# Situation: Two adults injured in the same motorcycle crash are in the emergency room (ER). The driver, a 34-year-old man, has fractures of the left 4th to 7th ribs and a left hemothorax; a chest tube connected to a drainage system was inserted 3 hours ago. The passenger, a 29-year-old man, struck the handlebar with his chest. The passenger has right chest pain, and a segment of the right chest wall moves inward on inspiration and outward on expiration. His respiratory rate is 34/min, crackles are heard over the right chest, and his oxygen saturation is 88% on oxygen. Breath sounds are present on both sides, and the trachea is midline. Which injury is MOST likely?

> source: MyMerci (mymerci.kr)  
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> subject: Nursing Practice III — Care of Clients with Problems in Surgery, Oxygenation, Fluid and Electrolytes, Infectious, Inflammatory and Immunologic Response, Cellular Aberrations

## 문제

Situation: Two adults injured in the same motorcycle crash are in the emergency room (ER). The driver, a 34-year-old man, has fractures of the left 4th to 7th ribs and a left hemothorax; a chest tube connected to a drainage system was inserted 3 hours ago. The passenger, a 29-year-old man, struck the handlebar with his chest.

The passenger has right chest pain, and a segment of the right chest wall moves inward on inspiration and outward on expiration. His respiratory rate is 34/min, crackles are heard over the right chest, and his oxygen saturation is 88% on oxygen. Breath sounds are present on both sides, and the trachea is midline. Which injury is MOST likely?

## 보기

1. Tension pneumothorax
2. Flail chest **✔ 정답**
3. Ruptured diaphragm
4. Massive hemothorax

**정답: 2**

## 해설

A chest wall segment that moves inward on inspiration and outward on expiration is paradoxical movement, the sign of flail chest (two or more adjacent ribs each broken in two or more places). His hypoxemia and crackles come mainly from the underlying pulmonary contusion. Breath sounds on both sides and a midline trachea argue against tension pneumothorax and massive hemothorax.

## 심화 해설

Core injury identification

The passenger’s right chest wall segment moves inward on inspiration and outward on expiration. This is paradoxical chest wall movement, the defining clinical sign of flail chest. Flail chest occurs when two or more adjacent ribs are each fractured in two or more places, creating a free-floating segment that no longer follows the normal mechanics of the thoracic cage [2].

Why the chest wall moves paradoxically

During inspiration, the diaphragm descends and intrathoracic pressure becomes more negative. A normal rib cage expands outward, but a flail segment lacks bony continuity, so the negative pressure pulls that detached segment inward while the rest of the chest expands. During expiration, intrathoracic pressure rises, and the flail segment is pushed outward while the rest of the chest recoils. This reversed motion is not just a visual finding; it reflects severe disruption of chest wall mechanics and is associated with adverse outcomes [2].

Why the hypoxemia and crackles fit flail chest

The passenger’s oxygen saturation is 88% on oxygen, and crackles are heard over the right chest. In flail chest, the paradoxical motion itself impairs effective ventilation, but the more important driver of hypoxemia is usually the underlying pulmonary contusion. The blunt force that broke the ribs also bruises the lung parenchyma, causing alveolar hemorrhage and edema. Crackles reflect that fluid in the alveoli, and the contused lung creates a ventilation–perfusion mismatch that lowers oxygen saturation. The respiratory rate of 34/min is the body’s compensatory attempt to maintain minute ventilation despite a stiff, painful, and mechanically inefficient chest wall.

Why the other options are less likely

Key point! The passenger has breath sounds present on both sides and a midline trachea. These findings argue strongly against tension pneumothorax and massive hemothorax. A tension pneumothorax progressively compresses the affected lung and shifts the mediastinum, producing absent or markedly diminished breath sounds on the affected side and tracheal deviation away from the injury. A massive hemothorax also collapses the lung and can shift the trachea, with dullness to percussion and absent breath sounds over the accumulated blood. Neither is present here.

