase in venous return.

      Therefore, an increase in venous return will always result in an increase in preload and stroke volume. Conversely, a decrease in venous return will lead to a decrease in preload and stroke volume, as there is less blood returning to the heart from the rest of the body. It is important to note that an increase in venous return cannot result in a decrease in either stroke volume or preload.

      Cardiovascular physiology involves the study of the functions and processes of the heart and blood vessels. One important measure of heart function is the left ventricular ejection fraction, which is calculated by dividing the stroke volume (the amount of blood pumped out of the left ventricle with each heartbeat) by the end diastolic LV volume (the amount of blood in the left ventricle at the end of diastole) and multiplying by 100%. Another key measure is cardiac output, which is the amount of blood pumped by the heart per minute and is calculated by multiplying stroke volume by heart rate.

      Pulse pressure is another important measure of cardiovascular function, which is the difference between systolic pressure (the highest pressure in the arteries during a heartbeat) and diastolic pressure (the lowest pressure in the arteries between heartbeats). Factors that can increase pulse pressure include a less compliant aorta (which can occur with age) and increased stroke volume.

      Finally, systemic vascular resistance is a measure of the resistance to blood flow in the systemic circulation and is calculated by dividing mean arterial pressure (the average pressure in the arteries during a heartbeat) by cardiac output. Understanding these measures of cardiovascular function is important for diagnosing and treating cardiovascular diseases.

    • This question is part of the following fields:

      • Cardiovascular System
      98.8
      Seconds
  • Question 2 - A 28-year-old man is found on his bathroom floor next to needles and...

    Correct

    • A 28-year-old man is found on his bathroom floor next to needles and syringes and is brought into the hospital. He has a Glasgow coma score of 10 and a bedside oxygen saturation of 88%. On physical examination, he has pinpoint pupils and needle track marks on his left arm. His arterial blood gases are as follows: PaO2 7.4 kPa (11.3-12.6), PaCO2 9.6 kPa (4.7-6.0), pH 7.32 (7.36-7.44), and HCO3 25 mmol/L (20-28). What do these results indicate?

      Your Answer: Acute type II respiratory failure

      Explanation:

      Opiate Overdose

      Opiate overdose is a common occurrence that can lead to slowed breathing, inadequate oxygen saturation, and CO2 retention. This classic picture of opiate overdose can be reversed with the use of naloxone. The condition is often caused by the use of illicit drugs and can have serious consequences if left untreated.

    • This question is part of the following fields:

      • Respiratory System
      180.5
      Seconds
  • Question 3 - A young male with a history of diabetes mellitus type 1 is admitted...

    Incorrect

    • A young male with a history of diabetes mellitus type 1 is admitted to the emergency department. He was previously found to be confused by his roommates in his room. As well as this, he complains of nausea and abdominal pain.

      An ECG is performed and shows tall tented T waves.

      A simple blood test reveals marked hyperglycemia. A urinalysis shows the presence of ketones ++.

      His bloods show the following:

      Hb 136 g/L Male: (135-180)
      Platelets 210 * 109/L (150 - 400)
      WBC 9.5 * 109/L (4.0 - 11.0)

      Na+ 137 mmol/L (135 - 145)
      K+ 7.1 mmol/L (3.5 - 5.0)
      Bicarbonate 31 mmol/L (22 - 29)
      Urea 8.0 mmol/L (2.0 - 7.0)
      Creatinine 155 µmol/L (55 - 120)

      He is given insulin, calcium gluconate and IV saline.

      What is the main mechanism as to why the patient's potassium level will decrease?

      Your Answer:

      Correct Answer: Insulin increases sodium potassium pump

      Explanation:

      Insulin stimulates the Na+/K+ ATPase pump, leading to a decrease in serum potassium levels. This is primarily achieved through increased activity of the sodium-potassium pump, which is triggered by phosphorylation of the transmembrane subunits in response to insulin. While calcium gluconate is used to protect the heart during hyperkalaemia-induced arrhythmias, it does not affect potassium levels. Although IV fluids can improve renal function and potassium clearance, they are not the primary method for reducing potassium levels. Calcium-activated potassium channels are present throughout the body and are activated by an increase in intracellular calcium levels during action potentials.

      Insulin is a hormone produced by the pancreas that plays a crucial role in regulating the metabolism of carbohydrates and fats in the body. It works by causing cells in the liver, muscles, and fat tissue to absorb glucose from the bloodstream, which is then stored as glycogen in the liver and muscles or as triglycerides in fat cells. The human insulin protein is made up of 51 amino acids and is a dimer of an A-chain and a B-chain linked together by disulfide bonds. Pro-insulin is first formed in the rough endoplasmic reticulum of pancreatic beta cells and then cleaved to form insulin and C-peptide. Insulin is stored in secretory granules and released in response to high levels of glucose in the blood. In addition to its role in glucose metabolism, insulin also inhibits lipolysis, reduces muscle protein loss, and increases cellular uptake of potassium through stimulation of the Na+/K+ ATPase pump.

