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Risk of Cardiac Rhythm Problems During SpaceflightNASA has concerns regarding the incidence and clinical significance of cardiac arrhythmias that could occur during long-term exposure to the spaceflight environment, such as on the International Space Station (ISS) or during a prolonged (e.g., up to 3 years) sojourn to Mars or on the Moon. There have been some anecdotal reports and a few documented cases of cardiac arrhythmias in space, including one documented episode of non-sustained ventricular tachycardia. The potential catastrophic nature of a sudden cardiac death in the remote space environment has led to concerns from the early days of the space program that spaceflight might be arrhythmogenic. Indeed, there are known and well-defined changes in the cardiovascular system with spaceflight: a) plasma volume is reduced, b) left ventricular mass is decreased, and c) the autonomic nervous system adapts to the weightless environment. Combined, these physiologic adaptations suggest that changes in cardiac structure and neuro-humoral environment during spaceflight could alter electrical conduction, although the evidence supporting this contention consists mostly of minor changes in QT interval (the time between the start of the Q wave and the end of the T wave on an electrocardiogram tracing) in a small number of astronauts after long-duration spaceflight. Concurrent with efforts by NASA Medical Operations to refine and improve screening techniques relevant to arrhythmias and cardiovascular disease, as NASA enters the era of exploration-class missions it will be critical to determine with the highest degree of certainty whether spaceflight by itself alters cardiac structure and function sufficiently to increase the risk of arrhythmias.
Document ID
20170005625
Acquisition Source
Johnson Space Center
Document Type
Other
Authors
Lee, Stuart M. C.
(KBRwyle Science, Technology and Engineering Houston, TX, United States)
Stenger, Michael B.
(NASA Johnson Space Center Houston, TX, United States)
Laurie, Steven S.
(KBRwyle Science, Technology and Engineering Houston, TX, United States)
Macias, Brandon R.
(KBRwyle Science, Technology and Engineering Houston, TX, United States)
Date Acquired
June 15, 2017
Publication Date
June 12, 2017
Subject Category
Aerospace Medicine
Report/Patent Number
JSC-CN-39745
Report Number: JSC-CN-39745
Distribution Limits
Public
Copyright
Public Use Permitted.
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