ANSWERS., Exams of Nursing Comprehensive Assessment — 2026-
2027 — 100 Questions — 100% VERIFIED
Introduction
This comprehensive assessment bank prepares candidates for the AACN Progressive Care
Certified Nurse certification examination through 100 solved scenario-based questions
spanning the key PCCN domains: Cardiovascular Monitoring and Hemodynamics;
Pulmonary Gas Exchange and Mechanical Ventilation; Endocrine and Metabolic
Emergencies; Neurological Assessment and Intracranial Regulation; Renal Dysfunction and
Fluid/Electrolyte Balance; Hematology, Immunology, and Infectious Disease;
Gastrointestinal and Hepatic Operations; Psychosocial Support and Pain Management; and
Professional Caring and Ethical Standards. Each item pairs a progressive-care vignette with
four options, a clearly marked correct answer, and a concise rationale, supporting
progressive care certification success and safe, effective clinical execution across
monitoring, intervention, and professional accountability.
Each question below presents four options labeled A through D. The correct answer is bold
and cyan, followed by a concise rationale.
Question 1: An arterial line shows a systolic of 88 mmHg with a MAP of 62 mmHg in a
patient receiving norepinephrine. Which hemodynamic target best guides titration?
A. Systolic above 160 mmHg required for every ICU patient
B. Diastolic below 40 mmHg as the primary titration goal
C. MAP of at least 65 mmHg sustaining organ perfusion during vasopressor
titration
D. Pulse pressure narrowing ignored as clinically meaningless
Correct Answer: C. MAP of at least 65 mmHg sustaining organ perfusion during
vasopressor titration
Rationale: MAP >= 65 guides norepinephrine titration for perfusion. Systolic-160, diastolic-
under-40, and ignore-pulse-pressure targets misuse hemodynamics.
Question 2: A central line transducer leveled at the phlebostatic axis reads a CVP of
14 mmHg with jugular distension. Which volume-status interpretation best applies?
A. Transducer leveling irrelevant to reading accuracy
B. CVP value alone diagnosing left-ventricular failure
C. Low CVP proving hypovolemia in every reading
D. Elevated right-sided filling pressures suggesting fluid overload or right-heart
strain
Correct Answer: D. Elevated right-sided filling pressures suggesting fluid overload or
right-heart strain
,Rationale: CVP 14 with JVD indicates elevated right-sided pressures. Low-CVP, left-failure-
by-CVP, and leveling-irrelevant readings misinterpret monitoring.
Question 3: A pulmonary artery catheter shows a wedge pressure of 24 mmHg with
crackles and hypoxemia. Which left-heart assessment best fits?
A. Elevated wedge pressure indicating left-sided congestion needing diuresis or
afterload reduction
B. Normal wedge range extending to 30 mmHg in all patients
C. Crackles dismissed because wedge values lack meaning
D. Wedge of 24 proving hypovolemia requiring fluid bolus
Correct Answer: A. Elevated wedge pressure indicating left-sided congestion needing
diuresis or afterload reduction
Rationale: Wedge 24 with crackles signals left-sided overload. Hypovolemia-bolus, normal-
to-30, and dismiss-crackles responses misread the catheter.
Question 4: Cardiac output is 3.1 L/min with cool extremities, SVR of 1600, and
narrow pulse pressure. Which shock-profile synthesis best applies?
A. High-output vasodilation proven by cool extremities
B. Low output with high resistance consistent with cardiogenic shock requiring
inotropic support evaluation
C. Vasopressors withheld because SVR appears elevated
D. Normal output assumed without index or exam correlation
Correct Answer: B. Low output with high resistance consistent with cardiogenic shock
requiring inotropic support evaluation
Rationale: Low CO with high SVR and cool skin defines cardiogenic shock. High-output,
normal-without-index, and withhold-pressors plans misclassify shock.
Question 5: A patient reports crushing chest pain with ST elevation in leads II, III, and
aVF plus hypotension. Which ACS localization and response best applies?
A. Inferior STEMI with right-ventricular concern prompting emergent reperfusion
and cautious nitrates
B. Anterior STEMI assumed from any ST elevation
C. Nitrates pushed rapidly despite inferior hypotension
D. Reperfusion delayed for serial troponins over hours
Correct Answer: A. Inferior STEMI with right-ventricular concern prompting
emergent reperfusion and cautious nitrates
Rationale: Inferior ST elevation with hypotension suggests RV infarct needing emergent
cath. Anterior-default, rapid-nitrate, and delay-for-troponin plans endanger the patient.
