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  • Question 1 - A 22-year-old woman presents to the emergency department with abdominal pain and nausea....

    Correct

    • A 22-year-old woman presents to the emergency department with abdominal pain and nausea. She has a distinct 'pear drops' odor on her breath. The medical team admits her and initiates aggressive IV fluid replacement and insulin therapy as per national protocol. Despite being clinically stable after 24 hours, she is unable to eat or drink.
      Her vital signs are as follows:
      - Heart rate: 110 bpm
      - Respiratory rate: 15/min
      - Blood pressure: 122/90 mmHg
      An arterial blood gas test reveals a pH of 7.28, and her blood results show:
      - Plasma glucose: 15.6 mmol/L
      - Sodium: 136 mmol/L (135 - 145)
      - Potassium: 4.6 mmol/L (3.5 - 5.0)
      - Bicarbonate: 13 mmol/L (22 - 29)
      - Ketones: 4.5 mmol/L (<3)
      What is the most appropriate next step in managing this patient's condition?

      Your Answer: Endocrinology review

      Explanation:

      If a patient with diabetic ketoacidosis still has significant ketonaemia and acidosis after 24 hours, it is recommended to seek a review from a senior endocrinologist. This is important to consider other potential diagnoses and advise on further treatment. Treatment should aim to reduce blood ketones by approximately 1 mmol/hr and glucose by around 3mmol/hr. By 24 hours, the patient should be eating and drinking normally and can be switched to subcutaneous insulin.

      Admission to ICU is not necessary at this point as the patient is relatively stable. The priority is to continue treatment and determine why the current treatment is not working, which can be best achieved with a senior review.

      Continuing the current fluid replacement would be inappropriate as patients with DKA should see resolution of their condition after 24 hours of normal treatment. If the patient remains in DKA after this point, a senior review is needed.

      Increasing insulin rate, as well as increasing the rate of IV fluids, should not be done without consulting a senior endocrinologist as it may lead to hypoglycaemia or dilutional hyponatraemia, respectively, which could worsen the patient’s condition.

      Diabetic ketoacidosis (DKA) is a serious complication of type 1 diabetes mellitus, accounting for around 6% of cases. It can also occur in rare cases of extreme stress in patients with type 2 diabetes mellitus. However, mortality rates have decreased from 8% to under 1% in the past 20 years. DKA is caused by uncontrolled lipolysis, resulting in an excess of free fatty acids that are ultimately converted to ketone bodies. The most common precipitating factors of DKA are infection, missed insulin doses, and myocardial infarction. Symptoms include abdominal pain, polyuria, polydipsia, dehydration, Kussmaul respiration, and acetone-smelling breath. Diagnostic criteria include glucose levels above 13.8 mmol/l, pH below 7.30, serum bicarbonate below 18 mmol/l, anion gap above 10, and ketonaemia.

      Management of DKA involves fluid replacement, insulin, and correction of electrolyte disturbance. Most patients with DKA are depleted around 5-8 litres, and isotonic saline is used initially, even if the patient is severely acidotic. Insulin is administered through an intravenous infusion, and correction of electrolyte disturbance is necessary. Long-acting insulin should be continued, while short-acting insulin should be stopped. DKA resolution is defined as pH above 7.3, blood ketones below 0.6 mmol/L, and bicarbonate above 15.0mmol/L. Complications may occur from DKA itself or the treatment, such as gastric stasis, thromboembolism, arrhythmias, acute respiratory distress syndrome, acute kidney injury, and cerebral oedema. Children and young adults are particularly vulnerable to cerebral oedema following fluid resuscitation in DKA and often need 1:1 nursing to monitor neuro-observations.

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  • Question 2 - What is the most prevalent form of colorectal cancer that is inherited?

    Familial...

    Incorrect

    • What is the most prevalent form of colorectal cancer that is inherited?

      Familial adenomatous polyposis, Li-Fraumeni syndrome, Hereditary non-polyposis colorectal carcinoma, Fanconi syndrome, and Peutz-Jeghers syndrome are all types of inherited colorectal cancer. However, which one is the most common?

      Your Answer: Familial adenomatous polyposis

      Correct Answer: Hereditary non-polyposis colorectal carcinoma

      Explanation:

      Genetics and Types of Colorectal Cancer

      Colorectal cancer is a type of cancer that affects the colon and rectum. There are three main types of colorectal cancer: sporadic, hereditary non-polyposis colorectal carcinoma (HNPCC), and familial adenomatous polyposis (FAP). Sporadic colon cancer is the most common type, accounting for 95% of cases. It is believed to be caused by a series of genetic mutations, including allelic loss of the APC gene, activation of the K-ras oncogene, and deletion of p53 and DCC tumour suppressor genes.

      HNPCC, also known as Lynch syndrome, is an autosomal dominant condition that accounts for 5% of cases. It is the most common form of inherited colon cancer and is caused by mutations in genes involved in DNA mismatch repair, leading to microsatellite instability. The most commonly affected genes are MSH2 and MLH1. Patients with HNPCC are also at a higher risk of developing other cancers, such as endometrial cancer.

      FAP is a rare autosomal dominant condition that accounts for less than 1% of cases. It is caused by a mutation in the adenomatous polyposis coli gene (APC), which leads to the formation of hundreds of polyps by the age of 30-40 years. Patients with FAP inevitably develop carcinoma and are also at risk of duodenal tumors. A variant of FAP called Gardner’s syndrome can also feature osteomas of the skull and mandible, retinal pigmentation, thyroid carcinoma, and epidermoid cysts on the skin.

      In conclusion, understanding the genetics behind colorectal cancer is important for diagnosis and treatment. While sporadic colon cancer is the most common type, HNPCC and FAP are inherited conditions that require genetic testing and surveillance for early detection and prevention.

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  • Question 3 - A 54-year-old man visits his doctor with a complaint of erectile dysfunction. He...

    Correct

    • A 54-year-old man visits his doctor with a complaint of erectile dysfunction. He reports no recent stressors or changes in his lifestyle or diet. He has a medical history of type 2 diabetes mellitus, hypertension, gastroesophageal reflux disease (GORD), and osteoarthritis. His current medications include gliclazide, indapamide, metformin, omeprazole, and paracetamol. The doctor suspects that one of his medications is responsible for his erectile dysfunction. Which medication is the most likely culprit?

      Your Answer: Indapamide

      Explanation:

      Indapamide, a thiazide-like diuretic, is known to cause sexual dysfunction and is the most likely medication responsible for this man’s erectile dysfunction. Gliclazide, metformin, and omeprazole, on the other hand, are not associated with sexual dysfunction. Gliclazide is used to manage diabetes mellitus and can cause gastrointestinal upset and hypoglycemia. Metformin is also used to manage diabetes mellitus and can cause nausea, vomiting, constipation, and rare adverse effects such as B12 deficiency and lactic acidosis. Omeprazole is a proton-pump inhibitor used to control excess stomach acid production and can cause gastrointestinal side-effects and electrolyte disturbances such as hyponatremia and hypomagnesemia.

      Thiazide diuretics are medications that work by blocking the thiazide-sensitive Na+-Cl− symporter, which inhibits sodium reabsorption at the beginning of the distal convoluted tubule (DCT). This results in the loss of potassium as more sodium reaches the collecting ducts. While loop diuretics are better for reducing overload, thiazide diuretics have a role in the treatment of mild heart failure. Bendroflumethiazide was commonly used for managing hypertension, but recent NICE guidelines recommend other thiazide-like diuretics such as indapamide and chlorthalidone.

      Like any medication, thiazide diuretics have potential adverse effects. Common side effects include dehydration, postural hypotension, and electrolyte imbalances such as hyponatraemia, hypokalaemia, and hypercalcaemia. Gout, impaired glucose tolerance, and impotence are also possible. Rare adverse effects include thrombocytopaenia, agranulocytosis, photosensitivity rash, and pancreatitis.

      To manage hypertension, current NICE guidelines recommend using thiazide-like diuretics such as indapamide or chlorthalidone as first-line treatment. If blood pressure is not adequately controlled, a calcium channel blocker or ACE inhibitor can be added. If blood pressure remains high, a thiazide-like diuretic can be combined with a calcium channel blocker or ACE inhibitor. In some cases, a beta-blocker or aldosterone antagonist may also be added. Regular monitoring and adjustment of medication is necessary to ensure optimal blood pressure control.

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  • Question 4 - Primary biliary cirrhosis is most characteristically associated with: ...

    Incorrect

    • Primary biliary cirrhosis is most characteristically associated with:

      Your Answer: Anti-ribonuclear protein antibodies

      Correct Answer: Anti-mitochondrial antibodies

      Explanation:

      The M rule for primary biliary cholangitis includes the presence of IgM and anti-Mitochondrial antibodies, specifically the M2 subtype, in middle-aged women.

