2026/2027 | Respiratory Pathophysiology Q&A |
Nursing
1. During quiet inspiration, what creates the pressure gradient that draws air into the lungs?
A) Bronchoconstriction lowers atmospheric pressure
B) Diaphragmatic contraction increases thoracic volume and lowers alveolar pressure
C) Relaxation of the diaphragm increases alveolar pressure
D) Surfactant actively pumps air into alveoli
Correct Answer: Diaphragmatic contraction increases thoracic volume and lowers alveolar pressure
Rationale: Thoracic expansion lowers intra-alveolar pressure below atmospheric pressure, allowing airflow
inward. The correct choice identifies the mechanism most directly linked to the finding in the question, rather
than a secondary association. The other options describe different processes or contradict the expected
respiratory physiology, so they do not adequately explain this presentation. This distinction supports accurate
respiratory assessment.
2. In an upright healthy adult, where is the ventilation-perfusion ratio usually highest?
A) At the lung bases
B) Uniformly throughout all lung zones
C) Only in the right middle lobe
D) At the lung apices
Correct Answer: At the lung apices
Rationale: Perfusion declines more steeply than ventilation toward the apices, producing a higher local ratio.
This mechanism directly explains the finding in the question and is central to interpreting the associated
respiratory abnormality. The alternatives describe different mechanisms or conflict with the expected
physiology, making them less appropriate. This distinction supports clinical interpretation.
3. An elevated arterial carbon dioxide level most directly indicates impairment of which process?
A) Pleural lubrication
B) Hemoglobin synthesis
C) Pulmonary capillary oncotic pressure
D) Alveolar ventilation
Correct Answer: Alveolar ventilation
Rationale: Carbon dioxide elimination depends strongly on effective alveolar ventilation rather than oxygen
delivery alone. This mechanism directly explains the finding in the question and is central to interpreting the
associated respiratory abnormality. The alternatives describe different mechanisms or conflict with the
expected physiology, making them less appropriate. This distinction supports clinical interpretation.
,4. Why can severe anemia cause tissue hypoxia despite a normal arterial oxygen tension?
A) Pulmonary arterial pressure always falls
B) Alveolar ventilation necessarily stops
C) Total arterial oxygen content is reduced by low hemoglobin
D) Dissolved oxygen rises enough to compensate fully
Correct Answer: Total arterial oxygen content is reduced by low hemoglobin
Rationale: Arterial oxygen tension reflects dissolved oxygen, whereas hemoglobin carries most oxygen content.
The correct choice identifies the mechanism most directly linked to the finding in the question, rather than a
secondary association. The other options describe different processes or contradict the expected respiratory
physiology, so they do not adequately explain this presentation. This distinction supports accurate respiratory
assessment.
5. A reduced FEV1/FVC ratio is most characteristic of which physiologic pattern?
A) Obstructive ventilatory impairment
B) Normal spirometry in every older adult
C) Pure restriction with preserved flow ratio
D) Isolated diffusion limitation without obstruction
Correct Answer: Obstructive ventilatory impairment
Rationale: Disproportionately reduced first-second expiratory volume signals airflow obstruction. The correct
choice identifies the mechanism most directly linked to the finding in the question, rather than a secondary
association. The other options describe different processes or contradict the expected respiratory physiology,
so they do not adequately explain this presentation. This distinction supports accurate respiratory assessment.
6. What physiologic abnormality defines diffusion limitation?
A) Impaired gas transfer across the alveolar-capillary membrane
B) Failure of the diaphragm to initiate every breath
C) Loss of all pulmonary perfusion
D) Increased upper-airway mucus alone
Correct Answer: Impaired gas transfer across the alveolar-capillary membrane
Rationale: Thickening or loss of exchange surface slows oxygen movement from alveoli to blood. The correct
choice identifies the mechanism most directly linked to the finding in the question, rather than a secondary
association. The other options describe different processes or contradict the expected respiratory physiology,
so they do not adequately explain this presentation. This distinction supports accurate respiratory assessment.
