# Situation: A 58-year-old man with severe community-acquired pneumonia is intubated in the intensive care unit (ICU). On day 2, chest imaging shows new bilateral opacities, an echocardiogram shows normal left ventricular function, and the team diagnoses acute respiratory distress syndrome (ARDS). He is 170 cm tall and weighs 95 kg. The fraction of inspired oxygen (FiO2) is raised from 0.50 to 0.80, yet his arterial oxygen level barely rises. Which mechanism BEST explains this?

> source: MyMerci (mymerci.kr)  
> url: https://mymerci.kr/pages/nclex_q.php?qn_id=630016  
> language: ko  
> subject: Nursing Practice V — Care of Clients with Maladaptive Patterns of Behavior; Care of Clients with Life-Threatening Conditions, Acute Multi-Organ Problems, High Acuity and Emergency Situations

## 문제

Situation: A 58-year-old man with severe community-acquired pneumonia is intubated in the intensive care unit (ICU). On day 2, chest imaging shows new bilateral opacities, an echocardiogram shows normal left ventricular function, and the team diagnoses acute respiratory distress syndrome (ARDS). He is 170 cm tall and weighs 95 kg.

The fraction of inspired oxygen (FiO2) is raised from 0.50 to 0.80, yet his arterial oxygen level barely rises. Which mechanism BEST explains this?

## 보기

1. Sedation has reduced his respiratory drive and alveolar ventilation
2. High left atrial pressure is forcing fluid into the alveolar spaces
3. Clots in the pulmonary arteries leave ventilated alveoli without blood flow
4. Blood flows past collapsed, fluid-filled alveoli without taking up oxygen **✔ 정답**

**정답: 4**

## 해설

In ARDS, a leaky alveolar–capillary membrane floods the alveoli with protein-rich fluid, and loss of surfactant makes them collapse. Blood that passes these alveoli is not oxygenated (intrapulmonary shunt), so raising the inspired oxygen does little; this refractory hypoxemia is the hallmark of ARDS.

## 심화 해설

Core mechanism of refractory hypoxemia in ARDS

The key to this question is recognizing that the patient’s arterial oxygen level barely improves despite a large increase in FiO2 from 0.50 to 0.80. This pattern is called refractory hypoxemia, and it points to a problem that increased inspired oxygen cannot fix: blood is flowing through lung regions where no gas exchange is occurring at all.

In ARDS, the alveolar–capillary membrane becomes leaky, allowing protein-rich fluid to flood the alveoli. At the same time, surfactant is depleted, so those fluid-filled alveoli collapse. When blood from the right ventricle passes these collapsed, fluid-filled units, it never comes into contact with ventilated air. This is an intrapulmonary shunt—venous blood returns to the left heart without being oxygenated [2].

Watch out! A shunt is different from ventilation–perfusion (V/Q) mismatch. In V/Q mismatch, some ventilation still reaches the alveoli, so raising FiO2 can improve oxygenation. In a true shunt, no ventilation reaches the blood at all, so even 100% oxygen cannot oxygenate that blood. This is why shunt is described as refractory to oxygen therapy.

The echocardiogram showing normal left ventricular function is an important clue. It rules out cardiogenic pulmonary edema from high left atrial pressure, which would also cause fluid in alveoli but through a hydrostatic mechanism rather than alveolar–capillary barrier injury. In ARDS, the edema is noncardiogenic [2].

Pulmonary vascular dysfunction also contributes to the shunt. Endothelial injury, dysregulated hypoxic pulmonary vasoconstriction, and microvascular thrombosis can worsen perfusion of non-ventilated regions [1]. However, the primary mechanism of refractory hypoxemia remains intrapulmonary shunting of blood past collapsed, fluid-filled alveoli [2].

| Mechanism | Why it does NOT explain this case |
| --- | --- |
| Sedation reducing respiratory drive | Would cause hypoventilation with rising PaCO2; oxygenation would still respond to increased FiO2 |
| High left atrial pressure | Echocardiogram shows normal left ventricular function, ruling out cardiogenic edema |
| Pulmonary embolism (clots) | Creates dead space—ventilated alveoli without blood flow—not shunt; oxygenation often improves with FiO2 |
| Intrapulmonary shunt | Blood perfuses collapsed, fluid-filled alveoli with no ventilation; refractory to increased FiO2 |

