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NR 546 Advanced Pathophysiology ATI/NCLEX Preparation | Practice Question s & Rationales

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NR 546 Advanced Pathophysiology ATI/NCLEX Preparation | Practice Question s & Rationales

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NR 546 Advanced Pathophysiology ATI/NCLEX Preparation |
Practice Question s & Rationales


Question 1 Which cellular adaptation process is characterized by a
decrease in cell size and functional capacity resulting from disuse, aging,
or diminished blood supply?
• A. Hypertrophy
• B. Metaplasia
• C. Atrophy
• D. Dysplasia
Correct Answer: C. Atrophy
Detailed Rationale: Atrophy is the reduction in cell size and structural
components in response to reduced functional demand, workload, or
nutrient supply, allowing the cell to survive under stressed conditions.
Question 2 What is the primary cellular mechanism responsible for
tissue damage during an ischemia-reperfusion injury?
• A. Uncontrolled intracellular potassium depletion paired with
hyperpolarization.
• B. Massive generation of reactive oxygen species (ROS) upon
restoration of oxygen to ischemic cells.
• C. Immediate activation of extracellular matrix calcification.
• D. Permanent cessation of all membrane-bound enzyme activity.

,Correct Answer: B. Massive generation of reactive oxygen species (ROS)
upon restoration of oxygen to ischemic cells.
Detailed Rationale: Reperfusion of ischemic tissue paradoxically
exacerbates cellular injury by triggering a burst of reactive oxygen
species (ROS), which cause lipid peroxidation, mitochondrial damage,
and calcium overload.
Question 3 Which type of necrosis is classically observed following a
myocardial infarction due to protein denaturation and cellular hypoxia?
• A. Liquefactive necrosis
• B. Caseous necrosis
• C. Coagulative necrosis
• D. Fat necrosis
Correct Answer: C. Coagulative necrosis
Detailed Rationale: Coagulative necrosis results from hypoxia-induced
denaturation of structural proteins and enzymes, preserving the
architectural outline of the dead cells for several days before phagocytic
clearance.
Question 4 During the vascular phase of acute inflammation, what
causes the immediate local redness and warmth?
• A. Arteriolar vasoconstriction followed by sustained vasodilation.
• B. Microvascular thrombosis trapping red blood cells locally.
• C. Rapid destruction of local capillary endothelial linings.
• D. Active lymphatic drainage proliferation.

,Correct Answer: A. Arteriolar vasoconstriction followed by sustained
vasodilation.
Detailed Rationale: Acute inflammation begins with a brief arteriolar
constriction, immediately followed by histamine and prostaglandin-
mediated vasodilation, increasing blood flow to the microvasculature,
causing redness (rubor) and warmth (calor).
Question 5 Which hypersensitivity reaction involves IgE-mediated
antibody binding to mast cells and basophils, resulting in immediate
degranulation?
• A. Type I hypersensitivity
• B. Type II hypersensitivity
• C. Type III hypersensitivity
• D. Type IV hypersensitivity
Correct Answer: A. Type I hypersensitivity
Detailed Rationale: Type I immediate hypersensitivity is triggered when
allergens cross-link IgE antibodies attached to mast cell surfaces,
prompting the rapid release of stored inflammatory mediators like
histamine.
Question 6 What is the primary hemodynamic consequence of left-
sided heart failure?
• A. Systemic venous congestion leading to peripheral pitting edema
and jugular venous distention.
• B. Increased pulmonary capillary hydrostatic pressure, driving fluid
into the alveoli and causing pulmonary edema.

, • C. Rapid systemic arterial hypertension and hypervolemic shock.
• D. Complete cessation of renal blood flow causing immediate
anuria.
Correct Answer: B. Increased pulmonary capillary hydrostatic pressure,
driving fluid into the alveoli and causing pulmonary edema.
Detailed Rationale: Left ventricular failure causes blood to back up into
the left atrium and pulmonary veins, raising hydrostatic pressure within
pulmonary capillaries and forcing fluid across the alveolar-capillary
membrane into the lung interstitium and alveoli.
Question 7 In alpha-1 antitrypsin deficiency, what underlying
pathophysiological mechanism leads to panacinar emphysema?
• A. Uninhibited elastase activity from neutrophils destroying elastic
fibers in the lung parenchyma.
• B. Hypersecretion of thick mucus from hyperplastic bronchial
goblet cells without alveolar destruction.
• C. Autoimmune destruction of pulmonary capillary endothelial
walls.
• D. Chronic bronchospasm driven by IgE-mediated mast cell
degranulation.
Correct Answer: A. Uninhibited elastase activity from neutrophils
destroying elastic fibers in the lung parenchyma.
Detailed Rationale: Alpha-1 antitrypsin normally protects lung tissue by
inhibiting neutrophil elastase. Without it, unchecked protease activity
degrades alveolar walls, leading to loss of elasticity and emphysema.

Información del documento

Subido en
30 de julio de 2026
Número de páginas
35
Escrito en
2025/2026
Tipo
Examen
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