7. A mucus plug completely obstructing an otherwise perfused alveolar unit creates which local condition?
A) A shunt-like low ventilation-perfusion state
B) An isolated high ventilation-perfusion state
,C) An increase in local alveolar oxygen
D) An increase in anatomic dead space only
Correct Answer: A shunt-like low ventilation-perfusion state
Rationale: Perfusion persists while ventilation approaches zero, making oxygenation difficult. The correct choice
identifies the mechanism most directly linked to the finding in the question, rather than a secondary
association. The other options describe different processes or contradict the expected respiratory physiology,
so they do not adequately explain this presentation. This distinction supports accurate respiratory assessment.
8. Which cell produces most alveolar surfactant?
A) Type I alveolar epithelial cells
B) Alveolar macrophages
C) Type II alveolar epithelial cells
D) Pulmonary endothelial cells
Correct Answer: Type II alveolar epithelial cells
Rationale: Type II pneumocytes synthesize and recycle surfactant and also contribute to epithelial repair. The
correct choice identifies the mechanism most directly linked to the finding in the question, rather than a
secondary association. The other options describe different processes or contradict the expected respiratory
physiology, so they do not adequately explain this presentation. This distinction supports accurate respiratory
assessment.
9. The principal function of type I pneumocytes is what?
A) Driving mucociliary clearance
B) Contracting to increase lung volume
C) Producing most airway mucus
D) Providing a thin surface for alveolar gas exchange
Correct Answer: Providing a thin surface for alveolar gas exchange
Rationale: Their extremely thin morphology minimizes diffusion distance for respiratory gases. The correct
choice identifies the mechanism most directly linked to the finding in the question, rather than a secondary
association. The other options describe different processes or contradict the expected respiratory physiology,
so they do not adequately explain this presentation. This distinction supports accurate respiratory assessment.
10. How does impaired mucociliary clearance increase respiratory disease risk?
A) Retained secretions permit microbial persistence and airway obstruction
B) It eliminates neutrophil recruitment
C) It prevents exposure to inhaled irritants
D) It permanently enlarges all bronchioles
, Correct Answer: Retained secretions permit microbial persistence and airway obstruction
Rationale: Cilia and mucus normally transport trapped particles upward for removal. The correct choice
identifies the mechanism most directly linked to the finding in the question, rather than a secondary
association. The other options describe different processes or contradict the expected respiratory physiology,
so they do not adequately explain this presentation. This distinction supports accurate respiratory assessment.
11. IgE-mediated cross-linking on airway mast cells leads initially to what?
A) Mediator release and acute bronchoconstriction
B) Pulmonary arterial thrombus formation
C) Loss of all airway smooth muscle
D) Permanent alveolar wall destruction
Correct Answer: Mediator release and acute bronchoconstriction
Rationale: Mast-cell degranulation releases histamine and other mediators that narrow airways rapidly. The
correct choice identifies the mechanism most directly linked to the finding in the question, rather than a
secondary association. The other options describe different processes or contradict the expected respiratory
physiology, so they do not adequately explain this presentation. This distinction supports accurate respiratory
assessment.
12. A marked increase in peak expiratory flow after bronchodilator use suggests what?
A) Reversible airway narrowing
B) Irreversible loss of alveolar septa only
C) Normal ventilation in all circumstances
D) Isolated pulmonary vascular disease
Correct Answer: Reversible airway narrowing
Rationale: A bronchodilator response supports variable airflow obstruction, although interpretation depends on
test criteria. The correct choice identifies the mechanism most directly linked to the finding in the question,
rather than a secondary association. The other options describe different processes or contradict the expected
respiratory physiology, so they do not adequately explain this presentation. This distinction supports accurate
respiratory assessment.
13. In emphysema, destruction of alveolar attachments contributes to which effect?
A) Improved diffusing surface area
B) Increased elastic recoil and easier expiration
C) Excess surfactant synthesis alone
D) Reduced elastic recoil and small-airway collapse during expiration
Correct Answer: Reduced elastic recoil and small-airway collapse during expiration
Rationale: Loss of elastic tissue reduces radial traction and promotes expiratory air trapping. The correct choice
identifies the mechanism most directly linked to the finding in the question, rather than a secondary