      Primary Biliary Cholangitis: A Chronic Liver Disorder

      Primary biliary cholangitis, previously known as primary biliary cirrhosis, is a chronic liver disorder that is commonly observed in middle-aged women. The exact cause of this condition is not yet fully understood, but it is believed to be an autoimmune disease. The disease is characterized by the progressive damage of interlobular bile ducts due to chronic inflammation, leading to cholestasis and eventually cirrhosis. The most common symptom of primary biliary cholangitis is itching in middle-aged women.

      This condition is often associated with other autoimmune diseases such as Sjogren’s syndrome, rheumatoid arthritis, systemic sclerosis, and thyroid disease. Early symptoms of primary biliary cholangitis may be asymptomatic or may include fatigue, pruritus, and cholestatic jaundice. Late symptoms may progress to liver failure. Diagnosis of primary biliary cholangitis involves immunology tests such as anti-mitochondrial antibodies (AMA) M2 subtype and smooth muscle antibodies, as well as imaging tests to exclude an extrahepatic biliary obstruction.

      The first-line treatment for primary biliary cholangitis is ursodeoxycholic acid, which slows down the progression of the disease and improves symptoms. Cholestyramine is used to alleviate pruritus, and fat-soluble vitamin supplementation is recommended. In severe cases, liver transplantation may be necessary, especially if bilirubin levels exceed 100. However, recurrence in the graft can occur, but it is not usually a problem. Complications of primary biliary cholangitis include cirrhosis, portal hypertension, ascites, variceal hemorrhage, osteomalacia, osteoporosis, and an increased risk of hepatocellular carcinoma.

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  • Question 5 - A 79-year-old man arrives at the emergency department with sudden onset of weakness...

    Incorrect

    • A 79-year-old man arrives at the emergency department with sudden onset of weakness in his right arm and leg accompanied by blurred vision. He has a medical history of hypertension and type 2 diabetes and is currently taking ramipril and metformin. During examination, the left pupil is dilated with absent consensual and direct light reflexes, while the right pupil has intact reflexes. Bilateral upper and lower limb power is 3/5. Based on this presentation, where is the most likely location of the patient's stroke?

      Your Answer: Basilar artery

      Correct Answer: Midbrain

      Explanation:

      Weber’s syndrome is a type of midbrain stroke that causes ipsilateral CN III palsy and contralateral hemiparesis. It is caused by a blockage in the branches of the posterior cerebral artery that supply the midbrain. Anterior cerebral artery strokes cause contralateral lower limb weakness, while basilar artery strokes cause bilateral paralysis and locked-in syndrome.

      When a stroke occurs, the location of the lesion in the brain can determine the specific effects on the body. Depending on which artery is affected, different symptoms may arise. For example, a stroke in the anterior cerebral artery can lead to contralateral hemiparesis and sensory loss, with the lower extremity being more affected than the upper. On the other hand, a stroke in the middle cerebral artery can cause contralateral hemiparesis and sensory loss, with the upper extremity being more affected than the lower, as well as contralateral homonymous hemianopia and aphasia.

      If the stroke occurs in the posterior cerebral artery, the individual may experience contralateral homonymous hemianopia with macular sparing and visual agnosia. In the case of Weber’s syndrome, which involves branches of the posterior cerebral artery that supply the midbrain, the person may have an ipsilateral CN III palsy and contralateral weakness of the upper and lower extremities.

      Other types of strokes include those affecting the posterior inferior cerebellar artery, which can lead to ipsilateral facial pain and temperature loss and contralateral limb/torso pain and temperature loss, as well as ataxia and nystagmus. A stroke in the anterior inferior cerebellar artery can cause similar symptoms to Wallenberg’s syndrome, but with the addition of ipsilateral facial paralysis and deafness.

      Finally, lacunar strokes are small, localized strokes that often occur in individuals with hypertension. They typically present with isolated hemiparesis, hemisensory loss, or hemiparesis with limb ataxia, and commonly affect the basal ganglia, thalamus, and internal capsule.

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  • Question 6 - A 55-year-old man undergoes an arterial blood gas test and the results show...

    Incorrect

    • A 55-year-old man undergoes an arterial blood gas test and the results show the following while he is breathing room air:
      pH 7.49
      pCO2 2.4 kPa
      pO2 8.5 kPa
      HCO3 22 mmol/l
      What is the most probable condition responsible for these findings?

      Your Answer: Metabolic acidosis with increased anion gap

      Correct Answer: Respiratory alkalosis

      Explanation:

      Hyperventilation leads to a respiratory alkalosis (non-compensated) due to the reduction in carbon dioxide levels.

      Disorders of Acid-Base Balance: An Overview

      The acid-base normogram is a useful tool for categorizing the various disorders of acid-base balance. Metabolic acidosis is the most common surgical acid-base disorder, characterized by a reduction in plasma bicarbonate levels. This can be caused by a gain of strong acid (such as in diabetic ketoacidosis) or a loss of base (such as from bowel in diarrhea). Metabolic alkalosis, on the other hand, is usually caused by a rise in plasma bicarbonate levels, which can be due to problems of the kidney or gastrointestinal tract. Respiratory acidosis occurs when there is a rise in carbon dioxide levels, usually as a result of alveolar hypoventilation, while respiratory alkalosis results from hyperventilation, leading to excess loss of carbon dioxide.

      Each of these disorders has its own set of causes and mechanisms. For example, metabolic alkalosis can be caused by vomiting/aspiration, diuretics, or primary hyperaldosteronism, among other factors. The mechanism of metabolic alkalosis involves the activation of the renin-angiotensin II-aldosterone (RAA) system, which causes reabsorption of Na+ in exchange for H+ in the distal convoluted tubule. Respiratory acidosis, on the other hand, can be caused by COPD, decompensation in other respiratory conditions, or sedative drugs like benzodiazepines and opiate overdose.

      It is important to understand the different types of acid-base disorders and their causes in order to properly diagnose and treat them. By using the acid-base normogram and understanding the underlying mechanisms, healthcare professionals can provide effective interventions to restore balance to the body’s acid-base system.

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  • Question 7 - A 16-year-old male presents to the nephrology unit with a complaint of recurrent...

    Incorrect

    • A 16-year-old male presents to the nephrology unit with a complaint of recurrent visible haematuria following upper respiratory tract infections. He denies any abdominal or loin pain. The urine dipstick is unremarkable, and blood tests reveal normal electrolyte levels and kidney function. What is the probable diagnosis?

      Your Answer: Post-streptococcal glomerulonephritis

      Correct Answer: IgA nephropathy

      Explanation:

      Understanding IgA Nephropathy

      IgA nephropathy, also known as Berger’s disease, is the most common cause of glomerulonephritis worldwide. It is characterized by the deposition of IgA immune complexes in the mesangium, leading to mesangial hypercellularity and positive immunofluorescence for IgA and C3. The classic presentation is recurrent episodes of macroscopic hematuria in young males following an upper respiratory tract infection. Unlike post-streptococcal glomerulonephritis, IgA nephropathy is not associated with low complement levels and typically does not present with nephrotic range proteinuria or renal failure.

      Management of IgA nephropathy depends on the severity of proteinuria and renal function. Isolated hematuria without or minimal proteinuria and normal GFR requires only follow-up to monitor renal function. Persistent proteinuria with normal or slightly reduced GFR can be treated with ACE inhibitors. If there is active disease or failure to respond to ACE inhibitors, immunosuppression with corticosteroids may be necessary. The prognosis of IgA nephropathy varies, with 25% of patients developing ESRF. Factors associated with a poor prognosis include male gender, proteinuria, hypertension, smoking, hyperlipidemia, and ACE genotype DD, while frank hematuria is a marker of good prognosis.

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  • Question 8 - A 28-year-old man presents to the emergency department with difficulty swallowing and blurred...

    Correct

    • A 28-year-old man presents to the emergency department with difficulty swallowing and blurred vision. He is worried about his slurred speech which started the day before. He has no past medical history or current medications.

      Upon examination, the patient appears disheveled and has multiple track marks on both arms with surrounding redness. His vital signs are normal. Cranial nerve examination reveals bilateral ptosis, diplopia, impaired pupil accommodation, and impaired gag reflex. The patient's speech is also slurred. Upper limb examination shows hypotonia and 4/5 power bilaterally, while sensation is intact. Lower limb examination is unremarkable.

      What is the most likely causative organism for this patient's presentation?

      Your Answer: Clostridium botulinum

      Explanation:

      There are various bacterial infections that can cause different diseases. For example, Salmonella can cause food poisoning, while Campylobacter jejuni is a common cause of diarrhoea and can also be linked to Guillain-Barre syndrome. Additionally, Clostridium tetani infection can lead to tetanus.

