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  • Question 1 - A 72 year old male patient has arrived at the emergency department after...

    Correct

    • A 72 year old male patient has arrived at the emergency department after injuring himself in a fall. Upon reviewing the patient's medical history, you discover that he was diagnosed with mitral stenosis last year. You advise the medical students to assess the patient for indications of this condition.

      What is a typical symptom observed in individuals with mitral stenosis?

      Your Answer: Malar flush

      Explanation:

      One of the clinical features of mitral stenosis is malar flush, which refers to a reddening or flushing of the cheeks. Other clinical features include a mid-late diastolic murmur that is best heard during expiration, a loud S1 heart sound with an opening snap, a low volume pulse, atrial fibrillation, and signs of pulmonary edema such as crepitations or the presence of white or pink frothy sputum.

      Further Reading:

      Mitral Stenosis:
      – Causes: Rheumatic fever, Mucopolysaccharidoses, Carcinoid, Endocardial fibroelastosis
      – Features: Mid-late diastolic murmur, loud S1, opening snap, low volume pulse, malar flush, atrial fibrillation, signs of pulmonary edema, tapping apex beat
      – Features of severe mitral stenosis: Length of murmur increases, opening snap becomes closer to S2
      – Investigation findings: CXR may show left atrial enlargement, echocardiography may show reduced cross-sectional area of the mitral valve

      Mitral Regurgitation:
      – Causes: Mitral valve prolapse, Myxomatous degeneration, Ischemic heart disease, Rheumatic fever, Connective tissue disorders, Endocarditis, Dilated cardiomyopathy
      – Features: pansystolic murmur radiating to left axilla, soft S1, S3, laterally displaced apex beat with heave
      – Signs of acute MR: Decompensated congestive heart failure symptoms
      – Signs of chronic MR: Leg edema, fatigue, arrhythmia (atrial fibrillation)
      – Investigation findings: Doppler echocardiography to detect regurgitant flow and pulmonary hypertension, ECG may show signs of LA enlargement and LV hypertrophy, CXR may show LA and LV enlargement in chronic MR and pulmonary edema in acute MR.

    • This question is part of the following fields:

      • Cardiology
      109.9
      Seconds
  • Question 2 - You are summoned to the resuscitation room to assess a 38-year-old female patient...

    Incorrect

    • You are summoned to the resuscitation room to assess a 38-year-old female patient who became pale and restless while having a wound stitched by one of the nurse practitioners. The nurse practitioner informs you that the patient's blood pressure dropped to 92/66 mmHg and the ECG reveals bradycardia with a heart rate of 52 bpm. Concerned about potential local anesthetic toxicity, the nurse practitioner promptly transferred the patient to the resuscitation room. Upon reviewing the cardiac monitor, you observe ectopic beats. Which anti-arrhythmic medication should be avoided in this patient?

      Your Answer: Flecainide

      Correct Answer: Lidocaine

      Explanation:

      Lidocaine is commonly used as both an anti-arrhythmic medication and a local anesthetic. However, it is important to note that it should not be used as an anti-arrhythmic therapy in patients with Local Anesthetic Systemic Toxicity (LAST). This is because lidocaine can potentially worsen the toxicity symptoms in these patients.

      Further Reading:

      Local anaesthetics, such as lidocaine, bupivacaine, and prilocaine, are commonly used in the emergency department for topical or local infiltration to establish a field block. Lidocaine is often the first choice for field block prior to central line insertion. These anaesthetics work by blocking sodium channels, preventing the propagation of action potentials.

      However, local anaesthetics can enter the systemic circulation and cause toxic side effects if administered in high doses. Clinicians must be aware of the signs and symptoms of local anaesthetic systemic toxicity (LAST) and know how to respond. Early signs of LAST include numbness around the mouth or tongue, metallic taste, dizziness, visual and auditory disturbances, disorientation, and drowsiness. If not addressed, LAST can progress to more severe symptoms such as seizures, coma, respiratory depression, and cardiovascular dysfunction.

      The management of LAST is largely supportive. Immediate steps include stopping the administration of local anaesthetic, calling for help, providing 100% oxygen and securing the airway, establishing IV access, and controlling seizures with benzodiazepines or other medications. Cardiovascular status should be continuously assessed, and conventional therapies may be used to treat hypotension or arrhythmias. Intravenous lipid emulsion (intralipid) may also be considered as a treatment option.

      If the patient goes into cardiac arrest, CPR should be initiated following ALS arrest algorithms, but lidocaine should not be used as an anti-arrhythmic therapy. Prolonged resuscitation may be necessary, and intravenous lipid emulsion should be administered. After the acute episode, the patient should be transferred to a clinical area with appropriate equipment and staff for further monitoring and care.

      It is important to report cases of local anaesthetic toxicity to the appropriate authorities, such as the National Patient Safety Agency in the UK or the Irish Medicines Board in the Republic of Ireland. Additionally, regular clinical review should be conducted to exclude pancreatitis, as intravenous lipid emulsion can interfere with amylase or lipase assays.

    • This question is part of the following fields:

      • Cardiology
      110.9
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  • Question 3 - A 25-year-old is brought into the emergency department after being discovered unresponsive in...

    Correct

    • A 25-year-old is brought into the emergency department after being discovered unresponsive in a neighbor's backyard. It is suspected that the patient had consumed alcohol at a nearby club and opted to walk home in the snowy conditions. The patient's temperature is documented as 27.8ºC. The nurse connects leads to conduct a 12-lead ECG. Which of the subsequent ECG alterations is most closely linked to hypothermia?

      Your Answer: Osborn waves

      Explanation:

      Hypothermia can cause various changes in an electrocardiogram (ECG). These changes include a slower heart rate (bradycardia), the presence of Osborn Waves (also known as J waves), a prolonged PR interval, a widened QRS complex, and a prolonged QT interval. Additionally, the ECG may show artifacts caused by shivering, as well as the presence of ventricular ectopics. In severe cases, hypothermia can lead to cardiac arrest, which may manifest as ventricular tachycardia (VT), ventricular fibrillation (VF), or asystole.

      Further Reading:

      Hypothermia is defined as a core temperature below 35ºC and can be graded as mild, moderate, severe, or profound based on the core temperature. When the core temperature drops, the basal metabolic rate decreases and cell signaling between neurons decreases, leading to reduced tissue perfusion. This can result in decreased myocardial contractility, vasoconstriction, ventilation-perfusion mismatch, and increased blood viscosity. Symptoms of hypothermia progress as the core temperature drops, starting with compensatory increases in heart rate and shivering, and eventually leading to bradyarrhythmias, prolonged PR, QRS, and QT intervals, and cardiac arrest.

      In the management of hypothermic cardiac arrest, ALS should be initiated with some modifications. The pulse check during CPR should be prolonged to 1 minute due to difficulty in obtaining a pulse. Rewarming the patient is important, and mechanical ventilation may be necessary due to stiffness of the chest wall. Drug metabolism is slowed in hypothermic patients, so dosing of drugs should be adjusted or withheld. Electrolyte disturbances are common in hypothermic patients and should be corrected.

      Frostbite refers to a freezing injury to human tissue and occurs when tissue temperature drops below 0ºC. It can be classified as superficial or deep, with superficial frostbite affecting the skin and subcutaneous tissues, and deep frostbite affecting bones, joints, and tendons. Frostbite can be classified from 1st to 4th degree based on the severity of the injury. Risk factors for frostbite include environmental factors such as cold weather exposure and medical factors such as peripheral vascular disease and diabetes.

      Signs and symptoms of frostbite include skin changes, cold sensation or firmness to the affected area, stinging, burning, or numbness, clumsiness of the affected extremity, and excessive sweating, hyperemia, and tissue gangrene. Frostbite is diagnosed clinically and imaging may be used in some cases to assess perfusion or visualize occluded vessels. Management involves moving the patient to a warm environment, removing wet clothing, and rapidly rewarming the affected tissue. Analgesia should be given as reperfusion is painful, and blisters should be de-roofed and aloe vera applied. Compartment syndrome is a risk and should be monitored for. Severe cases may require surgical debridement of amputation.

    • This question is part of the following fields:

      • Cardiology
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  • Question 4 - A 22 year old female comes to the emergency department complaining of pleuritic...

    Incorrect

    • A 22 year old female comes to the emergency department complaining of pleuritic chest pain that has been present for 2 days. She is not currently taking any medications. A chest X-ray reveals no abnormalities and her D-dimer test is negative. An ECG shows sinus rhythm, but a prolonged QTc of 500 ms is observed. The patient is diagnosed with costochondritis and an incidental finding of long QT syndrome (LQTS). What is the primary treatment approach for LQTS?

      Your Answer: Digoxin

      Correct Answer: Beta blockers

      Explanation:

      Beta blockers are the primary treatment for long QT syndrome (LQTS). This patient probably has an undiagnosed congenital LQTS because there is no obvious cause. If there is a known cause of LQTS that can be removed, removing it may be the only necessary treatment. However, in all other cases, beta blockers are usually needed to prevent ventricular arrhythmias. Ventricular arrhythmias happen because of increased adrenergic activity. Beta blockers reduce the effects of adrenergic stimulation.

      Further Reading:

      Long QT syndrome (LQTS) is a condition characterized by a prolonged QT interval on an electrocardiogram (ECG), which represents abnormal repolarization of the heart. LQTS can be either acquired or congenital. Congenital LQTS is typically caused by gene abnormalities that affect ion channels responsible for potassium or sodium flow in the heart. There are 15 identified genes associated with congenital LQTS, with three genes accounting for the majority of cases. Acquired LQTS can be caused by various factors such as certain medications, electrolyte imbalances, hypothermia, hypothyroidism, and bradycardia from other causes.

      The normal QTc values, which represent the corrected QT interval for heart rate, are typically less than 450 ms for men and less than 460ms for women. Prolonged QTc intervals are considered to be greater than these values. It is important to be aware of drugs that can cause QT prolongation, as this can lead to potentially fatal arrhythmias. Some commonly used drugs that can cause QT prolongation include antimicrobials, antiarrhythmics, antipsychotics, antidepressants, antiemetics, and others.

      Management of long QT syndrome involves addressing any underlying causes and using beta blockers. In some cases, an implantable cardiac defibrillator (ICD) may be recommended for patients who have experienced recurrent arrhythmic syncope, documented torsades de pointes, previous ventricular tachyarrhythmias or torsades de pointes, previous cardiac arrest, or persistent syncope. Permanent pacing may be used in patients with bradycardia or atrioventricular nodal block and prolonged QT. Mexiletine is a treatment option for those with LQT3. Cervicothoracic sympathetic denervation may be considered in patients with recurrent syncope despite beta-blockade or in those who are not ideal candidates for an ICD. The specific treatment options for LQTS depend on the type and severity of the condition.

    • This question is part of the following fields:

      • Cardiology
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  • Question 5 - A 55-year-old woman comes in with severe chest pain in the center of...

    Correct

    • A 55-year-old woman comes in with severe chest pain in the center of her chest. Her ECG reveals the following findings:
      ST elevation in leads I, II, aVF, and V6
      Reciprocal ST depression in leads V1-V4 and aVR
      Prominent tall R waves in leads V2-V3
      Upright T waves in leads V2-V3
      Based on these findings, which blood vessel is most likely affected in this case?

      Your Answer: Right coronary artery

      Explanation:

      This ECG indicates changes that are consistent with an acute inferoposterior myocardial infarction (MI). There is ST elevation in leads I, II, aVF, and V6, along with reciprocal ST depression in leads V1-V4 and aVR. Additionally, there are tall dominant R waves in leads V2-V3 and upright T waves in leads V2-V3. Based on these findings, the most likely vessel involved in this case is the right coronary artery.

      To summarize the vessels involved in different types of myocardial infarction see below:
      ECG Leads – Location of MI | Vessel involved
      V1-V3 – Anteroseptal | Left anterior descending
      V3-V4 – Anterior | Left anterior descending
      V5-V6 – Anterolateral | Left anterior descending / left circumflex artery
      V1-V6 – Extensive anterior | Left anterior descending
      I, II, aVL, V6 – Lateral | Left circumflex artery
      II, III, aVF – Inferior | Right coronary artery (80%), Left circumflex artery (20%)
      V1, V4R – Right ventricle | Right coronary artery
      V7-V9 – Posterior | Right coronary artery

    • This question is part of the following fields:

      • Cardiology
      26
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  • Question 6 - A 68 year old male presents to the emergency department complaining of dizziness...

    Correct

    • A 68 year old male presents to the emergency department complaining of dizziness and palpitations that have been occurring for the past 2 hours. An ECG confirms the presence of atrial fibrillation. The patient has no previous history of atrial fibrillation but was diagnosed with mild aortic valve stenosis 8 months ago during an echocardiogram ordered by his primary care physician. The patient reports that the echocardiogram was done because he was experiencing shortness of breath, which resolved after 2-3 months and was attributed to a recent bout of pneumonia. The decision is made to attempt pharmacological cardioversion. What is the most appropriate medication to use for this purpose in this patient?

      Your Answer: Amiodarone

      Explanation:

      According to NICE guidelines, amiodarone is recommended as the initial choice for pharmacological cardioversion of atrial fibrillation (AF) in individuals who have evidence of structural heart disease.

      Further Reading:

      Atrial fibrillation (AF) is the most common sustained cardiac arrhythmia, affecting around 5% of patients over the age of 70-75 years and 10% of patients aged 80-85 years. While AF can cause palpitations and inefficient cardiac function, the most important aspect of managing patients with AF is reducing the increased risk of stroke.

      AF can be classified as first detected episode, paroxysmal, persistent, or permanent. First detected episode refers to the initial occurrence of AF, regardless of symptoms or duration. Paroxysmal AF occurs when a patient has 2 or more self-terminating episodes lasting less than 7 days. Persistent AF refers to episodes lasting more than 7 days that do not self-terminate. Permanent AF is continuous atrial fibrillation that cannot be cardioverted or if attempts to do so are deemed inappropriate. The treatment goals for permanent AF are rate control and anticoagulation if appropriate.

      Symptoms of AF include palpitations, dyspnea, and chest pain. The most common sign is an irregularly irregular pulse. An electrocardiogram (ECG) is essential for diagnosing AF, as other conditions can also cause an irregular pulse.

      Managing patients with AF involves two key parts: rate/rhythm control and reducing stroke risk. Rate control involves slowing down the irregular pulse to avoid negative effects on cardiac function. This is typically achieved using beta-blockers or rate-limiting calcium channel blockers. If one drug is not effective, combination therapy may be used. Rhythm control aims to restore and maintain normal sinus rhythm through pharmacological or electrical cardioversion. However, the majority of patients are managed with a rate control strategy.

      Reducing stroke risk in patients with AF is crucial. Risk stratifying tools, such as the CHA2DS2-VASc score, are used to determine the most appropriate anticoagulation strategy. Anticoagulation is recommended for patients with a score of 2 or more. Clinicians can choose between warfarin and novel oral anticoagulants (NOACs) for anticoagulation.

      Before starting anticoagulation, the patient’s bleeding risk should be assessed using tools like the HAS-BLED score or the ORBIT tool. These tools evaluate factors such as hypertension, abnormal renal or liver function, history of bleeding, age, and use of drugs that predispose to bleeding.

    • This question is part of the following fields:

      • Cardiology
      46.3
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  • Question 7 - A 65 year old male is brought to the emergency department following a...

    Correct

    • A 65 year old male is brought to the emergency department following a fall which occurred while the patient was getting out of bed. The patient complains of feeling dizzy as he got out of bed before experiencing tunnel vision and briefly losing consciousness. The patient is certain he only blacked out for a few seconds as the time on the bedside clock had not changed. The patient informs you that he has had several similar episodes over the past few months when getting out of bed, but most of the time he only feels dizzy and doesn't faint. He denies any loss of bladder or bowel control or biting his tongue. An ECG is performed which shows normal sinus rhythm. You note the patient takes the following medication:
      Lisinopril 10 mg OD
      Fluoxetine 20 mg OD

      What is the most likely diagnosis?

      Your Answer: Orthostatic hypotension

      Explanation:

      Orthostatic hypotension is a condition where patients feel lightheaded and may experience tunnel vision when they stand up from a lying down position. These symptoms are often worse in the morning. The patient’s history of recurrent episodes after being in a supine position for a long time strongly suggests orthostatic hypotension. There are no signs of epilepsy, such as deja-vu or jambs vu prodrome, tongue biting, loss of bladder or bowel control, or postictal confusion. The normal ECG and consistent timing of symptoms make postural orthostatic tachycardia syndrome (PAF) less likely. There are no neurological deficits to suggest a transient ischemic attack (TIA). The prodromal symptoms, such as tunnel vision and lightheadedness, align more with orthostatic hypotension rather than vasovagal syncope, which typically occurs after long periods of standing and is characterized by feeling hot and sweaty. Although carotid sinus syndrome could be considered as a differential diagnosis, as the patient’s head turning on getting out of bed may trigger symptoms, it is not one of the options.

      Further Reading:

      Blackouts, also known as syncope, are defined as a spontaneous transient loss of consciousness with complete recovery. They are most commonly caused by transient inadequate cerebral blood flow, although epileptic seizures can also result in blackouts. There are several different causes of blackouts, including neurally-mediated reflex syncope (such as vasovagal syncope or fainting), orthostatic hypotension (a drop in blood pressure upon standing), cardiovascular abnormalities, and epilepsy.

      When evaluating a patient with blackouts, several key investigations should be performed. These include an electrocardiogram (ECG), heart auscultation, neurological examination, vital signs assessment, lying and standing blood pressure measurements, and blood tests such as a full blood count and glucose level. Additional investigations may be necessary depending on the suspected cause, such as ultrasound or CT scans for aortic dissection or other abdominal and thoracic pathology, chest X-ray for heart failure or pneumothorax, and CT pulmonary angiography for pulmonary embolism.

