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对称双手伸取任务的眼手协调:时间方面。

Eye-hand coordination of symmetric bimanual reaching tasks: temporal aspects.

机构信息

Department of Biomedical Engineering, The University of Michigan, 2200 Bonisteel Blvd., Ann Arbor, MI 48109-2099, USA.

出版信息

Exp Brain Res. 2010 Jun;203(2):391-405. doi: 10.1007/s00221-010-2241-3. Epub 2010 Apr 30.

Abstract

Both synchronous and asynchronous coordination modes have been evidenced in bimanual movements, but psychology and motor control literatures seem to be inconclusive about what factors specifically drive these modes and when one is preferred over the other. The goal of the present study was to determine the relationship between visual feedback and the temporal symmetry/asymmetry of the two hand movements in symmetric bimanual reach movements by a systematic analysis of eye movements and their role in coordination. The coupling/decoupling of hand movements caused by the competing visual demands of each task was analyzed in a bimanual experimental paradigm in which the objects to be transported, tolerances of the placement targets, and inter-target distance were varied. The results show that although temporally symmetric until peak velocity, the extent of synchrony during the terminal phases of hand movements was significantly influenced by the visual demand associated with the experimental conditions. Four distinct eye-hand coordination patterns were identified, based on sequencing of hand movements and timing of gaze shifts from one target to another. These patterns significantly affected the kinematics of hand movements and the degree of temporal synchrony in terminal phases, thus stressing the importance of a rigorous analysis of eye movements in understanding the mechanisms of eye-hand coordination. When faced with competing visual demands, left hand guidance required more foveal visual information of the target, while right hand control could proceed until the terminal stages with the target in the peripheral field of view, thus indicating an asymmetry in the feedback requirements of the two hand systems when accuracy is critical.

摘要

双手运动中存在同步和异步协调模式,但心理学和运动控制文献似乎无法确定是什么因素具体驱动这些模式,以及何时优先选择哪种模式。本研究的目的是通过系统分析眼球运动及其在协调中的作用,确定对称双手伸展运动中视觉反馈与双手运动时间对称性/不对称性之间的关系。在双手实验范式中分析了由每个任务的竞争视觉需求引起的手运动的耦合/解耦,其中改变了要运输的物体、放置目标的公差和目标之间的距离。结果表明,尽管在达到峰值速度之前手运动在时间上是对称的,但在手运动的终末阶段的同步程度受到与实验条件相关的视觉需求的显著影响。根据手运动的顺序和从一个目标到另一个目标的注视转移的时间,确定了四种不同的眼手协调模式。这些模式对手运动的运动学和终末阶段的时间同步性有显著影响,因此强调了在理解眼手协调机制时对手动运动进行严格分析的重要性。当面临竞争的视觉需求时,左手引导需要目标的更多中央视觉信息,而右手控制可以在手运动的终末阶段进行,目标在视野的外围,因此当准确性至关重要时,两个手系统的反馈要求存在不对称性。

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