    • This question is part of the following fields:

      • Endocrine System
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  • Question 4 - A 49-year-old patient visits your clinic with complaints of unintentional weight loss, increased...

    Incorrect

    • A 49-year-old patient visits your clinic with complaints of unintentional weight loss, increased appetite, and diarrhea. She frequently experiences a rapid heartbeat and feels hot and sweaty in your office. During examination, you observe lid retraction in her eyes and a pulse rate of 110 beats per minute. You suspect thyrotoxicosis and plan to measure her serum levels of thyroid stimulating hormone (TSH), triiodothyronine (T3), and thyroxine (T4). Since TSH is secreted by the anterior pituitary, which other hormone is also released by this gland?

      Your Answer:

      Correct Answer: Prolactin

      Explanation:

      The hormone secreted by the anterior pituitary gland that stimulates breast development in puberty and during pregnancy, as well as milk production after delivery, is prolactin. Along with prolactin, the anterior pituitary gland also secretes growth hormone, adrenocorticotropic hormone (ACTH), luteinizing hormone (LH), follicle-stimulating hormone (FSH), and melanocyte releasing hormone.

      antidiuretic hormone (ADH), also known as vasopressin, is secreted by the posterior pituitary gland. It increases water reabsorption in the collecting ducts of the kidneys.

      Aldosterone is released by the zona glomerulosa of the adrenal cortex. It is a mineralocorticoid that increases sodium reabsorption in the distal nephron of the kidney, leading to water retention.

      Cortisol is released by the zona fasiculata of the adrenal gland. It is a glucocorticoid that has various actions, including increasing protein catabolism, glycogenolysis, and gluconeogenesis.

      The pituitary gland is a small gland located within the sella turcica in the sphenoid bone of the middle cranial fossa. It weighs approximately 0.5g and is covered by a dural fold. The gland is attached to the hypothalamus by the infundibulum and receives hormonal stimuli from the hypothalamus through the hypothalamo-pituitary portal system. The anterior pituitary, which develops from a depression in the wall of the pharynx known as Rathkes pouch, secretes hormones such as ACTH, TSH, FSH, LH, GH, and prolactin. GH and prolactin are secreted by acidophilic cells, while ACTH, TSH, FSH, and LH are secreted by basophilic cells. On the other hand, the posterior pituitary, which is derived from neuroectoderm, secretes ADH and oxytocin. Both hormones are produced in the hypothalamus before being transported by the hypothalamo-hypophyseal portal system.

    • This question is part of the following fields:

      • Neurological System
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  • Question 5 - An 80-year-old man visits his GP complaining of difficulty swallowing. He has a...

    Incorrect

    • An 80-year-old man visits his GP complaining of difficulty swallowing. He has a medical history of a TIA six months ago and underwent a carotid endarterectomy four weeks ago. Although he is recovering well, he has noticed dysphagia since the operation, which is more pronounced with liquids than solids. During the examination, the GP observes that his uvula is deviated to the right.

      Which cranial nerve was affected during the carotid endarterectomy?

      Your Answer:

      Correct Answer: Left vagus

      Explanation:

      The left vagus nerve is responsible for the deviation of the uvula away from the side of the lesion. Carotid endarterectomy can lead to cranial nerve damage, with the vagus nerve and hypoglossal nerve being the most commonly affected. In cases of vagal nerve palsy, the uvula will be deviated to the opposite side of the lesion, as seen in this case where the uvula is deviated to the right, indicating a lesion in the left vagal nerve. Dysphagia may also be present in cases of vagus nerve damage following carotid endarterectomy. The glossopharyngeal nerve is unlikely to be involved in this case, as it does not typically present with uvula deviation. Hypoglossal nerve injury can occur following carotid endarterectomy, but it is associated with tongue deviation towards the side of the lesion, not uvula deviation.

      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 6 - You are the foundation year one doctor who has been asked to clerk...

    Incorrect

    • You are the foundation year one doctor who has been asked to clerk a 70 year old male patient presenting to the medical admissions unit. He has been referred to you from the emergency department following triage. He presented with worsening shortness of breath and lethargy. On questioning you find that four weeks ago he could walk one mile on the flat without becoming breathless. He is now breathless at rest. He has no significant past medical history.

      You review the chart and find the patient to be tachycardic (110 beats per minute - irregular), hypotensive (90/52 mmHg) with a Himalayan appearance to his temperature chart. He has spiked three temperatures above 38ºC since admission. He has no peripheral stigmata of disease with a normal JVP. Upon auscultation you note the patient to have evidence of a 3/6 pan systolic murmur. There is also evidence of bibasal crackles.

