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视觉反馈对视觉运动适应的作用:作用程度及作用时机如何?

The contribution of visual feedback to visuomotor adaptation: how much and when?

作者信息

Hinder Mark R, Tresilian James R, Riek Stephan, Carson Richard G

机构信息

Perception and Motor Systems Laboratory, School of Human Movement Studies, University of Queensland, 4072, Australia.

出版信息

Brain Res. 2008 Mar 4;1197:123-34. doi: 10.1016/j.brainres.2007.12.067. Epub 2008 Jan 11.

Abstract

We investigated the role of visual feedback in adapting to novel visuomotor environments. Participants produced isometric elbow torques to move a cursor towards visual targets. Following trials with no rotation, participants adapted to a 60 degrees rotation of the visual feedback before returning to the non-rotated condition. Participants received continuous visual feedback (CF) of cursor position during task execution or post-trial visual feedback (PF). With training, reductions of the angular deviations of the cursor path occurred to a similar extent and at a similar rate for CF and PF groups. However, upon re-exposure to the non-rotated environment only CF participants exhibited post-training aftereffects, manifested as increased angular deviation of the cursor path, with respect to the pre-rotation trials. These aftereffects occurred despite colour cues permitting identification of the change in environment. The results show that concurrent feedback permits automatic recalibration of the visuomotor mapping while post-trial feedback permits performance improvement via a cognitive strategy.

摘要

我们研究了视觉反馈在适应新型视觉运动环境中的作用。参与者产生等长的肘部扭矩,以使光标向视觉目标移动。在进行无旋转的试验后,参与者先适应视觉反馈60度的旋转,然后再回到非旋转状态。参与者在任务执行期间接受光标位置的连续视觉反馈(CF)或试验后视觉反馈(PF)。经过训练,CF组和PF组的光标路径角度偏差减少的程度和速率相似。然而,再次暴露于非旋转环境时,只有CF组的参与者表现出训练后的后效应,表现为相对于旋转前试验,光标路径的角度偏差增加。尽管有颜色提示可识别环境变化,但这些后效应仍然出现。结果表明,同时反馈允许视觉运动映射的自动重新校准,而试验后反馈允许通过认知策略提高表现。

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