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Perceived head-trunk angle during microgravity produced by parabolic flight.

机译:抛物线飞行产生的微重力作用下的感知头尾倾角。

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摘要

INTRODUCTION: Neck proprioceptors are essential for orienting the head relative to the trunk. However, it has been shown that the available information about the relationship of gravity to different body parts would augment the clues about their relative orientation. In weightlessness, the absence of relevant body position signals from the otoliths and other inertial graviceptors requires the substitution of other sensory information. The aim of the present study was to investigate the ability of humans to accurately locate the head relative to the trunk in microgravity. METHODS: Experiments were conducted during two separate sessions: on Earth and during parabolic flights. Volunteers were asked to adjust a visual rod until it looked parallel to their head or trunk axis in two different segmental configurations: head and trunk aligned or head tilted. RESULTS: There was no effect of microgravity when the head and trunk were aligned. However, when the head was tilted with respect to the trunk, the orientation of the visual rod relative to the head or the trunk (visual egocentric coordinates) was deviated toward the head tilt, although the orientation between the body parts themselves (head-trunk angle) was correctly estimated. DISCUSSION: These results suggested that, in microgravity, the proprioceptive signals from neck muscles seem sufficient to provide accurate head on trunk information. However, the representation of orientation in visual space was modified. This experiment provides evidence for the role of gravity on the visual perception of head- and trunk-based egocentric coordinates.
机译:简介:颈部本体感受器对于相对于躯干定向头部至关重要。但是,已经表明,有关重力与不同身体部位的关系的可用信息将增加有关其相对方向的线索。在失重状态下,缺少来自耳石和其他惯性重力感受器的相关身体位置信号,需要替换其他感觉信息。本研究的目的是研究人类在微重力​​下相对于躯干准确定位头部的能力。方法:实验是在两个不同的阶段进行的:在地球上和在抛物线飞行中。志愿者被要求调整视觉杆,直到它看起来与他们的头部或躯干轴线平行,并且呈两种不同的分段配置:头部和躯干对齐或头部倾斜。结果:头部和躯干对齐时没有微重力作用。但是,当头部相对于躯干倾斜时,视杆相对于头部或躯干的方向(以视觉为中心的坐标)朝向头部倾斜,尽管身体各部位之间的方向(头躯干)角度)已正确估算。讨论:这些结果表明,在微重力下,来自颈部肌肉的本体感受信号似乎足以提供准确的头部躯干信息。但是,视觉空间中的方向表示已被修改。该实验提供了重力在基于头和躯干的自我中心坐标的视觉感知中的作用的证据。

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