      You commence oxygen and fluids, insert a urinary catheter and conduct an arterial blood gas (ABG). What other feature of the sepsis six should be commenced before prescribing antibiotics?

      Your Answer:

      Correct Answer: Blood cultures

      Explanation:

      1. Intravenous fluids (such as normal saline)
      2. Placement of a urinary catheter
      3. Administration of oxygen
      4. Measurement of lactate levels (through venous or arterial blood gas analysis)
      5. Prescription of antibiotics

      Understanding Sepsis: Classification and Management

      Sepsis is a life-threatening condition caused by a dysregulated host response to an infection. In recent years, the classification of sepsis has changed, with the old category of severe sepsis no longer in use. The Surviving Sepsis Guidelines now recognise sepsis as life-threatening organ dysfunction caused by a dysregulated host response to infection, while septic shock is a more severe form of sepsis. The term ‘systemic inflammatory response syndrome (SIRS)’ has also fallen out of favour, with quick SOFA (qSOFA) score being used to identify adult patients outside of ICU with suspected infection who are at heightened risk of mortality.

      Management of sepsis involves identifying and treating the underlying cause of the patient’s condition, as well as providing support regardless of the cause or severity. NICE guidelines recommend using red flag and amber flag criteria for risk stratification. If any of the red flags are present, the ‘sepsis six’ should be started straight away, which includes administering oxygen, taking blood cultures, giving broad-spectrum antibiotics, giving intravenous fluid challenges, measuring serum lactate, and measuring accurate hourly urine output.

      To help identify and categorise patients, the Sequential (Sepsis-Related) Organ Failure Assessment Score (SOFA) is increasingly used. The score grades abnormality by organ system and accounts for clinical interventions. A SOFA score of 2 or more reflects an overall mortality risk of approximately 10% in a general hospital population with suspected infection. Even patients presenting with modest dysfunction can deteriorate further, emphasising the seriousness of this condition and the need for prompt and appropriate intervention.

    • This question is part of the following fields:

      • General Principles
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  • Question 7 - An 82-year-old man is admitted to the neurology ward and complains to the...

    Incorrect

    • An 82-year-old man is admitted to the neurology ward and complains to the nurse that he is experiencing difficulty urinating. He expresses significant distress and reports feeling pain due to urinary retention. To alleviate his discomfort, the nurse places him in a warm bath, which finally allows him to relax his sphincter and urinate.

      What nervous structure was responsible for maintaining detrusor capacity and causing the patient's difficulty in urinating?

      Your Answer:

      Correct Answer: Hypogastric plexuses

      Explanation:

      The superior and inferior hypogastric plexuses are responsible for providing sympathetic innervation to the bladder, which helps maintain detrusor capacity by preventing parasympathetic contraction of the bladder.

      Bladder Anatomy and Innervation

      The bladder is a three-sided pyramid-shaped organ located in the pelvic cavity. Its apex points towards the symphysis pubis, while the base lies anterior to the rectum or vagina. The bladder’s inferior aspect is retroperitoneal, while the superior aspect is covered by peritoneum. The trigone, the least mobile part of the bladder, contains the ureteric orifices and internal urethral orifice. The bladder’s blood supply comes from the superior and inferior vesical arteries, while venous drainage occurs through the vesicoprostatic or vesicouterine venous plexus. Lymphatic drainage occurs mainly to the external iliac and internal iliac nodes, with the obturator nodes also playing a role. The bladder is innervated by parasympathetic nerve fibers from the pelvic splanchnic nerves and sympathetic nerve fibers from L1 and L2 via the hypogastric nerve plexuses. The parasympathetic fibers cause detrusor muscle contraction, while the sympathetic fibers innervate the trigone muscle. The external urethral sphincter is under conscious control, and voiding occurs when the rate of neuronal firing to the detrusor muscle increases.

    • This question is part of the following fields:

      • Renal System
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  • Question 8 - A 70-year-old man is undergoing investigation for small intestine cancer due to his...

    Incorrect

    • A 70-year-old man is undergoing investigation for small intestine cancer due to his history of Crohn's disease. An adenocarcinoma of his duodenum is detected through endoscopy and histology. The oncologist is now examining his previous abdominal CT scan to determine if there is any nodal involvement.

      Which group of lymph nodes could potentially be affected in this scenario?

      Your Answer:

      Correct Answer: Superior mesenteric lymph nodes

      Explanation:

      The superior mesenteric lymph nodes are responsible for draining the duodenum, which is the second section of the gastrointestinal system. This lymphatic drainage is important for staging gastrointestinal cancers, and is similar to the blood supply of the gut. While the coeliac lymph nodes drain the first part of the gastrointestinal system, the inferior mesenteric lymph nodes drain the third part, and the internal iliac lymph nodes drain the lower part of the rectum and some of the anal canal. The para-aortic lymph nodes are not involved in the drainage of the gastrointestinal system, but instead drain the genito-urinary system. It is important to understand the correct lymphatic drainage patterns for accurate cancer staging.

