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微重力环境下的自我中心参照与人类空间定向。II. 在绘制具有规定方向的椭圆任务中的身体中心坐标。

Egocentric references and human spatial orientation in microgravity. II. Body-centred coordinates in the task of drawing ellipses with prescribed orientation.

作者信息

Gurfinkel V S, Lestienne F, Popov K E, Lefort L

机构信息

Institute for Problems of Information Transmission, Russian Academy of the Sciences, Moscow.

出版信息

Exp Brain Res. 1993;95(2):343-8. doi: 10.1007/BF00229792.

Abstract

This article describes the results of the "ellipses" experiment conducted during the second French-Soviet spaceflight (project Aragatz). The realization of oriented motor tasks, on the basis of internal body representation and without visual feedback, was chosen as a paradigm for studying the determinants of spatial orientation under weightlessness. The process of drawing ellipses in the air, using arm movements with axes parallel or perpendicular to the longitudinal body axis, was studied under normal gravity and in weightlessness, and recorded using a video computer motion-analyzing system (Kinesigraph). On Earth, the experiments were performed in standing and lying positions, and in flight, in the erect position with the feet fixed to the floor. In general, performance of the task in microgravity was not disturbed. Under conditions of spaceflight, the longitudinal ellipse was inclined forward in accordance with the inclination of the whole body relative to the fixed feet. On Earth, the angle between the long axes of longitudinal and transverse ellipses deviated from 90 degrees by 20-30 degrees. The same deviation persisted under microgravity conditions. The distinctive features of ellipses traced by individual subjects were also preserved. It is concluded that an egocentric reference system ensures normal performance of sensorimotor tasks in the absence of a gravitational reference.

摘要

本文描述了在第二次法苏太空飞行(阿拉加茨项目)期间进行的“椭圆”实验的结果。基于身体内部表征且无视觉反馈的定向运动任务的实现,被选为研究失重状态下空间定向决定因素的范例。利用手臂运动,使其轴与身体纵轴平行或垂直,在空中绘制椭圆的过程,在正常重力和失重条件下进行了研究,并使用视频计算机运动分析系统(运动图像记录仪)进行记录。在地球上,实验在站立和躺卧姿势下进行,在飞行中,则在双脚固定在地板上的直立姿势下进行。总体而言,微重力条件下任务的执行未受干扰。在太空飞行条件下,纵向椭圆会根据整个身体相对于固定双脚的倾斜度向前倾斜。在地球上,纵向椭圆和横向椭圆长轴之间的角度偏离90度20 - 30度。在微重力条件下,同样的偏差依然存在。个体受试者绘制的椭圆的独特特征也得以保留。得出的结论是,在没有重力参考的情况下,以自我为中心的参考系统可确保感觉运动任务的正常执行。

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