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Investigations on the Interactions Between Vision and Locomotion Using a Treadmill Virtual Environment

机译:使用跑步机虚拟环境研究视觉与运动之间的相互作用

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Treadmill-based virtual environments have the potential to allow near natural locomotion through large-scale simulated spaces. To be effective, such devices need to provide users with visual and biomechanical sensations of walking that are sufficiently accurate to evoke perception-action couplings comparable to those occurring in the real world. We are exploring this problem using a custom built, computer controlled treadmill with a 6′ by 10′ walking surface, coupled to computer graphics presented on wide field-of-view back projection screens. The system has the added feature of being able to apply forces to the user to simulate walking on slopes and the effects of changes in walking speed. We have demonstrated the effectiveness of this system by showing that the perceptual-motor calibration of human locomotion in the real world can be altered by prior walking on the treadmill virtual environment when the visual flow associated with self-motion is mismatched relative to biomechanical walking speed. The perceptual-motor coupling that we have achieved is sufficient to allow investigation of a number of open questions, including the effect of walking on slopes on the visual estimation of slant and visual influences on gait and walking speed.
机译:基于跑步机的虚拟环境具有通过大规模模拟空间实现近乎自然运动的潜力。为了有效,这种装置需要向用户提供步行的视觉和生物力学感觉,其足够精确以引起与现实世界中发生的感觉-动作耦接。我们正在使用定制的计算机控制的跑步机来探索此问题,该跑步机具有6'x 10'的行走表面,并与在宽视野背投屏幕上显示的计算机图形结合。该系统具有附加功能,能够向用户施加力以模拟在斜坡上的行走以及行走速度变化的影响。我们已经证明了该系统的有效性,方法是通过在与自然运动相关的视觉流相对于生物力学行走速度不匹配的情况下,通过在跑步机虚拟环境上预先行走,可以改变现实世界中人类运动的感知运动校准。 。我们已经实现的知觉运动耦合足以研究许多悬而未决的问题,包括在斜坡上行走对倾斜的视觉估计的视觉影响以及对步态和行走速度的视觉影响。

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