Key point! In ARDS, the hallmark gas-exchange defect is intrapulmonary shunt, not dead space or hypoventilation. The clinical signature is a low PaO2/FiO2 ratio that does not improve substantially when FiO2 is increased [2]. This is why ARDS severity is classified by the PaO2/FiO2 ratio, and why management focuses on recruiting collapsed alveoli with positive end-expiratory pressure rather than simply raising FiO2 [2].References (research sources)

- [1]Pulmonary vascular dysfunction in ARDS Pathophysiology and therapeutic implications.Research articleZheng H, Fan S, He C, Zhang Y, Geng S, Chen H, Xue Y, Wu Y, Ren W, Zhang C, Liu L, Huang Y, Qiu H. (2026) · DOI: 10.1016/j.aicoj.2026.100145

- [2]Pathogenesis and treatment of the adult respiratory distress syndrome.Research articleFulkerson WJ, MacIntyre N, Stamler J, Crapo JD (1996)

## 임상 시나리오

ARDS Refractory Hypoxemia: Why FiO2 FailsIntrapulmonary shunt as the core mechanism
In ARDS, alveolar-capillary injury causes protein-rich fluid to flood alveoli and surfactant loss leads to alveolar collapse. Blood passing these units creates an intrapulmonary shunt—venous blood returns to the left heart without oxygenation.

A shunt is refractory to oxygen therapy: even FiO2 1.0 cannot oxygenate blood that never contacts ventilated alveoli. This differs from V/Q mismatch, where some ventilation remains and raising FiO2 improves PaO2.

CautionNormal left ventricular function on echocardiography rules out cardiogenic pulmonary edema from high left atrial pressure. ARDS edema is noncardiogenic, driven by permeability injury, not hydrostatic forces.

## 핵심 개념

- **Intrapulmonary shunt** — Blood flows past collapsed or fluid-filled alveoli without gas exchange, returning deoxygenated blood to the left heart; refractory to oxygen therapy.
- **Refractory hypoxemia** — Arterial oxygen level fails to rise significantly despite high FiO2, indicating a shunt rather than V/Q mismatch.
- **ARDS** — Acute respiratory distress syndrome; diffuse alveolar-capillary injury causing noncardiogenic pulmonary edema and severe hypoxemia.
- **V/Q mismatch** — Ventilation-perfusion imbalance where some ventilation still reaches alveoli, so increasing FiO2 can improve oxygenation.
- **Noncardiogenic pulmonary edema** — Fluid in alveoli due to increased alveolar-capillary permeability, not elevated left atrial pressure.

## 같은 주제 문제

- [Situation: A 58-year-old man with severe community-acquired pneumonia is intubated in the …](https://mymerci.kr/pages/nclex_q.php?qn_id=630017)
- [Situation: A 58-year-old man with severe community-acquired pneumonia is intubated in the …](https://mymerci.kr/pages/nclex_q.php?qn_id=630018)
- [Situation: A 58-year-old man with severe community-acquired pneumonia is intubated in the …](https://mymerci.kr/pages/nclex_q.php?qn_id=630019)
- [Situation: A 62-year-old man arrives at the emergency department of a provincial hospital …](https://mymerci.kr/pages/nclex_q.php?qn_id=630020)
- [Situation: A 62-year-old man arrives at the emergency department of a provincial hospital …](https://mymerci.kr/pages/nclex_q.php?qn_id=630021)
- [Situation: A 62-year-old man arrives at the emergency department of a provincial hospital …](https://mymerci.kr/pages/nclex_q.php?qn_id=630022)
- [Situation: A 70-year-old woman with rheumatic heart disease is in the coronary care unit. …](https://mymerci.kr/pages/nclex_q.php?qn_id=630023)
- [Situation: A 70-year-old woman with rheumatic heart disease is in the coronary care unit. …](https://mymerci.kr/pages/nclex_q.php?qn_id=630024)

---

More free questions: [기출문제](https://mymerci.kr/)

_학습 참고용입니다. 실제 임상은 최신 지침과 소속 기관 프로토콜을 따르세요._

