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视觉反馈及关于反馈的先验知识对垂直瞄准策略的影响。

The influence of visual feedback and prior knowledge about feedback on vertical aiming strategies.

作者信息

Elliott Digby, Dutoy Chris, Andrew Matthew, Burkitt James J, Grierson Lawrence E M, Lyons James L, Hayes Spencer J, Bennett Simon J

机构信息

a Faculty of Science , Liverpool John Moores University , England.

出版信息

J Mot Behav. 2014;46(6):433-43. doi: 10.1080/00222895.2014.933767. Epub 2014 Sep 10.

Abstract

Two experiments were conducted to examine time and energy optimization strategies for movements made with and against gravity. In Experiment 1, the authors manipulated concurrent visual feedback, and knowledge about feedback. When vision was eliminated upon movement initiation, participants exhibited greater undershooting, both with their primary submovement and their final endpoint, than when vision was available. When aiming downward, participants were more likely to terminate their aiming following the primary submovement or complete a lower amplitude corrective submovement. This strategy reduced the frequency of energy-consuming corrections against gravity. In Experiment 2, the authors eliminated vision of the hand and the target at the end of the movement. This procedure was expected to have its greatest impact under no-vision conditions where no visual feedback was available for subsequent planning. As anticipated, direction and concurrent visual feedback had a profound impact on endpoint bias. Participants exhibited pronounced undershooting when aiming downward and without vision. Differences in undershooting between vision and no vision were greater under blocked feedback conditions. When performers were uncertain about the impending feedback, they planned their movements for the worst-case scenario. Thus movement planning considers the variability in execution, and avoids outcomes that require time and energy to correct.

摘要

进行了两项实验,以检验在有重力和逆重力情况下运动的时间和能量优化策略。在实验1中,作者操纵了同时存在的视觉反馈以及关于反馈的知识。当在运动开始时消除视觉时,与有视觉时相比,参与者在主要子运动及其最终终点处都表现出更大的下冲。当向下瞄准目标时,参与者更有可能在主要子运动之后终止瞄准,或者完成幅度较小的校正子运动。这种策略降低了逆重力进行耗能校正的频率。在实验2中,作者在运动结束时消除了手部和目标的视觉。预计此程序在无视觉条件下影响最大,因为在无视觉条件下没有视觉反馈可用于后续计划。正如预期的那样,方向和同时存在的视觉反馈对终点偏差有深远影响。当向下瞄准且没有视觉时,参与者表现出明显的下冲。在封闭反馈条件下,有视觉和无视觉情况下的下冲差异更大。当执行者对即将到来的反馈不确定时,他们会为最坏的情况制定运动计划。因此,运动计划会考虑执行中的变异性,并避免需要时间和能量来校正的结果。

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