Ruptured diaphragm can occur with blunt chest or abdominal trauma, but it does not produce a chest wall segment that moves inward on inspiration. Diaphragmatic rupture typically presents with respiratory distress, possible bowel sounds in the chest, and radiographic evidence of abdominal contents above the diaphragm. The described paradoxical wall motion is specific to a flail segment.

Clinical and examination relevance

For nursing licensure examinations, the key discriminator is the direction of chest wall movement relative to the respiratory cycle. Normal chest wall movement is outward with inspiration and inward with expiration. Paradoxical movement is the reverse: inward with inspiration and outward with expiration. This single observation, combined with a history of blunt chest trauma, is sufficient to identify flail chest. The presence of bilateral breath sounds and a midline trachea then helps rule out the two immediately life-threatening air or blood collection diagnoses in the differential.

Pathophysiology beyond the visible segment

Even when the paradoxical motion appears to lessen, the underlying mechanical problem may persist. In a patient with flail chest, unstable chest wall segments can allow pendelluft—the movement of gas back and forth between lung regions without participating in effective alveolar ventilation—to continue despite apparent resolution of the visible paradoxical movement . This means that clinical monitoring must go beyond simply watching the chest wall. Oxygenation, work of breathing, and ventilation dynamics remain important, and management may require mechanical ventilation or surgical stabilization when the flail segment compromises gas exchange .

Summary of the discriminating findings

| Finding | Flail chest | Tension pneumothorax | Massive hemothorax |
| --- | --- | --- | --- |
| Chest wall movement | Paradoxical (inward on inspiration) | Normal or splinted | Normal or splinted |
| Breath sounds | Present bilaterally, may have crackles | Absent or markedly decreased on affected side | Absent or decreased on affected side |
| Trachea | Midline | Deviated away from injury | May be deviated away or midline |
| Main cause of hypoxemia | Pulmonary contusion and altered mechanics | Lung collapse and impaired venous return | Lung collapse and blood loss |

The passenger’s inward chest wall movement on inspiration is the hallmark of flail chest, and the preserved bilateral breath sounds with a midline trachea make tension pneumothorax and massive hemothorax unlikely. The hypoxemia and crackles are best explained by the associated pulmonary contusion, which frequently accompanies the rib fractures that create the flail segment.References (research sources)

- [2]Novel nomogram for predicting paradoxical chest wall movement in patients with flail segment of traumatic rib fracture: a retrospective cohort study.Research articleSeok J, Jeong ST, Yoon SY, Lee JY, Kim S, Cho H (2023) · DOI: 10.1038/s41598-023-47700-w

## 임상 시나리오

Flail Chest RecognitionParadoxical movement is the key sign
A free-floating chest wall segment that moves inward on inspiration and outward on expiration indicates flail chest, typically from 2 or more adjacent ribs fractured in 2 or more places.

The hypoxemia and crackles are driven primarily by the underlying pulmonary contusion, not just the paradoxical motion itself.

CautionBilateral breath sounds and a midline trachea make tension pneumothorax and massive hemothorax unlikely—do not delay flail chest management while pursuing these diagnoses.

## 핵심 개념

- **Flail chest** — A condition where two or more adjacent ribs are each fractured in two or more places, creating a free-floating chest wall segment that moves paradoxically during breathing.
- **Paradoxical movement** — Inward movement of a chest wall segment during inspiration and outward movement during expiration, opposite to normal chest wall motion.
- **Pulmonary contusion** — Bruising of lung parenchyma from blunt trauma, causing alveolar hemorrhage and edema that leads to hypoxemia and crackles.
- **Tension pneumothorax** — A life-threatening condition where air accumulates in the pleural space under pressure, causing absent breath sounds, tracheal deviation, and hemodynamic compromise.
- **Massive hemothorax** — Rapid accumulation of blood in the pleural space, typically presenting with absent breath sounds and signs of hypovolemic shock.

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