      During the assessment, it is important to screen for red flags and signs of any underlying serious life-threatening condition. Red flags for blackouts include ECG abnormalities, clinical signs of heart failure, a heart murmur, blackouts occurring during exertion, a family history of sudden cardiac death at a young age, an inherited cardiac condition, new or unexplained breathlessness, and blackouts in individuals over the age of 65 without a prodrome. These red flags indicate the need for urgent assessment by an appropriate specialist.

      There are several serious conditions that may be suggested by certain features. For example, myocardial infarction or ischemia may be indicated by a history of coronary artery disease, preceding chest pain, and ECG signs such as ST elevation or arrhythmia. Pulmonary embolism may be suggested by dizziness, acute shortness of breath, pleuritic chest pain, and risk factors for venous thromboembolism. Aortic dissection may be indicated by chest and back pain, abnormal ECG findings, and signs of cardiac tamponade include low systolic blood pressure, elevated jugular venous pressure, and muffled heart sounds. Other conditions that may cause blackouts include severe hypoglycemia, Addisonian crisis, and electrolyte abnormalities.

    • This question is part of the following fields:

      • Cardiology
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  • Question 8 - A 70-year-old male smoker comes in with intense chest pain. His ECG indicates...

    Correct

    • A 70-year-old male smoker comes in with intense chest pain. His ECG indicates an acute myocardial infarction and he is immediately taken to the cath lab. Angiography reveals a blockage in the left circumflex artery.
      Which area of the heart is most likely affected in this scenario?

      Your Answer: Lateral

      Explanation:

      A summary of the vessels involved in different types of myocardial infarction, along with the corresponding ECG leads and the location of the infarction.

      For instance, an anteroseptal infarction involving the left anterior descending artery is indicated by ECG leads V1-V3. Similarly, an anterior infarction involving the left anterior descending artery is indicated by leads V3-V4.

      In cases of anterolateral infarctions, both the left anterior descending artery and the left circumflex artery are involved, and this is reflected in ECG leads V5-V6. An extensive anterior infarction involving the left anterior descending artery is indicated by leads V1-V6.

      Lateral infarcts involving the left circumflex artery are indicated by leads I, II, aVL, and V6. Inferior infarctions, on the other hand, involve either the right coronary artery (in 80% of cases) or the left circumflex artery (in 20% of cases), and this is shown by leads II, III, and aVF.

      In the case of a right ventricular infarction, the right coronary artery is involved, and this is indicated by leads V1 and V4R. Lastly, a posterior infarction involving the right coronary artery is shown by leads V7-V9.

    • This question is part of the following fields:

      • Cardiology
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  • Question 9 - A 70 year old male visits the emergency department with a complaint of...

    Correct

    • A 70 year old male visits the emergency department with a complaint of increasing shortness of breath. You observe that the patient had moderate aortic regurgitation on an echocardiogram conducted 12 months ago.

      What is a characteristic symptom of aortic regurgitation (AR)?

      Your Answer: Water hammer pulse

      Explanation:

      A collapsing pulse, also known as a water hammer pulse, is a common clinical feature associated with aortic regurgitation (AR). In AR, the pulse rises rapidly and forcefully before quickly collapsing. This pulsation pattern may also be referred to as Watson’s water hammer pulse or Corrigan’s pulse. Heart sounds in AR are typically quiet, and the second heart sound (S2) may even be absent if the valve fails to fully close. A characteristic early to mid diastolic murmur is often present. Other typical features of AR include a wide pulse pressure, a mid-diastolic Austin-Flint murmur in severe cases, a soft S1 and S2 (with S2 potentially being absent), a hyperdynamic apical pulse, and signs of heart failure such as lung creases, raised jugular venous pressure (JVP), and tachypnea.

      Further Reading:

      Valvular heart disease refers to conditions that affect the valves of the heart. In the case of aortic valve disease, there are two main conditions: aortic regurgitation and aortic stenosis.

      Aortic regurgitation is characterized by an early diastolic murmur, a collapsing pulse (also known as a water hammer pulse), and a wide pulse pressure. In severe cases, there may be a mid-diastolic Austin-Flint murmur due to partial closure of the anterior mitral valve cusps caused by the regurgitation streams. The first and second heart sounds (S1 and S2) may be soft, and S2 may even be absent. Additionally, there may be a hyperdynamic apical pulse. Causes of aortic regurgitation include rheumatic fever, infective endocarditis, connective tissue diseases like rheumatoid arthritis and systemic lupus erythematosus, and a bicuspid aortic valve. Aortic root diseases such as aortic dissection, spondyloarthropathies like ankylosing spondylitis, hypertension, syphilis, and genetic conditions like Marfan’s syndrome and Ehler-Danlos syndrome can also lead to aortic regurgitation.

      Aortic stenosis, on the other hand, is characterized by a narrow pulse pressure, a slow rising pulse, and a delayed ESM (ejection systolic murmur). The second heart sound (S2) may be soft or absent, and there may be an S4 (atrial gallop) that occurs just before S1. A thrill may also be felt. The duration of the murmur is an important factor in determining the severity of aortic stenosis. Causes of aortic stenosis include degenerative calcification (most common in older patients), a bicuspid aortic valve (most common in younger patients), William’s syndrome (supravalvular aortic stenosis), post-rheumatic disease, and subvalvular conditions like hypertrophic obstructive cardiomyopathy (HOCM).

      Management of aortic valve disease depends on the severity of symptoms. Asymptomatic patients are generally observed, while symptomatic patients may require valve replacement. Surgery may also be considered for asymptomatic patients with a valvular gradient greater than 40 mmHg and features such as left ventricular systolic dysfunction. Balloon valvuloplasty is limited to patients with critical aortic stenosis who are not fit for valve replacement.

    • This question is part of the following fields:

      • Cardiology
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  • Question 10 - A 72 year old male patient presents to the emergency department complaining of...

    Correct

    • A 72 year old male patient presents to the emergency department complaining of worsening shortness of breath. You observe moderate mitral stenosis on the patient's most recent echocardiogram 10 months ago.

      What is a typical finding in individuals with mitral stenosis?

      Your Answer: Loud 1st heart sound

      Explanation:

      Mitral stenosis is a condition characterized by a narrowing of the mitral valve in the heart. One of the key features of this condition is a loud first heart sound, which is often described as having an opening snap. This sound is typically heard during mid-late diastole and is best heard during expiration. Other signs of mitral stenosis include a low volume pulse, a flushed appearance of the cheeks (known as malar flush), and the presence of atrial fibrillation. Additionally, patients with mitral stenosis may exhibit signs of pulmonary edema, such as crepitations (crackling sounds) in the lungs and the production of white or pink frothy sputum. It is important to note that a water hammer pulse is associated with a different condition called aortic regurgitation.

      Further Reading:

      Mitral Stenosis:
      – Causes: Rheumatic fever, Mucopolysaccharidoses, Carcinoid, Endocardial fibroelastosis
      – Features: Mid-late diastolic murmur, loud S1, opening snap, low volume pulse, malar flush, atrial fibrillation, signs of pulmonary edema, tapping apex beat
      – Features of severe mitral stenosis: Length of murmur increases, opening snap becomes closer to S2
      – Investigation findings: CXR may show left atrial enlargement, echocardiography may show reduced cross-sectional area of the mitral valve

      Mitral Regurgitation:
      – Causes: Mitral valve prolapse, Myxomatous degeneration, Ischemic heart disease, Rheumatic fever, Connective tissue disorders, Endocarditis, Dilated cardiomyopathy
      – Features: pansystolic murmur radiating to left axilla, soft S1, S3, laterally displaced apex beat with heave
      – Signs of acute MR: Decompensated congestive heart failure symptoms
      – Signs of chronic MR: Leg edema, fatigue, arrhythmia (atrial fibrillation)
      – Investigation findings: Doppler echocardiography to detect regurgitant flow and pulmonary hypertension, ECG may show signs of LA enlargement and LV hypertrophy, CXR may show LA and LV enlargement in chronic MR and pulmonary edema in acute MR.

    • This question is part of the following fields:

      • Cardiology
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  • Question 11 - A 45-year-old man presents with palpitations and is found to have atrial fibrillation....

    Correct

    • A 45-year-old man presents with palpitations and is found to have atrial fibrillation. You are requested to evaluate his ECG.
      Which of the following statements is NOT true regarding the ECG in atrial fibrillation?

      Your Answer: Ashman beats have a poor prognosis

      Explanation:

      The classic ECG features of atrial fibrillation include an irregularly irregular rhythm, the absence of p-waves, an irregular ventricular rate, and the presence of fibrillation waves. This irregular rhythm occurs because the atrial impulses are filtered out by the AV node.

      In addition, Ashman beats may be observed in atrial fibrillation. These beats are characterized by wide complex QRS complexes, often with a morphology resembling right bundle branch block. They occur after a short R-R interval that is preceded by a prolonged R-R interval. Fortunately, Ashman beats are generally considered harmless.

      The disorganized electrical activity in atrial fibrillation typically originates at the root of the pulmonary veins.

    • This question is part of the following fields:

      • Cardiology
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  • Question 12 - A 58 year old male presents to the emergency department after experiencing dizziness...

    Correct

    • A 58 year old male presents to the emergency department after experiencing dizziness and fainting. An ECG reveals bradycardia with a pulse rate of 44 bpm. His blood pressure is 90/60. The resident physician administers atropine. Which of the following conditions would be a contraindication for giving atropine?

      Your Answer: Paralytic ileus

      Explanation:

      Atropine is a medication that slows down the movement of the digestive system and is not recommended for use in individuals with intestinal blockage. It works by blocking the effects of a neurotransmitter called acetylcholine, which is responsible for promoting gastrointestinal motility and the emptying of the stomach. Therefore, atropine should not be given to patients with gastrointestinal obstruction as it can further hinder the movement of the intestines.

      Further Reading:

      Types of Heart Block:

      1. Atrioventricular (AV) Blocks:
      – Disrupt electrical conduction between the atria and ventricles at the AV node.
      – Three degrees of AV block: first degree, second degree (type 1 and type 2), and third degree (complete) AV block.

      – First degree AV block: PR interval > 0.2 seconds.
      – Second degree AV block:
      – Type 1 (Mobitz I, Wenckebach): progressive prolongation of the PR interval until a dropped beat occurs.
      – Type 2 (Mobitz II): PR interval is constant, but the P wave is often not followed by a QRS complex.
      – Third degree (complete) AV block: no association between the P waves and QRS complexes.

      Features of complete heart block: syncope, heart failure, regular bradycardia (30-50 bpm), wide pulse pressure, JVP (jugular venous pressure) cannon waves in neck, variable intensity of S1.

      2. Bundle Branch Blocks:
      – Electrical conduction travels from the bundle of His to the left and right bundle branches.
      – Diagnosed when the duration of the QRS complex on the ECG exceeds 120 ms.

      – Right bundle branch block (RBBB).
      – Left bundle branch block (LBBB).
      – Left anterior fascicular block (LAFB).
      – Left posterior fascicular block (LPFB).
      – Bifascicular block.
      – Trifascicular block.

      ECG features of bundle branch blocks:
      – RBBB: QRS duration > 120 ms, RSR’ pattern in V1-3 (M-shaped QRS complex), wide S wave in lateral leads (I, aVL, V5-6).
      – LBBB: QRS duration > 120 ms, dominant S wave in V1, broad, notched (‘M’-shaped) R wave in V6, broad monophasic R wave in lateral leads (I, aVL, V5-6), absence of Q waves in lateral leads, prolonged R wave peak time > 60 ms in leads V5-6.

      WiLLiaM MaRROW is a useful mnemonic for remembering the morphology of the QRS in leads V1 and V6 for LBBB.

    • This question is part of the following fields:

      • Cardiology
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  • Question 13 - A 45-year-old woman presents with recurrent episodes of central chest pain that radiate...

    Correct

    • A 45-year-old woman presents with recurrent episodes of central chest pain that radiate to her left arm. She has a history of angina and uses a GTN spray for relief. She reports that the pains have been occurring more frequently in the past few days and have been triggered by less exertion. Currently, she is not experiencing any pain, and her ECG shows normal sinus rhythm with no abnormalities in T wave or ST-segment.

      What is the SINGLE most probable diagnosis?

      Your Answer: Unstable angina

      Explanation:

      Unstable angina is characterized by the presence of one or more of the following symptoms: angina of effort occurring over a few days with increasing frequency, episodes of angina occurring recurrently and predictably without specific provocation, or an unprovoked and prolonged episode of cardiac chest pain. The electrocardiogram (ECG) may appear normal or show T-wave/ST-segment changes, and cardiac enzymes are typically within normal range.

      On the other hand, stable angina is defined by central chest pain that is triggered by activities such as exercise and emotional stress. This pain may radiate to the jaw or left arm and is relieved by resting for a few minutes. It is usually brought on by a predictable amount of exertion.

      Prinzmetal angina, although rare, is a variant of angina that primarily occurs at rest between midnight and early morning. The attacks can be severe and tend to happen in clusters. This type of angina is caused by coronary artery spasm, and patients may have normal coronary arteries.

      Decubitus angina, on the other hand, is angina that occurs when lying down. It often develops as a result of cardiac failure due to an increased volume of blood within the blood vessels, which places additional strain on the heart.

      Lastly, Ludwig’s angina is an extremely serious and potentially life-threatening cellulitis that affects the submandibular area. It most commonly arises from an infection in the floor of the mouth, which then spreads to the submandibular space.

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      • Cardiology
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  • Question 14 - A 65 year old male presents to the emergency department with a 3...

    Correct

    • A 65 year old male presents to the emergency department with a 3 hour history of severe chest pain that radiates to his left arm and neck. On examination, his chest is clear and his heart sounds are normal with a regular rhythm. No carotid bruits are heard. The following observations are noted:

      Blood pressure: 150/90 mmHg
      Pulse rate: 88 bpm
      Respiration rate: 18 rpm
      Oxygen saturation: 97% on room air
      Temperature: 37.2ºC

      An ECG reveals normal sinus rhythm and a chest X-ray shows no abnormalities. The patient's pain subsides after receiving buccal GTN (glyceryl trinitrate). Cardiac enzyme tests are pending. What is the most appropriate course of action for this patient?

      Your Answer: Administer 300 mg oral aspirin

      Explanation:

      For patients suspected of having acute coronary syndromes (ACS), it is recommended that they receive 300 mg of aspirin and pain relief in the form of glyceryl trinitrate (GTN) with the option of intravenous opioids such as morphine. However, if the patient is pain-free after taking GTN, there is no need to administer morphine. The next steps in medical management or intervention will be determined once the diagnosis is confirmed.

      Further Reading:

      Acute Coronary Syndromes (ACS) is a term used to describe a group of conditions that involve the sudden reduction or blockage of blood flow to the heart. This can lead to a heart attack or unstable angina. ACS includes ST segment elevation myocardial infarction (STEMI), non-ST segment elevation myocardial infarction (NSTEMI), and unstable angina (UA).

      The development of ACS is usually seen in patients who already have underlying coronary heart disease. This disease is characterized by the buildup of fatty plaques in the walls of the coronary arteries, which can gradually narrow the arteries and reduce blood flow to the heart. This can cause chest pain, known as angina, during physical exertion. In some cases, the fatty plaques can rupture, leading to a complete blockage of the artery and a heart attack.

      There are both non modifiable and modifiable risk factors for ACS. non modifiable risk factors include increasing age, male gender, and family history. Modifiable risk factors include smoking, diabetes mellitus, hypertension, hypercholesterolemia, and obesity.

      The symptoms of ACS typically include chest pain, which is often described as a heavy or constricting sensation in the central or left side of the chest. The pain may also radiate to the jaw or left arm. Other symptoms can include shortness of breath, sweating, and nausea/vomiting. However, it’s important to note that some patients, especially diabetics or the elderly, may not experience chest pain.

      The diagnosis of ACS is typically made based on the patient’s history, electrocardiogram (ECG), and blood tests for cardiac enzymes, specifically troponin. The ECG can show changes consistent with a heart attack, such as ST segment elevation or depression, T wave inversion, or the presence of a new left bundle branch block. Elevated troponin levels confirm the diagnosis of a heart attack.

      The management of ACS depends on the specific condition and the patient’s risk factors. For STEMI, immediate coronary reperfusion therapy, either through primary percutaneous coronary intervention (PCI) or fibrinolysis, is recommended. In addition to aspirin, a second antiplatelet agent is usually given. For NSTEMI or unstable angina, the treatment approach may involve reperfusion therapy or medical management, depending on the patient’s risk of future cardiovascular events.

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  • Question 15 - You are managing a 72 year old female who has presented to the...

    Incorrect

    • You are managing a 72 year old female who has presented to the emergency department with sudden onset of dizziness and difficulty breathing. The patient's pulse rate is recorded as 44 beats per minute. Your assessment focuses on identifying reversible causes of bradycardia. Which of the following metabolic conditions is commonly associated with reversible bradycardia?

      Your Answer: Hypokalaemia

      Correct Answer: Hypermagnesemia

      Explanation:

      Some reversible metabolic causes of bradycardia include hypothyroidism, hyperkalaemia, hypermagnesemia, and hypothermia. These conditions can lead to a slow heart rate and can be treated or reversed.

      Further Reading:

      Causes of Bradycardia:
      – Physiological: Athletes, sleeping
      – Cardiac conduction dysfunction: Atrioventricular block, sinus node disease
      – Vasovagal & autonomic mediated: Vasovagal episodes, carotid sinus hypersensitivity
      – Hypothermia
      – Metabolic & electrolyte disturbances: Hypothyroidism, hyperkalaemia, hypermagnesemia
      – Drugs: Beta-blockers, calcium channel blockers, digoxin, amiodarone
      – Head injury: Cushing’s response
      – Infections: Endocarditis
      – Other: Sarcoidosis, amyloidosis

      Presenting symptoms of Bradycardia:
      – Presyncope (dizziness, lightheadedness)
      – Syncope
      – Breathlessness
      – Weakness
      – Chest pain
      – Nausea

      Management of Bradycardia:
      – Assess and monitor for adverse features (shock, syncope, myocardial ischaemia, heart failure)
      – Treat reversible causes of bradycardia
      – Pharmacological treatment: Atropine is first-line, adrenaline and isoprenaline are second-line
      – Transcutaneous pacing if atropine is ineffective
      – Other drugs that may be used: Aminophylline, dopamine, glucagon, glycopyrrolate

      Bradycardia Algorithm:
      – Follow the algorithm for management of bradycardia, which includes assessing and monitoring for adverse features, treating reversible causes, and using appropriate medications or pacing as needed.
      https://acls-algorithms.com/wp-content/uploads/2020/12/Website-Bradycardia-Algorithm-Diagram.pdf

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  • Question 16 - A 55-year-old male with a past medical history of high blood pressure arrives...

