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任务相关视觉反馈不确定性会减弱运动适应。

Task-relevant visual feedback uncertainty attenuates visuomotor adaptation.

机构信息

Sensorimotor Group, German Primate Center - Leibniz Institute for Primate Research, Göttingen, Germany.

Faculty of Biology and Psychology, University of Göttingen, Göttingen, Germany.

出版信息

J Neurophysiol. 2024 Sep 1;132(3):879-889. doi: 10.1152/jn.00180.2024. Epub 2024 Aug 7.

Abstract

Motor adaptation is attenuated when sensory feedback about the movement is uncertain. Although this was initially shown for small visual errors, attenuation seems not to hold when visual errors are larger and the contributions of implicit adaptation are isolated with the error-clamp method, which makes visual feedback task-irrelevant. Here we ask whether adaptation to a similarly large perturbation is attenuated when task-relevant visual feedback is uncertain. In a first experiment, we tested participants on a 30° movement-contingent visuomotor rotation under both low (cursor) and high (cloud of moving dots) visual feedback uncertainty. In line with optimal integration, we found that the early increase in adaptation and final extent of adaptation were reduced with high feedback uncertainty. In a second experiment, we included several blocks of no-feedback trials during the perturbation block to quantify the contribution of implicit adaptation. Results showed that implicit adaptation was smaller with high compared to low feedback uncertainty throughout the perturbation block. The estimated contribution of explicit adaptation was overall small, particularly for high feedback uncertainty. Our results demonstrate an influence of task-relevant visual feedback, and the resulting target errors, on implicit adaptation. We show that our motor system is sensitive to the feedback it receives even for larger error sizes and accordingly adjusts its learning properties when our ability to achieve the task goal is affected. Motor adaptation is linked to the estimation of our actions. Whereas uncertainty of task-irrelevant visual feedback appears not to influence implicit adaptation for errors beyond a certain size, here we tested whether this is still the case for task-relevant feedback. We show that implicit adaptation is attenuated when task-relevant visual feedback is uncertain, suggesting a dependency on the assessment of not just sensory prediction errors but also target errors.

摘要

当运动的感觉反馈不确定时,运动适应会减弱。尽管最初这是在小的视觉误差中显示的,但当视觉误差较大并且使用误差钳方法隔离隐式适应的贡献时,适应似乎不会减弱,这使得视觉反馈与任务无关。在这里,我们想知道当与任务相关的视觉反馈不确定时,对类似大的扰动的适应是否会减弱。在第一个实验中,我们在低(光标)和高(移动点云)视觉反馈不确定条件下,对参与者进行了 30°运动相关视觉旋转的测试。与最优整合一致,我们发现,随着高反馈不确定性,适应的早期增加和最终适应程度降低。在第二个实验中,我们在扰动块中包含了几个无反馈试验块,以量化隐式适应的贡献。结果表明,在整个扰动块中,高反馈不确定性下的隐式适应比低反馈不确定性下的小。显式适应的估计贡献总体上较小,尤其是在高反馈不确定性下。我们的研究结果表明,与任务相关的视觉反馈以及由此产生的目标误差,对隐式适应有影响。我们表明,我们的运动系统即使在较大的误差大小下也会对其接收到的反馈敏感,并相应地调整其学习特性,当我们实现任务目标的能力受到影响时。运动适应与对我们动作的估计有关。虽然对于超过一定大小的误差,任务无关的视觉反馈的不确定性似乎不会影响隐式适应,但在这里,我们测试了对于与任务相关的反馈,情况是否仍然如此。我们表明,当与任务相关的视觉反馈不确定时,隐式适应会减弱,这表明对不仅是感官预测误差而且是目标误差的评估存在依赖性。

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