      Understanding Botulism: Causes, Symptoms, and Treatment

      Botulism is a rare but serious illness caused by the bacterium Clostridium botulinum. This gram-positive anaerobic bacillus produces botulinum toxin, a neurotoxin that blocks the release of acetylcholine, leading to flaccid paralysis and other symptoms. There are seven serotypes of the bacterium, labeled A-G. Botulism can result from eating contaminated food, particularly tinned food, or from intravenous drug use.

      The neurotoxin produced by Clostridium botulinum often affects bulbar muscles and the autonomic nervous system, leading to symptoms such as diplopia, ataxia, and bulbar palsy. However, patients are usually fully conscious and do not experience any sensory disturbance.

      Treatment for botulism involves administering botulism antitoxin and providing supportive care. It is important to note that the antitoxin is only effective if given early, as once the toxin has bound, its actions cannot be reversed. Therefore, prompt diagnosis and treatment are crucial in managing this potentially life-threatening illness.

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  • Question 9 - A 55-year-old male with type 2 diabetes presents for his annual check-up. He...

    Correct

    • A 55-year-old male with type 2 diabetes presents for his annual check-up. He has a history of angina after a previous heart attack and still smokes 10 cigarettes daily. His blood pressure is 145/88 mmHg, and he is in sinus rhythm. Evidence of neuropathy is present in his feet, but no ulcers are visible. He has background diabetic retinopathy and scars from previous photocoagulation therapy. His urine albumin/creatinine ratio is 20 mg/mmol, and his estimated glomerular filtration rate is 50 ml/min/1.73m2. His HbA1c is 51 mmol/mol (20-46).

      What is the best intervention to preserve this patient's kidney structure and function?

      Your Answer: Ramipril 5 mg daily

      Explanation:

      The patient has type 2 diabetes, coronary artery disease, and stage 3 chronic kidney disease, putting him at risk for cardiovascular events and renal function decline. Ramipril 10 mg is recommended to improve blood pressure control and preserve kidney function. Stopping smoking and using simvastatin are essential for cardiac risk management. HbA1c is reasonable at 51 mmol/mol.

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  • Question 10 - An elderly woman, aged 76, visits her GP complaining of breathlessness and leg...

    Correct

    • An elderly woman, aged 76, visits her GP complaining of breathlessness and leg swelling. She has a medical history of heart failure (ejection fraction 33%), rheumatoid arthritis, and type 2 diabetes mellitus. Her current medications include 7.5mg bisoprolol once daily, 10 mg lisinopril once daily, 20 mg furosemide twice daily, 500 mg metformin three times daily, and 1g paracetamol four times daily. During the examination, the GP notes mild bibasal crackles, normal heart sounds, and bilateral pedal pitting oedema. The patient's vital signs are heart rate 72 beats per minute and regular, respiratory rate 18 breaths per minute, oxygen saturations 94% on room air, blood pressure 124/68 mmHg, and temperature 36.2oC. The patient's blood test results from two weeks ago show Na+ 140 mmol/L (135 - 145), K+ 4.2 mmol/L (3.5 - 5.0), Bicarbonate 23 mmol/L (22 - 29), Urea 6.2 mmol/L (2.0 - 7.0), and Creatinine 114 µmol/L (55 - 120). What would be the most appropriate medication to initiate?

      Your Answer: Spironolactone

      Explanation:

      For individuals with heart failure with reduced ejection fraction who are still experiencing symptoms despite being on an ACE inhibitor (or ARB) and beta-blocker, it is recommended to add a mineralocorticoid receptor antagonist such as Spironolactone. Prior to starting and increasing the dosage, it is important to monitor serum sodium, potassium, renal function, and blood pressure. Amiodarone is not a first-line treatment for heart failure and should only be prescribed after consulting with a cardiology specialist. Digoxin is recommended if heart failure worsens or becomes severe despite initial treatment, but it is important to note that a mineralocorticoid receptor antagonist should be prescribed first. Ivabradine can be used in heart failure, but it should not be prescribed if the patient’s heart rate is below 75, and it is not a first-line treatment.

      Drug Management for Chronic Heart Failure: NICE Guidelines

      Chronic heart failure is a serious condition that requires proper management to improve patient outcomes. In 2018, the National Institute for Health and Care Excellence (NICE) updated their guidelines on drug management for chronic heart failure. The guidelines recommend first-line therapy with both an ACE-inhibitor and a beta-blocker, with clinical judgement used to determine which one to start first. Second-line therapy involves the use of aldosterone antagonists, which should be monitored for hyperkalaemia. SGLT-2 inhibitors are also increasingly being used to manage heart failure with a reduced ejection fraction. Third-line therapy should be initiated by a specialist and may include ivabradine, sacubitril-valsartan, hydralazine in combination with nitrate, digoxin, or cardiac resynchronisation therapy. Other treatments such as annual influenzae and one-off pneumococcal vaccines are also recommended.

      Overall, the NICE guidelines provide a comprehensive approach to drug management for chronic heart failure. It is important to note that loop diuretics have not been shown to reduce mortality in the long-term, and that ACE-inhibitors and beta-blockers have no effect on mortality in heart failure with preserved ejection fraction. Healthcare professionals should carefully consider the patient’s individual needs and circumstances when determining the appropriate drug therapy for chronic heart failure.

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  • Question 11 - A 75-year-old man in the respiratory ward is diagnosed with a left-sided pleural...

    Incorrect

    • A 75-year-old man in the respiratory ward is diagnosed with a left-sided pleural effusion after presenting to the emergency department with difficulty breathing. An ultrasound-guided pleural aspiration is performed and the fluid is sent to the lab for analysis. The results show a pleural fluid protein level of 30 g/L (normal value < 10 g/dL) and a pleural fluid lactate dehydrogenase (LDH) level of 220 IU/L (normal value <50% plasma concentration). Unfortunately, the serum protein and LDH levels are not available. Based on these findings, what is the most likely underlying diagnosis?

      Your Answer: Meigs syndrome

      Correct Answer: Systemic lupus erythematosus

      Explanation:

      If the level of LDH in an effusion is greater than 2/3rds of the upper limit of LDH in the serum, it indicates an exudate according to Light’s criteria.

      Investigating and Managing Pleural Effusion: BTS Guidelines

      Pleural effusion is a condition where fluid accumulates in the pleural space, the area between the lungs and the chest wall. To investigate and manage this condition, the British Thoracic Society (BTS) has provided guidelines.

      Imaging is an essential part of the investigation process, and the BTS recommends performing posterioranterior (PA) chest x-rays in all patients. Ultrasound is also recommended as it increases the likelihood of successful pleural aspiration and is sensitive for detecting pleural fluid septations. Contrast CT is increasingly performed to investigate the underlying cause, particularly for exudative effusions.

      Pleural aspiration is another crucial step in the investigation process. The BTS recommends using ultrasound to reduce the complication rate. A 21G needle and 50ml syringe should be used, and fluid should be sent for pH, protein, lactate dehydrogenase (LDH), cytology, and microbiology. Light’s criteria can help distinguish between a transudate and an exudate. Other characteristic pleural fluid findings include low glucose in rheumatoid arthritis and tuberculosis, raised amylase in pancreatitis and oesophageal perforation, and heavy blood staining in mesothelioma, pulmonary embolism, and tuberculosis.

      In cases of pleural infection, diagnostic pleural fluid sampling is required for all patients with a pleural effusion in association with sepsis or a pneumonic illness. If the fluid is purulent or turbid/cloudy, a chest tube should be placed to allow drainage. If the fluid is clear but the pH is less than 7.2 in patients with suspected pleural infection, a chest tube should be placed.

      For managing recurrent pleural effusion, options include recurrent aspiration, pleurodesis, indwelling pleural catheter, and drug management to alleviate symptoms such as opioids to relieve dyspnoea. The BTS guidelines provide a comprehensive approach to investigating and managing pleural effusion.

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  • Question 12 - A 35-year-old man with a history of chronic alcohol abuse presents to the...

    Incorrect

    • A 35-year-old man with a history of chronic alcohol abuse presents to the Emergency Department. He appears disheveled, disoriented, and experiences frequent falls. Upon examination, you observe that he has difficulty with balance and coordination, and bilateral lateral rectus palsy with nystagmus. His sensory examination reveals a polyneuropathy, and his pulse is 90 bpm. There is no agitation or tremor noted on examination.
      What is the most urgent treatment that should be administered to this patient?

      Your Answer: Benzodiazepines

      Correct Answer: Pabrinex

      Explanation:

      Understanding Wernicke’s Encephalopathy

      Wernicke’s encephalopathy is a condition that affects the brain and is caused by a deficiency in thiamine. This condition is commonly seen in individuals who abuse alcohol, but it can also be caused by persistent vomiting, stomach cancer, or dietary deficiencies. The classic triad of symptoms associated with Wernicke’s encephalopathy includes oculomotor dysfunction, gait ataxia, and encephalopathy. Other symptoms may include peripheral sensory neuropathy and confusion.

