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Differences in gaze anticipation for locomotion with and without vision

机译:凝视与vision的运动的差异预期

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Previous experimental studies have shown a spontaneous anticipation of locomotor trajectory by the head and gaze direction during human locomotion. This anticipatory behavior could serve several functions: an optimal selection of visual information, for instance through landmarks and optic flow, as well as trajectory planning and motor control. This would imply that anticipation remains in darkness but with different characteristics. We asked 10 participants to walk along two predefined complex trajectories (lima?on and figure eight) without any cue on the trajectory to follow. Two visual conditions were used: ( i ) in light and ( ii ) in complete darkness with eyes open. The whole body kinematics were recorded by motion capture, along with the participant's right eye movements. We showed that in darkness and in light, horizontal gaze anticipates the orientation of the head which itself anticipates the trajectory direction. However, the horizontal angular anticipation decreases by a half in darkness for both gaze and head. In both visual conditions we observed an eye nystagmus with similar properties (frequency and amplitude). The main difference comes from the fact that in light, there is a shift of the orientations of the eye nystagmus and the head in the direction of the trajectory. These results suggest that a fundamental function of gaze is to represent self motion, stabilize the perception of space during locomotion, and to simulate the future trajectory, regardless of the vision condition.
机译:以前的实验研究显示了人类运动期间头部和凝视方向的运动轨迹的自发预期。此预期行为可以提供多种功能:例如通过地标和光学流程以及轨迹规划和电机控制的最佳选择。这意味着预期仍然存在于黑暗中,但具有不同的特点。我们要求10名参与者沿着两个预定义的复杂轨迹(Lima?上,图8)沿着轨迹上的任何提示进行行走。使用了两个视觉条件:(i)在光线和(ii)中,睁开眼睛完全黑暗。通过运动捕获记录了整个身体运动学,以及参与者的右眼运动。我们表明,在黑暗和光明中,水平凝视预期头部的定向,它本身预期轨迹方向。然而,凝视和头部的暗水平角度预期减小了一半。在视觉条件的两个视觉条件下,我们观察了具有相似性质(频率和幅度)的眼睛囊臂。主要差异来自于,在光线下,存在眼睛眼压震颤的方向和朝向轨迹的方向的转变。这些结果表明,凝视的基本功能是表示自动运动,稳定运动过程中的空间的感知,并且模拟未来的轨迹,无论视觉状况如何。

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