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模拟微重力环境下跑步时的重力替代

Gravity replacement during running in simulated microgravity.

作者信息

Genc Kerim O, Mandes Vince E, Cavanagh Peter R

机构信息

Department of Biomedical Engineering, The Cleveland Clinic, Cleveland, OH 44195, USA.

出版信息

Aviat Space Environ Med. 2006 Nov;77(11):1117-24.

Abstract

INTRODUCTION

During treadmill exercise on the International Space Station (ISS), a restoring load from a subject load device (SLD) is applied through a shoulder-and-waist harness to pull the exercising crewmember toward the treadmill surface. The capacity of this arrangement to provide 1-g-like reaction forces may be critical for effective use of the treadmill as a countermeasure to musculoskeletal changes during prolonged spaceflight. This study in simulated microgravity evaluated the comfort and function during running of the ISS harness used with a new SLD in a system that allows more even distribution of the load between the waist and shoulders.

METHODS

Using a zero-gravity locomotion simulator, 12 subjects completed three 5-min running trials at a constant speed (3.35 m x s(-1)) using three SLD loads [50%, 75%, and 100% of bodyweight (BW)] presented at random and a shoulder-to-waist loading ratio of 50:50. Subjective ratings of discomfort, ground reaction forces (GRFs), and SLD loads were collected.

RESULTS

A load of 100% BW resulted in similar GRF profiles (peak and rate of change of force) to those reported for 1-g running over ground and were also comfortably tolerated (mean Borg scale rating 3.9/10).

DISCUSSION

With an appropriate harness and SLD system, 1-g-like GRF profiles can be generated at the feet during simulated microgravity running. Such forces can be achieved with a level of discomfort rated better than "somewhat uncomfortable," suggesting that running with 1-g loads could be an effective component of musculoskeletal countermeasures during long-duration spaceflight.

摘要

引言

在国际空间站(ISS)进行跑步机运动时,通过肩腰安全带施加来自主体负载装置(SLD)的恢复负载,将进行运动的机组人员拉向跑步机表面。这种装置提供类似1g反应力的能力对于有效利用跑步机作为长期太空飞行期间肌肉骨骼变化的对策可能至关重要。这项在模拟微重力环境下的研究评估了在一个能使负载在腰部和肩部之间更均匀分布的系统中,与新型SLD一起使用的ISS安全带在跑步过程中的舒适性和功能。

方法

使用零重力运动模拟器,12名受试者以恒定速度(3.35 m x s(-1))完成了三次5分钟的跑步试验,试验采用随机呈现的三种SLD负载[体重(BW)的50%、75%和100%],肩腰负载比为50:50。收集了受试者对不适感、地面反作用力(GRF)和SLD负载的主观评分。

结果

100% BW的负载产生的GRF曲线(力的峰值和变化率)与在地面上1g跑步时报告的曲线相似,并且也能舒适地耐受(平均博格量表评分为3.9/10)。

讨论

使用合适的安全带和SLD系统,在模拟微重力跑步过程中,脚部可产生类似1g的GRF曲线。这样的力可以在不适感评级优于“有点不舒服”的水平下实现,这表明在长期太空飞行期间,以1g负载跑步可能是肌肉骨骼对策的有效组成部分。

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