      When left untreated, Wernicke’s encephalopathy can lead to the development of Korsakoff’s syndrome. This condition is characterized by antero- and retrograde amnesia and confabulation in addition to the symptoms associated with Wernicke’s encephalopathy.

      To diagnose Wernicke’s encephalopathy, doctors may perform a variety of tests, including a decreased red cell transketolase test and an MRI. Treatment for this condition involves urgent replacement of thiamine. With prompt treatment, individuals with Wernicke’s encephalopathy can recover fully.

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  • Question 13 - A 50-year-old male presents to the acute medical unit with severe jaundice and...

    Incorrect

    • A 50-year-old male presents to the acute medical unit with severe jaundice and gross ascites. He has a history of alcohol abuse and was diagnosed with liver cirrhosis two years ago. He has been admitted to the hospital multiple times due to confusion and altered consciousness caused by his cirrhosis. What medications should be evaluated for preventing the recurrence of the aforementioned complication?

      Your Answer: Rifaximin and propranolol

      Correct Answer: Lactulose and rifaximin

      Explanation:

      Lactulose and rifaximin are the recommended medications for secondary prophylaxis of hepatic encephalopathy. This condition is characterized by confusion, altered consciousness, asterixis, and triphasic slow waves on EEG, and is caused by excess absorption of ammonia and glutamine from bacterial breakdown of proteins in the gut. Lactulose promotes the excretion of ammonia and increases its metabolism by gut bacteria, while rifaximin modulates the gut flora to decrease ammonia production. Spironolactone and furosemide are not used for hepatic encephalopathy, but rather for managing ascites and edema in patients with hypoalbuminemia due to cirrhosis. Propranolol is also not used for prophylaxis against hepatic encephalopathy, but rather to lower portal pressure and prevent variceal bleeding.

      Understanding Hepatic Encephalopathy

      Hepatic encephalopathy is a condition that can occur in individuals with liver disease, regardless of the cause. The exact cause of this condition is not fully understood, but it is believed to be related to the absorption of excess ammonia and glutamine from the breakdown of proteins by bacteria in the gut. While hepatic encephalopathy is commonly associated with acute liver failure, it can also be seen in chronic liver disease. In fact, many patients with liver cirrhosis may experience mild cognitive impairment before the more recognizable symptoms of hepatic encephalopathy appear. It is also worth noting that transjugular intrahepatic portosystemic shunting (TIPSS) can trigger encephalopathy.

      The symptoms of hepatic encephalopathy can range from irritability and confusion to incoherence and coma. The condition can be graded based on the severity of the symptoms, with Grade I being the mildest and Grade IV being the most severe. There are several factors that can precipitate hepatic encephalopathy, including infection, gastrointestinal bleeding, constipation, and certain medications.

      The management of hepatic encephalopathy involves treating any underlying causes and using medications to alleviate symptoms. Lactulose is often the first-line treatment, as it promotes the excretion of ammonia and increases its metabolism by gut bacteria. Antibiotics such as rifaximin can also be used to modulate the gut flora and reduce ammonia production. In some cases, embolization of portosystemic shunts or liver transplantation may be necessary.

      Overall, hepatic encephalopathy is a complex condition that requires careful management and monitoring. By understanding the causes, symptoms, and treatment options, healthcare providers can provide the best possible care for patients with this condition.

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  • Question 14 - A 28-year-old female patient arrives the day after ingesting an overdose of paracetamol....

    Incorrect

    • A 28-year-old female patient arrives the day after ingesting an overdose of paracetamol. She appears to be dehydrated, and the house officer initiates an infusion while awaiting the results of her blood tests. What blood test result would indicate the need for liver transplantation referral?

      Your Answer: Alanine aminotransferase 1020 U/L (5-40)

      Correct Answer: Arterial lactate 3.6 mmol/L (0.2-1.8)

      Explanation:

      Criteria for Liver Transplant Recommendation at King’s College Hospital

      The King’s College Hospital Liver Transplant Unit has specific criteria for recommending a liver transplant. These criteria include an arterial pH of less than 7.3 or arterial lactate levels greater than 3.0 mmol/L after fluid rehydration. Additionally, if a patient experiences all three of the following conditions within a 24-hour period, a liver transplant may be recommended: PT levels greater than 100 seconds, creatinine levels greater than 300 µmol/L, and Grade III/IV encephalopathy.

      It is important to note that mild elevations in creatinine levels may occur due to dehydration, and rises in transaminases may be seen as a result of hepatocellular damage. Therefore, these factors are not necessarily indicative of the need for a liver transplant. The specific criteria outlined by the King’s College Hospital Liver Transplant Unit are used to ensure that patients who truly require a liver transplant receive one in a timely manner.

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  • Question 15 - A 27-year-old woman presents to the emergency department with sudden onset, pleuritic chest...

    Incorrect

    • A 27-year-old woman presents to the emergency department with sudden onset, pleuritic chest pain that worsens on inspiration. She also experiences shortness of breath. She has no significant medical history or family history. Upon examination, she appears dyspnoeic, and a positive D-dimer test leads to a diagnosis of pulmonary embolism, confirmed by a subsequent CT pulmonary angiogram. There is no clear cause for the embolism. As a result, she is started on anticoagulation therapy. How long should this treatment continue?

      Your Answer: 12 months

      Correct Answer: 6 months

      Explanation:

      The typical duration of treatment for unprovoked pulmonary embolisms is 6 months, with first-line treatment now being direct oral anticoagulants. Patients are usually reviewed after 3 months, and if no cause was found, treatment is continued for a further 3 months. 3 months would be appropriate for provoked embolisms, but as there was no clear cause in this case, 6 months is more appropriate. 4 months is not a standard duration of treatment, and 12 months is not usual either, although the doctor may decide to extend treatment after review. In some cases, lifelong anticoagulation may be recommended if an underlying prothrombotic condition is found, but for this patient, 6 months is appropriate.

      Management of Pulmonary Embolism: NICE Guidelines

      Pulmonary embolism (PE) is a serious condition that requires prompt management. The National Institute for Health and Care Excellence (NICE) updated their guidelines on the management of venous thromboembolism (VTE) in 2020, with some key changes. One of the significant changes is the recommendation to use direct oral anticoagulants (DOACs) as the first-line treatment for most people with VTE, including those with active cancer. Another change is the increasing use of outpatient treatment for low-risk PE patients, determined by a validated risk stratification tool.

      Anticoagulant therapy is the cornerstone of VTE management, and the guidelines recommend using apixaban or rivaroxaban as the first-line treatment following the diagnosis of a PE. If neither of these is suitable, LMWH followed by dabigatran or edoxaban or LMWH followed by a vitamin K antagonist (VKA) can be used. For patients with active cancer, DOACs are now recommended instead of LMWH. The length of anticoagulation is determined by whether the VTE was provoked or unprovoked, with treatment typically stopped after 3-6 months for provoked VTE and continued for up to 6 months for unprovoked VTE.

      In cases of haemodynamic instability, thrombolysis is recommended as the first-line treatment for massive PE with circulatory failure. Patients who have repeat pulmonary embolisms, despite adequate anticoagulation, may be considered for inferior vena cava (IVC) filters. However, the evidence base for IVC filter use is weak.

      Overall, the updated NICE guidelines provide clear recommendations for the management of PE, including the use of DOACs as first-line treatment and outpatient management for low-risk patients. The guidelines also emphasize the importance of individualized treatment based on risk stratification and balancing the risks of VTE recurrence and bleeding.

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  • Question 16 - A 78-year-old man presents to the emergency department with a 2-day history of...

    Incorrect

    • A 78-year-old man presents to the emergency department with a 2-day history of vomiting and abdominal pain. He has a medical history of heart failure and COPD. Upon examination, his abdomen is soft and non-tender, and his vital signs are as follows: blood pressure 105/72 mmHg, pulse 94 bpm, respiratory rate 14/min, and temperature 36.9 deg C. His initial blood tests reveal hyponatremia with a sodium level of 123 mmol/L (135 - 145). What is the best approach to manage this patient's hyponatremia?

      Your Answer: Encourage PO fluids

      Correct Answer: IV isotonic normal saline

      Explanation:

      Hypertonic saline is not the appropriate treatment for this patient as they do not have acute severe hyponatraemia with symptoms.

      Treating Hyponatremia: Factors to Consider

      Hyponatremia, if left untreated, can lead to cerebral edema and brain herniation. Therefore, it is crucial to identify and treat it promptly. However, the management of hyponatremia is complex and depends on several factors. These include the duration and severity of hyponatremia, the patient’s symptoms, and the suspected cause of hyponatremia. Over-rapid correction can also result in osmotic demyelination syndrome, which can cause irreversible symptoms.

