PubMed Health⌕ Search

PubMed · 9715624

Rapid decompression in the EA-6B.

Abstract

A Grumman EA-6B aircraft experienced a rapid pressurization failure at 27,000 feet. All four crew members had removed their oxygen masks and were breathing cabin air pressurized to 8,000 feet before the incident. Although none of the crew members developed signs or symptoms of decompression sickness, the potential for adversity was realized by all. Altitude decompression sickness (DCS) and pulmonary overinflation syndrome (POIS) represent potentially fatal complications of rapid decompression or uncontrolled ascent in aircraft. The signs and symptoms of DCS range from mild joint pain to eventual cardiopulmonary collapse and death. The symptoms of POIS are usually more abrupt and lethal. The medical management of DCS and POIS includes (1) maintenance of airway and cardiopulmonary resuscitation if necessary: (2) administration of 100% oxygen; (3) descent as per Naval Aviation Training and Operating Procedures Standardization guidelines; (4) horizontal body position; (5) maintenance of fluid intake; and (6) early medical evaluation by a flight surgeon or other physician qualified in the management of DCS. Symptoms of DCS may appear up to 24 hours after decompression, and continued monitoring or grounding of exposed individuals during this time is essential. Many controllable factors may predispose to DCS/POIS, and preventive measures should be taken to ensure maximum reduction of risk.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

S J Hudson, J S Todd. 1998. Rapid decompression in the EA-6B.. https://pubmed.ncbi.nlm.nih.gov/9715624/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

"Higher, always higher": technology, the military and aviation medicine during the age of the two world wars.

The history of flight has been strongly influenced by the interplay between physiology and technology. The human body defined the relationship between man and machine--it had to be protected from the cold, bad weather, high altitude, speed and bullets. Technological innovations offered a way to improve on aeroplane safety, and enabled pilots to exceed the limits imposed by physiological constraints. In particular, reconnaissance and bombing missions during World War II, which demanded flight at high altitudes, stimulated intensive scientific research and technological development. This research led to the construction of artificial environments for pilots and ultimately gave rise to space medicine.

Aerospace Medicine↗