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PANCE — Physician Assistant National Certifying Examination (NCCPA) · Ấn bản 2026

PANCE Study Guide — 2026 Edition

Written to NCCPA's PANCE Content Blueprint (effective January 2025): 15 chapters, 569 original questions with worked explanations, and a 300-question practice exam in five 60-question blocks.

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Về chính kỳ thi này

Physician Assistant National Certifying Examination (PANCE) — Dữ kiện kỳ thi
Cơ quan quản lýNational Commission on Certification of Physician Assistants (NCCPA) — kỳ thi do Pearson VUE tổ chức

Nguồn: NCCPA — Become Certified (About PANCE)

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Nguồn: NCCPA — Become Certified (About PANCE)

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Nguồn: NCCPA — Become Certified (About PANCE)

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Nguồn: NCCPA — Exam Development & Scoring

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Mục lục

Xem 18 phần và trang bắt đầu của từng phần
  1. Chapter 1. Cardiovascular Systemtr. 7
  2. Chapter 2. Dermatologic System Psoriasistr. 29
  3. Chapter 3. Endocrine System Diabetes mellitustr. 45
  4. Chapter 4. Eyes, Ears, Nose, and Throat Eyestr. 57
  5. Answer key & explanationstr. 76
  6. Chapter 5. Gastrointestinal and Nutritional Disorders Biliary disorderstr. 80
  7. Chapter 6. Genitourinary System Benign prostatic hyperplasiatr. 102
  8. Chapter 7. Hematologic System Autoimmune disorderstr. 113
  9. Chapter 8. Infectious Diseases Bacterial diseasestr. 124
  10. Chapter 9. Musculoskeletal System Chest/rib disorderstr. 143
  11. Chapter 10. Neurologic System Cerebrovascular disorderstr. 161
  12. Chapter 11. Psychiatry/Behavioral Science Depressive disorderstr. 180
  13. Chapter 12. Pulmonary System Acute respiratory distress syndrometr. 194
  14. Chapter 13. Renal System Acute kidney injurytr. 210
  15. Chapter 14. Reproductive System Early pregnancy disorderstr. 222
  16. Chapter 15. Professional Practicetr. 242
  17. Appendix A — High-Yield Drug Tablestr. 379
  18. Appendix B — Key Numbers Quick Referencetr. 386

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ĐỌC THỬ MIỄN PHÍ — NGAY TẠI ĐÂY
Chương 1 · 11% của kỳ thi · ≈9 phút đọc
Cardiovascular System
cuộn ↓

Cardiovascular disease is the single largest content domain on the PANCE, and it rewards pattern recognition: the ECG that separates STEMI from NSTEMI, the medication list that marks guideline-directed heart failure therapy, the rhythm strip that says "do not give an AV nodal blocker." This chapter moves through the blueprint in order — cardiomyopathy, dysrhythmias, congenital disease, coronary disease, heart failure, hypertension, hypotension, lipids, shock, inflammatory conditions, valvular disorders, and vascular disease — pausing longest where the exam tests hardest: acute coronary syndromes, heart failure pharmacology, and atrial fibrillation.

Cardiomyopathy

Cardiomyopathy is disease of the heart muscle itself, classified by phenotype. Dilated cardiomyopathy presents with ventricular dilation and systolic dysfunction — a failing pump, the classic low ejection fraction picture that progresses to the heart failure syndromes covered later in this chapter. Hypertrophic cardiomyopathy is asymmetric septal thickening that obstructs outflow; it is the most common cause of sudden cardiac death in young athletes and produces a harsh systolic murmur that gets louder with Valsalva (less preload, more obstruction) and softer with squatting. Restrictive cardiomyopathy is stiff, noncompliant ventricles with preserved wall thickness — diastolic filling fails while systolic function looks deceptively normal; amyloidosis is the prototype. Stress (Takotsubo) cardiomyopathy follows an emotional or physical trigger, balloons the left ventricular apex, mimics an acute MI with chest pain and troponin elevation, but shows clean coronaries on angiography — and it usually recovers.

