Exercise in space: human skeletal muscle after 6 months aboard the International Space Station

太空飞行 骨骼肌 肌球蛋白 失重 单调的工作 内科学 医学 肌肉收缩 解剖 腓肠肌 运动生理学 肌肉萎缩 心脏病学 物理医学与康复 内分泌学 生物 物理 生物物理学 天文
作者
Scott Trappe,D. L. Costill,Philip M. Gallagher,Andrew Creer,Jim R. Peters,Harlan Evans,Danny A. Riley,R. H. Fitts
出处
期刊:Journal of Applied Physiology [American Physiological Society]
卷期号:106 (4): 1159-1168 被引量:418
标识
DOI:10.1152/japplphysiol.91578.2008
摘要

The aim of this investigation was to document the exercise program used by crewmembers ( n = 9; 45 ± 2 yr) while aboard the International Space Station (ISS) for 6 mo and examine its effectiveness for preserving calf muscle characteristics. Before and after spaceflight, we assessed calf muscle volume (MRI), static and dynamic calf muscle performance, and muscle fiber types (gastrocnemius and soleus). While on the ISS, crewmembers had access to a running treadmill, cycle ergometer, and resistance exercise device. The exercise regimen varied among the crewmembers with aerobic exercise performed ∼5 h/wk at a moderate intensity and resistance exercise performed 3–6 days/wk incorporating multiple lower leg exercises. Calf muscle volume decreased ( P < 0.05) 13 ± 2% with greater ( P < 0.05) atrophy of the soleus (−15 ± 2%) compared with the gastrocnemius (−10 ± 2%). Peak power was 32% lower ( P < 0.05) after spaceflight. Force-velocity characteristics were reduced ( P < 0.05) −20 to −29% across the velocity spectrum. There was a 12–17% shift in myosin heavy chain (MHC) phenotype of the gastrocnemius and soleus with a decrease ( P < 0.05) in MHC I fibers and a redistribution among the faster phenotypes. These data show a reduction in calf muscle mass and performance along with a slow-to-fast fiber type transition in the gastrocnemius and soleus muscles, which are all qualities associated with unloading in humans. Future long-duration space missions should modify the current ISS exercise prescription and/or hardware to better preserve human skeletal muscle mass and function, thereby reducing the risk imposed to crewmembers.
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