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American Board of Internal Medicine Certification (ABIM Board Certification) Pulmonary & Critical Care Medicine Flashcards

60 question-and-answer cards covering Pulmonary & Critical Care Medicine as it is examined in American Board of Internal Medicine Certification (ABIM Board Certification). 24 of them are printed below, taken from across the deck — no signup, no paywall on the preview.

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24 sample cards from the Pulmonary & Critical Care Medicine deck

Sampled from the end of the deck, so these are different cards from the ones shown on the syllabus page.

  1. What is the initial management of a primary spontaneous pneumothorax that is small and the patient stable?

    Observation with supplemental oxygen (oxygen speeds pleural air resorption); needle aspiration or small-bore catheter is an option. Large/symptomatic pneumothorax requires aspiration or chest tube.

  2. How is a tension pneumothorax recognized and immediately treated?

    Hypotension, distended neck veins, tracheal deviation away, absent breath sounds, hyperresonance; treat immediately with needle decompression (2nd intercostal space midclavicular line or 4th/5th anterior axillary) followed by chest tube - do NOT wait for imaging.

  3. State the Berlin definition diagnostic criteria for ARDS.

    Acute onset within 1 week; bilateral opacities on imaging not fully explained by effusions/collapse; respiratory failure not fully explained by cardiac failure/fluid overload; and hypoxemia by PaO2/FiO2 ratio with PEEP/CPAP >=5.

  4. How is ARDS severity graded by PaO2/FiO2 ratio (with PEEP >=5)?

    Mild: 200-300 mmHg; Moderate: 100-200 mmHg; Severe: <=100 mmHg.

  5. What are the core lung-protective ventilation targets in ARDS?

    Low tidal volume 6 mL/kg predicted body weight, plateau pressure <=30 cmH2O, driving pressure <15, permissive hypercapnia, and adequate PEEP; this strategy reduces mortality (ARDSNet).

  6. Which adjunct therapy reduces mortality in severe ARDS (P/F <150)?

    Early prone positioning (e.g., 16 hours/day) improves oxygenation and reduces mortality; neuromuscular blockade may be used in selected severe cases.

  7. Differentiate hypoxemic (type 1) from hypercapnic (type 2) respiratory failure.

    Type 1 (hypoxemic): low PaO2 with normal/low PaCO2, due to V/Q mismatch or shunt (e.g., pneumonia, ARDS, edema). Type 2 (hypercapnic): elevated PaCO2 with hypoxemia, due to alveolar hypoventilation (e.g., COPD, neuromuscular disease, drug overdose).

  8. What is the alveolar gas equation and the normal A-a gradient?

    PAO2 = (FiO2 x [Patm - PH2O]) - (PaCO2/R); at sea level on room air ~150 - (PaCO2/0.8). Normal A-a gradient is ~5-15 mmHg, increasing with age (estimate = age/4 + 4).

  9. A patient has hypoxemia with a NORMAL A-a gradient. What are the two causes?

    Hypoventilation and low inspired oxygen (high altitude). A widened A-a gradient instead indicates V/Q mismatch, shunt, or diffusion limitation.

  10. What are the two best-established indications for noninvasive positive pressure ventilation (NIPPV)?

    Acute hypercapnic respiratory failure from COPD exacerbation (respiratory acidosis pH <7.35) and cardiogenic pulmonary edema; both reduce intubation rates and mortality.

  11. List contraindications to noninvasive ventilation.

    Cardiac/respiratory arrest, inability to protect airway/impaired consciousness, excessive secretions, facial trauma/surgery, hemodynamic instability/shock, and high aspiration risk or uncooperative patient.

  12. On a mechanical ventilator, which settings primarily control oxygenation vs ventilation (CO2 removal)?

    Oxygenation is controlled by FiO2 and PEEP; ventilation (CO2 clearance) is controlled by respiratory rate and tidal volume (minute ventilation).

  13. What criteria suggest a patient is ready for a spontaneous breathing trial (SBT) and likely successful extubation?

    Resolution/improvement of underlying cause, adequate oxygenation (P/F >150, PEEP <=5-8, FiO2 <=0.4-0.5), hemodynamic stability off/minimal pressors, and a rapid shallow breathing index (RR/Vt) <105.

  14. Define sepsis and septic shock per Sepsis-3.

    Sepsis = life-threatening organ dysfunction (acute SOFA increase >=2) due to a dysregulated host response to infection. Septic shock = sepsis requiring vasopressors to maintain MAP >=65 mmHg AND lactate >2 mmol/L despite adequate fluid resuscitation.