    Correct

    • A 55-year-old male with a past medical history of high blood pressure arrives at the emergency department complaining of sudden chest and interscapular pain that feels like tearing. You suspect aortic dissection. Which of the following signs and symptoms aligns with the diagnosis of aortic dissection?

      Your Answer: Blood pressure differential of more than 10 mmHg between left and right arms

      Explanation:

      A significant proportion of the population experiences a difference of 10 mmHg or more in blood pressure between their upper limbs. Pericarditis can be identified by the presence of saddle-shaped ST elevation and pain in the trapezius ridge. Aortic dissection is characterized by a diastolic murmur with a decrescendo pattern, which indicates aortic incompetence.

      Further Reading:

      Aortic dissection is a life-threatening condition in which blood flows through a tear in the innermost layer of the aorta, creating a false lumen. Prompt treatment is necessary as the mortality rate increases by 1-2% per hour. There are different classifications of aortic dissection, with the majority of cases being proximal. Risk factors for aortic dissection include hypertension, atherosclerosis, connective tissue disorders, family history, and certain medical procedures.

      The presentation of aortic dissection typically includes sudden onset sharp chest pain, often described as tearing or ripping. Back pain and abdominal pain are also common, and the pain may radiate to the neck and arms. The clinical picture can vary depending on which aortic branches are affected, and complications such as organ ischemia, limb ischemia, stroke, myocardial infarction, and cardiac tamponade may occur. Common signs and symptoms include a blood pressure differential between limbs, pulse deficit, and a diastolic murmur.

      Various investigations can be done to diagnose aortic dissection, including ECG, CXR, and CT with arterial contrast enhancement (CTA). CT is the investigation of choice due to its accuracy in diagnosis and classification. Other imaging techniques such as transoesophageal echocardiography (TOE), magnetic resonance imaging/angiography (MRI/MRA), and digital subtraction angiography (DSA) are less commonly used.

      Management of aortic dissection involves pain relief, resuscitation measures, blood pressure control, and referral to a vascular or cardiothoracic team. Opioid analgesia should be given for pain relief, and resuscitation measures such as high flow oxygen and large bore IV access should be performed. Blood pressure control is crucial, and medications such as labetalol may be used to reduce systolic blood pressure. Hypotension carries a poor prognosis and may require careful fluid resuscitation. Treatment options depend on the type of dissection, with type A dissections typically requiring urgent surgery and type B dissections managed by thoracic endovascular aortic repair (TEVAR) and blood pressure control optimization.

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  • Question 17 - You evaluate a 45-year-old Asian man with a heart murmur. During auscultation, you...

    Correct

    • You evaluate a 45-year-old Asian man with a heart murmur. During auscultation, you observe a loud first heart sound and a mid-diastolic murmur at the apex. Upon examination, you observe that he has plum-red discoloration of his cheeks.
      What is the SINGLE most probable diagnosis?

      Your Answer: Mitral stenosis

      Explanation:

      The clinical symptoms of mitral stenosis include shortness of breath, which tends to worsen during exercise and when lying flat. Tiredness, palpitations, ankle swelling, cough, and haemoptysis are also common symptoms. Chest discomfort is rarely reported.

      The clinical signs of mitral stenosis can include a malar flush, an irregular pulse if atrial fibrillation is present, a tapping apex beat that can be felt as the first heart sound, and a left parasternal heave if there is pulmonary hypertension. The first heart sound is often loud, and a mid-diastolic murmur can be heard.

      The mid-diastolic murmur of mitral stenosis is a rumbling sound that is best heard at the apex, in the left lateral position during expiration, using the bell of the stethoscope.

      Mitral stenosis is typically caused by rheumatic heart disease, and it is more common in females, with about two-thirds of patients being female.

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  • Question 18 - A 25-year-old is brought into the emergency department after being discovered unresponsive in...

    Correct

    • A 25-year-old is brought into the emergency department after being discovered unresponsive in a neighbor's backyard. It is suspected that the patient had consumed alcohol at a nearby bar and opted to walk home in the snowy conditions. The patient's temperature is documented as 27.8ºC. The nurse connects leads to conduct a 12-lead ECG. Which of the subsequent ECG alterations is most closely linked to hypothermia?

      Your Answer: Osborne Waves (J waves)

      Explanation:

      Hypothermia can cause various changes in an electrocardiogram (ECG). These changes include a slower heart rate (bradycardia), the presence of Osborn waves (also known as J waves), a prolonged PR interval, a widened QRS complex, and a prolonged QT interval. Additionally, shivering artifact, ventricular ectopics (abnormal heartbeats originating from the ventricles), and even cardiac arrest (ventricular tachycardia, ventricular fibrillation, or asystole) may occur.

      Further Reading:

      Hypothermic cardiac arrest is a rare situation that requires a tailored approach. Resuscitation is typically prolonged, but the prognosis for young, previously healthy individuals can be good. Hypothermic cardiac arrest may be associated with drowning. Hypothermia is defined as a core temperature below 35ºC and can be graded as mild, moderate, severe, or profound based on the core temperature. When the core temperature drops, basal metabolic rate falls and cell signaling between neurons decreases, leading to reduced tissue perfusion. Signs and symptoms of hypothermia progress as the core temperature drops, initially presenting as compensatory increases in heart rate and shivering, but eventually ceasing as the temperature drops into moderate hypothermia territory.

      ECG changes associated with hypothermia include bradyarrhythmias, Osborn waves, prolonged PR, QRS, and QT intervals, shivering artifact, ventricular ectopics, and cardiac arrest. When managing hypothermic cardiac arrest, ALS should be initiated as per the standard ALS algorithm, but with modifications. It is important to check for signs of life, re-warm the patient, consider mechanical ventilation due to chest wall stiffness, adjust dosing or withhold drugs due to slowed drug metabolism, and correct electrolyte disturbances. The resuscitation of hypothermic patients is often prolonged and may continue for a number of hours.

      Pulse checks during CPR may be difficult due to low blood pressure, and the pulse check is prolonged to 1 minute for this reason. Drug metabolism is slowed in hypothermic patients, leading to a build-up of potentially toxic plasma concentrations of administered drugs. Current guidance advises withholding drugs if the core temperature is below 30ºC and doubling the drug interval at core temperatures between 30 and 35ºC. Electrolyte disturbances are common in hypothermic patients, and it is important to interpret results keeping the setting in mind. Hypoglycemia should be treated, hypokalemia will often correct as the patient re-warms, ABG analyzers may not reflect the reality of the hypothermic patient, and severe hyperkalemia is a poor prognostic indicator.

      Different warming measures can be used to increase the core body temperature, including external passive measures such as removal of wet clothes and insulation with blankets, external active measures such as forced heated air or hot-water immersion, and internal active measures such as inhalation of warm air, warmed intravenous fluids, gastric, bladder, peritoneal and/or pleural lavage and high volume renal haemofilter.

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  • Question 19 - A 58-year-old woman presents with abrupt intense chest discomfort that extends to her...

    Correct

    • A 58-year-old woman presents with abrupt intense chest discomfort that extends to her back. She is perspiring and experiencing nausea. During the examination, her blood pressure measures 176/96 in her right arm and 143/78 in her left arm. An early diastolic murmur is audible upon auscultation.

      What is the SINGLE most probable diagnosis?

      Your Answer: Aortic dissection

      Explanation:

      Acute aortic dissection is characterized by the rapid formation of a false, blood-filled channel within the middle layer of the aorta. It is estimated to occur in 3 out of every 100,000 individuals per year.

      Patients with aortic dissection typically experience intense chest pain that spreads to the area between the shoulder blades. The pain is often described as tearing or ripping and may also extend to the neck. Sweating, paleness, and rapid heartbeat are commonly observed at the time of presentation. Other possible symptoms include focal neurological deficits, weak pulses, fainting, and reduced blood flow to organs.

      A significant difference in blood pressure between the arms, greater than 20 mmHg, is a highly sensitive indicator. If the dissection extends backward, it can involve the aortic valve, leading to the early diastolic murmur of aortic regurgitation.

      Risk factors for aortic dissection include hypertension, atherosclerosis, aortic coarctation, the use of sympathomimetic drugs like cocaine, Marfan syndrome, Ehlers-Danlos syndrome, Turner’s syndrome, tertiary syphilis, and pre-existing aortic aneurysm.

      Aortic dissection can be classified according to the Stanford classification system:
      – Type A affects the ascending aorta and the arch, accounting for 60% of cases. These cases are typically managed surgically and may result in the blockage of coronary arteries and aortic regurgitation.
      – Type B begins distal to the left subclavian artery and accounts for approximately 40% of cases. These cases are usually managed with medication to control blood pressure.

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  • Question 20 - A 37 year old female presents to the emergency department complaining of shortness...

    Correct

    • A 37 year old female presents to the emergency department complaining of shortness of breath and chest pain in the center of her chest. Upon further questioning, the patient reveals that she experienced muscle pain, gastrointestinal issues, a mild fever, and fatigue for approximately three days about a week ago. She informs you that she is typically in good health and regularly runs 5-10km two to three times per week. The patient has no significant medical history, does not take any medications on a regular basis, has never smoked, and does not consume alcohol. Given the patient's symptoms, you suspect the possibility of myocarditis. Which of the following sets of blood test results would be expected in a patient with myocarditis?

      Your Answer: creatine kinase: elevated, troponin I: elevated, BNP: elevated

      Explanation:

      In cases of myocarditis, levels of cardiac muscle enzymes (CK-MB, Troponin I, and Troponin T) and B-type natriuretic peptide (BNP) are usually elevated. It is important to note that CK-MB is a subtype of CK, so an increase in CK-MB will also result in an increase in total CK levels. This poses a challenge in differentiating myocarditis from coronary artery disease in the emergency department. Typically, a definitive diagnosis is not made until the patient undergoes additional tests such as angiography and possibly endomyocardial biopsy (EMB).

      Further Reading:

      Myocarditis is inflammation of the myocardium, the middle layer of the heart wall, that is not caused by a blockage in the coronary arteries. It can be caused by various factors, including infections (such as viruses, bacteria, parasites, and fungi), immune reactions, toxins, physical injury, and certain medications or vaccines. Coxsackie virus is the most common cause of myocarditis in Europe and the USA, while globally, Trypanosoma cruzi, which causes Chagas disease, is the most common cause.

      The symptoms of myocarditis can vary widely and often resemble those of heart failure or coronary heart disease. Common symptoms include chest pain, palpitations, breathlessness, fatigue, and swelling. The clinical presentation can also be influenced by the underlying cause of the inflammation. Diagnosis of myocarditis is challenging as there is no specific clinical presentation, and the gold standard test, endomyocardial biopsy, is not readily available in emergency departments.

      Various tests can be performed to aid in the diagnosis of myocarditis, including electrocardiogram (ECG), chest X-ray, cardiac enzymes (such as troponin or CK-MB), brain natriuretic peptide (BNP) levels, and echocardiogram. These tests may show non-specific abnormalities, such as ST-segment and T-wave abnormalities on ECG, bilateral pulmonary infiltrates on chest X-ray, elevated cardiac enzymes and BNP levels, and left ventricular motion abnormalities on echocardiogram.

      Management of myocarditis is primarily supportive, focusing on treating cardiac failure and addressing the underlying cause. Supportive care and conventional heart failure therapy, such as ACE inhibitors or angiotensin II receptor blockers, vasodilators, beta-blockers, and diuretics, may be used to improve cardiac function and reduce symptoms. Treatment of the underlying cause, such as antiparasitic agents for Chagas disease or antibiotics for bacterial infections, may also be necessary. In severe cases leading to cardiogenic shock, more aggressive treatment with invasive monitoring, inotropes, vasopressors, and potentially heart transplantation may be required.

      In summary, myocarditis is inflammation of the myocardium that can be caused by various factors. It presents with a wide range of symptoms and can be challenging to diagnose. Management involves supportive care, treatment of cardiac failure, and addressing the underlying cause. Severe cases may require more aggressive treatment and potentially heart transplantation.

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  • Question 21 - A 72-year-old woman presents with worsening abdominal distension and discomfort. During the examination,...

    Incorrect

    • A 72-year-old woman presents with worsening abdominal distension and discomfort. During the examination, she exhibits significant dependent edema and an elevated JVP. Cardiac auscultation reveals a pansystolic murmur. The abdomen is distended and tender, with the presence of shifting dullness.

      What is the SINGLE most probable diagnosis?

      Your Answer: Mitral regurgitation

      Correct Answer: Tricuspid regurgitation

      Explanation:

      Tricuspid regurgitation is commonly caused by right ventricular dilatation, often as a result of heart failure. Other factors that can contribute to this condition include right ventricular infarction and cor pulmonale. The clinical signs of right-sided heart failure are frequently observed, such as an elevated jugular venous pressure, peripheral edema, hepatomegaly, and ascites.

      The murmur associated with tricuspid regurgitation is a pansystolic murmur that is most audible at the tricuspid area during inspiration. A thrill may also be felt at the left sternal edge. Reverse splitting of the second heart sound can occur due to the early closure of the pulmonary valve. Additionally, a third heart sound may be present due to rapid filling of the right ventricle.

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  • Question 22 - A 72 year old male is brought to the emergency department by his...

    Correct

    • A 72 year old male is brought to the emergency department by his daughter due to sudden confusion, severe headache, and problems with coordination. Upon initial assessment at triage, the patient's blood pressure is found to be significantly elevated at 224/126 mmHg. You suspect the presence of hypertensive encephalopathy. What is the primary treatment option for this condition?

      Your Answer: Labetalol

      Explanation:

      The primary treatment option for hypertensive encephalopathy, a condition characterized by sudden confusion, severe headache, and coordination problems due to significantly elevated blood pressure, is labetalol.

      Further Reading:

      A hypertensive emergency is characterized by a significant increase in blood pressure accompanied by acute or progressive damage to organs. While there is no specific blood pressure value that defines a hypertensive emergency, systolic blood pressure is typically above 180 mmHg and/or diastolic blood pressure is above 120 mmHg. The most common presentations of hypertensive emergencies include cerebral infarction, pulmonary edema, encephalopathy, and congestive cardiac failure. Less common presentations include intracranial hemorrhage, aortic dissection, and pre-eclampsia/eclampsia.

      The signs and symptoms of hypertensive emergencies can vary widely due to the potential dysfunction of every physiological system. Some common signs and symptoms include headache, nausea and/or vomiting, chest pain, arrhythmia, proteinuria, signs of acute kidney failure, epistaxis, dyspnea, dizziness, anxiety, confusion, paraesthesia or anesthesia, and blurred vision. Clinical assessment focuses on detecting acute or progressive damage to the cardiovascular, renal, and central nervous systems.

      Investigations that are essential in evaluating hypertensive emergencies include U&Es (electrolyte levels), urinalysis, ECG, and CXR. Additional investigations may be considered depending on the suspected underlying cause, such as a CT head for encephalopathy or new onset confusion, CT thorax for suspected aortic dissection, and CT abdomen for suspected phaeochromocytoma. Plasma free metanephrines, urine total catecholamines, vanillylmandelic acid (VMA), and metanephrine may be tested if phaeochromocytoma is suspected. Urine screening for cocaine and/or amphetamines may be appropriate in certain cases, as well as an endocrine screen for Cushing’s syndrome.

      The management of hypertensive emergencies involves cautious reduction of blood pressure to avoid precipitating renal, cerebral, or coronary ischemia. Staged blood pressure reduction is typically the goal, with an initial reduction in mean arterial pressure (MAP) by no more than 25% in the first hour. Further gradual reduction to a systolic blood pressure of 160 mmHg and diastolic blood pressure of 100 mmHg over the next 2 to 6 hours is recommended. Initial management involves treatment with intravenous antihypertensive agents in an intensive care setting with appropriate monitoring.

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  • Question 23 - You evaluate a 56-year-old individual who arrives at the ER complaining of chest...

    Correct

    • You evaluate a 56-year-old individual who arrives at the ER complaining of chest discomfort and increasing swelling. Upon reviewing the patient's medical history, you discover that they underwent an echocardiogram a year ago, which revealed moderate-severe tricuspid regurgitation. Which of the following heart murmurs is commonly associated with tricuspid regurgitation?

      Your Answer: Low-frequency pansystolic murmur

      Explanation:

      Tricuspid regurgitation is characterized by a continuous murmur that spans the entire systolic phase of the cardiac cycle. This murmur is best audible at the lower left sternal edge and has a low frequency. Interestingly, the intensity of the murmur increases during inspiration and decreases during expiration, a phenomenon referred to as Carvallo’s sign.

      Further Reading:

      Tricuspid regurgitation (TR) is a condition where blood flows backwards through the tricuspid valve in the heart. It is classified as either primary or secondary, with primary TR being caused by abnormalities in the tricuspid valve itself and secondary TR being the result of other conditions outside of the valve. Mild TR is common, especially in young adults, and often does not cause symptoms. However, severe TR can lead to right-sided heart failure and the development of symptoms such as ascites, peripheral edema, and hepatomegaly.

      The causes of TR can vary. Primary TR can be caused by conditions such as rheumatic heart disease, myxomatous valve disease, or Ebstein anomaly. Secondary TR is often the result of right ventricular dilatation due to left heart failure or pulmonary hypertension. Other causes include endocarditis, traumatic chest injury, left ventricular systolic dysfunction, chronic lung disease, pulmonary thromboembolism, myocardial disease, left to right shunts, and carcinoid heart disease. In some cases, TR can occur as a result of infective endocarditis in IV drug abusers.