      In all patients, initial steps include ruling out a spurious result and reviewing medications that may cause hyponatremia. For chronic hyponatremia without severe symptoms, the treatment approach depends on the suspected cause. If hypovolemic, normal saline may be given as a trial. If euvolemic, fluid restriction and medications such as demeclocycline or vaptans may be considered. If hypervolemic, fluid restriction and loop diuretics or vaptans may be used.

      For acute hyponatremia with severe symptoms, patients require close monitoring and may need hypertonic saline to correct the sodium level more quickly. However, over-correction can lead to osmotic demyelination syndrome, which can cause irreversible symptoms.

      Vasopressin/ADH receptor antagonists (vaptans) can be used in some cases but should be avoided in patients with hypovolemic hyponatremia and those with underlying liver disease. They can also stimulate thirst receptors, leading to the desire to drink free water.

      Overall, treating hyponatremia requires careful consideration of various factors to avoid complications and ensure the best possible outcome for the patient.

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  • Question 17 - A 38-year-old woman visits her doctor with concerns about sudden weight gain. Despite...

    Incorrect

    • A 38-year-old woman visits her doctor with concerns about sudden weight gain. Despite following a balanced diet and exercising, she has gained 10 kilograms in the past month. She also reports an increase in body hair and new acne on her face. During the examination, the doctor observes central adiposity. The patient has been taking regular oral corticosteroids for adhesive capsulitis of the shoulder. Based on the likely diagnosis, what acid-base imbalance would be anticipated?

      Your Answer: Hyperchloremic metabolic acidosis

      Correct Answer: Hypokalaemic metabolic alkalosis

      Explanation:

      The patient is experiencing hypokalaemic metabolic alkalosis, which is a common feature of Cushing’s syndrome. This condition is caused by an excess of corticosteroids, which can be exacerbated by corticosteroid therapy. The patient’s symptoms, such as central adiposity, stretch marks, bruising, hirsutism, and acne, are all indicative of Cushing’s syndrome.

      Hypokalaemic metabolic alkalosis occurs when cortisol levels are high, allowing cortisol to bind to mineralocorticoid receptors. This leads to an increase in water and sodium retention, increased potassium excretion, and increased hydrogen ion excretion. The resulting decrease in hydrogen ions causes alkalosis, while the decrease in potassium causes hypokalemia.

      Hyperchloremic metabolic acidosis, on the other hand, is caused by bicarbonate loss, usually due to diarrhea. The patient does not report any gastrointestinal symptoms, so this is unlikely to be the cause. Hyperkalaemic metabolic acidosis is associated with type 4 renal tubular acidosis and hypoaldosteronism, which is not consistent with the patient’s symptoms. Hyperkalaemic metabolic alkalosis is also unlikely, as a decrease in hydrogen ions would lead to a decrease in potassium ions. Finally, hypochloremic metabolic alkalosis is most commonly caused by vomiting, which the patient did not report.

      Investigations for Cushing’s Syndrome

      Cushing’s syndrome is a condition caused by excessive cortisol production in the body. There are various causes of Cushing’s syndrome, including iatrogenic, ACTH-dependent, and ACTH-independent causes. To diagnose Cushing’s syndrome, doctors typically perform tests to confirm the condition and determine its underlying cause.

      General lab findings consistent with Cushing’s syndrome include hypokalaemic metabolic alkalosis and impaired glucose tolerance. Ectopic ACTH secretion, which is often associated with small cell lung cancer, is characterized by very low potassium levels.

      The two most commonly used tests to confirm Cushing’s syndrome are the overnight dexamethasone suppression test and the 24-hour urinary free cortisol test. The overnight dexamethasone suppression test is the most sensitive test and is used first-line to test for Cushing’s syndrome. Patients with Cushing’s syndrome do not have their morning cortisol spike suppressed. The 24-hour urinary free cortisol test measures the amount of cortisol in the urine over a 24-hour period.

      To localize the cause of Cushing’s syndrome, doctors may perform additional tests such as high-dose dexamethasone suppression test, CRH stimulation, and petrosal sinus sampling of ACTH. An insulin stress test may also be used to differentiate between true Cushing’s and pseudo-Cushing’s. Overall, a combination of these tests can help diagnose Cushing’s syndrome and determine its underlying cause.

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  • Question 18 - A 56-year-old man presents to the emergency department with dyspnea. A chest x-ray...

    Incorrect

    • A 56-year-old man presents to the emergency department with dyspnea. A chest x-ray is performed, and pleural fluid is aspirated for analysis. The pleural fluid results reveal:
      - Fluid Protein 58 g/L (normal range: 10-20g/L)
      - Fluid LDH 1048 IU/L (less than 50% of plasma concentration)
      - Fluid Glucose 1.2 mmol/L (normal range: 4-11 mmol/L)
      - Fluid pH 7.23 (normal range: 7.60-7.64)
      - Cell Cytology shows normal cytology with benign reactive changes

      His admission blood results are as follows:
      - Hb 145 g/L (normal range: 135-180)
      - Platelets 376 * 109/L (normal range: 150-400)
      - Total Protein 73 g/L (normal range: 60-83)
      - PT 11.2 s (normal range: 11-13.5)
      - LDH 145 IU/L (normal range: 135-225)
      - Glucose 5.8 mmol/L (normal range: 4-8)
      - pH 7.38 (normal range: 7.35-7.45)

      What is the most appropriate course of action for managing this patient?

      Your Answer: Start IV antibiotics

      Correct Answer: Insert a chest drain and commence antibiotic therapy

      Explanation:

      Prompt drainage alongside antibiotic therapy is necessary for the management of an empyema. Therefore, the correct course of action is to insert a chest drain and commence antibiotic therapy. The diagnosis of empyema can be confirmed using Light’s criteria, which indicates an exudative effusion with a pleural fluid protein to serum protein ratio greater than 0.5 and/or a pleural fluid LDH to serum LDH ratio greater than 0.6. A pleural fluid pH <7.3 and a very low pleural glucose concentration (<1.6 mmol/L) are also indicative of empyema. The normal cell cytology makes malignancy unlikely. The patient's platelet and PT levels are appropriate for chest drain insertion, so there is no need to refer for investigation under the oncology team or to gastroenterology to investigate for liver cirrhosis. Starting IV antibiotics alone is insufficient for managing an empyema, as prompt drainage is necessary to give antibiotics the best chance of success. A chest drain is a tube that is inserted into the pleural cavity to allow air or liquid to move out of the cavity. It is used in cases of pleural effusion, pneumothorax, empyema, haemothorax, haemopneumothorax, chylothorax, and some cases of penetrating chest wall injury in ventilated patients. However, there are relative contraindications to chest drain insertion, such as an INR greater than 1.3, a platelet count less than 75, pulmonary bullae, and pleural adhesions. The patient should be positioned in a supine position or at a 45º angle, and the area should be anaesthetised using local anaesthetic injection. The drainage tube is then inserted using a Seldinger technique and secured with either a straight stitch or an adhesive dressing. Complications that may occur include failure of insertion, bleeding, infection, penetration of the lung, and re-expansion pulmonary oedema. The chest drain should be removed when there has been no output for > 24 hours and imaging shows resolution of the fluid collection or pneumothorax. Drains inserted in cases of penetrating chest injury should be reviewed by the specialist to confirm an appropriate time for removal.

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  • Question 19 - A 45-year-old man has been referred to the hepatology clinic by his GP...

    Incorrect

    • A 45-year-old man has been referred to the hepatology clinic by his GP due to concerns of developing chronic liver disease. The patient reports feeling increasingly fatigued over the past few years, which he attributes to poor sleep and low libido causing relationship problems with his partner. During examination, the hepatologist notes the presence of gynaecomastia, palmar erythema, and grey skin pigmentation. Blood tests are ordered to investigate the underlying cause.

      The following results were obtained:

      Bilirubin: 18 µmol/L (3 - 17)
      ALP: 110 u/L (30 - 100)
      ALT: 220 u/L (3 - 40)
      γGT: 90 u/L (8 - 60)
      Albumin: 37 g/L (35 - 50)
      Ferritin: 1,250 ng/mL (20 - 230)

      What is the initial treatment that should be offered to this patient?

      Your Answer: Penicillamine

      Correct Answer: Venesection

      Explanation:

      Understanding Haemochromatosis: Investigation and Management

      Haemochromatosis is a genetic disorder that causes iron accumulation in the body due to mutations in the HFE gene on both copies of chromosome 6. The best investigation to screen for haemochromatosis is still a topic of debate. For the general population, transferrin saturation is considered the most useful marker, while genetic testing for HFE mutation is recommended for testing family members. Diagnostic tests include molecular genetic testing for the C282Y and H63D mutations and liver biopsy with Perl’s stain. A typical iron study profile in a patient with haemochromatosis includes high transferrin saturation, raised ferritin and iron, and low TIBC.

