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Pathophysiology of Disease Test Bank (8th Ed.) | Hammer & McPhee | Clinical Pathophysiology

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Pathophysiology of Disease Test Bank (8th Ed.) | Hammer & McPhee | Clinical Pathophysiology Case-Based MCQs Description: Master clinical pathophysiology with a comprehensive, exam-focused test bank built directly from Pathophysiology of Disease: An Introduction to Clinical Medicine, 8th Edition by Gary D. Hammer and Stephen J. McPhee—the gold-standard text for understanding disease mechanisms in modern medical education. This digital test bank delivers full textbook coverage across all chapters and organ systems, with 20 clinically oriented MCQs per chapter designed to strengthen mechanism-based reasoning, diagnostic accuracy, and integration of basic science with clinical decision-making. Every question is case-based and mirrors the complexity encountered in medical, PA, and advanced nursing curricula, emphasizing how molecular and cellular dysfunction produces real-world signs, symptoms, and diagnostic findings. Each MCQ includes verified correct answers and detailed, evidence-based rationales, allowing learners to identify knowledge gaps efficiently, reinforce high-yield concepts, and build confidence for high-stakes exams. The structure supports time-efficient review while maintaining the depth required for graduate and professional-level mastery. This resource is ideal for learners enrolled in courses that rely on Hammer & McPhee, including Pathophysiology, Clinical Medicine foundations, Internal Medicine fundamentals, Medical-Surgical Pathophysiology, Advanced Nursing Pathophysiology (BSN, MSN, DNP), and Physician Assistant didactic coursework. Key Features: Full-chapter coverage of Pathophysiology of Disease, 8th Edition 20 high-quality, clinically oriented MCQs per chapter Detailed rationales grounded in disease mechanisms Case-based questions emphasizing diagnostics and clinical reasoning Designed for exam preparation and real clinical application Keywords: pathophysiology test bank Pathophysiology of Disease test bank Hammer and McPhee study guide clinical pathophysiology questions medical pathophysiology exam prep case-based pathophysiology MCQs advanced pathophysiology review PA and nursing pathophysiology test bank Hashtags: #PathophysiologyTestBank #HammerAndMcPhee #ClinicalPathophysiology #MedicalEducation #NursingPathophysiology #PAStudentLife #CaseBasedMCQs #ExamPrepMedicine #GraduateHealthSciences #ClinicalReasoning

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Pathophysiology
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Pathophysiology

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Subido en
31 de diciembre de 2025
Número de páginas
668
Escrito en
2025/2026
Tipo
Examen
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PATHOPHYSIOLOGY OF DISEASE: AN
INTRODUCTION TO CLINICAL MEDICINE
8TH EDITION


AUTHOR(S)GARY D. HAMMER; STEPHEN J.
MCPHEE


TEST BANKS

1
Reference
Ch. 1 — Introduction — Cellular Injury: Reversible vs.
Irreversible
Stem
A 62-year-old man presents with chest pain for 18 hours. ECG
shows evolving ST-segment changes. Troponin is markedly
elevated. A cardiac MRI performed 3 days later demonstrates a
transmural region of late gadolinium enhancement. Which
cellular process best explains the MRI appearance indicating
permanent loss of myocardial tissue?

,A. Reversible mitochondrial swelling with preserved cell
membrane integrity
B. Irreversible loss of plasma membrane integrity with
enzymatic digestion of cellular constituents
C. Accumulation of intracellular glycogen without cell death
D. Adaptive hypertrophy of surviving cardiomyocytes without
cell loss
Correct answer
B
Rationale — Correct
Transmural late gadolinium enhancement indicates fibrosis
from necrotic cell death. Hammer & McPhee describe
irreversible injury as characterized by loss of plasma membrane
integrity and enzymatic digestion of cell components leading to
inflammation and replacement by fibrous tissue. This
mechanism explains permanent MRI signal changes.
Rationale — Incorrect
A. Mitochondrial swelling with intact membranes is a feature of
reversible injury and would not produce permanent scar.
C. Glycogen accumulation is a reversible metabolic change and
does not explain tissue loss or fibrosis.
D. Hypertrophy is an adaptive response of surviving cells; it
does not produce the transmural scar pattern seen here.
Teaching point
Irreversible injury = membrane rupture → enzymatic digestion
→ fibrosis.

,Citation
Hammer, G. D., & McPhee, S. J. (2025). Pathophysiology of
Disease (8th ed.). Chapter 1.


2
Reference
Ch. 1 — Introduction — Mechanisms of Ischemic Cell Injury
Stem
A middle-aged woman with prolonged hypotension following
major trauma develops acute kidney injury with muddy brown
granular casts. Which pathophysiologic mechanism most
directly produced the observed tubular epithelial cell necrosis?
A. Chronic adaptive increase in renal blood flow
B. ATP depletion leading to loss of ion pump function and cell
swelling
C. Autoimmune attack on tubular basement membrane
D. Hypersensitivity-mediated microvascular thrombosis
Correct answer
B
Rationale — Correct
Ischemia causes rapid ATP depletion, impairing Na⁺/K⁺-ATPase
and Ca²⁺ pumps, leading to ionic imbalance, cell swelling, and
necrosis — classic in acute tubular necrosis producing muddy
brown casts. Hammer & McPhee emphasize ATP depletion as
the proximate cause of ischemic cell injury.

, Rationale — Incorrect
A. Chronic adaptive increased flow is not present in acute
ischemia and would not cause necrosis.
C. Autoimmune attack is not the primary mechanism in
ischemic tubular injury.
D. Hypersensitivity with thrombosis is less characteristic;
ischemia due to hypotension is primarily ATP depletion.
Teaching point
Ischemic ATP depletion → pump failure → ionic imbalance →
necrosis.
Citation
Hammer, G. D., & McPhee, S. J. (2025). Pathophysiology of
Disease (8th ed.). Chapter 1.


3
Reference
Ch. 1 — Introduction — Oxidative Stress and Free Radical Injury
Stem
A patient undergoes reperfusion of a limb after 6 hours of
ischemia. Within hours, tissue swelling and progressive cellular
damage occur disproportionate to the period of ischemia.
Which mechanism best accounts for reperfusion-associated
injury?
A. Restoration of aerobic ATP production preventing further
damage
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