      Clinical features of TR can include a pansystolic murmur that is best heard at the lower left sternal edge, Carvallo’s sign (murmur increases with inspiration and decreases with expiration), an S3 heart sound, and the presence of atrial arrhythmias such as flutter or fibrillation. Other signs can include giant C-V waves in the jugular pulse, hepatomegaly (often pulsatile), and edema with lung crepitations or pleural effusions.

      The management of TR depends on the underlying cause and the severity of the condition. In severe cases, valve repair or replacement surgery may be necessary. Treatment may also involve addressing the underlying conditions contributing to TR, such as managing left heart failure or pulmonary hypertension.

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  • Question 24 - A 32-year-old man presents with an episode of atrial fibrillation (AF) that began...

    Incorrect

    • A 32-year-old man presents with an episode of atrial fibrillation (AF) that began a few hours ago. This is his first-ever episode, and he has no significant medical history.
      Which of the following accurately characterizes the type of AF he has experienced?

      Your Answer: Paroxysmal

      Correct Answer: Acute

      Explanation:

      In order to gain a comprehensive understanding of AF management, it is crucial to familiarize oneself with the terminology used to describe its various subtypes. These terms help categorize different episodes of AF based on their characteristics and outcomes.

      Acute AF refers to any episode that occurs within the previous 48 hours. It can manifest with or without symptoms and may or may not recur. On the other hand, paroxysmal AF describes episodes that spontaneously end within 7 days, typically within 48 hours. While these episodes are often recurrent, they can progress into a sustained form of AF.

      Recurrent AF is defined as experiencing two or more episodes of AF. If the episodes self-terminate, they are classified as paroxysmal AF. However, if the episodes do not self-terminate, they are categorized as persistent AF. Persistent AF lasts longer than 7 days or has occurred after a previous cardioversion. To terminate persistent AF, electrical or pharmacological intervention is required. In some cases, persistent AF can progress into permanent AF.

      Permanent AF, also known as Accepted AF, refers to episodes that cannot be successfully terminated, have relapsed after termination, or where cardioversion is not pursued. This subtype signifies a more chronic and ongoing form of AF.

      By understanding and utilizing these terms, healthcare professionals can effectively communicate and manage the different subtypes of AF.

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  • Question 25 - You evaluate a 70 year old male who complains of chest tightness during...

    Incorrect

    • You evaluate a 70 year old male who complains of chest tightness during physical activity. The patient reports a gradual increase in shortness of breath during exertion over the past half year. During the examination, you observe a murmur and suspect aortic stenosis. Which of the following characteristics is commonly seen in symptomatic individuals with aortic stenosis?

      Your Answer: Added third heart sound

      Correct Answer: Slow rising pulse

      Explanation:

      Severe aortic stenosis is characterized by several distinct features. These include a narrow pulse pressure, which refers to the difference between the systolic and diastolic blood pressure readings. Additionally, individuals with severe aortic stenosis may exhibit a slow rising pulse, meaning that the pulse wave takes longer to reach its peak. Another common feature is a delayed ejection systolic murmur, which is a heart sound that occurs during the ejection phase of the cardiac cycle. The second heart sound (S2) may also be soft or absent in individuals with severe aortic stenosis. Another potential finding is the presence of an S4 heart sound, which occurs during the filling phase of the cardiac cycle. A thrill, which is a palpable vibration, may also be felt in severe cases. The duration of the murmur, as well as the presence of left ventricular hypertrophy or failure, are additional features that may be observed in individuals with severe aortic stenosis.

      Further Reading:

      Valvular heart disease refers to conditions that affect the valves of the heart. In the case of aortic valve disease, there are two main conditions: aortic regurgitation and aortic stenosis.

      Aortic regurgitation is characterized by an early diastolic murmur, a collapsing pulse (also known as a water hammer pulse), and a wide pulse pressure. In severe cases, there may be a mid-diastolic Austin-Flint murmur due to partial closure of the anterior mitral valve cusps caused by the regurgitation streams. The first and second heart sounds (S1 and S2) may be soft, and S2 may even be absent. Additionally, there may be a hyperdynamic apical pulse. Causes of aortic regurgitation include rheumatic fever, infective endocarditis, connective tissue diseases like rheumatoid arthritis and systemic lupus erythematosus, and a bicuspid aortic valve. Aortic root diseases such as aortic dissection, spondyloarthropathies like ankylosing spondylitis, hypertension, syphilis, and genetic conditions like Marfan’s syndrome and Ehler-Danlos syndrome can also lead to aortic regurgitation.

      Aortic stenosis, on the other hand, is characterized by a narrow pulse pressure, a slow rising pulse, and a delayed ESM (ejection systolic murmur). The second heart sound (S2) may be soft or absent, and there may be an S4 (atrial gallop) that occurs just before S1. A thrill may also be felt. The duration of the murmur is an important factor in determining the severity of aortic stenosis. Causes of aortic stenosis include degenerative calcification (most common in older patients), a bicuspid aortic valve (most common in younger patients), William’s syndrome (supravalvular aortic stenosis), post-rheumatic disease, and subvalvular conditions like hypertrophic obstructive cardiomyopathy (HOCM).

      Management of aortic valve disease depends on the severity of symptoms. Asymptomatic patients are generally observed, while symptomatic patients may require valve replacement. Surgery may also be considered for asymptomatic patients with a valvular gradient greater than 40 mmHg and features such as left ventricular systolic dysfunction. Balloon valvuloplasty is limited to patients with critical aortic stenosis who are not fit for valve replacement.

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  • Question 26 - A 35-year-old Caucasian woman comes in with complaints of headaches, blurry vision, and...

    Correct

    • A 35-year-old Caucasian woman comes in with complaints of headaches, blurry vision, and occasional chest pain over the past few weeks. During her fundoscopic examination, retinal hemorrhages and bilateral papilledema are observed. Her initial vital signs are as follows: heart rate of 89, blood pressure of 228/134, oxygen saturation of 98% on room air, blood glucose level of 8.2, and a Glasgow Coma Scale score of 15/15.

      What is the MOST LIKELY diagnosis for this patient?

      Your Answer: Malignant hypertension

      Explanation:

      The diagnosis in this particular case is malignant (accelerated) hypertension. The patient’s blood pressure is greater than 220/110, and they also have retinal haemorrhages and papilloedema. During the examination, it is important to look for other features such as the presence of a 3rd heart sound, ankle oedema, bilateral basal crepitations, and any focal neurological deficit.

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  • Question 27 - A 75 year old female is brought to the hospital by paramedics after...

    Incorrect

    • A 75 year old female is brought to the hospital by paramedics after experiencing a cardiac arrest at home during a family gathering. The patient is pronounced deceased shortly after being admitted to the hospital. The family informs you that the patient had been feeling unwell for the past few days but chose not to seek medical attention due to concerns about the Coronavirus. The family inquires about the likelihood of the patient surviving if the cardiac arrest had occurred within the hospital?

      Your Answer: 7-8%

      Correct Answer: 20%

      Explanation:

      For the exam, it is important to be familiar with the statistics regarding the outcomes of outpatient and inpatient cardiac arrest in the UK.

      Further Reading:

      Cardiopulmonary arrest is a serious event with low survival rates. In non-traumatic cardiac arrest, only about 20% of patients who arrest as an in-patient survive to hospital discharge, while the survival rate for out-of-hospital cardiac arrest is approximately 8%. The Resus Council BLS/AED Algorithm for 2015 recommends chest compressions at a rate of 100-120 per minute with a compression depth of 5-6 cm. The ratio of chest compressions to rescue breaths is 30:2.

      After a cardiac arrest, the goal of patient care is to minimize the impact of post cardiac arrest syndrome, which includes brain injury, myocardial dysfunction, the ischaemic/reperfusion response, and the underlying pathology that caused the arrest. The ABCDE approach is used for clinical assessment and general management. Intubation may be necessary if the airway cannot be maintained by simple measures or if it is immediately threatened. Controlled ventilation is aimed at maintaining oxygen saturation levels between 94-98% and normocarbia. Fluid status may be difficult to judge, but a target mean arterial pressure (MAP) between 65 and 100 mmHg is recommended. Inotropes may be administered to maintain blood pressure. Sedation should be adequate to gain control of ventilation, and short-acting sedating agents like propofol are preferred. Blood glucose levels should be maintained below 8 mmol/l. Pyrexia should be avoided, and there is some evidence for controlled mild hypothermia but no consensus on this.

      Post ROSC investigations may include a chest X-ray, ECG monitoring, serial potassium and lactate measurements, and other imaging modalities like ultrasonography, echocardiography, CTPA, and CT head, depending on availability and skills in the local department. Treatment should be directed towards the underlying cause, and PCI or thrombolysis may be considered for acute coronary syndrome or suspected pulmonary embolism, respectively.

      Patients who are comatose after ROSC without significant pre-arrest comorbidities should be transferred to the ICU for supportive care. Neurological outcome at 72 hours is the best prognostic indicator of outcome.

    • This question is part of the following fields:

      • Cardiology
      69.3
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  • Question 28 - A 45-year-old man presents with palpitations and is found to have atrial fibrillation....

    Correct

    • A 45-year-old man presents with palpitations and is found to have atrial fibrillation. You are requested to evaluate his ECG.
      Which of the following statements is correct regarding the ECG findings in atrial fibrillation?

      Your Answer: Some impulses are filtered out by the AV node

      Explanation:

      The classic ECG features of atrial fibrillation include an irregularly irregular rhythm, the absence of p-waves, an irregular ventricular rate, and the presence of fibrillation waves. This irregular rhythm occurs because the atrial impulses are filtered out by the AV node.

      In addition, Ashman beats may be observed in atrial fibrillation. These beats are characterized by wide complex QRS complexes, often with a morphology resembling right bundle branch block. They occur after a short R-R interval that is preceded by a prolonged R-R interval. Fortunately, Ashman beats are generally considered harmless.

      The disorganized electrical activity in atrial fibrillation typically originates at the root of the pulmonary veins.

    • This question is part of the following fields:

      • Cardiology
      199
      Seconds
  • Question 29 - You are asked to assess a 68-year-old male in the resuscitation room due...

    Correct

    • You are asked to assess a 68-year-old male in the resuscitation room due to bradycardia. The patient complained of increased shortness of breath, dizziness, and chest discomfort. The recorded vital signs are as follows:

      Parameter Result
      Blood pressure 80/52 mmHg
      Pulse rate 40 bpm
      Respiration rate 18 rpm
      SpO2 98% on 12 liters Oxygen

      You are concerned about the possibility of this patient progressing to asystole. Which of the following indicators would suggest that this patient is at a high risk of developing asystole?

      Your Answer: Ventricular pause of 3.5 seconds

      Explanation:

      Patients who have bradycardia and show ventricular pauses longer than 3 seconds on an electrocardiogram (ECG) are at a high risk of developing asystole. The following characteristics are indicators of a high risk for asystole: recent episodes of asystole, Mobitz II AV block, third-degree AV block (also known as complete heart block) with a broad QRS complex, and ventricular pauses longer than 3 seconds.

      Further Reading:

      Causes of Bradycardia:
      – Physiological: Athletes, sleeping
      – Cardiac conduction dysfunction: Atrioventricular block, sinus node disease
      – Vasovagal & autonomic mediated: Vasovagal episodes, carotid sinus hypersensitivity
      – Hypothermia
      – Metabolic & electrolyte disturbances: Hypothyroidism, hyperkalaemia, hypermagnesemia
      – Drugs: Beta-blockers, calcium channel blockers, digoxin, amiodarone
      – Head injury: Cushing’s response
      – Infections: Endocarditis
      – Other: Sarcoidosis, amyloidosis

      Presenting symptoms of Bradycardia:
      – Presyncope (dizziness, lightheadedness)
      – Syncope
      – Breathlessness
      – Weakness
      – Chest pain
      – Nausea

      Management of Bradycardia:
      – Assess and monitor for adverse features (shock, syncope, myocardial ischaemia, heart failure)
      – Treat reversible causes of bradycardia
      – Pharmacological treatment: Atropine is first-line, adrenaline and isoprenaline are second-line
      – Transcutaneous pacing if atropine is ineffective
      – Other drugs that may be used: Aminophylline, dopamine, glucagon, glycopyrrolate

      Bradycardia Algorithm:
      – Follow the algorithm for management of bradycardia, which includes assessing and monitoring for adverse features, treating reversible causes, and using appropriate medications or pacing as needed.
      https://acls-algorithms.com/wp-content/uploads/2020/12/Website-Bradycardia-Algorithm-Diagram.pdf

    • This question is part of the following fields:

      • Cardiology
      29
      Seconds
  • Question 30 - A 45-year-old male smoker comes in with a severe episode of chest pain...

    Correct

    • A 45-year-old male smoker comes in with a severe episode of chest pain that spreads to his left arm and jaw. The pain lasted for about half an hour before being relieved by GTN spray and aspirin. A troponin test is done 12 hours later, which comes back positive. His ECG at the time of presentation reveals widespread ST depression.

      What is the MOST LIKELY diagnosis in this case?

      Your Answer: Non-ST-elevation myocardial infarction

      Explanation:

      This patient has developed a non-ST elevation myocardial infarction (NSTEMI). The electrocardiogram (ECG) reveals widespread ST depression, indicating widespread subendocardial ischemia. Additionally, the troponin test results are positive, indicating myocyte necrosis.

      The acute coronary syndromes consist of unstable angina, non-ST elevation myocardial infarction (NSTEMI), and ST-elevation myocardial infarction (STEMI).

      Unstable angina is characterized by one or more of the following: angina of effort occurring over a few days with increasing frequency, angina episodes occurring recurrently and predictably without specific provocation, or an unprovoked and prolonged episode of cardiac chest pain. The ECG may show T-wave/ST-segment changes, similar to this case. Cardiac enzymes are typically normal, and the troponin test is negative in unstable angina.

      Non-ST elevation myocardial infarction (NSTEMI) typically presents with sustained cardiac chest pain lasting more than 20 minutes. The ECG often shows abnormalities in T-waves or ST-segments. Cardiac enzymes are elevated, and the troponin test is positive.

      ST-elevation myocardial infarction (STEMI) usually presents with typical cardiac chest pain suggestive of an acute myocardial infarction. The ECG reveals ST-segment elevation and the development of Q waves. Cardiac enzymes are elevated, and the troponin test is positive.

    • This question is part of the following fields:

      • Cardiology
      80.7
      Seconds
  • Question 31 - A 32-year-old woman comes to the Emergency Department complaining of dizziness and palpitations....

    Correct

    • A 32-year-old woman comes to the Emergency Department complaining of dizziness and palpitations. She informs you that she was recently diagnosed with type B Wolff-Parkinson-White syndrome. You conduct an ECG.
      Which of the following ECG characteristics is NOT observed in type B Wolff-Parkinson-White (WPW) syndrome?

      Your Answer: Dominant R wave in V1

      Explanation:

      Wolff-Parkinson-White (WPW) syndrome is a condition that affects the electrical system of the heart. It occurs when there is an abnormal pathway, known as the bundle of Kent, between the atria and the ventricles. This pathway can cause premature contractions of the ventricles, leading to a type of rapid heartbeat called atrioventricular re-entrant tachycardia (AVRT).

      In a normal heart rhythm, the electrical signals travel through the bundle of Kent and stimulate the ventricles. However, in WPW syndrome, these signals can cause the ventricles to contract prematurely. This can be seen on an electrocardiogram (ECG) as a shortened PR interval, a slurring of the initial rise in the QRS complex (known as a delta wave), and a widening of the QRS complex.

      There are two distinct types of WPW syndrome that can be identified on an ECG. Type A is characterized by predominantly positive delta waves and QRS complexes in the praecordial leads, with a dominant R wave in V1. This can sometimes be mistaken for right bundle branch block (RBBB). Type B, on the other hand, shows predominantly negative delta waves and QRS complexes in leads V1 and V2, and positive in the other praecordial leads, resembling left bundle branch block (LBBB).

      Overall, WPW syndrome is a condition that affects the electrical conduction system of the heart, leading to abnormal heart rhythms. It can be identified on an ECG by specific features such as shortened PR interval, delta waves, and widened QRS complex.

    • This question is part of the following fields:

      • Cardiology
      65.4
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  • Question 32 - A 68 year old man is brought to the emergency department due to...

    Correct

    • A 68 year old man is brought to the emergency department due to sudden difficulty breathing. Bedside echocardiography reveals significant mitral regurgitation. What is a common clinical characteristic of mitral regurgitation?

      Your Answer: A 3rd heart sound

      Explanation:

      Mitral regurgitation is characterized by several clinical features. One of the main signs is a pansystolic murmur that can be heard throughout the entire systolic phase of the cardiac cycle. This murmur often radiates to the left axilla. Another notable feature is a soft S1 heart sound, which is the first heart sound heard during the cardiac cycle. Additionally, a 3rd heart sound, also known as an added sound, can be detected in patients with mitral regurgitation. As the condition progresses to moderate to severe levels, signs such as a laterally displaced apex beat with a heave may become apparent.

      Further Reading:

      Mitral Stenosis:
      – Causes: Rheumatic fever, Mucopolysaccharidoses, Carcinoid, Endocardial fibroelastosis
      – Features: Mid-late diastolic murmur, loud S1, opening snap, low volume pulse, malar flush, atrial fibrillation, signs of pulmonary edema, tapping apex beat
      – Features of severe mitral stenosis: Length of murmur increases, opening snap becomes closer to S2
      – Investigation findings: CXR may show left atrial enlargement, echocardiography may show reduced cross-sectional area of the mitral valve

      Mitral Regurgitation:
      – Causes: Mitral valve prolapse, Myxomatous degeneration, Ischemic heart disease, Rheumatic fever, Connective tissue disorders, Endocarditis, Dilated cardiomyopathy
      – Features: pansystolic murmur radiating to left axilla, soft S1, S3, laterally displaced apex beat with heave
      – Signs of acute MR: Decompensated congestive heart failure symptoms
      – Signs of chronic MR: Leg edema, fatigue, arrhythmia (atrial fibrillation)
      – Investigation findings: Doppler echocardiography to detect regurgitant flow and pulmonary hypertension, ECG may show signs of LA enlargement and LV hypertrophy, CXR may show LA and LV enlargement in chronic MR and pulmonary edema in acute MR.

