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Lower-body negative-pressure exercise and bed-rest-mediated orthostatic intolerancePURPOSE: Supine, moderate exercise is ineffective in maintaining orthostatic tolerance after bed rest (BR). Our purpose was to test the hypothesis that adding an orthostatic stress during exercise would maintain orthostatic function after BR. METHODS: Seven healthy men completed duplicate 15-d 6 degrees head-down tilt BR using a crossover design. During one BR, subjects did not exercise (CON). During another BR, subjects exercised for 40 min.d(-1) on a supine treadmill against 50-60 mm Hg LBNP (EX). Exercise training consisted of an interval exercise protocol of 2- to 3-min intervals alternating between 41 and 65% (.)VO(2max). Before and after BR, an LBNP tolerance test was performed in which the LBNP chamber was decompressed in 10-mm Hg stages every 3 min until presyncope. RESULTS: LBNP tolerance, as assessed by the cumulative stress index (CSI) decreased after BR in both the CON (830 +/- 144, pre-BR vs 524 +/- 56 mm Hg.min, post-BR) and the EX (949 +/- 118 pre-BR vs 560 +/- 44 mm Hg.min, post-BR) conditions. However, subtolerance (0 to -50 mm Hg LBNP) heart rates were lower and systolic blood pressures were better maintained after BR in the EX condition compared with CON. CONCLUSION: Moderate exercise performed against LBNP simulating an upright 1-g environment failed to protect orthostatic tolerance after 15 d of BR.
Document ID
20040088139
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Schneider, Suzanne M.
(University of New Mexico, Johnson Center Room 126, Albuquerque, NM 87131, United States)
Watenpaugh, Donald E.
Lee, Stuart M C.
Ertl, Andrew C.
Williams, W. Jon
Ballard, Richard E.
Hargens, Alan R.
Date Acquired
August 21, 2013
Publication Date
September 1, 2002
Publication Information
Publication: Medicine and science in sports and exercise
Volume: 34
Issue: 9
ISSN: 0195-9131
Subject Category
Aerospace Medicine
Distribution Limits
Public
Copyright
Other
Keywords
NASA Center JSC
Non-NASA Center
NASA Discipline Cardiopulmonary

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