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任务说明和反馈修正需求影响视觉错误对达到适应的贡献。

Task Instructions and the Need for Feedback Correction Influence the Contribution of Visual Errors to Reach Adaptation.

机构信息

Institute for Information and Communication Technologies, Electronics and Applied Mathematics (ICTEAM), Université Catholique de Louvain, Louvain-la-Neuve 1348, Belgium.

Institute of Neuroscience (IoNS), Université Catholique de Louvain, Brussels 1200, Belgium.

出版信息

eNeuro. 2023 Sep 5;10(9). doi: 10.1523/ENEURO.0068-23.2023. Print 2023 Sep.

Abstract

Previous research has questioned whether motor adaptation is shaped by an optimal combination of multisensory error signals. Here, we expanded on this work by investigating how the use of visual and somatosensory error signals during online correction influences single-trial adaptation. To this end, we exposed participants to a random sequence of force-field perturbations and recorded their corrective responses as well as the after-effects exhibited during the subsequent unperturbed movement. In addition to the force perturbation, we artificially decreased or increased visual errors by multiplying hand deviations by a gain smaller or larger than one. Corrective responses to the force perturbation clearly scaled with the size of the visual error, but this scaling did not transfer one-to-one to motor adaptation and we observed no consistent interaction between limb and visual errors on adaptation. However, reducing visual errors during perturbation led to a small reduction of after-effects and this residual influence of visual feedback was eliminated when we instructed participants to control their hidden hand instead of the visual hand cursor. Taken together, our results demonstrate that task instructions and the need to correct for errors during perturbation are important factors to consider if we want to understand how the sensorimotor system uses and combines multimodal error signals to adapt movements.

摘要

先前的研究质疑运动适应是否由多感觉误差信号的最佳组合形成。在这里,我们通过研究在在线校正过程中使用视觉和本体感觉误差信号如何影响单次试验适应来扩展这项工作。为此,我们让参与者接触到一系列随机的力场扰动,并记录他们的校正反应以及在随后的未受扰运动中表现出的后效。除了力的扰动,我们通过将手的偏差乘以小于或大于 1 的增益来人为地减小或增大视觉误差。对力的扰动的校正反应明显与视觉误差的大小成正比,但这种比例关系并没有一一转化为运动适应,我们也没有观察到肢体和视觉误差在适应过程中有一致的相互作用。然而,在扰动过程中减小视觉误差会导致后效的小幅度减小,当我们指示参与者控制隐藏的手而不是视觉手光标时,这种视觉反馈的残余影响就会被消除。总的来说,我们的结果表明,如果我们想了解感觉运动系统如何使用和组合多模式误差信号来适应运动,任务指令和在扰动过程中纠正错误的需要是需要考虑的重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5aa9/10481641/e9702b1a61e0/ENEURO.0068-23.2023_f001.jpg

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