      The first-line treatment for haemochromatosis is venesection, which involves removing blood from the body to reduce iron levels. Transferrin saturation should be kept below 50%, and the serum ferritin concentration should be below 50 ug/l to monitor the adequacy of venesection. If venesection is not effective, desferrioxamine may be used as a second-line treatment. Joint x-rays may show chondrocalcinosis, which is a characteristic feature of haemochromatosis. It is important to note that there are rare cases of families with classic features of genetic haemochromatosis but no mutation in the HFE gene.

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  • Question 20 - A 47-year-old woman visits her doctor with a complaint of experiencing cold hands...

    Incorrect

    • A 47-year-old woman visits her doctor with a complaint of experiencing cold hands and feet over the last two weeks. Her medications have been recently altered, with a new medication introduced to improve her blood pressure management. Which of the following medications is the probable cause of her symptoms?

      Your Answer: Losartan

      Correct Answer: Bisoprolol

      Explanation:

      Beta-blockers are frequently prescribed for hypertension treatment, but they can lead to cold extremities as a side effect. Thiazide diuretics like bendroflumethiazide commonly cause constipation, diarrhea, dizziness, and dry mouth. Angiotensin receptor blockers such as candesartan and losartan do not typically result in cold peripheries.

      Beta-blockers are a class of drugs that are primarily used to manage cardiovascular disorders. They have a wide range of indications, including angina, post-myocardial infarction, heart failure, arrhythmias, hypertension, thyrotoxicosis, migraine prophylaxis, and anxiety. Beta-blockers were previously avoided in heart failure, but recent evidence suggests that certain beta-blockers can improve both symptoms and mortality. They have also replaced digoxin as the rate-control drug of choice in atrial fibrillation. However, their role in reducing stroke and myocardial infarction has diminished in recent years due to a lack of evidence. Examples of beta-blockers include atenolol and propranolol, which was one of the first beta-blockers to be developed and is lipid soluble, allowing it to cross the blood-brain barrier.

      Like all drugs, beta-blockers have side-effects, including bronchospasm, cold peripheries, fatigue, sleep disturbances (including nightmares), and erectile dysfunction. They are contraindicated in uncontrolled heart failure, asthma, sick sinus syndrome, and concurrent use with verapamil, which may precipitate severe bradycardia.

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  • Question 21 - A 65-year-old gentleman has been under your care for an acute exacerbation of...

    Incorrect

    • A 65-year-old gentleman has been under your care for an acute exacerbation of COPD. It is his second admission for his COPD in the last twelve months and has had one previous ITU admission.

      So far on the ward, he has received treatment with back-to-back salbutamol and ipratropium nebulisers, oral prednisolone and intravenous theophylline. He is also receiving a course of intravenous co-amoxiclav and clarithromycin due to a suspected infectious cause.

      His latest results are as follows:

      Obs:
      BP 140/92 mmHg
      HR 90/min
      RR 24/min
      SaO2 80%
      Temp 38.2ºC

      Arterial Blood Gas:
      pH 7.30
      PaO2 7.8 kPa
      PaCO2 9.5 kPa
      HCO3- 36 mmol/L
      BE +5

      What is the main indicator for initiating non-invasive ventilation in this patient?

      Your Answer: Failure to respond to intravenous theophylline

      Correct Answer:

      Explanation:

      When a patient with an acute exacerbation of COPD shows signs of respiratory acidosis (PaCO2>6 kPa, pH <7.35 ≥7.26) that persist despite immediate maximum standard medical treatment, it is recommended to consider the use of non-invasive ventilation (NIV). This is particularly important in cases where the patient is severely ill, as in the case of this patient with an infectious exacerbation of COPD. The British Thoracic Society guidelines suggest that NIV should be considered after maximal medical therapy, which in this case includes nebulisers, steroids, and theophylline. While there are other concerning features of this patient's condition, the PaCO2 and pH levels are the key indicators for the use of NIV. Guidelines for Non-Invasive Ventilation in Acute Respiratory Failure The British Thoracic Society (BTS) and the Royal College of Physicians have published guidelines for the use of non-invasive ventilation (NIV) in acute respiratory failure. NIV can be used in patients with COPD and respiratory acidosis with a pH of 7.25-7.35. However, patients with a pH lower than 7.25 require greater monitoring and a lower threshold for intubation and ventilation. NIV is also recommended for type II respiratory failure due to chest wall deformity, neuromuscular disease, or obstructive sleep apnea, as well as for cardiogenic pulmonary edema unresponsive to continuous positive airway pressure (CPAP) and weaning from tracheal intubation. For patients with COPD, the recommended initial settings for bi-level pressure support include an expiratory positive airway pressure (EPAP) of 4-5 cm H2O, an inspiratory positive airway pressure (IPAP) of 10-15 cm H2O, a back-up rate of 15 breaths/min, and a back-up inspiration-to-expiration ratio of 1:3. These guidelines aim to improve patient outcomes and reduce the need for invasive mechanical ventilation.

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  • Question 22 - A 29-year-old woman with a history of sickle cell disease visits her GP...

    Correct

    • A 29-year-old woman with a history of sickle cell disease visits her GP complaining of sudden fatigue, palpitations, and shortness of breath during physical activity. She has always been healthy before this. However, her daughter has been sick with a fever, fatigue, and a rash on her face for the past few days.

      The patient's blood test results from three months ago showed a hemoglobin level of 116 g/L (normal range for females: 115-160 g/L), platelets at 178 * 109/L (normal range: 150-400 * 109/L), and a white blood cell count of 6.3 * 109/L (normal range: 4.0-11.0 * 109/L).

      Today's blood test results show a significant drop in hemoglobin levels to 71 g/L, platelets at 110 * 109/L, and a white blood cell count of 4.1 * 109/L. The reticulocyte count is also low at 0.1% (normal range: 0.5-1.5%).

      What is the most likely complication that has arisen in this case?

      Your Answer: Aplastic crisis

      Explanation:

      A sudden decrease in haemoglobin is linked to aplastic crises in sickle cell disease. This condition is characterized by symptoms of anaemia and is often triggered by exposure to parvovirus B-19. The low reticulocyte count indicates acute bone marrow failure.

      Sickle cell anaemia is a condition that involves periods of good health with intermittent crises. There are several types of crises that can occur, including thrombotic or painful crises, sequestration, acute chest syndrome, aplastic, and haemolytic. Thrombotic crisis, also known as painful crises or vaso-occlusive crises, are triggered by factors such as infection, dehydration, and deoxygenation. These crises are diagnosed clinically and can result in infarcts in various organs, including the bones, lungs, spleen, and brain.

      Sequestration crises occur when sickling occurs within organs such as the spleen or lungs, leading to pooling of blood and worsening of anaemia. This type of crisis is associated with an increased reticulocyte count. Acute chest syndrome is caused by vaso-occlusion within the pulmonary microvasculature, resulting in infarction in the lung parenchyma. Symptoms include dyspnoea, chest pain, pulmonary infiltrates on chest x-ray, and low pO2. Management involves pain relief, respiratory support, antibiotics, and transfusion.

      Aplastic crises are caused by infection with parvovirus and result in a sudden fall in haemoglobin. Bone marrow suppression leads to a reduced reticulocyte count. Haemolytic crises are rare and involve a fall in haemoglobin due to an increased rate of haemolysis. It is important to recognise and manage these crises promptly, as they can lead to serious complications and even death.

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  • Question 23 - A 65-year-old male is admitted to the respiratory ward for severe community-acquired pneumonia...

    Incorrect

    • A 65-year-old male is admitted to the respiratory ward for severe community-acquired pneumonia and is being treated with amoxicillin. He has a medical history of a heart attack 2 years ago, hypertension, and type 2 diabetes. His current medications include aspirin 75 mg, atorvastatin 40 mg, ramipril 5mg, bendroflumethiazide 5mg, and metformin 500 mg BD. On the third day of treatment, the medical team noticed that the patient's creatinine levels increased from a baseline of 67 micromol/litre to 190 micromol/litre. His eGFR is found to be 25 ml/min, and he is diagnosed with acute kidney injury. Which of the patient's current medications can he continue taking in his current condition?

      Your Answer: All drugs should be stopped

      Correct Answer: Aspirin

      Explanation:

      In cases of acute kidney injury (AKI), it is important to identify drugs that may worsen renal function and those that can result in toxicity. AKI is defined as a 50% or greater rise in serum creatinine within the past 7 days or a fall in urine output to less than 0.5 ml/kg/hour for more than 6 hours.

