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Mechanisms underlying visually induced body sway.

机译:视觉诱发的身体摇摆的机制。

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摘要

We investigate the relationship between visually induced perceptual illusions of body motion (vection) and visually induced postural responses (VEPRs). Ten standing healthy subjects were tested in two visual conditions known to induce directionally opposite VEPRs: subjects fixated either a static head-mounted or an earth-fixed visual display in front of a horizontally translating visual background. The VEPR was in the direction of background motion when fixating the head-mounted display but transiently reversed in the earth-fixed condition. In contrast, vection occurred in only one direction (opposite to background motion) and developed later than VEPRs. The different time course and in-congruency between direction of VEPRs and direction of vection suggests that perceptual and postural responses are not causally related. However, since vection did increase VEPR magnitude in the direction of background motion, we postulate that VEPRs might be mediated by two different mechanisms: (1) a short latency system, driven by transient visual stimuli and sensitive to visual geometry (parallax-no parallax), responsible for automatic postural sway adjustments and (2) a longer latency, vection-enhanced postural mechanism, related to the conscious perception of self-motion during longer duration (locomotor, vehicular) body displacements.
机译:我们调查视觉诱发的身体运动(运动)的感觉错觉与视觉诱发的姿势反应(VEPR)之间的关系。在已知会引起方向相反的VEPR的两种视觉条件下测试了十名站立的健康受试者:受试者将固定的头戴式或固定在地面的视觉显示器固定在水平平移的视觉背景之前。固定头戴式显示器时,VEPR处于背景运动的方向,但在地面固定状态下暂时反转。相反,对流仅在一个方向上发生(与背景运动相反),并且发展晚于VEPR。 VEPRs方向和对流方向之间的时间过程不同且不一致,这表明知觉和姿势反应与因果关系无关。但是,由于对流确实会在背景运动的方向上增加VEPR的幅度,因此我们推测VEPR可能由两种不同的机制介导:(1)由短暂的视觉刺激驱动且对视觉几何敏感的短时延系统(视差-无视差) ),负责自动进行姿势摆幅调整;(2)较长的潜伏期,对流增强的姿势机制,与较长时间(运动,车辆)身体位移期间的自觉自觉感知有关。

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