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  • Question 1 - You review a middle-aged man on the Clinical Decision Unit (CDU) who is...

    Correct

    • You review a middle-aged man on the Clinical Decision Unit (CDU) who is known to have Parkinson’s disease. Currently, he takes a combination of levodopa and selegiline, and his symptoms are reasonably well controlled. He has recently been diagnosed with a different condition, and he wonders if this could be related to his Parkinson’s disease.

      Which of the following conditions is most likely to be associated with Parkinson’s disease?

      Your Answer: Depression

      Explanation:

      Parkinson’s disease is often accompanied by two prevalent diseases, namely dementia and depression. Dementia is observed in approximately 20 to 40% of individuals diagnosed with Parkinson’s disease. On the other hand, depression is experienced by around 45% of patients with Parkinson’s disease.

    • This question is part of the following fields:

      • Neurology
      42.8
      Seconds
  • Question 2 - You are treating an 82-year-old patient who is unable to bear weight after...

    Incorrect

    • You are treating an 82-year-old patient who is unable to bear weight after a fall. X-ray results confirm a fractured neck of femur. You inform the patient that they will be referred for surgery. In terms of the blood supply to the femoral neck, which artery is responsible for supplying blood to this area?

      Your Answer: Superficial femoral artery

      Correct Answer: Deep femoral artery

      Explanation:

      The femoral neck receives its blood supply from branches of the deep femoral artery, also known as the profunda femoris artery. The deep femoral artery gives rise to the medial and lateral circumflex branches, which form a network of blood vessels around the femoral neck.

      Further Reading:

      Fractured neck of femur is a common injury, especially in elderly patients who have experienced a low impact fall. Risk factors for this type of fracture include falls, osteoporosis, and other bone disorders such as metastatic cancers, hyperparathyroidism, and osteomalacia.

      There are different classification systems for hip fractures, but the most important differentiation is between intracapsular and extracapsular fractures. The blood supply to the femoral neck and head is primarily from ascending cervical branches that arise from an arterial anastomosis between the medial and lateral circumflex branches of the femoral arteries. Fractures in the intracapsular region can damage the blood supply and lead to avascular necrosis (AVN), with the risk increasing with displacement. The Garden classification can be used to classify intracapsular neck of femur fractures and determine the risk of AVN. Those at highest risk will typically require hip replacement or arthroplasty.

      Fractures below or distal to the capsule are termed extracapsular and can be further described as intertrochanteric or subtrochanteric depending on their location. The blood supply to the femoral neck and head is usually maintained with these fractures, making them amenable to surgery that preserves the femoral head and neck, such as dynamic hip screw fixation.

      Diagnosing hip fractures can be done through radiographs, with Shenton’s line and assessing the trabecular pattern of the proximal femur being helpful techniques. X-rays should be obtained in both the AP and lateral views, and if an occult fracture is suspected, an MRI or CT scan may be necessary.

      In terms of standards of care, it is important to assess the patient’s pain score within 15 minutes of arrival in the emergency department and provide appropriate analgesia within the recommended timeframes. Patients with moderate or severe pain should have their pain reassessed within 30 minutes of receiving analgesia. X-rays should be obtained within 120 minutes of arrival, and patients should be admitted within 4 hours of arrival.

    • This question is part of the following fields:

      • Elderly Care / Frailty
      50.1
      Seconds
  • Question 3 - A 68 year old male presents to the emergency department by ambulance due...

    Incorrect

    • A 68 year old male presents to the emergency department by ambulance due to worsening shortness of breath over the past 6 hours. The patient's wife informs you that he had complained of chest discomfort earlier in the day but attributed it to 'indigestion'. The patient is visibly breathing rapidly from the end of the bed and examination reveals crackling sounds throughout both lungs with no breath sounds and dullness when tapping the lower parts of the lungs. The following observations are noted:

      Blood pressure 100/60 mmHg
      Pulse rate 110 bpm
      Respiration rate 26 bpm
      Oxygen saturation 95% on 15L O2
      Temperature 37.2ºC

      You diagnose pulmonary edema as a result of acute heart failure secondary to cardiogenic shock. What is the mortality rate associated with this condition during hospitalization?