    • This question is part of the following fields:

      • Cardiology
      49.3
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  • Question 33 - You are called to cardiac arrest in the resus area of your Emergency...

    Correct

    • You are called to cardiac arrest in the resus area of your Emergency Department. As part of your management, a dose of amiodarone is administered.
      Amiodarone should be administered at which of the following points during a pediatric VF arrest?

      Your Answer: After the 3rd shock

      Explanation:

      Amiodarone is recommended to be administered after the third shock in a shockable cardiac arrest (Vf/pVT) while performing chest compressions. The prescribed dose is 300 mg, which should be given as an intravenous bolus. To ensure proper administration, the medication should be diluted in 20 mL of 5% dextrose solution.

      In cases where VF/pVT continues after five defibrillation attempts, an additional dose of 150 mg of Amiodarone should be administered. It is important to note that Amiodarone is not suitable for treating PEA or asystole, and its use is specifically indicated for shockable cardiac arrest situations.

    • This question is part of the following fields:

      • Cardiology
      13.8
      Seconds
  • Question 34 - A 42 year old male comes to the emergency department with a sudden...

    Correct

    • A 42 year old male comes to the emergency department with a sudden onset of 'tearing' pain in the middle of his chest that extends to the center of his back. The patient is tall and has a slender physique. Additionally, you observe that the patient has elongated arms and fingers. During the chest examination, you notice a prominent protrusion of the sternum (pectus carinatum). What is the probable underlying cause of this patient's chest pain?

      Your Answer: Aortic dissection

      Explanation:

      Marfan’s syndrome is a condition that greatly increases the risk of aortic dissection. This patient exhibits several characteristics commonly seen in individuals with Marfan syndrome, such as tall stature, low BMI, and pectoral abnormalities like pectus carinatum and excavatum. Additionally, their long limbs and fingers are also indicative of Marfan’s syndrome. It is important to note that aortic dissection tends to occur at a much younger age in individuals with Marfan syndrome compared to those without connective tissue diseases. The median age for type A dissection in Marfan’s patients is 36.7 years, while for type B dissection it is 40 years. In contrast, individuals without Marfan’s syndrome typically experience dissection at the ages of 63 and 62 years for type A and type B dissections, respectively.

      Further Reading:

      Aortic dissection is a life-threatening condition in which blood flows through a tear in the innermost layer of the aorta, creating a false lumen. Prompt treatment is necessary as the mortality rate increases by 1-2% per hour. There are different classifications of aortic dissection, with the majority of cases being proximal. Risk factors for aortic dissection include hypertension, atherosclerosis, connective tissue disorders, family history, and certain medical procedures.

      The presentation of aortic dissection typically includes sudden onset sharp chest pain, often described as tearing or ripping. Back pain and abdominal pain are also common, and the pain may radiate to the neck and arms. The clinical picture can vary depending on which aortic branches are affected, and complications such as organ ischemia, limb ischemia, stroke, myocardial infarction, and cardiac tamponade may occur. Common signs and symptoms include a blood pressure differential between limbs, pulse deficit, and a diastolic murmur.

      Various investigations can be done to diagnose aortic dissection, including ECG, CXR, and CT with arterial contrast enhancement (CTA). CT is the investigation of choice due to its accuracy in diagnosis and classification. Other imaging techniques such as transoesophageal echocardiography (TOE), magnetic resonance imaging/angiography (MRI/MRA), and digital subtraction angiography (DSA) are less commonly used.

      Management of aortic dissection involves pain relief, resuscitation measures, blood pressure control, and referral to a vascular or cardiothoracic team. Opioid analgesia should be given for pain relief, and resuscitation measures such as high flow oxygen and large bore IV access should be performed. Blood pressure control is crucial, and medications such as labetalol may be used to reduce systolic blood pressure. Hypotension carries a poor prognosis and may require careful fluid resuscitation. Treatment options depend on the type of dissection, with type A dissections typically requiring urgent surgery and type B dissections managed by thoracic endovascular aortic repair (TEVAR) and blood pressure control optimization.

    • This question is part of the following fields:

      • Cardiology
      15
      Seconds
  • Question 35 - A 72 year old male comes to the emergency department complaining of sudden...

    Correct

    • A 72 year old male comes to the emergency department complaining of sudden difficulty breathing, heart palpitations, and a cough that produces pink frothy sputum. During the examination, you observe an irregular heart rhythm, crackling sounds in the lower parts of the lungs, a loud first heart sound, and a mid-late diastolic murmur. What is the probable diagnosis?

      Your Answer: Mitral stenosis

      Explanation:

      Mitral stenosis is a condition characterized by a narrowing of the mitral valve, which can lead to various symptoms. One common symptom is a mid-late diastolic murmur, which can be heard during a physical examination. This murmur may also be described as mid-diastolic, late-diastolic, or mid-late diastolic. Additionally, patients with chronic mitral stenosis may not experience any symptoms, and the murmur may only be detected incidentally.

      A significant risk associated with mitral stenosis is the development of atrial fibrillation (AF). When AF occurs in patients with mitral stenosis, it can trigger acute pulmonary edema. This happens because the left atrium, which is responsible for pumping blood across the narrowed mitral valve into the left ventricle, needs to generate higher pressure. However, when AF occurs, the atrial contraction becomes inefficient, leading to impaired emptying of the left atrium. This, in turn, causes increased back pressure in the pulmonary circulation.

      The elevated pressure in the left atrium and pulmonary circulation can result in the rupture of bronchial veins, leading to the production of pink frothy sputum. This symptom is often observed in patients with mitral stenosis who develop acute pulmonary edema.

      Further Reading:

      Mitral Stenosis:
      – Causes: Rheumatic fever, Mucopolysaccharidoses, Carcinoid, Endocardial fibroelastosis
      – Features: Mid-late diastolic murmur, loud S1, opening snap, low volume pulse, malar flush, atrial fibrillation, signs of pulmonary edema, tapping apex beat
      – Features of severe mitral stenosis: Length of murmur increases, opening snap becomes closer to S2
      – Investigation findings: CXR may show left atrial enlargement, echocardiography may show reduced cross-sectional area of the mitral valve

      Mitral Regurgitation:
      – Causes: Mitral valve prolapse, Myxomatous degeneration, Ischemic heart disease, Rheumatic fever, Connective tissue disorders, Endocarditis, Dilated cardiomyopathy
      – Features: pansystolic murmur radiating to left axilla, soft S1, S3, laterally displaced apex beat with heave
      – Signs of acute MR: Decompensated congestive heart failure symptoms
      – Signs of chronic MR: Leg edema, fatigue, arrhythmia (atrial fibrillation)
      – Investigation findings: Doppler echocardiography to detect regurgitant flow and pulmonary hypertension, ECG may show signs of LA enlargement and LV hypertrophy, CXR may show LA and LV enlargement in chronic MR and pulmonary edema in acute MR.

    • This question is part of the following fields:

      • Cardiology
      21.1
      Seconds
  • Question 36 - A 70-year-old diabetic smoker presents with central chest pain that radiates to his...

    Correct

    • A 70-year-old diabetic smoker presents with central chest pain that radiates to his left shoulder and jaw. He is given 300 mg aspirin and morphine, and his pain subsides. The pain lasted approximately 90 minutes in total. His ECG shows normal sinus rhythm. He is referred to the on-call medical team for admission, and a troponin test is scheduled at the appropriate time. His blood tests today reveal a creatinine level of 298 micromoles per litre.
      Which of the following medications should you also consider administering to this patient?

      Your Answer: Unfractionated heparin

      Explanation:

      This patient’s medical history suggests a diagnosis of acute coronary syndrome. It is important to provide pain relief as soon as possible. This can be achieved by administering GTN (sublingual or buccal), but if there is suspicion of an acute myocardial infarction (MI), intravenous opioids such as morphine should be offered.

      Aspirin should be given to all patients with unstable angina or NSTEMI as soon as possible and should be continued indefinitely, unless there are contraindications such as a high risk of bleeding or aspirin hypersensitivity. A single loading dose of 300 mg should be given immediately after presentation.

      For patients without a high risk of bleeding and no planned coronary angiography within 24 hours of admission, fondaparinux should be administered. However, if coronary angiography is planned within 24 hours, unfractionated heparin can be offered as an alternative to fondaparinux. For patients with significant renal impairment (creatinine above 265 micromoles per litre), unfractionated heparin should be considered, with dose adjustment based on clotting function monitoring.

      Routine administration of oxygen is no longer recommended, but oxygen saturation should be monitored using pulse oximetry as soon as possible, preferably before hospital admission. Supplemental oxygen should only be given to individuals with an oxygen saturation (SpO2) below 94% who are not at risk of hypercapnic respiratory failure, aiming for an SpO2 of 94-98%. For individuals with chronic obstructive pulmonary disease at risk of hypercapnic respiratory failure, a target SpO2 of 88-92% should be achieved until blood gas analysis is available.

      Bivalirudin, a specific and reversible direct thrombin inhibitor (DTI), is recommended by NICE as a potential treatment for adults with STEMI undergoing percutaneous coronary intervention.

      For more information, refer to the NICE guidelines on the assessment and diagnosis of chest pain of recent onset.

    • This question is part of the following fields:

      • Cardiology
      53.4
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  • Question 37 - You are called to a VF cardiac arrest in the resus area of...

    Incorrect

    • You are called to a VF cardiac arrest in the resus area of your Pediatric Emergency Department.
      Epinephrine should be administered at which of the following points during a pediatric VF arrest?

      Your Answer: After the 3rd shock before chest compressions have been resumed

      Correct Answer: After the 3rd shock once chest compressions have been resumed

      Explanation:

      Adrenaline is recommended to be administered after the third shock in a shockable cardiac arrest (Vf/pVT) once chest compressions have been resumed. The recommended dose is 1 mg, which can be administered as either 10 mL of a 1:10,000 solution or 1 mL of a 1:1000 solution.

      Subsequently, adrenaline should be given every 3-5 minutes, alternating with chest compressions. It is important to administer adrenaline without interrupting chest compressions to ensure continuous circulation and maximize the chances of successful resuscitation.

    • This question is part of the following fields:

      • Cardiology
      27.9
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  • Question 38 - A 58 year old female presents to the emergency department 2 hours after...

    Correct

    • A 58 year old female presents to the emergency department 2 hours after developing severe tearing chest pain that radiates to the back. The patient rates the severity as 10/10 on the visual analogue scale. You note the patient is prescribed medication for hypertension but the patient admits she rarely takes her tablets. The patient's observations are shown below:

      Blood pressure 180/88 mmHg
      Pulse rate 92 bpm
      Respiration rate 22 rpm
      Oxygen sats 97% on air
      Temperature 37.2ºC

      Chest X-ray shows a widened mediastinum. You prescribe antihypertensive therapy. What is the target systolic blood pressure in this patient?

      Your Answer: 100-120 mmHg

      Explanation:

      To manage aortic dissection, it is important to lower the systolic blood pressure to a range of 100-120 mmHg. This helps decrease the strain on the damaged artery and minimizes the chances of the dissection spreading further. In this patient, symptoms such as tearing chest pain and a widened mediastinum on the chest X-ray are consistent with aortic dissection.

      Further Reading:

      Aortic dissection is a life-threatening condition in which blood flows through a tear in the innermost layer of the aorta, creating a false lumen. Prompt treatment is necessary as the mortality rate increases by 1-2% per hour. There are different classifications of aortic dissection, with the majority of cases being proximal. Risk factors for aortic dissection include hypertension, atherosclerosis, connective tissue disorders, family history, and certain medical procedures.

      The presentation of aortic dissection typically includes sudden onset sharp chest pain, often described as tearing or ripping. Back pain and abdominal pain are also common, and the pain may radiate to the neck and arms. The clinical picture can vary depending on which aortic branches are affected, and complications such as organ ischemia, limb ischemia, stroke, myocardial infarction, and cardiac tamponade may occur. Common signs and symptoms include a blood pressure differential between limbs, pulse deficit, and a diastolic murmur.

      Various investigations can be done to diagnose aortic dissection, including ECG, CXR, and CT with arterial contrast enhancement (CTA). CT is the investigation of choice due to its accuracy in diagnosis and classification. Other imaging techniques such as transoesophageal echocardiography (TOE), magnetic resonance imaging/angiography (MRI/MRA), and digital subtraction angiography (DSA) are less commonly used.

      Management of aortic dissection involves pain relief, resuscitation measures, blood pressure control, and referral to a vascular or cardiothoracic team. Opioid analgesia should be given for pain relief, and resuscitation measures such as high flow oxygen and large bore IV access should be performed. Blood pressure control is crucial, and medications such as labetalol may be used to reduce systolic blood pressure. Hypotension carries a poor prognosis and may require careful fluid resuscitation. Treatment options depend on the type of dissection, with type A dissections typically requiring urgent surgery and type B dissections managed by thoracic endovascular aortic repair (TEVAR) and blood pressure control optimization.

    • This question is part of the following fields:

      • Cardiology
      17.6
      Seconds
  • Question 39 - A 35-year-old female smoker presents with an episode of acute right-sided chest pain....

    Correct

    • A 35-year-old female smoker presents with an episode of acute right-sided chest pain. She describes the pain as being ‘extremely severe’, and it is aggravated by movement and coughing. The pain radiates to her neck and shoulder on the affected side. Her vital signs are within normal limits, and her oxygen saturation is 98% on room air. On examination, she exhibits localized tenderness around the 4th rib on the right-hand side. Her lung fields are clear, and her heart sounds are normal.
      What is the SINGLE most likely diagnosis?

      Your Answer: Tietze’s syndrome

      Explanation:

      Tietze’s syndrome is an uncommon condition that leads to localized pain and tenderness in one or more of the upper four ribs, with the second and third ribs being the most commonly affected. The exact cause of this syndrome is still unknown, although it has been suggested that it may be linked to repeated small injuries to the chest wall.

      The pain experienced in Tietze’s syndrome is typically aggravated by movement, sneezing, and coughing, and it can also extend to the neck or shoulder on the affected side. In some cases, a firm swelling can be felt over the cartilage of the affected rib. While the pain usually diminishes after a few weeks or months, the swelling may persist.

      Treatment for Tietze’s syndrome involves the use of pain-relieving medications, such as NSAIDs. In more severe or persistent cases, local steroid injections may be beneficial.

    • This question is part of the following fields:

      • Cardiology
      27
      Seconds
  • Question 40 - A 68 year old male presents to the emergency department with central heavy...

    Correct

    • A 68 year old male presents to the emergency department with central heavy chest pain that began 10 hours ago while the patient was sitting down watching television. The patient has previously refused treatment for high cholesterol and stage 1 hypertension. Physical examination reveals a mildly elevated blood pressure of 156/94 mmHg, but is otherwise unremarkable. The ECG shows ST depression and T wave inversion in leads V1-V3. Initial troponin results are negative, and a second high sensitivity troponin assay performed 3 hours later also returns negative. What is the most likely diagnosis?

      Your Answer: Unstable angina

      Explanation:

      Distinguishing between unstable angina and other acute coronary syndromes can be done by looking at normal troponin results. If serial troponin tests come back negative, it can rule out a diagnosis of myocardial infarction. Unstable angina is characterized by myocardial ischemia occurring at rest or with minimal exertion, without any acute damage or death of heart muscle cells. The patient in question shows ECG and biochemical features that align with this definition. Vincent’s angina, on the other hand, refers to an infection in the throat accompanied by ulcerative gingivitis.

      Further Reading:

      Acute Coronary Syndromes (ACS) is a term used to describe a group of conditions that involve the sudden reduction or blockage of blood flow to the heart. This can lead to a heart attack or unstable angina. ACS includes ST segment elevation myocardial infarction (STEMI), non-ST segment elevation myocardial infarction (NSTEMI), and unstable angina (UA).

      The development of ACS is usually seen in patients who already have underlying coronary heart disease. This disease is characterized by the buildup of fatty plaques in the walls of the coronary arteries, which can gradually narrow the arteries and reduce blood flow to the heart. This can cause chest pain, known as angina, during physical exertion. In some cases, the fatty plaques can rupture, leading to a complete blockage of the artery and a heart attack.

      There are both non modifiable and modifiable risk factors for ACS. non modifiable risk factors include increasing age, male gender, and family history. Modifiable risk factors include smoking, diabetes mellitus, hypertension, hypercholesterolemia, and obesity.

      The symptoms of ACS typically include chest pain, which is often described as a heavy or constricting sensation in the central or left side of the chest. The pain may also radiate to the jaw or left arm. Other symptoms can include shortness of breath, sweating, and nausea/vomiting. However, it’s important to note that some patients, especially diabetics or the elderly, may not experience chest pain.

      The diagnosis of ACS is typically made based on the patient’s history, electrocardiogram (ECG), and blood tests for cardiac enzymes, specifically troponin. The ECG can show changes consistent with a heart attack, such as ST segment elevation or depression, T wave inversion, or the presence of a new left bundle branch block. Elevated troponin levels confirm the diagnosis of a heart attack.

      The management of ACS depends on the specific condition and the patient’s risk factors. For STEMI, immediate coronary reperfusion therapy, either through primary percutaneous coronary intervention (PCI) or fibrinolysis, is recommended. In addition to aspirin, a second antiplatelet agent is usually given. For NSTEMI or unstable angina, the treatment approach may involve reperfusion therapy or medical management, depending on the patient’s risk of future cardiovascular events.

