# A nurse is caring for a patient with severe community-acquired pneumonia who is receiving high-flow nasal cannula oxygen therapy. The patient's oxygen saturation has dropped from 94% to 88% despite increasing the FiO2 to 60%. What is the most appropriate nursing intervention?

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## 문제

A nurse is caring for a patient with severe community-acquired pneumonia who is receiving high-flow nasal cannula oxygen therapy. The patient's oxygen saturation has dropped from 94% to 88% despite increasing the FiO2 to 60%. What is the most appropriate nursing intervention?

## 보기

1. Increase the flow rate on the high-flow nasal cannula to maximum setting
2. Place the patient in supine position to improve ventilation-perfusion matching
3. Administer bronchodilators via nebulizer to open airways
4. Position the patient in prone position to improve oxygenation **✔ 정답**

**정답: 4**

## 해설

Prone positioning is most appropriate as it improves oxygenation in COVID-19 ARDS by optimizing ventilation-perfusion matching. Increasing flow rate or administering bronchodilators may not address the underlying V/Q mismatch, and supine positioning can worsen oxygenation.

## 심화 해설

Understanding the Clinical Deterioration

The patient’s oxygen saturation (SpO₂) has dropped to 88% despite an increase in FiO₂ to 60% via high-flow nasal cannula (HFNC). This indicates worsening hypoxemic respiratory failure, a hallmark of severe community-acquired pneumonia that can progress to a state physiologically similar to acute respiratory distress syndrome (ARDS). In ARDS, inflammation and fluid accumulation in the alveoli lead to widespread atelectasis, particularly in the dorsal (dependent) lung regions, causing a significant ventilation-perfusion (V/Q) mismatch and intrapulmonary shunting. Simply increasing the FiO₂ becomes insufficient because blood is perfusing non-ventilated lung units and cannot be oxygenated.

Why Prone Positioning Is the Priority Intervention

Positioning the patient in a prone position is the most appropriate intervention because it directly counteracts the pathophysiology of dorsal atelectasis. When a patient is turned from supine to prone, several critical physiological changes occur:

- Alveolar Recruitment: The gravitational force and pleural pressure gradient are redistributed, allowing collapsed dorsal lung units to reopen. This reduces intrapulmonary shunting and improves V/Q matching [1,2].

- More Homogeneous Ventilation: Prone positioning makes the distribution of ventilation more uniform across the lung, reducing the stress and strain on already injured ventral lung regions [1].

- Enhanced Secretion Drainage: The position facilitates the drainage of secretions from the airways, which is a critical component of care in pneumonia and a major challenge during awake prone ventilation [1].

A retrospective cohort study of 1,716 ARDS patients identified prone positioning as a key nursing intervention associated with distinct physiological trajectories, including improvements in SpO₂ [2]. For a non-intubated patient on HFNC whose oxygenation is declining, applying awake prone positioning (APP) is an evidence-based strategy to delay or avoid intubation [1].

Analysis of Incorrect Options

- Option 1: Increasing the flow rate on the HFNC is a common titration step, but the problem is not primarily inadequate flow. The core issue is shunt physiology from dorsal atelectasis, which higher flow alone cannot resolve. Maximum flow may also cause patient discomfort and does not actively recruit collapsed alveoli.

- Option 2: Placing the patient in a supine position would worsen the condition. The supine position promotes dorsal atelectasis, further increasing V/Q mismatch and shunting. A study on stepwise head-of-bed (HOB) elevation in ARDS patients on HFNC found that while a higher HOB angle (e.g., 45° or 60°) can improve ventilation distribution compared to a lower angle, the prone position is superior for recruiting the dorsal lung . The supine position is the least beneficial.

- Option 3: Administering bronchodilators may be helpful if bronchospasm is a component of the presentation, but the primary pathology in severe pneumonia and ARDS is alveolar filling and collapse, not bronchoconstriction. This intervention does not address the fundamental V/Q mismatch caused by dependent atelectasis and would delay the proven, life-saving intervention of prone positioning.References (research sources)

- [1]EIT-guided chest physiotherapy for airway clearance during awake prone ventilation in ARDS: a randomized controlled trial.RCT/clinical trialWang X, Li M, Liu Y, Yu W, Li Y, Huang L. (2025) · DOI: 10.21037/jtd-2025-1473

- [2]Nursing interventions and multidomain physiological trajectories in ARDS: a retrospective cohort study.Research articleTang Q, Cui K, Zhou J, Ruan Y, Li X. (2026) · DOI: 10.3389/fmed.2026.1764005

## 임상 시나리오

Prone Positioning for Severe HypoxemiaEarly intervention to improve refractory hypoxemia in pneumonia
When a patient with pneumonia on high-flow nasal cannula (HFNC) has a dropping SpO2 despite FiO2 60%, suspect a physiology similar to ARDS with significant intrapulmonary shunting due to dorsal atelectasis.

Immediately position the patient in a prone position. This uses gravity to recruit collapsed dorsal alveoli, making ventilation more homogeneous and dramatically improving V/Q matching.

CautionProne positioning is a high-priority nursing intervention. Do not delay by first maximizing HFNC settings or placing the patient supine, which worsens the underlying atelectasis. Ensure the airway and lines are secure during the turn.

## 핵심 개념

- **Ventilation-Perfusion (V/Q) Mismatch** — An imbalance between alveolar ventilation and pulmonary capillary blood flow, leading to impaired gas exchange and hypoxemia.
- **Intrapulmonary Shunt** — Blood passing through non-ventilated alveoli, resulting in unoxygenated blood returning to the left heart; refractory to oxygen therapy.
- **Prone Positioning** — Placing a patient face-down to redistribute lung density and recruit dorsal alveoli, improving oxygenation in ARDS and severe pneumonia.
- **High-Flow Nasal Cannula (HFNC)** — A non-invasive respiratory support system delivering heated, humidified oxygen at high flow rates, capable of providing low levels of positive end-expiratory pressure.
- **Atelectasis** — Collapse of lung tissue, often in dependent regions, leading to impaired gas exchange and increased shunt fraction.

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