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Humans perceive object motion in world coordinates during obstacle avoidance

机译:在避障过程中人类感知世界坐标中的物体运动

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摘要

A fundamental question about locomotion in the presence of moving objects is whether movements are guided based upon perceived object motion in an observer-centered or world-centered reference frame. The former captures object motion relative to the moving observer and depends on both observer and object motion. The latter captures object motion relative to the stationary environment and is independent of observer motion. Subjects walked through a virtual environment (VE) viewed through a head-mounted display and indicated whether they would pass in front of or behind a moving obstacle that was on course to cross their future path. Subjects' movement through the VE was manipulated such that object motion in observer coordinates was affected while object motion in world coordinates was the same. We found that when moving observers choose routes around moving obstacles, they rely on object motion perceived in world coordinates. This entails a process, which has been called flow parsing (Rushton & Warren, ; Warren & Rushton, ), that recovers the component of optic flow due to object motion independent of self-motion. We found that when self-motion is real and actively generated, the process by which object motion is recovered relies on both visual and nonvisual information to factor out the influence of self-motion. The remaining component contains information about object motion in world coordinates that is needed to guide locomotion.
机译:关于存在运动对象时的运动的一个基本问题是,是否在以观察者为中心或以世界为中心的参考系中基于感知到的对象运动来引导运动。前者捕获相对于移动的观察者的对象运动,并同时依赖于观察者和对象运动。后者捕获相对于静止环境的物体运动,并且独立于观察者运动。受试者走过头戴式显示器观看的虚拟环境(VE),并指出他们是在移动障碍物的前方还是后方经过,障碍物正在穿越未来的道路。控制对象通过VE的运动,以使观察者坐标中的对象运动受到影响,而世界坐标中的对象运动相同。我们发现,当运动的观察者在运动的障碍物周围选择路线时,他们依赖于在世界坐标系中感知到的物体运动。这需要一个过程,该过程被称为流解析(Rushton&Warren,; Warren&Rushton,),该过程可恢复由于对象运动而导致的光流分量,而与自身运动无关。我们发现,当自我运动是真实的主动产生时,恢复物体运动的过程依赖于视觉和非视觉信息来排除自我运动的影响。其余部分包含有关引导运动所需的世界坐标中对象运动的信息。

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