      Your Answer: 15%

      Correct Answer: 50%

      Explanation:

      The mortality rate associated with pulmonary edema as a result of acute heart failure secondary to cardiogenic shock during hospitalization is 50%.

      Further Reading:

      Cardiac failure, also known as heart failure, is a clinical syndrome characterized by symptoms and signs resulting from abnormalities in the structure or function of the heart. This can lead to reduced cardiac output or high filling pressures at rest or with stress. Heart failure can be caused by various problems such as myocardial, valvular, pericardial, endocardial, or arrhythmic issues.

      The most common causes of heart failure in the UK are coronary heart disease and hypertension. However, there are many other possible causes, including valvular heart disease, structural heart disease, cardiomyopathies, certain drugs or toxins, endocrine disorders, nutritional deficiencies, infiltrative diseases, infections, and arrhythmias. Conditions that increase peripheral demand on the heart, such as anemia, pregnancy, sepsis, hyperthyroidism, Paget’s disease of bone, arteriovenous malformations, and beriberi, can also lead to high-output cardiac failure.

      Signs and symptoms of heart failure include edema, lung crepitations, tachycardia, tachypnea, hypotension, displaced apex beat, right ventricular heave, elevated jugular venous pressure, cyanosis, hepatomegaly, ascites, pleural effusions, breathlessness, fatigue, orthopnea, paroxysmal nocturnal dyspnea, nocturnal cough or wheeze, and Presyncope.

      To diagnose heart failure, NICE recommends three key tests: N-terminal pro-B-type natriuretic peptide (NT‑proBNP), transthoracic echocardiography, and ECG. Additional tests may include chest X-ray, blood tests (U&Es, thyroid function, LFT’s, lipid profile, HbA1C, FBC), urinalysis, and peak flow or spirometry.

      Management of cardiogenic pulmonary edema, a complication of heart failure, involves ensuring a patent airway, optimizing breathing with supplemental oxygen and non-invasive ventilation if necessary, and addressing circulation with loop diuretics to reduce preload, vasodilators to reduce preload and afterload, and inotropes if hypotension or signs of end organ hypoperfusion persist.

    • This question is part of the following fields:

      • Cardiology
      135.8
      Seconds
  • Question 4 - A 45-year-old man with a long-standing history of type 2 diabetes mellitus complains...

    Correct

    • A 45-year-old man with a long-standing history of type 2 diabetes mellitus complains of pain in his left buttock, hip, and thigh. The pain began abruptly a couple of months ago, and he cannot recall any previous injury. During the examination, you observe muscle wasting in his left quadriceps, struggles in standing up from a seated position, and an absent knee jerk on the left side. Additionally, you notice muscle fasciculations in his left thigh.

      What is the SINGLE most probable diagnosis?

      Your Answer: Diabetic amyotrophy

      Explanation:

      Diabetic amyotrophy, also referred to as proximal diabetic neuropathy, is the second most prevalent form of diabetic neuropathy. It typically begins with discomfort in the buttocks, hips, or thighs and is often initially experienced on one side. The pain may start off as mild and gradually progress or it can suddenly manifest, as seen in this case. Subsequently, weakness and wasting of the proximal muscles in the lower limbs occur, making it difficult for the patient to transition from sitting to standing without assistance. Reflexes in the affected areas can also be impacted. Good control of blood sugar levels, physiotherapy, and lifestyle adjustments can reverse diabetic amyotrophy.

      Peripheral neuropathy is the most common type of diabetic neuropathy and typically manifests as pain or loss of sensation in the feet or hands.

      Autonomic neuropathy leads to changes in digestion, bowel and bladder function, sexual response, and perspiration. It can also affect the cardiovascular system, resulting in rapid heart rates and orthostatic hypotension.

      Focal neuropathy causes sudden weakness in a single nerve or group of nerves, resulting in pain, sensory loss, or muscle weakness. Any nerve in the body can be affected.

    • This question is part of the following fields:

      • Endocrinology
      255.1
      Seconds
  • Question 5 - A 25-year-old woman is brought into the emergency department after sustaining a single...