Conduction disorders and dysrhythmias

Atrial fibrillation dominates this section on every exam. The atria quiver instead of contracting, the AV node is bombarded with impulses, and the ventricular response is irregularly irregular — usually rapid. The absent atrial kick predisposes to thrombus, especially in the left atrial appendage, which is why stroke prevention drives management. Diagnosis is by ECG: absent P waves, fibrillatory f waves, irregularly irregular R-R intervals[1]. The pulse is irregularly irregular with loss of a waves in the jugular venous pulse[1].

Rate control comes first for every patient with atrial fibrillation: the target is typically under 100 beats per minute at rest, to control symptoms and prevent tachycardia-induced cardiomyopathy[1]. Beta-blockers such as metoprolol and esmolol are preferred when excess catecholamines are suspected; nondihydropyridine calcium channel blockers such as verapamil and diltiazem are also effective; digoxin is the least effective but may be preferred if heart failure is present[1].

The lethal trap is atrial fibrillation with Wolff-Parkinson-White syndrome. When the QRS is wide, an accessory pathway is conducting — and AV node blockers must not be used: they "may increase frequency of conduction via the bypass tract, possibly causing ventricular fibrillation," and in AF with a wide QRS suggesting WPW, "use of atrioventricular node-blocking medications may be fatal"[1].

Rhythm control — synchronized cardioversion or antiarrhythmics — is indicated when heart failure or hemodynamic compromise is directly attributable to new-onset atrial fibrillation, to improve cardiac output[1]. Cardioversion at 200 joules biphasic converts about 90% of patients[1]. But timing matters: if atrial fibrillation has been present more than 48 hours, give an oral anticoagulant for more than 3 weeks before cardioversion (or rule out thrombus with transesophageal echo first), and continue anticoagulation for at least 4 weeks after[1]. Conversion never eliminates the need for chronic anticoagulation in patients who meet criteria for it[1].

Long-term anticoagulation decisions run on the CHA2DS2-VASc score: class I recommendation for nonvalvular atrial fibrillation with scores of 2 or more in males and 3 or more in females[1]. Two groups get warfarin specifically, not a direct oral anticoagulant: mechanical heart valves and moderate-to-severe rheumatic mitral stenosis (both class I)[1]. Everyone else eligible gets warfarin, apixaban, dabigatran, edoxaban, or rivaroxaban — with the non–vitamin K agents preferred — and warfarin's target INR is 2.0 to 3.0[1]. Aspirin monotherapy is not recommended for stroke prevention[1].

Atrial flutter is the sawtooth cousin — regular atrial activity around 300 per minute with variable conduction. Atrial tachycardia, junctional rhythms, and premature contractions fill out the supraventricular list. Below the AV node, the stakes rise: ventricular tachycardia is wide, fast, and regular; ventricular fibrillation is chaotic and pulseless — defibrillate immediately. Torsades de pointes is polymorphic VT twisting around the baseline in the setting of QT prolongation — give magnesium, stop the offending drug. Sick sinus syndrome is sinus node failure with alternating bradycardia and tachycardia; symptomatic bradycardia gets a pacemaker. AV block is graded: first-degree (prolonged PR), second-degree Mobitz I (Wenckebach — progressive PR lengthening then a dropped beat) and Mobitz II (dropped beats without warning, usually infranodal — pace it), and third-degree (complete dissociation — pace it). Bundle branch blocks widen the QRS; a new left bundle branch block in chest pain was historically treated as a STEMI equivalent but is not one in isolation[2].

Congenital heart disease

Shunts are the organizing principle: left-to-right shunts (VSD, ASD, PDA, atrioventricular septal defects) flood the pulmonary circulation; right-to-left shunts (Tetralogy of Fallot, transposition of the great vessels) send deoxygenated blood to the body — cyanosis. The exam loves a few signatures. Ventricular septal defect is the most common congenital lesion: a harsh holosystolic murmur at the left sternal border. Atrial septal defect gives a fixed split S2 and often presents in adulthood. Patent ductus arteriosus is the continuous "machinery" murmur, kept open by prostaglandin E — indomethacin closes it; it is the lesion of premature infants. Coarctation of the aorta: upper-extremity hypertension with weak femoral pulses and brachial-femoral delay; rib notching on chest film in older patients. Tetralogy of Fallot is the most common cyanotic lesion surviving to childhood — four features (VSD, overriding aorta, pulmonic stenosis, right ventricular hypertrophy), boot-shaped heart, and tet spells relieved by squatting (increases systemic vascular resistance, reducing right-to-left shunt). Transposition of the great vessels: the aorta arises from the right ventricle and the pulmonary artery from the left — incompatible with life unless a shunt (PDA, ASD, VSD) mixes blood; prostaglandin E keeps the ductus open as a bridge. Patent foramen ovale is usually incidental but implicated in paradoxical embolism and cryptogenic stroke.

