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下体负压以在太空中提供承重。

Lower body negative pressure to provide load bearing in space.

作者信息

Hargens A R, Whalen R T, Watenpaugh D E, Schwandt D F, Krock L P

机构信息

Life Science Division, NASA-Ames Research Center, Moffett Field, CA 94035-1000.

出版信息

Aviat Space Environ Med. 1991 Oct;62(10):934-7.

PMID:1764003
Abstract

Presently, exercise protocols and equipment for spaceflight are unresolved, although recent calculations suggest that all exercise in space to date has lacked sufficient loads to maintain preflight musculoskeletal mass. We hypothesized that lower body negative pressure (LBNP) produces a footward force equal to the product of the pressure differential and body cross-sectional area at the waist seal. Twelve male volunteers weighing 67.6-86.9 kg were sealed at the superior iliac crest in upright and supine LBNP chambers. Neither configuration included a saddle, so that the force due to LBNP was transmitted to the feet of our subjects. Each subject was exposed to 10 mm Hg increments of LBNP up to 70 mm Hg (standing) or to 50-100 mm Hg (supine), depending upon individual tolerance. Static reaction force was measured at each LBNP level for approximately 1-2 min. An additional static force approximately equivalent to 1% Earth body weight was generated against the feet by each mm Hg of LBNP either during upright standing or supine posture. Furthermore, the forces measured during LBNP agreed well with forces calculated from the cross-sectional areas of our subjects' waists. These results indicate that exercise in microgravity against 100 mm Hg LBNP could produce static and inertial forces similar in magnitude to those occurring on Earth. This gravity-independent technique may help maintain the musculoskeletal and cardiovascular systems of crewmembers during prolonged exposure to microgravity.

摘要

目前,太空飞行的运动方案和设备尚未确定,尽管最近的计算表明,迄今为止所有的太空运动都缺乏足够的负荷来维持飞行前的肌肉骨骼质量。我们假设下体负压(LBNP)产生的向足部的力等于压差与腰部密封处身体横截面积的乘积。12名体重在67.6 - 86.9千克之间的男性志愿者被密封在直立和仰卧的LBNP舱中的髂嵴上方。两种配置都不包括鞍座,因此LBNP产生的力会传递到我们受试者的足部。根据个人耐受程度,每位受试者暴露于LBNP以10毫米汞柱递增直至70毫米汞柱(站立)或50 - 100毫米汞柱(仰卧)。在每个LBNP水平测量静态反作用力约1 - 2分钟。在直立站立或仰卧姿势期间,每毫米汞柱的LBNP会在足部产生大约相当于1%地球体重的额外静态力。此外,LBNP期间测量的力与根据我们受试者腰部横截面积计算出的力非常吻合。这些结果表明,在微重力环境下对抗100毫米汞柱的LBNP进行运动可以产生与地球上类似大小的静态和惯性力。这种与重力无关的技术可能有助于在长期暴露于微重力环境期间维持机组人员的肌肉骨骼和心血管系统。

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