      For patients on aspirin for secondary prevention of acute coronary syndrome, the cardioprotective dose of 75 mg per day should be continued as there is strong evidence supporting its use. Aspirin is a COX-inhibitor that inhibits thromboxane synthesis via the COX-1 pathway, exhibiting antithrombotic effects.

      Drugs that should be stopped in AKI as they may worsen renal function include diuretics, aminoglycosides, ACE inhibitors/ARBs, and NSAIDs that are not at cardioprotective doses. On the other hand, drugs that do not worsen renal function but can result in toxicity include metformin, lithium, and digoxin. A helpful mnemonic to remember the drugs to stop in AKI is DAMN AKI: Diuretics, Aminoglycosides and ACE inhibitors, Metformin, and NSAIDs.

      Understanding Acute Kidney Injury: A Basic Overview

      Acute kidney injury (AKI) is a condition where the kidneys experience a reduction in function due to an insult. In the past, the kidneys were often neglected in acute medicine, resulting in slow recognition and limited action. However, around 15% of patients admitted to the hospital develop AKI. While most patients recover their renal function, some may have long-term impaired kidney function due to AKI, which can result in acute complications, including death. Identifying patients at increased risk of AKI is crucial in reducing its incidence. Risk factors for AKI include chronic kidney disease, other organ failure/chronic disease, a history of AKI, and the use of drugs with nephrotoxic potential.

      AKI has three main causes: prerenal, intrinsic, and postrenal. Prerenal causes are due to a lack of blood flow to the kidneys, while intrinsic causes relate to intrinsic damage to the kidneys themselves. Postrenal causes occur when there is an obstruction to the urine coming from the kidneys. Symptoms of AKI include reduced urine output, fluid overload, arrhythmias, and features of uraemia. Diagnosis of AKI is made through blood tests, urinalysis, and imaging.

      The management of AKI is largely supportive, with careful fluid balance and medication review being crucial. Loop diuretics and low-dose dopamine are not recommended, but hyperkalaemia needs prompt treatment to avoid life-threatening arrhythmias. Renal replacement therapy may be necessary in severe cases. Prompt review by a urologist is required for patients with suspected AKI secondary to urinary obstruction, while specialist input from a nephrologist is necessary for cases where the cause is unknown or the AKI is severe.

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  • Question 24 - A 28-year-old man presents to the emergency department with vague abdominal pain, nausea,...

    Incorrect

    • A 28-year-old man presents to the emergency department with vague abdominal pain, nausea, and vomiting. He has a history of alcohol abuse and depression, and has been feeling particularly low following a recent breakup. He has not been eating much in the past few days.
      Observations: heart rate 94 beats per minute, blood pressure 110/70 mmHg, respiratory rate 18 breaths per minute, temperature 37.2ºC, oxygen saturations 99% on air.
      Initial investigations are done including a capillary glucose, capillary ketones, arterial blood gas and electrocardiogram(ECG).
      ECG: sinus tachycardia
      Capillary glucose 4.8 mmol/L (4-7)
      Capillary ketones 3.5 mmol/L (0-0.6)
      pH 7.34 (7.35-7.45)
      pO2 13 kPa (10-14)
      pCO2 4.5 kPa (4.5-6)
      Lactate 1.7 mmol/L (0-2)
      What is the most appropriate management plan at this point?

      Your Answer: IV glucose

      Correct Answer: IV saline 0.9% and thiamine

      Explanation:

      Alcoholic ketoacidosis is treated by administering saline and thiamine through an infusion. This condition is characterized by acidosis, elevated ketones, and normal or low blood glucose levels, and typically occurs in chronic alcoholics who have not eaten enough food. When the body becomes malnourished, it starts breaking down body fat, leading to the production of ketones and the development of ketoacidosis. The first steps in managing this condition involve rehydration with IV fluids like saline and administering thiamine to prevent the onset of Wernicke’s encephalopathy. It is important to note that simply replacing glucose without also replacing thiamine can be dangerous, as glucose promotes metabolism and thiamine acts as a co-factor. In contrast, IV insulin fixed rate infusion is used to manage diabetic ketoacidosis (DKA), which is characterized by high glucose levels. However, diabetic patients taking a sodium-glucose transport protein 2 inhibitor are at risk of developing euglycemic DKA. While chlordiazepoxide can help prevent alcohol withdrawal, preventing Wernicke’s should be the primary focus of initial management.

      Alcoholic ketoacidosis is a type of ketoacidosis that occurs in individuals who consume large amounts of alcohol regularly. This condition is not related to diabetes and is characterized by normal blood sugar levels. Alcoholics often suffer from malnutrition due to their irregular eating habits and may vomit the food they consume, leading to starvation. When the body becomes malnourished, it starts breaking down body fat, which produces ketones and leads to ketoacidosis.

      The typical symptoms of alcoholic ketoacidosis include metabolic acidosis, elevated anion gap, elevated serum ketone levels, and normal or low glucose concentration. The most effective treatment for this condition is an infusion of saline and thiamine. Thiamine is essential to prevent the development of Wernicke encephalopathy or Korsakoff psychosis. Therefore, it is crucial to provide timely and appropriate treatment to individuals suffering from alcoholic ketoacidosis to prevent further complications.

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  • Question 25 - A 63-year-old man comes to the emergency department complaining of 'flutters in his...

    Incorrect

    • A 63-year-old man comes to the emergency department complaining of 'flutters in his chest' for the past 24 hours. He is aware of when his symptoms started and mentions having had 2 non-ST-elevation myocardial infarctions before. He has hypertension, which is controlled with perindopril monotherapy, and hypercholesterolaemia treated with atorvastatin. He has no other relevant medical history.

      During the examination, the patient is alert and oriented. His blood pressure is 135/90 mmHg, heart rate is 112 beats per minute, temperature is 37.3ºC, and respiratory rate is 16 breaths per minute. An ECG shows an irregularly irregular rhythm. After discussing with the patient, a management plan is suggested.

      What is the most likely management plan to be initiated for this patient based on his presentation?

      Your Answer: Discharge home and follow up with his GP for ongoing management

      Correct Answer: Begin anticoagulation, undergo immediate direct current (DC) cardioversion

      Explanation:

      When a patient presents with new-onset atrial fibrillation (AF), the management plan depends on the duration and recurrence of symptoms, as well as risk stratification. If symptoms have been present for less than 48 hours, electrical cardioversion is recommended, but anticoagulation should be started beforehand. Heparin is a good choice for rapid onset anticoagulation. However, if symptoms have been present for more than 48 hours, there is a higher risk of atrial thrombus, which may cause thromboembolic disease. In this case, a transoesophageal echocardiogram (TOE) should be obtained to exclude a thrombus before cardioversion, or anticoagulation should be started for 3 weeks prior to cardioversion. Amiodarone oral therapy is not adequate for cardioversion in acute AF. If cardioversion is not possible, a DOAC such as apixaban or rivaroxaban should be started. Discharge home is appropriate for patients with chronic AF or after cardioversion. While pharmacological cardioversion with intravenous amiodarone is an option, electrical cardioversion is preferred according to NICE guidelines, especially in patients with structural heart disease.

      Atrial Fibrillation and Cardioversion: Elective Procedure for Rhythm Control

      Cardioversion is a medical procedure used in atrial fibrillation (AF) to restore the heart’s normal rhythm. There are two scenarios where cardioversion may be used: as an emergency if the patient is haemodynamically unstable, or as an elective procedure where a rhythm control strategy is preferred. In the elective scenario, cardioversion can be performed either electrically or pharmacologically. Electrical cardioversion is synchronised to the R wave to prevent delivery of a shock during the vulnerable period of cardiac repolarisation when ventricular fibrillation can be induced.

      According to the 2014 NICE guidelines, rate or rhythm control should be offered if the onset of the arrhythmia is less than 48 hours, and rate control should be started if it is more than 48 hours or is uncertain. If the AF is definitely of less than 48 hours onset, patients should be heparinised and may be cardioverted using either electrical or pharmacological means. However, if the patient has been in AF for more than 48 hours, anticoagulation should be given for at least 3 weeks prior to cardioversion. An alternative strategy is to perform a transoesophageal echo (TOE) to exclude a left atrial appendage (LAA) thrombus. If excluded, patients may be heparinised and cardioverted immediately.

      NICE recommends electrical cardioversion in this scenario, rather than pharmacological. If there is a high risk of cardioversion failure, it is recommended to have at least 4 weeks of amiodarone or sotalol prior to electrical cardioversion. Following electrical cardioversion, patients should be anticoagulated for at least 4 weeks. After this time, decisions about anticoagulation should be taken on an individual basis depending on the risk of recurrence.

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  • Question 26 - A 35-year-old man visits his GP complaining of severe headaches and excruciating pain...