    Incorrect

    • A 25-year-old woman is brought into the emergency department after sustaining a single stab wound to the abdomen while attempting to intervene in a fight. The patient's observations are as follows:

      Parameter Reading
      Blood pressure: 122/84 mmHg
      Pulse rate: 88 bpm
      Respiration rate: 12 rpm
      SpO2: 98% on air

      Which two organs are frequently affected in cases of penetrating abdominal trauma?

      Your Answer: Spleen and colon

      Correct Answer: Liver and small bowel

      Explanation:

      In cases of penetrating abdominal trauma, two organs that are frequently affected are the liver and the small bowel. This means that when a person sustains a stab wound or any other type of injury that penetrates the abdomen, these two organs are at a higher risk of being damaged.

      Further Reading:

      Abdominal trauma can be classified into two categories: blunt trauma and penetrating trauma. Blunt trauma occurs when compressive or deceleration forces are applied to the abdomen, often resulting from road traffic accidents or direct blows during sports. The spleen and liver are the organs most commonly injured in blunt abdominal trauma. On the other hand, penetrating trauma involves injuries that pierce the skin and enter the abdominal cavity, such as stabbings, gunshot wounds, or industrial accidents. The bowel and liver are the organs most commonly affected in penetrating injuries.

      When it comes to imaging in blunt abdominal trauma, there are three main modalities that are commonly used: focused assessment with sonography in trauma (FAST), diagnostic peritoneal lavage (DPL), and computed tomography (CT). FAST is a non-invasive and quick method used to detect free intraperitoneal fluid, aiding in the decision on whether a laparotomy is needed. DPL is also used to detect intraperitoneal blood and can be used in both unstable blunt abdominal trauma and penetrating abdominal trauma. However, it is more invasive and time-consuming compared to FAST and has largely been replaced by it. CT, on the other hand, is the gold standard for diagnosing intra-abdominal pathology and is used in stable abdominal trauma patients. It offers high sensitivity and specificity but requires a stable and cooperative patient. It also involves radiation and may have delays in availability.

      In the case of penetrating trauma, it is important to assess these injuries with the help of a surgical team. Penetrating objects should not be removed in the emergency department as they may be tamponading underlying vessels. Ideally, these injuries should be explored in the operating theater.

      In summary, abdominal trauma can be classified into blunt trauma and penetrating trauma. Blunt trauma is caused by compressive or deceleration forces and commonly affects the spleen and liver. Penetrating trauma involves injuries that pierce the skin and commonly affect the bowel and liver. Imaging modalities such as FAST, DPL, and CT are used to assess and diagnose abdominal trauma, with CT being the gold standard. Penetrating injuries should be assessed by a surgical team and should ideally be explored in the operating theater.

    • This question is part of the following fields:

      • Trauma
      19.9
      Seconds
  • Question 6 - A 28-year-old woman gives birth to a baby with microcephaly at 36-weeks gestation....

    Incorrect

    • A 28-year-old woman gives birth to a baby with microcephaly at 36-weeks gestation. She remembers experiencing a flu-like illness and skin rash early in the pregnancy after being bitten by a mosquito while visiting relatives in Brazil.

      What is the SINGLE most probable organism responsible for causing this birth defect?

      Your Answer: Ebola virus

      Correct Answer: Zika virus

      Explanation:

      The Zika virus is a newly emerging virus that is transmitted by mosquitoes. It was first discovered in humans in Uganda in 1952. Recently, there has been a significant outbreak of the virus in South America.

      When a person contracts the Zika virus, about 1 in 5 individuals will experience clinical illness, while the rest will show no symptoms at all. The most common symptoms of the virus include fever, rash, joint pain, and conjunctivitis. These symptoms typically last for no more than a week.

      While not completely conclusive, the evidence from the recent outbreak strongly suggests a connection between Zika virus infection and microcephaly.

    • This question is part of the following fields:

      • Obstetrics & Gynaecology
      19.9
      Seconds
  • Question 7 - A 62 year old man is brought into the emergency department by his...

