Flail chest
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Flail chest Classification and external resources |
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A chest X-ray of a flail chest associated with right sided pulmonary contusion and subcutaneous emphysema | |
ICD-10 | S22.5 |
ICD-9 | 807.4 |
DiseasesDB | 32227 |
eMedicine | med/2813 |
MeSH | D005409 |
A flail chest occurs when a segment of the chest wall breaks under extreme stress and becomes detached from the rest of the chest wall. It occurs when at least two ribs are broken in at least two places, so a part of the chest wall moves independently from the rest of it.[1] The flail segment moves in the opposite direction as the rest of the chest wall: because of the ambient pressure in comparison to the pressure inside the lungs, it goes in while the rest of the chest is moving out, and vice versa.[1] This so-called "paradoxical motion" can increase the work and pain involved in breathing.[1] Studies have found that up to half of people with flail chest die.[1] Flail chest is invariably accompanied by pulmonary contusion, a bruise of the lung tissue that can interfere with blood oxygenation.[1]
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[edit] Causes
It is a serious, life-threatening chest injury often associated with underlying pulmonary injury and is most commonly seen in cases of significant blunt trauma.
This typically occurs when three or more ribs are fractured in two or more places, allowing that segment of the thoracic wall to displace and move independently of the rest of the chest wall. Flail chest can also occur when ribs are fractured proximally in conjunction with disarticulation of costochondral cartilages distally. For the condition to occur, generally there must be a significant force applied over a large surface of the thorax to create the multiple anterior and posterior rib fractures. Rollover and crushing injuries most commonly break ribs at only one point– for flail chest to occur a significant impact is required, breaking the ribs in two or more places.[2]
[edit] Presentation
The characteristic paradoxical motion of the flail segment occurs due to pressure changes associated with respiration that the rib cage normally resists:
- During normal inspiration, the diaphragm contracts and intercostal muscles push the rib cage out. Pressure in the thorax decreases below atmospheric pressure, and air rushes in through the trachea. However, a flail segment will not resist the decreased pressure and will appear to push in while the rest of the rib cage expands.
- During normal expiration, the diaphragm and intercostal muscles relax, allowing the abdominal organs to push air upwards and out of the thorax. However, a flail segment will also be pushed out while the rest of the rib cage contracts.
The constant motion of the ribs in the flail segment at the site of the fracture is incredibly painful, and, untreated, the sharp broken edges of the ribs are likely to eventually puncture the pleural sac and lung, possibly causing a pneumothorax.
[edit] Treatment
Treatment of the flail chest initially follows the principles of Advanced Trauma Life Support. Further treatment includes:
- Good analgesia including intercostal blocks, avoiding narcotic analgesics as much as possible. This allows much better ventilation, with improved tidal volume, and increased blood oxygenation.
- Positive pressure ventilation, meticulosly adjusting the ventilator settings to avoid barotrauma.
- Chest tubes as required.
- Adjustment of position to make the patient most comfortable and provide relief of pain.
Surgical fixation is usually not required.
[edit] References
- ^ a b c d e Yamamoto L, Schroeder C, Morley D, Beliveau C (2005). "Thoracic trauma: The deadly dozen". Critical Care Nursing Quarterly 28 (1): 22-40. PMID 15732422.
- ^ Bjerke, H Scott (June 16, 2006). Flail Chest. eMedicine. Retrieved on 2007-08-01.
[edit] External links
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