Question 6: Daily weight rises 2 kg overnight with bibasilar crackles, S3 gallop, and
BNP of 1200. Which heart-failure management set best applies?
, A. Fluid bolus administered for crackles and S3
B. Weight gain attributed to scale error without assessment
C. Acute decompensation treated with diuretics, sodium restriction, and
monitored daily weights
D. BNP ignored because values lack diagnostic meaning
Correct Answer: C. Acute decompensation treated with diuretics, sodium restriction,
and monitored daily weights
Rationale: Rapid weight gain with S3 and high BNP defines decompensation. Scale-error,
fluid-bolus, and BNP-blind plans worsen failure.
Question 7: New-onset atrial fibrillation with rapid response shows a rate of 148 and
borderline pressure. Which initial rate-control and stroke-risk pairing best applies?
A. Atropine as first-line rapid-rate control
B. Diltiazem or metoprolol for rate control with CHA2DS2-VASc guiding
anticoagulation
C. No anticoagulation review because rhythm converts spontaneously
D. Immediate cardioversion without rate or clot assessment
Correct Answer: B. Diltiazem or metoprolol for rate control with CHA2DS2-VASc
guiding anticoagulation
Rationale: Calcium-channel or beta blockade controls rate while CHA2DS2-VASc guides clot
prevention. Shock-first, no-anticoagulation, and atropine-for-AF plans breach guidelines.
Question 8: A pulseless patient shows ventricular fibrillation on the monitor. Which
shock-energy and synchronization decision best applies?
A. Delayed shock until labs return during arrest
B. CPR paused for prolonged rhythm deliberation
C. Synchronized cardioversion at low joules for VF arrest
D. Immediate unsynchronized defibrillation with high-quality CPR and
epinephrine per arrest protocol
Correct Answer: D. Immediate unsynchronized defibrillation with high-quality CPR
and epinephrine per arrest protocol
Rationale: VF arrest demands unsynchronized shock with continuous CPR. Synchronized-
low-energy, lab-delayed, and CPR-paused responses violate arrest protocol.
Question 9: Pacer spikes appear without following QRS complexes and the rate drops
to 32 with dizziness. Which pacemaker-malfunction pairing best applies?
A. Magnet applied to fix every capture failure permanently
B. Normal pacer function despite spikes without capture
C. Failure to capture requiring threshold check, lead evaluation, and
transcutaneous backup readiness
, D. No backup because bradycardia resolves spontaneously
Correct Answer: C. Failure to capture requiring threshold check, lead evaluation, and
transcutaneous backup readiness
Rationale: Spikes without depolarization define capture failure needing threshold and
backup review. Normal-function, magnet-cure-all, and no-backup plans risk asystole.
Question 10: Septic shock persists after 30 mL/kg crystalloids with MAP of 58. Which
first-line vasopressor decision best applies?
A. Dopamine as first-line for every septic-shock case
B. Norepinephrine infusion titrated to MAP target with large-bore or central
access
C. Phenylephrine bolus replacing all fluid resuscitation
D. Vasopressors delayed until ICU transfer regardless of MAP
Correct Answer: B. Norepinephrine infusion titrated to MAP target with large-bore or
central access
Rationale: Norepinephrine is first-line after fluids for septic shock. Dopamine-default, delay-
until-transfer, and bolus-replaces-fluids plans breach sepsis bundles.
Question 11: After anterior MI the patient is hypotensive with pulmonary edema, low
output, and cool mottled skin. Which cardiogenic-shock support logic best applies?
A. Inotropic support with revascularization evaluation and judicious diuresis or
unloading
B. Aggressive fluid boluses as sole cardiogenic therapy
C. No revascularization review because shock resolves alone
D. Beta-blocker loading during acute shock
Correct Answer: A. Inotropic support with revascularization evaluation and judicious
diuresis or unloading
Rationale: Post-MI shock needs inotropes plus revascularization review. Fluids-only, beta-
blocker-loading, and no-cath-review plans increase mortality.
Question 12: A postoperative patient is immobile with calf pain and a positive
Doppler for DVT. Which prevention-treatment pairing best applies?
A. Bed rest without anticoagulation for weeks
B. Therapeutic anticoagulation with ambulation promotion and sequential
compression on the unaffected limb
C. Compression devices wrapped over the acute clot
D. Massage of the affected calf to dissolve the clot
Correct Answer: B. Therapeutic anticoagulation with ambulation promotion and
sequential compression on the unaffected limb