    Correct

    • A 62 year old man is brought into the emergency department by his daughter. The patient had been dozing on the beach chair for a few hours during the scorching weather but then became increasingly disoriented and started vomiting. The patient takes furosemide for swollen ankles. The patients observations are shown below:

      Blood pressure 118/68 mmHg
      Pulse 108 bpm
      Respiratory rate 24 bpm
      Temperature 41.4ºC
      Oxygen sats 96% on air

      The patient's skin is hot and dry to the touch. What is the most likely diagnosis?

      Your Answer: Heat stroke

      Explanation:

      Anhydrosis, or the inability to sweat, is frequently observed in individuals who experience heat stroke. This patient exhibits the main characteristics of heat stroke, including a core body temperature exceeding 40ºC and encephalopathy, which is evident through significant confusion. Additionally, the patient’s use of diuretics and advanced age are risk factors that increase the likelihood of developing severe heat-related illness. It is important to note that in the UK, most fatalities resulting from heat stroke occur in individuals aged 70 or older, typically within the initial days of a heat wave.

      Further Reading:

      Heat Stroke:
      – Core temperature >40°C with central nervous system dysfunction
      – Classified into classic/non-exertional heat stroke and exertional heat stroke
      – Classic heat stroke due to passive exposure to severe environmental heat
      – Exertional heat stroke due to strenuous physical activity in combination with excessive environmental heat
      – Mechanisms to reduce core temperature overwhelmed, leading to tissue damage
      – Symptoms include high body temperature, vascular endothelial surface damage, inflammation, dehydration, and renal failure
      – Management includes cooling methods and supportive care
      – Target core temperature for cooling is 38.5°C

      Heat Exhaustion:
      – Mild to moderate heat illness that can progress to heat stroke if untreated
      – Core temperature elevated but <40°C
      – Symptoms include nausea, vomiting, dizziness, and mild neurological symptoms
      – Normal thermoregulation is disrupted
      – Management includes moving patient to a cooler environment, rehydration, and rest

      Other Heat-Related Illnesses:
      – Heat oedema: transitory swelling of hands and feet, resolves spontaneously
      – Heat syncope: results from volume depletion and peripheral vasodilatation, managed by moving patient to a cooler environment and rehydration
      – Heat cramps: painful muscle contractions associated with exertion, managed with cooling, rest, analgesia, and rehydration

      Risk Factors for Severe Heat-Related Illness:
      – Old age, very young age, chronic disease and debility, mental illness, certain medications, housing issues, occupational factors

      Management:
      – Cooling methods include spraying with tepid water, fanning, administering cooled IV fluids, cold or ice water immersion, and ice packs
      – Benzodiazepines may be used to control shivering
      – Rapid cooling to achieve rapid normothermia should be avoided to prevent overcooling and hypothermia
      – Supportive care includes intravenous fluid replacement, seizure treatment if required, and consideration of haemofiltration
      – Some patients may require liver transplant due to significant liver damage
      – Patients with heat stroke should ideally be managed in a HDU/ICU setting with CVP and urinary catheter output measurements

    • This question is part of the following fields:

      • Environmental Emergencies
      38.2
      Seconds
  • Question 8 - A 60 year old male presents to the emergency department complaining of palpitations...

    Correct

    • A 60 year old male presents to the emergency department complaining of palpitations and a headache. The patient appears distressed and is observed to be trembling and sweating excessively. The patient has no regular medication and no significant medical history. The patient mentions experiencing similar episodes in the past few months, but none as severe as this one. The patient's vital signs are as follows:

      Blood pressure: 212/100 mmHg
      Pulse: 98 bpm
      Respiration: 16 bpm
      Oxygen saturations: 97% on room air

      What is the most likely diagnosis?

      Your Answer: Phaeochromocytoma

      Explanation:

      Phaeochromocytoma is characterized by certain clinical features, including paroxysmal hypertension, palpitations, headache, tremor, and profuse sweating. This patient exhibits paroxysmal symptoms that align with phaeochromocytoma, such as high blood pressure (systolic readings exceeding 220 mmHg are common), headache, sweating, and feelings of anxiety and fear. It is important to note that individuals with conditions like congenital adrenal hyperplasia, diabetes insipidus, and Addisonian crisis typically experience low blood pressure.