      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
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  • Question 9 - A man gives birth to a baby weighing 4750 g at birth.

    What is...

    Incorrect

    • A man gives birth to a baby weighing 4750 g at birth.

      What is the appropriate way to describe this birth weight?

      Your Answer:

      Correct Answer: Macrosomia

      Explanation:

      Macrosomia: Causes and Risks

      Macrosomia is a condition where a baby is born weighing between 4000-4500 grams, regardless of gestational age. This condition is associated with several factors, including maternal diabetes mellitus, rapid maternal weight gain during pregnancy, and past obstetric history. Male fetuses and post-term babies are also at an increased risk of macrosomia.

      Macrosomia can have harmful consequences for both the baby and the mother. Babies with macrosomia are at an increased risk of stillbirth, traumatic injury during birth, and brachial plexus injury. Mothers with macrosomic babies are more likely to require a caesarean delivery and may experience shoulder dystocia, traumatic lacerations to the birth canal, and postpartum hemorrhage.

      It is important for healthcare providers to monitor fetal growth and identify macrosomia early on to prevent potential complications. Women who are at an increased risk of macrosomia should receive appropriate prenatal care and be closely monitored throughout their pregnancy. By the causes and risks associated with macrosomia, healthcare providers can provide better care for both the mother and the baby.

    • This question is part of the following fields:

      • Paediatrics
      0
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  • Question 10 - A 10-year-old girl presents to the emergency department with symptoms of nausea, vomiting,...

    Incorrect

    • A 10-year-old girl presents to the emergency department with symptoms of nausea, vomiting, diarrhoea, and abdominal pain. Her father discovered scattered pills and an unlabelled bottle in her bedroom several hours prior to the onset of symptoms. During the examination, the girl experiences haematemesis and an abdominal x-ray reveals small opacities in the stomach and duodenum. Blood tests are normal, but arterial blood gas analysis shows a high anion gap metabolic acidosis. What is the most likely substance that the girl ingested?

      Your Answer:

      Correct Answer: Iron

      Explanation:

      The symptoms and x-ray findings of this patient strongly suggest acute iron poisoning. When consumed in large quantities, elemental iron can corrode the gastrointestinal mucosa, leading to abdominal pain, nausea, vomiting, diarrhea, and hematemesis within 30 minutes to 6 hours of ingestion. Iron is also harmful to cellular processes and a potent vasodilator. Patients with severe iron poisoning may experience hypotensive shock and metabolic acidosis with anion-gap due to poor perfusion and lactic acid accumulation.

      While acute acetaminophen overdose can cause nausea and vomiting, many patients do not exhibit symptoms within 24 hours of ingestion. Additionally, acetaminophen is not associated with hematemesis, making it an unlikely diagnosis.

      Acute vitamin A overdose can cause nausea, vomiting, and blurred vision, but it is not linked to hematemesis. Chronic toxicity can lead to increased intracranial pressure (pseudotumor cerebri).

      Excessive amounts of vitamin B2 (riboflavin) are typically not absorbed, making it unlikely to cause toxicity.

      Iron overdose can have serious consequences, including metabolic acidosis, erosion of gastric mucosa leading to gastrointestinal bleeding, shock, hepatotoxicity, and coagulopathy. The management of iron overdose depends on the amount of iron ingested and the presence of symptoms such as abdominal pain, diarrhea, vomiting, and lethargy. Patients who have ingested less than 40mg/kg of elemental iron and are asymptomatic can be observed at home. However, those who have ingested more than 40mg/kg of elemental iron or are symptomatic require medical assessment with serum iron levels measured 2-4 hours post-ingestion and abdominal x-ray.

      Whole bowel irrigation is the preferred decontamination procedure and is performed on all patients presenting within 4 hours who have ingested more than 60mg/kg of elemental iron or have undissolved tablets on abdominal x-ray. Activated charcoal is not effective in treating iron poisoning. Desferrioxamine is indicated for patients with serum iron levels greater than 90umol/l, those with serum iron levels between 60-90umol/l who are symptomatic or have persistent iron on abdominal x-ray despite whole bowel irrigation, and any patient with shock, coma, or metabolic acidosis. In cases where whole bowel irrigation is not effective or iron is adhered to the gastric wall, endoscopy or surgery may be necessary.

    • This question is part of the following fields:

      • General Principles
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SESSION STATS - PERFORMANCE PER SPECIALTY

Cardiovascular System (1/1) 100%
Respiratory System (1/1) 100%
Passmed