Coronary artery disease and acute coronary syndromes

Acute coronary syndromes — unstable angina, NSTEMI, and STEMI — "all involve acute coronary ischemia and are distinguished based on symptoms, ECG findings, and cardiac troponin levels"[2]. The distinction drives everything, because prognosis and treatment vary.

Unstable angina is "transient myocardial ischemia with reduced coronary blood flow, in the absence myocardial necrosis (circulating cardiac troponin < 99th percentile)"[2]. Its symptom signatures: rest angina prolonged beyond 20 minutes, new-onset severe angina, or angina distinctly more frequent, severe, prolonged, or lower-threshold than before[2]. NSTEMI is "myocardial necrosis (evidenced by circulating cardiac troponin levels ≥ 99th percentile) without acute ST-segment elevation that meets criteria for STEMI"[2] — typically subendocardial, with ST depression or T-wave inversion rather than elevation. STEMI is "myocardial necrosis with ECG changes showing ST-segment elevation that is not quickly reversed by nitroglycerin"[2] — transmural, the one that needs the cath lab now.

Diagnosis runs on two rails simultaneously. The ECG "is the most important test and should be performed as soon as possible (within 10 minutes of presentation to medical care, whether in or out of the hospital)"[2]. STEMI shows "ST-segment elevation ≥ 1 mm in 2 or more contiguous leads subtending the damaged area"[2]; NSTEMI shows "horizontal or downsloping ST depression," T-wave inversion, or transient ST elevation[2]. Troponin is the tiebreaker: "an abnormal cTn level, using an appropriate cutoff, is the primary distinguishing factor between unstable angina and myocardial infarction"[2]. Draw high-sensitivity troponin on presentation and again 1 to 2 hours later[2] — but never let a normal early troponin delay care: "angiography and treatment in patients with STEMI, or unstable patients with a NSTE-ACS, should not be delayed because of an initially normal troponin level"[2].

Treatment is reperfusion plus antithrombotics. "For STEMI, do emergency PCI when door to balloon-inflation time is < 90 minutes (120 minutes accounting for hospital to hospital transfers); do fibrinolysis if such timely PCI is not available"[2]. Fibrinolytics "benefit patients with STEMI but may increase risk for those with NSTEMI," so they are for STEMI only when primary PCI is not immediately available[2]. Prehospital, EMS gives "chewed aspirin (160 to 325 mg)" plus nitrates and triage to a PCI-capable center[2]. Post-MI, secondary prevention continues antiplatelets, beta-blockers, ACE inhibitors, and statins.

Stable angina is the predictable exertional cousin — relieved by rest and nitroglycerin, worked up initially with exercise stress testing when the resting ECG is normal. Atherosclerosis is the underlying pathology across all of it: plaque disruption with thrombosis is the most common cause of ACS[2].

Heart failure

Heart failure is the clinical syndrome of the heart failing to meet metabolic demands — low output, elevated filling pressures, or both. Ejection fraction phenotyping determines therapy: reduced (HFrEF), mildly reduced, and preserved (HFpEF).

Four medication classes improve survival in HFrEF and form guideline-directed medical therapy: "Beta-blockers; Angiotensin receptor/neprilysin inhibitors (ARNIs) (or angiotensin converting enzyme [ACE] inhibitors or Angiotensin II receptor blockers [ARBs]); Sodium-glucose cotransporter-2 inhibitors (SGLT2i); Mineralocorticoid receptor antagonists"[3].

Beta-blockers are "a mainstay of treatment" in HFrEF "unless otherwise contraindicated (by asthma, second-degree or third-degree atrioventricular block, or previous significant intolerance)"[3] — carvedilol, metoprolol succinate, bisoprolol. In HFpEF, "beta-blockers are not generally recommended," though they can be used for rate control in atrial fibrillation or hypertension with coronary disease[3].

