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头对躯干位置在太空飞行前、飞行期间及飞行后的手臂运动方向上的影响。

The effect of head-to-trunk position on the direction of arm movements before, during, and after space flight.

作者信息

Berger M, Lechner-Steinleitner S, Kozlovskaya I, Holzmüller G, Mescheriakov S, Sokolov A, Gerstenbrand F

机构信息

Department of Neurology, University Hospital, Innsbruck, Austria.

出版信息

J Vestib Res. 1998 Sep-Oct;8(5):341-54.

PMID:9770653
Abstract

This contribution deals with the examination of the consequences of different head-to-trunk positions on arm movements under normal gravity and during prolonged space flight. One of the objectives of this study was to investigate the influence of weightlessness on the condition of the spatial analysis system. Aimed arm movements in the horizontal plane (pointings towards two visual targets) were recorded, first with eyes open, head straight (learning part), then with eyes closed, head straight and during yaw or roll position of the head (performance part). Measurements related to these different head-to-trunk-positions were taken in one short-term and nine long-term cosmonauts preflight, inflight, and postflight. Terrestrial control experiments were carried out with an extended experimental design in 14 healthy volunteers. The analysis of these experiments revealed that, with eyes closed and the head in yaw position, cosmonauts before flight and control subjects exhibit significant slants of the movement plane of the arm. Contrary to terrestrial measurements, in space experiments roll tilt of the head to the right is correlated with considerable counterclockwise slant of the movement plane. This slant of the movement plane of the arm was interpreted as tilt of the internal representation of the horizontal coordinate. The effect is larger with greater distortion induced by the changed head position and with larger muscular involvement to keep this position. This effect is also increased by the reduction of information (for example, in microgravity). The amount and the direction of the horizontal offset of the arm movements are shown to be dependent on the head-to-trunk position, too. Additionally, we have found changes in the amplitude and in the duration of the arm movement, in the vertical offset, and in the curvature of the movement paths, depending on the experimental conditions.

摘要

本研究探讨了在正常重力环境下以及长期太空飞行期间,不同头与躯干位置对手臂运动的影响。本研究的目标之一是调查失重对空间分析系统状态的影响。记录了在水平面内的目标指向手臂运动(指向两个视觉目标),首先是睁眼、头部正直时(学习阶段),然后是闭眼、头部正直以及头部偏航或翻滚时(执行阶段)。在9名短期和9名长期宇航员飞行前、飞行中和飞行后进行了与这些不同头与躯干位置相关的测量。在14名健康志愿者中采用扩展实验设计进行了地面对照实验。对这些实验的分析表明,在闭眼且头部处于偏航位置时,飞行前的宇航员和对照受试者的手臂运动平面均出现显著倾斜。与地面测量结果相反,在太空实验中,头部向右翻滚倾斜与运动平面相当大的逆时针倾斜相关。手臂运动平面的这种倾斜被解释为水平坐标内部表征的倾斜。头部位置变化引起的扭曲越大以及为保持该位置所需的肌肉参与度越高,这种影响就越大。信息减少(例如在微重力环境中)也会增强这种影响。手臂运动水平偏移的量和方向也取决于头与躯干的位置。此外,我们还发现,根据实验条件的不同,手臂运动的幅度、持续时间、垂直偏移以及运动路径的曲率也会发生变化。

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