Decompression-Related Disorders: Pressurization Systems, Barotrauma, and Altitude Sickness

Author:

Clark Jonathan B.

Publisher

Springer New York

Reference99 articles.

1. National Research Council (U.S.). Orbital Debris, A Technical Assessment. Committee on Space Debris. Aeronautics and Space Engineering Board. Commission on Engineering and Technical Systems. Washington, DC: National Academy Press; 1995.

2. National Research Council (U.S.). Protecting the Space Shuttle from Meteoroids and Orbital Debris. Committee on Space Shut-tle Meteoroid/Debris Risk Management. Aeronautics and Space Engineering Board. Commission on Engineering and Technical Systems. Washington, DC: National Academy Press; 1997a.

3. Williamsen JE. Orbital Debris Risk Analysis and Survivability Enhancement for Freedom Station Manned Modules. AIAA-92-1410. AIAA Space Programs and Technologies Conference March 24-27, 1992.

4. Kolesari GL, Kindwall EP. Survival following accidental decom-pression to an altitude greater than 74,000 feet (22,555 m). Aviat Space Environ Med 1982; 53:1211-1214.

5. Boyle III., J., Theoretical trans-respiratory pressure during rapid decompression: I. Model experiments and II. Animal experi-ments. Aerosp Med 1973; 44:153-162.

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