      Further Reading:

      Phaeochromocytoma is a rare neuroendocrine tumor that secretes catecholamines. It typically arises from chromaffin tissue in the adrenal medulla, but can also occur in extra-adrenal chromaffin tissue. The majority of cases are spontaneous and occur in individuals aged 40-50 years. However, up to 30% of cases are hereditary and associated with genetic mutations. About 10% of phaeochromocytomas are metastatic, with extra-adrenal tumors more likely to be metastatic.

      The clinical features of phaeochromocytoma are a result of excessive catecholamine production. Symptoms are typically paroxysmal and include hypertension, headaches, palpitations, sweating, anxiety, tremor, abdominal and flank pain, and nausea. Catecholamines have various metabolic effects, including glycogenolysis, mobilization of free fatty acids, increased serum lactate, increased metabolic rate, increased myocardial force and rate of contraction, and decreased systemic vascular resistance.

      Diagnosis of phaeochromocytoma involves measuring plasma and urine levels of metanephrines, catecholamines, and urine vanillylmandelic acid. Imaging studies such as abdominal CT or MRI are used to determine the location of the tumor. If these fail to find the site, a scan with metaiodobenzylguanidine (MIBG) labeled with radioactive iodine is performed. The highest sensitivity and specificity for diagnosis is achieved with plasma metanephrine assay.

      The definitive treatment for phaeochromocytoma is surgery. However, before surgery, the patient must be stabilized with medical management. This typically involves alpha-blockade with medications such as phenoxybenzamine or phentolamine, followed by beta-blockade with medications like propranolol. Alpha blockade is started before beta blockade to allow for expansion of blood volume and to prevent a hypertensive crisis.

    • This question is part of the following fields:

      • Endocrinology
      15.6
      Seconds
  • Question 9 - A 35 year old male is brought into the emergency department after being...

    Incorrect

    • A 35 year old male is brought into the emergency department after being found disoriented and lethargic by a family member. The family member informs you that the patient has a history of depression and that there were multiple empty bottles of aspirin at the patient's residence. Initial tests are conducted, including a salicylate level. Upon reviewing the salicylate result, you commence the urinary alkalinisation protocol. What is the desired treatment range?

      Your Answer: Urinary pH is 7.35-7.45

      Correct Answer: Urinary pH is 7.5-8.5

      Explanation:

      Urinary alkalinisation aims to achieve a urinary pH of 7.5-8.5. This process helps enhance the elimination of salicylates. It is important to regularly monitor urinary pH, ideally on an hourly basis.

      Further Reading:

      Salicylate poisoning, particularly from aspirin overdose, is a common cause of poisoning in the UK. One important concept to understand is that salicylate overdose leads to a combination of respiratory alkalosis and metabolic acidosis. Initially, the overdose stimulates the respiratory center, leading to hyperventilation and respiratory alkalosis. However, as the effects of salicylate on lactic acid production, breakdown into acidic metabolites, and acute renal injury occur, it can result in high anion gap metabolic acidosis.

      The clinical features of salicylate poisoning include hyperventilation, tinnitus, lethargy, sweating, pyrexia (fever), nausea/vomiting, hyperglycemia and hypoglycemia, seizures, and coma.

      When investigating salicylate poisoning, it is important to measure salicylate levels in the blood. The sample should be taken at least 2 hours after ingestion for symptomatic patients or 4 hours for asymptomatic patients. The measurement should be repeated every 2-3 hours until the levels start to decrease. Other investigations include arterial blood gas analysis, electrolyte levels (U&Es), complete blood count (FBC), coagulation studies (raised INR/PTR), urinary pH, and blood glucose levels.

      To manage salicylate poisoning, an ABC approach should be followed to ensure a patent airway and adequate ventilation. Activated charcoal can be administered if the patient presents within 1 hour of ingestion. Oral or intravenous fluids should be given to optimize intravascular volume. Hypokalemia and hypoglycemia should be corrected. Urinary alkalinization with intravenous sodium bicarbonate can enhance the elimination of aspirin in the urine. In severe cases, hemodialysis may be necessary.

      Urinary alkalinization involves targeting a urinary pH of 7.5-8.5 and checking it hourly. It is important to monitor for hypokalemia as alkalinization can cause potassium to shift from plasma into cells. Potassium levels should be checked every 1-2 hours.

