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失重状态下人类手臂运动的减慢:视觉的作用。

Slowing of human arm movements during weightlessness: the role of vision.

作者信息

Mechtcheriakov S, Berger M, Molokanova E, Holzmueller G, Wirtenberger W, Lechner-Steinleitner S, De Col C, Kozlovskaya I, Gerstenbrand F

机构信息

Department of Psychiatry, University Clinic Innsbruck, Anichstrasse 35, A-6020, Innsbruck, Austria.

出版信息

Eur J Appl Physiol. 2002 Oct;87(6):576-83. doi: 10.1007/s00421-002-0684-3. Epub 2002 Jul 30.

Abstract

The human motor system responds to weightlessness by the slowing of movement. It has been suggested that deficits in visuo-motor co-ordination cause this effect. We studied the mechanisms of the slowing of movement in three long-term missions to the Russian space station Mir. In particular, the role of vision in the control of movement in microgravity has been studied in these experiments on seven cosmonauts, pre-, in-, and post-flight. The cosmonauts made arm movements to visual targets under the following conditions of visual control: no visual control, interrupted visual control, and undisturbed visual control. The results showed that the slowing of movement during weightlessness was manifested by decreases of peak velocity and peak acceleration, was not associated with a prolongation of the movement phase of deceleration, and was not affected by manipulation of the conditions of visual control. The slowing of movement tended to subside after the months of the flight and completely disappeared within days after the landing. Accuracy of the movements strictly depended on the constraints imposed on the vision and remained unaffected in-flight. The data presented demonstrate that the slowing of movement in microgravity is not directly related to deficits in sensori-motor co-ordination and is not associated with a reduction of the accuracy of movement. The strategy for motor control in microgravity seems to be directed towards the generation of smooth movements and the maintenance of their accuracy.

摘要

人类运动系统对失重的反应是运动减缓。有人认为,视觉运动协调能力的缺陷导致了这种效应。我们在三次前往俄罗斯和平号空间站的长期任务中研究了运动减缓的机制。特别是,在这些针对七名宇航员的飞行前、飞行中和飞行后的实验中,研究了视觉在微重力环境下运动控制中的作用。宇航员在以下视觉控制条件下向视觉目标进行手臂运动:无视觉控制、视觉控制中断和视觉控制不受干扰。结果表明,失重期间的运动减缓表现为峰值速度和峰值加速度降低,与减速运动阶段的延长无关,并且不受视觉控制条件操作的影响。运动减缓在飞行数月后趋于缓解,并在着陆后数天内完全消失。运动的准确性严格取决于对视觉施加的限制,并且在飞行中不受影响。所呈现的数据表明,微重力环境下的运动减缓与感觉运动协调缺陷没有直接关系,并且与运动准确性的降低无关。微重力环境下的运动控制策略似乎旨在产生平稳的运动并保持其准确性。

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