Sacubitril/valsartan (ARNI) "reduces all-cause mortality and should be considered in all patients with HFrEF" and "is preferred over an ACE inhibitor or ARB if tolerated"[3]. The switch has a rule: "ACE inhibitors should be discontinued 36 hours before initiation of sacubitril/valsartan. Patients previously taking an ARB can simply switch to sacubitril/valsartan without a washout period"[3] — and "combined ACE inhibitor plus ARNI therapy is absolutely contraindicated" because of angioedema risk[3].

ACE inhibitors: "all patients with HFrEF should be given oral ACE inhibitors unless contraindicated"[3]. Contraindications are bilateral renal artery stenosis (or stenosis in a solitary kidney), creatinine above 2.8 mg/dL, and prior ACE-inhibitor angioedema[3]. Two counseling points the exam tests: a creatinine rise of 20 to 30% after starting is expected from efferent arteriole vasodilation and "is not a reason to stop the medication" (monitor, slow titration, reduce diuretic, avoid NSAIDs)[3]; and the dry cough from bradykinin accumulation — "if cough limits use, an ARB is a reasonable alternative"[3]. Both ACE inhibitors and ARBs are contraindicated in pregnancy[3].

Mineralocorticoid receptor antagonists (spironolactone, eplerenone) are recommended for symptomatic HFrEF, NYHA class II to IV[3]. Spironolactone 25 to 50 mg daily is typical; eplerenone avoids the gynecomastia[3]. Because hyperkalemia is the danger, "serum potassium and creatinine should be checked every 1 to 2 weeks for the first 4 to 6 weeks and after dose changes" — lower the dose if potassium is 5.0 to 5.5, stop it above 5.5, with creatinine above 2.5, or with ECG changes of hyperkalemia[3].

SGLT2 inhibitors dapagliflozin and empagliflozin "reduce cardiovascular mortality and hospitalization in patients with HFrEF who are symptomatic (New York Heart Association Class II to IV)" and "therapy is recommended for all HFrEF patients with symptoms"[3].

Digoxin "has no proven survival benefit but... may help control symptoms and reduce the likelihood of hospitalization in patients with HFrEF," and it doubles as rate control in atrial fibrillation with either HFrEF or HFpEF[3]. Dosing is 0.125 mg daily with normal renal function (or three times weekly with renal dysfunction)[3]. Toxicity signs to memorize: "bidirectional ventricular tachycardia, nonparoxysmal junctional tachycardia in the presence of atrial fibrillation, and hyperkalemia are serious signs of digitalis toxicity" — and hypokalemia or hypomagnesemia from diuretics lets toxicity strike at lower levels, so monitor electrolytes[3].

Diuretics relieve congestion: "loop diuretics should be used initially for control of volume overload," with furosemide 40 mg equal to bumetanide 1 mg equal to torsemide 20 mg[3]. Ivabradine fits symptomatic HFrEF in normal sinus rhythm with heart rate above 70 despite maximal therapy[3]. Hydralazine plus isosorbide dinitrate suits HFrEF patients intolerant of ACE inhibitors or ARBs — and in patients of African ancestry added to standard therapy it "may reduce mortality and hospitalization"[3]. Positive inotropes other than digoxin increase mortality risk and are reserved for cardiogenic shock or bridge/palliation[3].

Sources cited in this excerpt

  1. Atrial Fibrillation. Merck Manual Professional Edition. https://www.merckmanuals.com/professional/cardiovascular-disorders/arrhythmias-and-conduction-disorders/atrial-fibrillation
  2. Overview of Acute Coronary Syndromes (ACS). Merck Manual Professional Edition. https://www.merckmanuals.com/professional/cardiovascular-disorders/coronary-artery-disease/overview-of-acute-coronary-syndromes-acs
  3. Medications for Heart Failure. Merck Manual Professional Edition. https://www.merckmanuals.com/professional/cardiovascular-disorders/heart-failure/medications-for-heart-failure
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Written to NCCPA's PANCE Content Blueprint (effective January 2025): 15 chapters, 569 original questions with worked explanations, and a 300-question practice exam in five 60-question blocks.

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  • Last updated: September 2026
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