  15. What are the key components of the initial 'hour-1' sepsis bundle?

    Measure lactate (remeasure if >2), obtain blood cultures before antibiotics, give broad-spectrum antibiotics, begin 30 mL/kg crystalloid for hypotension or lactate >=4, and add vasopressors to keep MAP >=65 if hypotensive during/after fluids.

  16. What is the first-line vasopressor in septic shock, and what is added if MAP remains low?

    Norepinephrine is first-line; vasopressin (and/or epinephrine) is added next, and consider stress-dose hydrocortisone in refractory shock requiring escalating vasopressors.

  17. Compare the hemodynamic profiles (CO, SVR, PCWP/preload) of the four shock types.

    Hypovolemic: low CO, high SVR, low preload. Cardiogenic: low CO, high SVR, high PCWP. Obstructive: low CO, high SVR, variable filling (high CVP). Distributive (septic): high/normal CO, low SVR, low/normal preload.

  18. Interpret a single arterial blood gas: pH 7.20, PaCO2 60, HCO3 24. What is the disorder?

    Acute respiratory acidosis (low pH, high PaCO2 with minimal HCO3 compensation). Acutely, HCO3 rises ~1 mEq/L per 10 mmHg rise in PaCO2.

  19. How do you calculate the anion gap and what does an elevated anion gap metabolic acidosis suggest (mnemonic)?

    Anion gap = Na - (Cl + HCO3), normal ~8-12. Elevated gap causes (GOLD MARK or MUDPILES): glycols, oxoproline, L-lactate, D-lactate, methanol, aspirin, renal failure, ketoacidosis (and uremia, DKA, propylene glycol, iron/INH, lactate, ethylene glycol, salicylates).

  20. What is Winter's formula and what does it assess?

    Expected PaCO2 = 1.5 x HCO3 + 8 (+/- 2). It checks for appropriate respiratory compensation in metabolic acidosis; a higher PaCO2 indicates a concurrent respiratory acidosis, a lower one a respiratory alkalosis.

  21. How is obstructive sleep apnea diagnosed and graded by the apnea-hypopnea index (AHI)?

    Diagnosed by polysomnography (or home sleep apnea test). AHI 5-14 = mild, 15-29 = moderate, >=30 = severe (AHI = number of apneas + hypopneas per hour of sleep).

  22. What is the first-line treatment for moderate-to-severe obstructive sleep apnea, and what cardiovascular conditions is OSA associated with?

    Continuous positive airway pressure (CPAP) is first-line; OSA is associated with hypertension (especially resistant), atrial fibrillation, heart failure, pulmonary hypertension, stroke, and increased perioperative risk.

  23. How does obesity hypoventilation syndrome differ from obstructive sleep apnea?

    OHS is defined by obesity (BMI >=30) with awake daytime hypercapnia (PaCO2 >45 mmHg) not explained by other causes; it is chronic hypercapnic respiratory failure, whereas OSA is primarily upper-airway obstruction without mandatory daytime hypercapnia.

  24. What is central sleep apnea and a classic pattern seen in heart failure?

    Cessation of airflow due to loss of ventilatory drive (no respiratory effort), unlike obstructive apnea. Cheyne-Stokes respiration (crescendo-decrescendo breathing with central apneas) is classically seen in heart failure and after stroke.

What this deck covers

The Pulmonary & Critical Care Medicine deck follows the American Board of Internal Medicine Certification (ABIM Board Certification) Pulmonary & Critical Care Medicine syllabus — 5 chapters and 19 topics — so questions land on material that is genuinely examinable rather than trivia around it. That works out to roughly 12.0 cards per chapter.

Answers are written to be recallable, not just readable — averaging about 197 characters, which is long enough to carry the reasoning and short enough to say out loud.

A deck like this earns its keep on the second and third pass. Read the syllabus first so you know the shape of the subject, then use the cards to find the specific facts that have not stuck.

Pulmonary & Critical Care Medicine flashcards FAQ

How many Pulmonary & Critical Care Medicine flashcards are in this American Board of Internal Medicine Certification (ABIM Board Certification) deck?

60 cards. This page previews 24 of them, sampled evenly across the deck so you can judge the difficulty before installing anything.

Are these American Board of Internal Medicine Certification (ABIM Board Certification) flashcards free?

Yes. The preview here is free to read with no signup, and the full 60-card deck is free inside the Examius app.

What do the Pulmonary & Critical Care Medicine cards cover?

They follow the American Board of Internal Medicine Certification (ABIM Board Certification) Pulmonary & Critical Care Medicine syllabus — 5 chapters and 19 topics — so the questions track what is actually examinable.

How should I use these flashcards?

Read the syllabus first so you know the shape of the subject, then drill the deck. Examius schedules each card with spaced repetition, so cards you keep missing come back sooner and ones you know drift further apart.