    • This question is part of the following fields:

      • Cardiology
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  • Question 41 - While examining a 68-year-old man, you detect an ejection systolic murmur. The murmur...

    Incorrect

    • While examining a 68-year-old man, you detect an ejection systolic murmur. The murmur does not radiate, and his pulse character is normal.
      What is the SINGLE most likely diagnosis?

      Your Answer: Physiological murmur

      Correct Answer: Aortic sclerosis

      Explanation:

      Aortic sclerosis is a condition that occurs when the aortic valve undergoes senile degeneration. Unlike aortic stenosis, it does not result in any obstruction of the left ventricular outflow tract. To differentiate between aortic stenosis and aortic sclerosis, the following can be used:

      Feature: Aortic stenosis
      – Symptoms: Can be asymptomatic, but may cause angina, breathlessness, and syncope if severe.
      – Pulse: Slow rising, low volume pulse.
      – Apex beat: Sustained, heaving apex beat.
      – Thrill: Palpable thrill in the aortic area can be felt.
      – Murmur: Ejection systolic murmur loudest in the aortic area.
      – Radiation: Radiates to carotids.

      Feature: Aortic sclerosis
      – Symptoms: Always asymptomatic.
      – Pulse: Normal pulse character.
      – Apex beat: Normal apex beat.
      – Thrill: No thrill.
      – Murmur: Ejection systolic murmur loudest in the aortic area.
      – Radiation: No radiation.

    • This question is part of the following fields:

      • Cardiology
      82
      Seconds
  • Question 42 - A 42-year-old woman comes in with retrosternal central chest discomfort that has been...

    Correct

    • A 42-year-old woman comes in with retrosternal central chest discomfort that has been ongoing for the past 48 hours. The discomfort intensifies with deep breaths and when lying flat, but eases when she sits upright. Additionally, the discomfort radiates to both of her shoulders. Her ECG reveals widespread concave ST elevation and PR depression. You strongly suspect a diagnosis of pericarditis.
      Which nerve is accountable for the pattern of her discomfort?

      Your Answer: Phrenic nerve

      Explanation:

      Pericarditis refers to the inflammation of the pericardium, which can be caused by various factors such as infections (typically viral, like coxsackie virus), drug-induced reactions (e.g. isoniazid, cyclosporine), trauma, autoimmune conditions (e.g. SLE), paraneoplastic syndromes, uraemia, post myocardial infarction (known as Dressler’s syndrome), post radiotherapy, and post cardiac surgery.

      The clinical presentation of pericarditis often includes retrosternal chest pain that is pleuritic in nature. This pain is typically relieved by sitting forwards and worsened when lying flat. It may also radiate to the shoulders. Other symptoms may include shortness of breath, tachycardia, and the presence of a pericardial friction rub.

      The pericardium receives sensory supply from the phrenic nerve, which also provides sensory innervation to the diaphragm, various mediastinal structures, and certain abdominal structures such as the superior peritoneum, liver, and gallbladder. Since the phrenic nerve originates from the 4th cervical nerve, which also provides cutaneous innervation to the front of the shoulder girdle, pain from pericarditis can also radiate to the shoulders.

    • This question is part of the following fields:

      • Cardiology
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  • Question 43 - You conduct a cardiovascular examination on a 62-year-old man who complains of shortness...

    Incorrect

    • You conduct a cardiovascular examination on a 62-year-old man who complains of shortness of breath. He informs you that he has a known heart valve issue. During auscultation, you observe reversed splitting of the second heart sound (S2).
      What is the most probable cause of this finding?

      Your Answer: Mitral regurgitation

      Correct Answer: Aortic stenosis

      Explanation:

      The second heart sound (S2) is created by vibrations produced when the aortic and pulmonary valves close. It marks the end of systole. It is normal to hear a split in the sound during inspiration.

      A loud S2 can be associated with certain conditions such as systemic hypertension (resulting in a loud A2), pulmonary hypertension (resulting in a loud P2), hyperdynamic states (like tachycardia, fever, or thyrotoxicosis), and atrial septal defect (which causes a loud P2).

      On the other hand, a soft S2 can be linked to decreased aortic diastolic pressure (as seen in aortic regurgitation), poorly mobile cusps (such as calcification of the aortic valve), aortic root dilatation, and pulmonary stenosis (which causes a soft P2).

      A widely split S2 can occur during deep inspiration, right bundle branch block, prolonged right ventricular systole (seen in conditions like pulmonary stenosis or pulmonary embolism), and severe mitral regurgitation. However, in the case of atrial septal defect, the splitting is fixed and does not vary with respiration.

      Reversed splitting of S2, where P2 occurs before A2 (paradoxical splitting), can occur during deep expiration, left bundle branch block, prolonged left ventricular systole (as seen in hypertrophic cardiomyopathy), severe aortic stenosis, and right ventricular pacing.

    • This question is part of the following fields:

      • Cardiology
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  • Question 44 - A 32-year-old woman is brought to the Emergency Department by ambulance due to...

    Incorrect

    • A 32-year-old woman is brought to the Emergency Department by ambulance due to 'severe palpitations.' Her heart rate is 180 bpm, and her rhythm strip is suggestive of supraventricular tachycardia. You plan to administer adenosine.
      Which of the following is NOT a contraindication to the use of adenosine?

      Your Answer: Long QT syndrome

      Correct Answer: History of heart transplant

      Explanation:

      Adenosine is a type of purine nucleoside that is primarily utilized in the diagnosis and treatment of paroxysmal supraventricular tachycardia. Its main mechanism of action involves stimulating A1-adenosine receptors and opening acetylcholine-sensitive potassium channels. This leads to hyperpolarization of the cell membrane in the atrioventricular (AV) node and slows down conduction in the AV node by inhibiting calcium channels.

      When administering adenosine, it is given rapidly through an intravenous bolus, followed by a saline flush. The initial dose for adults is 6 mg, and if necessary, additional doses of 12 mg or 18 mg can be given at 1-2 minute intervals until the desired effect is observed. It is important to note that the latest ALS guidelines recommend 18 mg for the third dose, while the BNF/NICE guidelines suggest 12 mg.

      One of the advantages of adenosine is its very short half-life, which is less than 10 seconds. This means that its effects are rapid, typically occurring within 10 seconds. However, the duration of action is also short, lasting only 10-20 seconds. Due to its short half-life, any side effects experienced are usually brief. These side effects may include a sense of impending doom, facial flushing, dyspnea, chest discomfort, and a metallic taste.

      There are certain contraindications to the use of adenosine. These include 2nd or 3rd degree AV block, sick sinus syndrome, long QT syndrome, severe hypotension, decompensated heart failure, chronic obstructive lung disease, and asthma. It is important to exercise caution when administering adenosine to patients with a heart transplant, as they are particularly sensitive to its effects. In these cases, a reduced initial dose of 3 mg is recommended, followed by 6 mg and then 12 mg.

      It is worth noting that the effects of adenosine can be potentiated by dipyridamole, a medication commonly used in combination with adenosine. Therefore, the dose of adenosine should be adjusted and reduced in patients who are also taking dipyridamole.

    • This question is part of the following fields:

      • Cardiology
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  • Question 45 - A 32-year-old woman comes to the Emergency Department complaining of dizziness and palpitations....

    Correct

    • A 32-year-old woman comes to the Emergency Department complaining of dizziness and palpitations. She informs you that she was recently diagnosed with type A Wolff-Parkinson-White syndrome. You proceed to perform an ECG.
      Which of the following ECG characteristics is NOT observed in type A Wolff-Parkinson-White (WPW) syndrome?

      Your Answer: Predominantly negative QRS complexes in leads V1 and V2

      Explanation:

      Wolff-Parkinson-White (WPW) syndrome is a condition that affects the electrical system of the heart. It occurs when there is an abnormal pathway, known as the bundle of Kent, between the atria and the ventricles. This pathway can cause premature contractions of the ventricles, leading to a type of rapid heartbeat called atrioventricular re-entrant tachycardia (AVRT).

      In a normal heart rhythm, the electrical signals travel through the bundle of Kent and stimulate the ventricles. However, in WPW syndrome, these signals can cause the ventricles to contract prematurely. This can be seen on an electrocardiogram (ECG) as a shortened PR interval, a slurring of the initial rise in the QRS complex (known as a delta wave), and a widening of the QRS complex.

      There are two distinct types of WPW syndrome that can be identified on an ECG. Type A is characterized by predominantly positive delta waves and QRS complexes in the praecordial leads, with a dominant R wave in V1. This can sometimes be mistaken for right bundle branch block (RBBB). Type B, on the other hand, shows predominantly negative delta waves and QRS complexes in leads V1 and V2, and positive in the other praecordial leads, resembling left bundle branch block (LBBB).

      Overall, WPW syndrome is a condition that affects the electrical conduction system of the heart, leading to abnormal heart rhythms. It can be identified on an ECG by specific features such as shortened PR interval, delta waves, and widened QRS complex.

    • This question is part of the following fields:

      • Cardiology
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  • Question 46 - You conduct a cardiovascular examination on a 72-year-old man who complains of difficulty...

    Correct

    • You conduct a cardiovascular examination on a 72-year-old man who complains of difficulty breathing. He informs you that he has a known heart valve issue. During the examination, you observe a pronounced first heart sound (S1).
      What is the most probable cause of this finding?

      Your Answer: Mitral stenosis

      Explanation:

      The first heart sound (S1) is created by vibrations produced when the mitral and tricuspid valves close. It occurs at the end of diastole and the start of ventricular systole, coming before the upstroke of the carotid pulsation.

      A sample of the normal heart sounds can be listened to here (courtesy of Littman stethoscopes).

      A loud S1 can be associated with the following conditions:
      – Increased transvalvular gradient (e.g. mitral stenosis, tricuspid stenosis)
      – Increased force of ventricular contraction (e.g. tachycardia, hyperdynamic states like fever and thyrotoxicosis)
      – Shortened PR interval (e.g. Wolff-Parkinson-White syndrome)
      – Mitral valve prolapse
      – Thin individuals

      A soft S1 can be associated with the following conditions:
      – Inappropriate apposition of the AV valves (e.g. mitral regurgitation, tricuspid regurgitation)
      – Prolonged PR interval (e.g. heart block, digoxin toxicity)
      – Decreased force of ventricular contraction (e.g. myocarditis, myocardial infarction)
      – Increased distance from the heart (e.g. obesity, emphysema, pericardial effusion)

      A split S1 can be associated with the following conditions:
      – Right bundle branch block
      – LV pacing
      – Ebstein anomaly

    • This question is part of the following fields:

      • Cardiology
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  • Question 47 - You are treating a 68 year old male who has been brought into...

    Correct

    • You are treating a 68 year old male who has been brought into the resuscitation bay by the ambulance crew. The patient was at home when he suddenly experienced dizziness and difficulty breathing. The ambulance crew presents the patient's ECG to you. You plan on administering atropine to address the patient's bradyarrhythmia.

      According to the resuscitation council, what is the maximum recommended total dose of atropine that should be administered?

      Your Answer: 3mg

      Explanation:

      When treating adults with bradycardia, a maximum of 6 doses of atropine 500 mcg can be administered. Each dose is given intravenously every 3-5 minutes. The total dose should not exceed 3mg.

      Further Reading:

      Causes of Bradycardia:
      – Physiological: Athletes, sleeping
      – Cardiac conduction dysfunction: Atrioventricular block, sinus node disease
      – Vasovagal & autonomic mediated: Vasovagal episodes, carotid sinus hypersensitivity
      – Hypothermia
      – Metabolic & electrolyte disturbances: Hypothyroidism, hyperkalaemia, hypermagnesemia
      – Drugs: Beta-blockers, calcium channel blockers, digoxin, amiodarone
      – Head injury: Cushing’s response
      – Infections: Endocarditis
      – Other: Sarcoidosis, amyloidosis

      Presenting symptoms of Bradycardia:
      – Presyncope (dizziness, lightheadedness)
      – Syncope
      – Breathlessness
      – Weakness
      – Chest pain
      – Nausea

      Management of Bradycardia:
      – Assess and monitor for adverse features (shock, syncope, myocardial ischaemia, heart failure)
      – Treat reversible causes of bradycardia
      – Pharmacological treatment: Atropine is first-line, adrenaline and isoprenaline are second-line
      – Transcutaneous pacing if atropine is ineffective
      – Other drugs that may be used: Aminophylline, dopamine, glucagon, glycopyrrolate

      Bradycardia Algorithm:
      – Follow the algorithm for management of bradycardia, which includes assessing and monitoring for adverse features, treating reversible causes, and using appropriate medications or pacing as needed.
      https://acls-algorithms.com/wp-content/uploads/2020/12/Website-Bradycardia-Algorithm-Diagram.pdf

    • This question is part of the following fields:

      • Cardiology
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  • Question 48 - You are summoned to a cardiac arrest in the resuscitation area of your...

    Incorrect

    • You are summoned to a cardiac arrest in the resuscitation area of your Emergency Department.
      Which ONE statement about the utilization of amiodarone in cardiac arrest is NOT true?

      Your Answer: It slows atrioventricular conduction

      Correct Answer: It should be administered as an infusion of 300 mg over 20-60 minutes

      Explanation:

      Amiodarone is a medication that is recommended to be administered after the third shock in a shockable cardiac arrest (Vf/pVT) while chest compressions are being performed. The prescribed dose is 300 mg, given as an intravenous bolus that is diluted in 5% dextrose to a volume of 20 mL. It is important to note that amiodarone is not suitable for treating PEA or asystole.

      In cases where VF/pVT persists after five defibrillation attempts, an additional dose of 150 mg of amiodarone should be given. However, if amiodarone is not available, lidocaine can be used as an alternative. The recommended dose of lidocaine is 1 mg/kg. It is crucial to avoid administering lidocaine if amiodarone has already been given.

      Amiodarone is classified as a membrane-stabilizing antiarrhythmic drug. It works by prolonging the duration of the action potential and the refractory period in both the atrial and ventricular myocardium. This medication also slows down atrioventricular conduction and has a similar effect on accessory pathways.

      Additionally, amiodarone has a mild negative inotropic action, meaning it weakens the force of heart contractions. It also causes peripheral vasodilation through non-competitive alpha-blocking effects.

      It is important to note that while there is no evidence of long-term benefits from using amiodarone, it may improve short-term survival rates, which justifies its continued use.

    • This question is part of the following fields:

      • Cardiology
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  • Question 49 - Your hospital’s oncology department is currently evaluating the utility of a triple marker...

    Incorrect

    • Your hospital’s oncology department is currently evaluating the utility of a triple marker test for use in risk stratification of patients with suspected breast cancer. The test will use estrogen receptor (ER), progesterone receptor (PR), and human epidermal growth factor receptor 2 (HER2).
      How long after tumor formation do ER levels start to increase?

      Your Answer: 12 hours

      Correct Answer: 1.5 hours

      Explanation:

      The timing of the initial rise, peak, and return to normality of various cardiac enzymes can serve as a helpful guide. Creatine kinase, the main cardiac isoenzyme, typically experiences an initial rise within 4-8 hours, reaches its peak at 18 hours, and returns to normal within 2-3 days. Myoglobin, which lacks specificity due to its association with skeletal muscle damage, shows an initial rise within 1-4 hours, peaks at 6-7 hours, and returns to normal within 24 hours. Troponin I, known for its sensitivity and specificity, exhibits an initial rise within 3-12 hours, reaches its peak at 24 hours, and returns to normal within 3-10 days. HFABP, or heart fatty acid binding protein, experiences an initial rise within 1.5 hours, peaks at 5-10 hours, and returns to normal within 24 hours. Lastly, LDH, predominantly found in cardiac muscle, shows an initial rise at 10 hours, peaks at 24-48 hours, and returns to normal within 14 days.

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      • Cardiology
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  • Question 50 - You are managing a 68-year-old woman who has been brought to the resuscitation...

    Correct

    • You are managing a 68-year-old woman who has been brought to the resuscitation bay by the ambulance team. The patient experienced sudden dizziness and difficulty breathing while at home. The ambulance crew presents the patient's ECG for your review. Your plan includes administering atropine to address the patient's arrhythmia. Which of the following conditions would contraindicate the use of atropine?

      Your Answer: Heart transplant

      Explanation:

      Atropine should not be given to patients with certain conditions, including heart transplant, angle-closure glaucoma, gastrointestinal motility disorders, myasthenia gravis, severe ulcerative colitis, toxic megacolon, bladder outflow obstruction, and urinary retention. In heart transplant patients, atropine will not have the desired effect as the denervated hearts do not respond to vagal blockade. Giving atropine in these patients may even lead to paradoxical sinus arrest or high-grade AV block.

      Further Reading:

      Causes of Bradycardia:
      – Physiological: Athletes, sleeping
      – Cardiac conduction dysfunction: Atrioventricular block, sinus node disease
      – Vasovagal & autonomic mediated: Vasovagal episodes, carotid sinus hypersensitivity
      – Hypothermia
      – Metabolic & electrolyte disturbances: Hypothyroidism, hyperkalaemia, hypermagnesemia
      – Drugs: Beta-blockers, calcium channel blockers, digoxin, amiodarone
      – Head injury: Cushing’s response
      – Infections: Endocarditis
      – Other: Sarcoidosis, amyloidosis

      Presenting symptoms of Bradycardia:
      – Presyncope (dizziness, lightheadedness)
      – Syncope
      – Breathlessness
      – Weakness
      – Chest pain
      – Nausea

      Management of Bradycardia:
      – Assess and monitor for adverse features (shock, syncope, myocardial ischaemia, heart failure)
      – Treat reversible causes of bradycardia
      – Pharmacological treatment: Atropine is first-line, adrenaline and isoprenaline are second-line
      – Transcutaneous pacing if atropine is ineffective
      – Other drugs that may be used: Aminophylline, dopamine, glucagon, glycopyrrolate

      Bradycardia Algorithm:
      – Follow the algorithm for management of bradycardia, which includes assessing and monitoring for adverse features, treating reversible causes, and using appropriate medications or pacing as needed.
      https://acls-algorithms.com/wp-content/uploads/2020/12/Website-Bradycardia-Algorithm-Diagram.pdf

    • This question is part of the following fields:

      • Cardiology
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  • Question 51 - You are treating a 68 year old male who has been brought into...