    Incorrect

    • A 35-year-old man visits his GP complaining of severe headaches and excruciating pain around his left eye that has been ongoing for a week. Upon further inquiry, he describes the pain as a sharp, stabbing sensation that lasts for about an hour and is localized to the left side of his head. He also mentions experiencing a congested nose and tearing in his left eye during the onset of the pain. The patient admits to smoking 10 cigarettes daily and consuming one glass of wine each night. Based on the probable diagnosis, what is the expected duration of his symptoms?

      Your Answer: Lasting 4 - 6 months

      Correct Answer: Lasting 4 - 12 weeks

      Explanation:

      The man’s symptoms suggest that he is experiencing cluster headaches, which typically occur once a day and cause pain around one eye. Other common symptoms include eye-watering and nasal congestion. To prevent these headaches, the man should avoid smoking and alcohol, which are known triggers. Cluster headaches usually last between 15 minutes and 2 hours and occur in clusters that can last from 4 to 12 weeks. Duration of 1-2 weeks or up to 10 days is too short, while 3-4 months or 4-6 months is too long for cluster headaches.

      Cluster headaches are a type of headache that is known to be extremely painful. They are called cluster headaches because they tend to occur in clusters that last for several weeks, usually once a year. These headaches are more common in men and smokers, and alcohol and sleep patterns may trigger an attack. The pain typically occurs once or twice a day, lasting between 15 minutes to 2 hours. The pain is intense and sharp, usually around one eye, and is accompanied by redness, lacrimation, lid swelling, and nasal stuffiness. Some patients may also experience miosis and ptosis.

      To manage cluster headaches, 100% oxygen or subcutaneous triptan can be used for acute treatment, with response rates of 80% and 75% respectively within 15 minutes. Verapamil is the drug of choice for prophylaxis, and a tapering dose of prednisolone may also be effective. It is recommended to seek specialist advice from a neurologist if a patient develops cluster headaches, especially with respect to neuroimaging. Some neurologists use the term trigeminal autonomic cephalgia to group a number of conditions including cluster headache, paroxysmal hemicrania, and short-lived unilateral neuralgiform headache with conjunctival injection and tearing (SUNCT). Patients with these conditions should be referred for specialist assessment as specific treatment may be required, such as indomethacin for paroxysmal hemicrania.

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      • Medicine
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  • Question 27 - A 28-year-old individual visits the neurology clinic with complaints of experiencing multiple instances...

    Incorrect

    • A 28-year-old individual visits the neurology clinic with complaints of experiencing multiple instances of involuntary shaking in different limbs. They have some control over which limb is affected the most but are unable to stop the shaking. The intensity of the shaking increases gradually and then subsides in a similar manner. The patient reports that the shaking is more severe when they feel anxious. What is the probable diagnosis?

      Your Answer: Tonic-clonic seizures

      Correct Answer: Pseudoseizures

      Explanation:

      Distinguishing between pseudoseizures and true seizures can be challenging as they share some similarities. However, one key difference is that pseudoseizures tend to have a gradual onset, while true seizures have a sudden onset. Pseudoseizures are often linked to psychiatric conditions and are not voluntary, but rather compulsive and unwanted movements. It is common for individuals experiencing pseudoseizures to have some control over the location of their symptoms. While dystonia may involve shaking, it typically results in rigidity rather than gradual onset and offset.

      Understanding Psychogenic Non-Epileptic Seizures

      Psychogenic non-epileptic seizures, also known as pseudoseizures, are a type of seizure that is not caused by abnormal electrical activity in the brain. Instead, they are believed to be caused by psychological factors such as stress, trauma, or anxiety. These seizures can be difficult to diagnose as they often mimic true epileptic seizures, but there are certain factors that can help differentiate between the two.

      Factors that may indicate pseudoseizures include pelvic thrusting, a family history of epilepsy, a higher incidence in females, crying after the seizure, and the seizures not occurring when the individual is alone. On the other hand, factors that may indicate true epileptic seizures include tongue biting and a raised serum prolactin level.

      Video telemetry is a useful tool for differentiating between the two types of seizures. It involves monitoring the individual’s brain activity and behavior during a seizure, which can help determine whether it is caused by abnormal electrical activity in the brain or psychological factors.

      It is important to accurately diagnose and treat psychogenic non-epileptic seizures as they can have a significant impact on an individual’s quality of life. Treatment may involve therapy to address underlying psychological factors, as well as medication to manage any associated symptoms such as anxiety or depression.

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      • Medicine
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  • Question 28 - What is the process by which inhibitory postsynaptic potentials (IPSPs) work? ...

    Correct

    • What is the process by which inhibitory postsynaptic potentials (IPSPs) work?

      Your Answer: Hyperpolarisation of the postsynaptic membrane following neurotransmitter binding

      Explanation:

      Inhibitory Postsynaptic Potentials (IPSPs)

      Inhibitory postsynaptic potentials (IPSPs) are electrical charges generated in response to synaptic input that prevent the generation of additional action potentials in the postsynaptic neuron. This potential is generated after the postsynaptic action potential has fired, causing the membrane potential to become more negative, similar to the refractory period in the action potential sequence of events. IPSPs can be produced by the opening of chemical-gated potassium channels or GABA receptor chloride channels. The end result is a push of the membrane potential to a more negative charge, decreasing the likelihood of additional stimuli depolarizing it.

      IPSPs are the opposite of excitatory postsynaptic potentials (EPSPs), which promote the generation of additional postsynaptic action potentials. It is important to note that only hyperpolarization of the postsynaptic membrane following neurotransmitter binding is correct. The other options are physiologically nonsensical.

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      • Medicine
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  • Question 29 - An 80-year-old man is admitted to the hospital with constipation, confusion, and fatigue....

    Incorrect

    • An 80-year-old man is admitted to the hospital with constipation, confusion, and fatigue. He has a medical history of hypertension, hypercholesterolemia, and prostate cancer. His blood work shows a significantly elevated calcium level. What is the expected ECG result?

      Your Answer: Prolongation of the QT interval

      Correct Answer: Shortening of the QT interval

      Explanation:

      Patients with cancer have a high risk of developing hypercalcemia, which is linked to a shortened QT interval. The QT interval can also be prolonged due to electrolyte imbalances such as hypokalemia, hypomagnesemia, and hypocalcemia, as well as hypothermia, myocardial ischemia, and congenital long QT syndrome. First-degree heart block is characterized by a fixed prolonged PR interval, while hyperkalemia is indicated by tall T waves that may be followed by flattened P waves, PR prolongation, and a sine-wave appearance. S1Q3T3, which refers to an S wave in lead I, a Q wave in lead III, and an inverted T wave in lead III, is a rare finding that is often associated with pulmonary embolism (PE), but it is not a reliable indicator of this condition.

      Hypercalcaemia: Symptoms and Signs

      Hypercalcaemia is a medical condition characterized by high levels of calcium in the blood. The symptoms and signs of hypercalcaemia can be remembered by the phrase ‘bones, stones, groans and psychic moans’. This means that patients with hypercalcaemia may experience bone pain, kidney stones, constipation, and changes in mood or behavior. In addition, corneal calcification and a shortened QT interval on an electrocardiogram (ECG) may also be present. Hypertension, or high blood pressure, is another common feature of hypercalcaemia. It is important to seek medical attention if any of these symptoms are present, as hypercalcaemia can lead to serious complications if left untreated.

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      • Medicine
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  • Question 30 - Which one of the following statements regarding hepatitis A is not true? ...

    Incorrect

    • Which one of the following statements regarding hepatitis A is not true?

      Your Answer:

      Correct Answer: It is a DNA virus

      Explanation:

      Understanding Hepatitis A: Symptoms, Transmission, and Prevention

      Hepatitis A is a viral infection caused by the RNA picornavirus. It is typically spread through faecal-oral transmission, often in institutions. The incubation period is around 2-4 weeks, and symptoms include a flu-like prodrome, abdominal pain (usually in the right upper quadrant), tender hepatomegaly, jaundice, and deranged liver function tests. However, the disease is usually self-limiting and benign, with serious complications being rare.

      Unlike other forms of hepatitis, hepatitis A does not cause chronic disease or increase the risk of hepatocellular cancer. An effective vaccine is available, and it is recommended for people who are travelling to or residing in areas of high or intermediate prevalence, those with chronic liver disease, patients with haemophilia, men who have sex with men, injecting drug users, and individuals at occupational risk (such as laboratory workers, staff of large residential institutions, sewage workers, and people who work with primates). After the initial dose, a booster dose should be given 6-12 months later.

      Understanding the symptoms, transmission, and prevention of hepatitis A is important for individuals who may be at risk of contracting the virus. By taking appropriate precautions and getting vaccinated, individuals can protect themselves and others from this viral infection.

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      • Medicine
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