      In cases where the salicylate concentration is high (above 500 mg/L in adults or 350 mg/L in children), sodium bicarbonate can be administered intravenously. Hemodialysis is the treatment of choice for severe poisoning and may be indicated in cases of high salicylate levels, resistant metabolic acidosis, acute kidney injury, pulmonary edema, seizures and coma.

    • This question is part of the following fields:

      • Pharmacology & Poisoning
      21.2
      Seconds
  • Question 10 - A 62 year old male presents to the emergency department with complaints of...

    Incorrect

    • A 62 year old male presents to the emergency department with complaints of fatigue, headache, and muscle spasms. Upon examination, the patient is found to have hypertension with a blood pressure reading of 198/96 mmHg. In order to screen for secondary causes of hypertension, which of the following tests would be the most suitable for detecting Conn's syndrome?

      Your Answer: Urine vanillylmandelic acid

      Correct Answer: Aldosterone and renin levels

      Explanation:

      The preferred diagnostic test for hyperaldosteronism is the plasma aldosterone-to-renin ratio (ARR). Hyperaldosteronism is also known as Conn’s syndrome and can be diagnosed by measuring aldosterone and renin levels. By calculating the aldosterone-to-renin ratio, an abnormal increase (>30 ng/dL per ng/mL/h) can indicate primary hyperaldosteronism. Adrenal insufficiency can be detected using the Synacthen test. To detect phaeochromocytoma, tests such as plasma metanephrines and urine vanillylmandelic acid are used. The dexamethasone suppression test is employed for diagnosing Cushing syndrome.

      Further Reading:

      Hyperaldosteronism is a condition characterized by excessive production of aldosterone by the adrenal glands. It can be classified into primary and secondary hyperaldosteronism. Primary hyperaldosteronism, also known as Conn’s syndrome, is typically caused by adrenal hyperplasia or adrenal tumors. Secondary hyperaldosteronism, on the other hand, is a result of high renin levels in response to reduced blood flow across the juxtaglomerular apparatus.

      Aldosterone is the main mineralocorticoid steroid hormone produced by the adrenal cortex. It acts on the distal renal tubule and collecting duct of the nephron, promoting the reabsorption of sodium ions and water while secreting potassium ions.

      The causes of hyperaldosteronism vary depending on whether it is primary or secondary. Primary hyperaldosteronism can be caused by adrenal adenoma, adrenal hyperplasia, adrenal carcinoma, or familial hyperaldosteronism. Secondary hyperaldosteronism can be caused by renal artery stenosis, reninoma, renal tubular acidosis, nutcracker syndrome, ectopic tumors, massive ascites, left ventricular failure, or cor pulmonale.

      Clinical features of hyperaldosteronism include hypertension, hypokalemia, metabolic alkalosis, hypernatremia, polyuria, polydipsia, headaches, lethargy, muscle weakness and spasms, and numbness. It is estimated that hyperaldosteronism is present in 5-10% of patients with hypertension, and hypertension in primary hyperaldosteronism is often resistant to drug treatment.

      Diagnosis of hyperaldosteronism involves various investigations, including U&Es to assess electrolyte disturbances, aldosterone-to-renin plasma ratio (ARR) as the gold standard diagnostic test, ECG to detect arrhythmia, CT/MRI scans to locate adenoma, fludrocortisone suppression test or oral salt testing to confirm primary hyperaldosteronism, genetic testing to identify familial hyperaldosteronism, and adrenal venous sampling to determine lateralization prior to surgery.

      Treatment of primary hyperaldosteronism typically involves surgical adrenalectomy for patients with unilateral primary aldosteronism. Diet modification with sodium restriction and potassium supplementation may also be recommended.

    • This question is part of the following fields:

      • Endocrinology
      14.7
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Neurology (1/1) 100%
Elderly Care / Frailty (0/1) 0%
Cardiology (0/1) 0%
Endocrinology (2/3) 67%
Trauma (0/1) 0%
Obstetrics & Gynaecology (0/1) 0%
Environmental Emergencies (1/1) 100%
Pharmacology & Poisoning (0/1) 0%
Passmed