    Correct

    • You are treating a 68 year old male who has been brought into the resuscitation bay by the ambulance crew. The patient was at home when he suddenly experienced dizziness and difficulty breathing. The ambulance crew presents the patient's ECG to you. You are considering administering atropine to address the patient's bradyarrhythmia. Which of the following statements is accurate regarding the use of atropine?

      Your Answer: Up to 6 doses of 500 mcg can be given every 3-5 minutes

      Explanation:

      When treating adults with bradycardia, it is recommended to administer a maximum of 6 doses of atropine 500 mcg. These doses can be repeated every 3-5 minutes. The total cumulative dose of atropine should not exceed 3 mg in adults.

      Further Reading:

      Causes of Bradycardia:
      – Physiological: Athletes, sleeping
      – Cardiac conduction dysfunction: Atrioventricular block, sinus node disease
      – Vasovagal & autonomic mediated: Vasovagal episodes, carotid sinus hypersensitivity
      – Hypothermia
      – Metabolic & electrolyte disturbances: Hypothyroidism, hyperkalaemia, hypermagnesemia
      – Drugs: Beta-blockers, calcium channel blockers, digoxin, amiodarone
      – Head injury: Cushing’s response
      – Infections: Endocarditis
      – Other: Sarcoidosis, amyloidosis

      Presenting symptoms of Bradycardia:
      – Presyncope (dizziness, lightheadedness)
      – Syncope
      – Breathlessness
      – Weakness
      – Chest pain
      – Nausea

      Management of Bradycardia:
      – Assess and monitor for adverse features (shock, syncope, myocardial ischaemia, heart failure)
      – Treat reversible causes of bradycardia
      – Pharmacological treatment: Atropine is first-line, adrenaline and isoprenaline are second-line
      – Transcutaneous pacing if atropine is ineffective
      – Other drugs that may be used: Aminophylline, dopamine, glucagon, glycopyrrolate

      Bradycardia Algorithm:
      – Follow the algorithm for management of bradycardia, which includes assessing and monitoring for adverse features, treating reversible causes, and using appropriate medications or pacing as needed.
      https://acls-algorithms.com/wp-content/uploads/2020/12/Website-Bradycardia-Algorithm-Diagram.pdf

    • This question is part of the following fields:

      • Cardiology
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  • Question 52 - A 48 year old woman comes to the emergency department complaining of episodes...

    Correct

    • A 48 year old woman comes to the emergency department complaining of episodes of lightheadedness. She mentions that she is an avid jogger and noticed on her fitness tracker that her heart rate had dropped to 48 beats per minute. Which of the following characteristics would warrant drug intervention or transcutaneous pacing in a patient with bradycardia?

      Your Answer: Myocardial ischaemia

      Explanation:

      Indications for drug treatment or pacing in patients with bradycardia include shock, syncope, myocardial ischemia, heart failure, and the presence of risk factors for asystole. If any of these adverse features are present, it is important to consider drug treatment or pacing. However, even if none of these adverse features are present, patients may still require drug treatment or pacing if they have risk factors for developing asystole, such as recent asystole, Mobitz II AV block, complete heart block with broad QRS, or a ventricular pause longer than 3 seconds.

      Further Reading:

      Causes of Bradycardia:
      – Physiological: Athletes, sleeping
      – Cardiac conduction dysfunction: Atrioventricular block, sinus node disease
      – Vasovagal & autonomic mediated: Vasovagal episodes, carotid sinus hypersensitivity
      – Hypothermia
      – Metabolic & electrolyte disturbances: Hypothyroidism, hyperkalaemia, hypermagnesemia
      – Drugs: Beta-blockers, calcium channel blockers, digoxin, amiodarone
      – Head injury: Cushing’s response
      – Infections: Endocarditis
      – Other: Sarcoidosis, amyloidosis

      Presenting symptoms of Bradycardia:
      – Presyncope (dizziness, lightheadedness)
      – Syncope
      – Breathlessness
      – Weakness
      – Chest pain
      – Nausea

      Management of Bradycardia:
      – Assess and monitor for adverse features (shock, syncope, myocardial ischaemia, heart failure)
      – Treat reversible causes of bradycardia
      – Pharmacological treatment: Atropine is first-line, adrenaline and isoprenaline are second-line
      – Transcutaneous pacing if atropine is ineffective
      – Other drugs that may be used: Aminophylline, dopamine, glucagon, glycopyrrolate

      Bradycardia Algorithm:
      – Follow the algorithm for management of bradycardia, which includes assessing and monitoring for adverse features, treating reversible causes, and using appropriate medications or pacing as needed.
      https://acls-algorithms.com/wp-content/uploads/2020/12/Website-Bradycardia-Algorithm-Diagram.pdf

    • This question is part of the following fields:

      • Cardiology
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  • Question 53 - A 60 year old female presents to the emergency department complaining of increasing...

    Correct

    • A 60 year old female presents to the emergency department complaining of increasing shortness of breath. The patient reports feeling more fatigued and breathless with minimal exertion over the past few months, but in the past few days, she has been experiencing breathlessness even at rest. She informs you that she has been taking aspirin, ramipril, bisoprolol, and rosuvastatin for the past 5 years since she had a minor heart attack. Upon examination, you observe prominent neck veins, bilateral lung crepitations that are worse at the bases, faint heart sounds, and pitting edema below the knee. The patient's vital signs are as follows:

      Blood pressure: 130/84 mmHg
      Pulse rate: 90 bpm
      Respiration rate: 23 bpm
      Temperature: 37.0ºC
      Oxygen saturation: 93% on room air

      What would be the most appropriate initial treatment for this patient?

      Your Answer: Furosemide 40 mg IV

      Explanation:

      Given the patient’s symptoms and physical findings, the most appropriate initial treatment would be to administer Furosemide 40 mg intravenously. Furosemide is a loop diuretic that helps remove excess fluid from the body, which can alleviate symptoms of fluid overload such as shortness of breath and edema. By reducing fluid volume, Furosemide can help improve the patient’s breathing and relieve the strain on the heart.

      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.

      In summary, cardiac failure is a clinical syndrome resulting from abnormalities in cardiac function. It can have various causes and is characterized by specific signs and symptoms. Diagnosis involves specific tests, and management focuses on addressing

    • This question is part of the following fields:

      • Cardiology
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  • Question 54 - You evaluate a 75-year-old woman with chronic heart failure.
    Which specific beta-blocker is approved...

    Incorrect

    • You evaluate a 75-year-old woman with chronic heart failure.
      Which specific beta-blocker is approved for the treatment of chronic heart failure?

      Your Answer: Atenolol

      Correct Answer: Nebivolol

      Explanation:

      Currently, there are three beta-blockers that have been approved for the treatment of chronic heart failure. These medications include bisoprolol, carvedilol, and nebivolol.

      Chronic HF is a common clinical syndrome resulting from coronary artery disease (CAD), HTN, valvular heart disease, and/or primary cardiomyopathy. There is now conclusive evidence that β-blockers, when added to ACE inhibitors, substantially reduce mortality, decrease sudden death, and improve symptoms in patients with HF. Despite the overwhelming evidence and guidelines that mandate the use of β-blockers in all HF patients without contraindications, many patients do not receive this treatment.

    • This question is part of the following fields:

      • Cardiology
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  • Question 55 - A 72 year old male attends the emergency department complaining of feeling lightheaded,...

    Correct

    • A 72 year old male attends the emergency department complaining of feeling lightheaded, experiencing shortness of breath, and having irregular heartbeats. He states that these symptoms started six hours ago. Upon listening to his chest, clear lung fields are detected but an irregularly irregular pulse is observed. The patient has type 2 diabetes, which is currently controlled through diet. The only medications he takes are:
      - Lisinopril 2.5 mg once daily
      - Simvastatin 20 mg once daily
      There is no history of heart disease, vascular disease, or stroke. The recorded observations are as follows:
      - Blood pressure: 148/92 mmHg
      - Pulse rate: 86 bpm
      - Respiration rate: 15 bpm
      - Oxygen saturation: 97% on room air
      An ECG is performed, confirming atrial fibrillation. As part of the management, you need to calculate the patient's CHA2DS2-VASc score.

      What is this patient's score?

      Your Answer: 4

      Explanation:

      The patient is currently taking 20 mg of Atorvastatin once daily. They do not have a history of heart disease, vascular disease, or stroke. Their blood pressure is 148/92 mmHg, pulse rate is 86 bpm, and respiration rate is 1.

      Further Reading:

      Atrial fibrillation (AF) is the most common sustained cardiac arrhythmia, affecting around 5% of patients over the age of 70-75 years and 10% of patients aged 80-85 years. While AF can cause palpitations and inefficient cardiac function, the most important aspect of managing patients with AF is reducing the increased risk of stroke.

      AF can be classified as first detected episode, paroxysmal, persistent, or permanent. First detected episode refers to the initial occurrence of AF, regardless of symptoms or duration. Paroxysmal AF occurs when a patient has 2 or more self-terminating episodes lasting less than 7 days. Persistent AF refers to episodes lasting more than 7 days that do not self-terminate. Permanent AF is continuous atrial fibrillation that cannot be cardioverted or if attempts to do so are deemed inappropriate. The treatment goals for permanent AF are rate control and anticoagulation if appropriate.

      Symptoms of AF include palpitations, dyspnea, and chest pain. The most common sign is an irregularly irregular pulse. An electrocardiogram (ECG) is essential for diagnosing AF, as other conditions can also cause an irregular pulse.

      Managing patients with AF involves two key parts: rate/rhythm control and reducing stroke risk. Rate control involves slowing down the irregular pulse to avoid negative effects on cardiac function. This is typically achieved using beta-blockers or rate-limiting calcium channel blockers. If one drug is not effective, combination therapy may be used. Rhythm control aims to restore and maintain normal sinus rhythm through pharmacological or electrical cardioversion. However, the majority of patients are managed with a rate control strategy.

      Reducing stroke risk in patients with AF is crucial. Risk stratifying tools, such as the CHA2DS2-VASc score, are used to determine the most appropriate anticoagulation strategy. Anticoagulation is recommended for patients with a score of 2 or more. Clinicians can choose between warfarin and novel oral anticoagulants (NOACs) for anticoagulation.

      Before starting anticoagulation, the patient’s bleeding risk should be assessed using tools like the HAS-BLED score or the ORBIT tool. These tools evaluate factors such as hypertension, abnormal renal or liver function, history of bleeding, age, and use of drugs that predispose to bleeding.

    • This question is part of the following fields:

      • Cardiology
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  • Question 56 - A 32-year-old man is brought to the Emergency Department by ambulance due to...

    Correct

    • A 32-year-old man is brought to the Emergency Department by ambulance due to 'severe palpitations.' His heart rate is 180 bpm, and his rhythm strip is suggestive of supraventricular tachycardia. You plan to administer adenosine.
      Which of the following is a contraindication to the use of adenosine?

      Your Answer: Recent severe asthma exacerbation

      Explanation:

      Adenosine is a type of purine nucleoside that is primarily utilized in the diagnosis and treatment of paroxysmal supraventricular tachycardia. Its main mechanism of action involves stimulating A1-adenosine receptors and opening acetylcholine-sensitive potassium channels. This leads to hyperpolarization of the cell membrane in the atrioventricular (AV) node and slows down conduction in the AV node by inhibiting calcium channels.

      When administering adenosine, it is given rapidly through an intravenous bolus, followed by a saline flush. The initial dose for adults is 6 mg, and if necessary, additional doses of 12 mg or 18 mg can be given at 1-2 minute intervals until the desired effect is observed. It is important to note that the latest ALS guidelines recommend 18 mg for the third dose, while the BNF/NICE guidelines suggest 12 mg.

      One of the advantages of adenosine is its very short half-life, which is less than 10 seconds. This means that its effects are rapid, typically occurring within 10 seconds. However, the duration of action is also short, lasting only 10-20 seconds. Due to its short half-life, any side effects experienced are usually brief. These side effects may include a sense of impending doom, facial flushing, dyspnea, chest discomfort, and a metallic taste.

      There are certain contraindications to the use of adenosine. These include 2nd or 3rd degree AV block, sick sinus syndrome, long QT syndrome, severe hypotension, decompensated heart failure, chronic obstructive lung disease, and asthma. It is important to exercise caution when administering adenosine to patients with a heart transplant, as they are particularly sensitive to its effects. In these cases, a reduced initial dose of 3 mg is recommended, followed by 6 mg and then 12 mg.

      It is worth noting that the effects of adenosine can be potentiated by dipyridamole, a medication commonly used in combination with adenosine. Therefore, the dose of adenosine should be adjusted and reduced in patients who are also taking dipyridamole.

    • This question is part of the following fields:

      • Cardiology
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  • Question 57 - A 52-year-old woman comes in with a history of two episodes of atrial...

    Correct

    • A 52-year-old woman comes in with a history of two episodes of atrial fibrillation (AF). The most recent episode lasted for six days before resolving on its own. How would you classify the type of AF she has experienced?

      Your Answer: Paroxysmal

      Explanation:

      In order to gain a comprehensive understanding of AF management, it is crucial to familiarize oneself with the terminology used to describe its various subtypes. These terms help categorize different episodes of AF based on their characteristics and outcomes.

      Acute AF refers to any episode that occurs within the previous 48 hours. It can manifest with or without symptoms and may or may not recur. On the other hand, paroxysmal AF describes episodes that spontaneously end within 7 days, typically within 48 hours. While these episodes are often recurrent, they can progress into a sustained form of AF.

      Recurrent AF is defined as experiencing two or more episodes of AF. If the episodes self-terminate, they are classified as paroxysmal AF. However, if the episodes do not self-terminate, they are categorized as persistent AF. Persistent AF lasts longer than 7 days or has occurred after a previous cardioversion. To terminate persistent AF, electrical or pharmacological intervention is required. In some cases, persistent AF can progress into permanent AF.

      Permanent AF, also known as Accepted AF, refers to episodes that cannot be successfully terminated, have relapsed after termination, or where cardioversion is not pursued. This subtype signifies a more chronic and ongoing form of AF.

      By understanding and utilizing these terms, healthcare professionals can effectively communicate and manage the different subtypes of AF.

    • This question is part of the following fields:

      • Cardiology
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  • Question 58 - A 68 year old male presents to the emergency department by ambulance due...

    Correct

    • 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: 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
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  • Question 59 - A 42-year-old Caucasian man presents with gradually worsening shortness of breath on exertion...

    Correct

    • A 42-year-old Caucasian man presents with gradually worsening shortness of breath on exertion that has been ongoing for the past four weeks. The breathlessness is worse when lying flat, and he has noticed his ankles have become swollen. This morning he had a small amount of blood in his sputum. He is currently 32 weeks pregnant, and his pregnancy is progressing normally. On examination, you note that he has a tapping apex beat and a low-volume pulse. On auscultation, you note a loud first heart sound and a mid-diastolic murmur at the apex.
      What is the SINGLE most likely diagnosis?

      Your Answer: Mitral stenosis

      Explanation:

      The clinical symptoms of mitral stenosis include shortness of breath, which tends to worsen during exercise and when lying flat. Tiredness, palpitations, ankle swelling, cough, and haemoptysis are also common symptoms. Chest discomfort is rarely reported.

      The clinical signs of mitral stenosis can include a malar flush, an irregular pulse if atrial fibrillation is present, a tapping apex beat that can be felt as the first heart sound, and a left parasternal heave if there is pulmonary hypertension. The first heart sound is often loud, and a mid-diastolic murmur can be heard best at the apex in the left lateral position during expiration using the bell of the stethoscope.

      Mitral stenosis is typically caused by rheumatic heart disease, with about two-thirds of patients being female. During pregnancy, the increase in plasma volume can lead to elevated left atrial and pulmonary venous pressures. This can exacerbate any symptoms related to mitral stenosis and potentially result in pulmonary edema, as seen in this case.

    • This question is part of the following fields:

      • Cardiology
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  • Question 60 - You are called to a cardiac arrest in a child in the Emergency...

    Correct

    • You are called to a cardiac arrest in a child in the Emergency Department. Which SINGLE statement regarding resuscitation in children is true?

      Your Answer: The ratio of chest compressions to ventilations is 15:2

      Explanation:

      The ratio of chest compressions to ventilations is 15:2. This ratio has not been proven through experiments, but it has been validated through mathematical studies. When performing chest compressions on a child, it is recommended to make them at least 1/3 of the depth of the child’s chest. Additionally, the optimal compression rate is between 100 and 120 compressions per minute.
      To protect the airway of an unconscious child, the oropharyngeal (Guedel) airway is the best option. However, it should not be used on awake patients as there is a risk of vomiting and aspiration.
      In children, asystole is the most common arrest rhythm. This occurs when the young heart responds to prolonged hypoxia and acidosis by progressively slowing down, eventually resulting in asystole.

    • This question is part of the following fields:

      • Cardiology
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  • Question 61 - A 35-year-old woman with a history of paroxysmal supraventricular tachycardia is found to...

    Incorrect

    • A 35-year-old woman with a history of paroxysmal supraventricular tachycardia is found to have a diagnosis of Lown-Ganong-Levine (LGL) syndrome.
      Which of the following statements about LGL syndrome is NOT true?

      Your Answer: The QRS duration is typically normal

      Correct Answer: It is caused by an accessory pathway for conduction

      Explanation:

      Lown-Ganong-Levine (LGL) syndrome is a condition that affects the electrical conducting system of the heart. It is classified as a pre-excitation syndrome, similar to the more well-known Wolff-Parkinson-White (WPW) syndrome. However, unlike WPW syndrome, LGL syndrome does not involve an accessory pathway for conduction. Instead, it is believed that there may be accessory fibers present that bypass all or part of the atrioventricular node.

