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在线校正过程中的避障

Obstacle avoidance during online corrections.

作者信息

Chapman Craig S, Goodale Melvyn A

机构信息

Department of Psychology, University of Western Ontario, London, Ontario, Canada.

出版信息

J Vis. 2010 Sep 22;10(11):17. doi: 10.1167/10.11.17.

Abstract

The dorsal visual stream codes information crucial to the planning and online control of target-directed reaching movements in dynamic and cluttered environments. Two specific dorsally mediated abilities are the avoidance of obstacles and the online correction for changes in target location. The current study was designed to test whether or not both of these abilities can be performed concurrently. Participants made reaches to touch a target that, on two-thirds of the trials, remained stationary and on the other third "jumped" at movement onset. Importantly, on target-jump trials, a single object (in one of four positions) sometimes became an obstacle that interfered with the reach. When a target jump caused an object to suddenly become an obstacle, we observed clear spatial avoidance behavior, an effect that was not present when the target jumped but the object did not become an obstacle. This automatic spatial avoidance was accompanied by significant velocity reductions only when the risk for collision with the obstacle was high, suggesting an "intelligent" encoding of potential obstacle locations. We believe that this provides strong evidence that the entire workspace is encoded during reach planning and that the representation of all objects in the workspace is available to the automatic online correction system.

摘要

背侧视觉流编码的信息对于在动态和复杂环境中计划和在线控制目标导向的伸手动作至关重要。两种特定的背侧介导能力是避开障碍物和对目标位置变化进行在线校正。本研究旨在测试这两种能力是否可以同时执行。参与者伸手触摸一个目标,在三分之二的试验中,目标保持静止,在另外三分之一的试验中,目标在动作开始时“跳跃”。重要的是,在目标跳跃试验中,一个物体(在四个位置之一)有时会成为干扰伸手动作的障碍物。当目标跳跃导致一个物体突然成为障碍物时,我们观察到明显的空间回避行为,而当目标跳跃但物体没有成为障碍物时,这种效应不存在。这种自动空间回避仅在与障碍物碰撞风险较高时伴随着显著的速度降低,这表明对潜在障碍物位置进行了“智能”编码。我们认为,这提供了强有力的证据,表明在伸手动作计划过程中对整个工作空间进行了编码,并且工作空间中所有物体的表征都可供自动在线校正系统使用。

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