      When looking at an electrocardiogram (ECG) of a patient with LGL syndrome in sinus rhythm, there are several characteristic features to observe. The PR interval, which represents the time it takes for the electrical signal to travel from the atria to the ventricles, is typically shortened and measures less than 120 milliseconds. The QRS duration, which represents the time it takes for the ventricles to contract, is normal. The P wave, which represents the electrical activity of the atria, may be normal or inverted. However, what distinguishes LGL syndrome from other pre-excitation syndromes is the absence of a delta wave, which is a slurring of the initial rise in the QRS complex.

      It is important to note that LGL syndrome predisposes individuals to paroxysmal supraventricular tachycardia (SVT), a rapid heart rhythm that originates above the ventricles. However, it does not increase the risk of developing atrial fibrillation or flutter, which are other types of abnormal heart rhythms.

    • This question is part of the following fields:

      • Cardiology
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  • Question 62 - A 32 year old with a documented peanut allergy is currently receiving treatment...

    Correct

    • A 32 year old with a documented peanut allergy is currently receiving treatment for an anaphylactic reaction. What are the most likely cardiovascular manifestations that you would observe in a patient experiencing an episode of anaphylaxis?

      Your Answer: Hypotension and tachycardia

      Explanation:

      Anaphylaxis, also known as anaphylactic shock, is characterized by certain symptoms similar to other types of shock. These symptoms include low blood pressure (hypotension), rapid heart rate (tachycardia), irregular heart rhythm (arrhythmia), changes in the electrocardiogram (ECG) indicating reduced blood flow to the heart (myocardial ischemia), such as ST elevation, and in severe cases, cardiac arrest.

      Further Reading:

      Anaphylaxis is a severe and life-threatening hypersensitivity reaction that can have sudden onset and progression. It is characterized by skin or mucosal changes and can lead to life-threatening airway, breathing, or circulatory problems. Anaphylaxis can be allergic or non-allergic in nature.

      In allergic anaphylaxis, there is an immediate hypersensitivity reaction where an antigen stimulates the production of IgE antibodies. These antibodies bind to mast cells and basophils. Upon re-exposure to the antigen, the IgE-covered cells release histamine and other inflammatory mediators, causing smooth muscle contraction and vasodilation.

      Non-allergic anaphylaxis occurs when mast cells degrade due to a non-immune mediator. The clinical outcome is the same as in allergic anaphylaxis.

      The management of anaphylaxis is the same regardless of the cause. Adrenaline is the most important drug and should be administered as soon as possible. The recommended doses for adrenaline vary based on age. Other treatments include high flow oxygen and an IV fluid challenge. Corticosteroids and chlorpheniramine are no longer recommended, while non-sedating antihistamines may be considered as third-line treatment after initial stabilization of airway, breathing, and circulation.

      Common causes of anaphylaxis include food (such as nuts, which is the most common cause in children), drugs, and venom (such as wasp stings). Sometimes it can be challenging to determine if a patient had a true episode of anaphylaxis. In such cases, serum tryptase levels may be measured, as they remain elevated for up to 12 hours following an acute episode of anaphylaxis.

      The Resuscitation Council (UK) provides guidelines for the management of anaphylaxis, including a visual algorithm that outlines the recommended steps for treatment.
      https://www.resus.org.uk/sites/default/files/2021-05/Emergency%20Treatment%20of%20Anaphylaxis%20May%202021_0.pdf

    • This question is part of the following fields:

      • Cardiology
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  • Question 63 - Your hospital’s neurology department is currently evaluating the utility of a triple marker...

    Correct

    • Your hospital’s neurology department is currently evaluating the utility of a triple marker test for use in diagnosing patients with suspected stroke. The test will use brain natriuretic peptide (BNP), neuron-specific enolase (NSE), and S100B protein.
      How long after a stroke do levels of glial fibrillary acidic protein (GFAP) start to increase?

      Your Answer: 4-8 hours

      Explanation:

      The timing of the initial rise, peak, and return to normality of various cardiac enzymes can serve as a helpful guide. Creatine kinase, the main cardiac isoenzyme, typically experiences an initial rise within 4-8 hours, reaches its peak at 18 hours, and returns to normal within 2-3 days. Myoglobin, which lacks specificity due to its association with skeletal muscle damage, shows an initial rise within 1-4 hours, peaks at 6-7 hours, and returns to normal within 24 hours. Troponin I, known for its sensitivity and specificity, exhibits an initial rise within 3-12 hours, reaches its peak at 24 hours, and returns to normal within 3-10 days. HFABP, or heart fatty acid binding protein, experiences an initial rise within 1.5 hours, peaks at 5-10 hours, and returns to normal within 24 hours. Lastly, LDH, predominantly found in cardiac muscle, shows an initial rise at 10 hours, peaks at 24-48 hours, and returns to normal within 14 days.

    • This question is part of the following fields:

      • Cardiology
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  • Question 64 - A 68 year old man is brought to the emergency department due to...

    Correct

    • A 68 year old man is brought to the emergency department due to sudden difficulty in breathing. You observe that the patient was diagnosed with mitral regurgitation a year ago. Which arrhythmia is commonly seen in individuals with chronic mitral regurgitation?

      Your Answer: Atrial fibrillation

      Explanation:

      People with chronic mitral regurgitation often experience atrial fibrillation.

      Mitral Stenosis:
      – Causes: Rheumatic fever, Mucopolysaccharidoses, Carcinoid, Endocardial fibroelastosis
      – Features: Mid-late diastolic murmur, loud S1, opening snap, low volume pulse, malar flush, atrial fibrillation, signs of pulmonary edema, tapping apex beat
      – Features of severe mitral stenosis: Length of murmur increases, opening snap becomes closer to S2
      – Investigation findings: CXR may show left atrial enlargement, echocardiography may show reduced cross-sectional area of the mitral valve

      Mitral Regurgitation:
      – Causes: Mitral valve prolapse, Myxomatous degeneration, Ischemic heart disease, Rheumatic fever, Connective tissue disorders, Endocarditis, Dilated cardiomyopathy
      – Features: pansystolic murmur radiating to left axilla, soft S1, S3, laterally displaced apex beat with heave
      – Signs of acute MR: Decompensated congestive heart failure symptoms
      – Signs of chronic MR: Leg edema, fatigue, arrhythmia (atrial fibrillation)
      – Investigation findings: Doppler echocardiography to detect regurgitant flow and pulmonary hypertension, ECG may show signs of LA enlargement and LV hypertrophy, CXR may show LA and LV enlargement in chronic MR and pulmonary edema in acute MR.

    • This question is part of the following fields:

      • Cardiology
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  • Question 65 - Whilst assessing a patient in the Emergency Department, you observe a diastolic murmur.
    Which...

    Correct

    • Whilst assessing a patient in the Emergency Department, you observe a diastolic murmur.
      Which of the following is NOT a potential cause of a diastolic murmur?

      Your Answer: Tricuspid regurgitation

      Explanation:

      Tricuspid regurgitation leads to a pansystolic murmur that is most pronounced in the tricuspid area during inhalation. The primary cause of tricuspid regurgitation is right ventricular failure.

      Other clinical signs that may be present in tricuspid regurgitation include a raised jugular venous pressure (JVP) and giant C-V waves. Additionally, features of increased right atrial pressure, such as ascites and dependent edema, may be observed. Pulsatile hepatomegaly and a thrill at the left sternal edge are also possible indicators. Reverse splitting of the second heart sound, due to early closure of the pulmonary valve, and a third heart sound, caused by rapid right ventricular filling, may be heard as well.

      Aortic regurgitation, on the other hand, produces an early diastolic murmur that is most audible at the lower left sternal edge when the patient is sitting forward and exhaling.

      In the case of mitral stenosis, a rumbling mid-diastolic murmur is best heard at the apex while the patient is in the left lateral position and exhaling, using the bell of the stethoscope.

      Atrial myxomas are benign tumors that can develop in the heart. Most commonly found on the left side, they may obstruct the mitral valve, resulting in a mid-diastolic murmur similar to that of mitral stenosis.

      Lastly, left anterior descending artery stenosis can cause an early diastolic murmur, also known as Dock’s murmur. This murmur is similar to that of aortic regurgitation and is best heard at the left 2nd or 3rd intercostal space.

    • This question is part of the following fields:

      • Cardiology
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  • Question 66 - A 45 year old man comes to the emergency department after intentionally overdosing...

    Correct

    • A 45 year old man comes to the emergency department after intentionally overdosing on his digoxin medication. He informs you that he consumed approximately 50 tablets of digoxin shortly after discovering that his wife wants to end their marriage and file for divorce. Which of the following symptoms is commonly seen in cases of digoxin toxicity?

      Your Answer: Yellow-green vision

      Explanation:

      One of the signs of digoxin toxicity is yellow-green vision. Other clinical features include feeling generally unwell, lethargy, nausea and vomiting, loss of appetite, confusion, and the development of arrhythmias such as AV block and bradycardia.

      Further Reading:

      Digoxin is a medication used for rate control in atrial fibrillation and for improving symptoms in heart failure. It works by decreasing conduction through the atrioventricular node and increasing the force of cardiac muscle contraction. However, digoxin toxicity can occur, and plasma concentration alone does not determine if a patient has developed toxicity. Symptoms of digoxin toxicity include feeling generally unwell, lethargy, nausea and vomiting, anorexia, confusion, yellow-green vision, arrhythmias, and gynaecomastia.

      ECG changes seen in digoxin toxicity include downsloping ST depression with a characteristic Salvador Dali sagging appearance, flattened, inverted, or biphasic T waves, shortened QT interval, mild PR interval prolongation, and prominent U waves. There are several precipitating factors for digoxin toxicity, including hypokalaemia, increasing age, renal failure, myocardial ischaemia, electrolyte imbalances, hypoalbuminaemia, hypothermia, hypothyroidism, and certain medications such as amiodarone, quinidine, verapamil, and diltiazem.

      Management of digoxin toxicity involves the use of digoxin specific antibody fragments, also known as Digibind or digifab. Arrhythmias should be treated, and electrolyte disturbances should be corrected with close monitoring of potassium levels. It is important to note that digoxin toxicity can be precipitated by hypokalaemia, and toxicity can then lead to hyperkalaemia.

    • This question is part of the following fields:

      • Cardiology
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  • Question 67 - A 60-year-old man presents with worsening symptoms of shortness of breath. You examine...

    Correct

    • A 60-year-old man presents with worsening symptoms of shortness of breath. You examine his cardiovascular system and discover a slow-rising, low-volume pulse. His apex beat is sustained, and you can auscultate an ejection systolic murmur that is loudest in the aortic area that radiates to the carotids.
      What is the SINGLE most likely diagnosis?

      Your Answer: Aortic stenosis

      Explanation:

      Aortic stenosis is a common condition where the valve in the heart becomes narrowed due to the progressive calcification that occurs with age. This typically occurs around the age of 70. Other causes of aortic stenosis include calcification of a congenital bicuspid aortic valve and rheumatic fever.

      The symptoms of aortic stenosis can vary but commonly include difficulty breathing during physical activity, fainting, dizziness, chest pain (angina), and in severe cases, sudden death. However, it is also possible for aortic stenosis to be asymptomatic, meaning that there are no noticeable symptoms.

      When examining a patient with aortic stenosis, there are several signs that may be present. These include a slow-rising and low-volume pulse, a narrow pulse pressure, a sustained apex beat, a thrill (a vibrating sensation) in the area of the aorta, and an ejection click if the valve is pliable. Additionally, there is typically an ejection systolic murmur, which is a specific type of heart murmur, that can be heard loudest in the aortic area (located at the right sternal edge, 2nd intercostal space) and may radiate to the carotid arteries.

      It is important to differentiate aortic stenosis from aortic sclerosis, which is a degeneration of the aortic valve but does not cause obstruction of the left ventricular outflow tract. Aortic sclerosis can be distinguished by the presence of a normal pulse character and the absence of radiation of the murmur.

    • This question is part of the following fields:

      • Cardiology
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  • Question 68 - A 32-year-old woman comes to the Emergency Department complaining of dizziness and palpitations....

    Correct

    • A 32-year-old woman comes to the Emergency Department complaining of dizziness and palpitations. She informs you that she was recently diagnosed with Wolff-Parkinson-White syndrome. She is connected to an ECG monitor, and you observe the presence of an arrhythmia.
      What is the most frequently encountered type of arrhythmia in Wolff-Parkinson-White syndrome?

      Your Answer: Atrioventricular re-entrant tachycardia

      Explanation:

      Wolff-Parkinson-White (WPW) syndrome is a condition that affects the electrical system of the heart. It occurs when there is an abnormal pathway, known as the bundle of Kent, between the atria and the ventricles. This pathway can cause premature contractions of the ventricles, leading to a type of rapid heartbeat called atrioventricular re-entrant tachycardia (AVRT).

      In a normal heart rhythm, the electrical signals travel through the bundle of Kent and stimulate the ventricles. However, in WPW syndrome, these signals can cause the ventricles to contract prematurely. This can be seen on an electrocardiogram (ECG) as a shortened PR interval, a slurring of the initial rise in the QRS complex (known as a delta wave), and a widening of the QRS complex.

      There are two distinct types of WPW syndrome that can be identified on an ECG. Type A is characterized by predominantly positive delta waves and QRS complexes in the praecordial leads, with a dominant R wave in V1. This can sometimes be mistaken for right bundle branch block (RBBB). Type B, on the other hand, shows predominantly negative delta waves and QRS complexes in leads V1 and V2, and positive in the other praecordial leads, resembling left bundle branch block (LBBB).

      Overall, WPW syndrome is a condition that affects the electrical conduction system of the heart, leading to abnormal heart rhythms. It can be identified on an ECG by specific features such as shortened PR interval, delta waves, and widened QRS complex.

    • This question is part of the following fields:

      • Cardiology
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  • Question 69 - You are asked to evaluate a 62-year-old patient who has come in with...

    Incorrect

    • You are asked to evaluate a 62-year-old patient who has come in with complaints of chest discomfort. The nurse has handed you the ECG report, which states 'unspecified age septal infarction' in the comments section.

      Which leads would you anticipate observing ST elevation in an acute septal STEMI?

      Your Answer: V3, V4

      Correct Answer: V1, V2

      Explanation:

      The septum, which is a part of the heart, can be best identified by examining leads V1 and V2. The septum receives its blood supply from the proximal left anterior descending artery (LAD). The LAD is responsible for supplying blood to the anterior myocardium and also contributes to the blood supply of the lateral myocardium. If the LAD becomes blocked, it can result in ST elevation in all the chest leads.

      Further Reading:

      Acute Coronary Syndromes (ACS) is a term used to describe a group of conditions that involve the sudden reduction or blockage of blood flow to the heart. This can lead to a heart attack or unstable angina. ACS includes ST segment elevation myocardial infarction (STEMI), non-ST segment elevation myocardial infarction (NSTEMI), and unstable angina (UA).

      The development of ACS is usually seen in patients who already have underlying coronary heart disease. This disease is characterized by the buildup of fatty plaques in the walls of the coronary arteries, which can gradually narrow the arteries and reduce blood flow to the heart. This can cause chest pain, known as angina, during physical exertion. In some cases, the fatty plaques can rupture, leading to a complete blockage of the artery and a heart attack.

      There are both non modifiable and modifiable risk factors for ACS. non modifiable risk factors include increasing age, male gender, and family history. Modifiable risk factors include smoking, diabetes mellitus, hypertension, hypercholesterolemia, and obesity.

      The symptoms of ACS typically include chest pain, which is often described as a heavy or constricting sensation in the central or left side of the chest. The pain may also radiate to the jaw or left arm. Other symptoms can include shortness of breath, sweating, and nausea/vomiting. However, it’s important to note that some patients, especially diabetics or the elderly, may not experience chest pain.

      The diagnosis of ACS is typically made based on the patient’s history, electrocardiogram (ECG), and blood tests for cardiac enzymes, specifically troponin. The ECG can show changes consistent with a heart attack, such as ST segment elevation or depression, T wave inversion, or the presence of a new left bundle branch block. Elevated troponin levels confirm the diagnosis of a heart attack.

      The management of ACS depends on the specific condition and the patient’s risk factors. For STEMI, immediate coronary reperfusion therapy, either through primary percutaneous coronary intervention (PCI) or fibrinolysis, is recommended. In addition to aspirin, a second antiplatelet agent is usually given. For NSTEMI or unstable angina, the treatment approach may involve reperfusion therapy or medical management, depending on the patient’s risk of future cardiovascular events.

    • This question is part of the following fields:

      • Cardiology
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  • Question 70 - Your hospital’s pediatrics department is currently evaluating the utility of a triple marker...

    Correct

    • Your hospital’s pediatrics department is currently evaluating the utility of a triple marker test for use in risk stratification of patients with a suspected heart condition. The test will use troponin I, myoglobin, and heart-type fatty acid-binding protein (HFABP).
      How long after a heart event do troponin I levels reach their highest point?

      Your Answer: 24 hours

      Explanation:

      The timing of the initial rise, peak, and return to normality of various cardiac enzymes can serve as a helpful guide. Creatine kinase, the main cardiac isoenzyme, typically experiences an initial rise within 4-8 hours, reaches its peak at 18 hours, and returns to normal within 2-3 days. Myoglobin, which lacks specificity due to its association with skeletal muscle damage, shows an initial rise within 1-4 hours, peaks at 6-7 hours, and returns to normal within 24 hours. Troponin I, known for its sensitivity and specificity, exhibits an initial rise within 3-12 hours, reaches its peak at 24 hours, and returns to normal within 3-10 days. HFABP, or heart fatty acid binding protein, experiences an initial rise within 1.5 hours, peaks at 5-10 hours, and returns to normal within 24 hours. Lastly, LDH, predominantly found in cardiac muscle, shows an initial rise at 10 hours, peaks at 24-48 hours, and returns to normal within 14 days.

    • This question is part of the following fields:

      • Cardiology
      26
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SESSION STATS - PERFORMANCE PER SPECIALTY

Cardiology (54/70) 77%
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