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不断进行伸手抓握动作的视觉运动校准。

The endless visuomotor calibration of reach-to-grasp actions.

机构信息

Department of Psychology, New York University Abu Dhabi, PO Box 129188, Abu Dhabi, United Arab Emirates.

Center for Neuroscience and Cognitive Systems@UniTn, Istituto Italiano di Tecnologia, 38068, Rovereto, Italy.

出版信息

Sci Rep. 2018 Oct 4;8(1):14803. doi: 10.1038/s41598-018-33009-6.

Abstract

It is reasonable to assume that when we grasp an object we carry out the movement based only on the currently available sensory information. Unfortunately, our senses are often prone to err. Here, we show that the visuomotor system exploits the mismatch between the predicted and sensory outcomes of the immediately preceding action (sensory prediction error) to attain a degree of robustness against the fallibility of our perceptual processes. Participants performed reach-to-grasp movements toward objects presented at eye level at various distances. Grip aperture was affected by the object distance, even though both visual feedback of the hand and haptic feedback were provided. Crucially, grip aperture as well as the trajectory of the hand were systematically influenced also by the immediately preceding action. These results are well predicted by a model that modifies an internal state of the visuomotor system by adjusting the visuomotor mapping based on the sensory prediction errors. In sum, the visuomotor system appears to be in a constant fine-tuning process which makes the generation and control of grasping movements more resistant to interferences caused by our perceptual errors.

摘要

可以合理地假设,当我们抓住一个物体时,我们是基于当前可用的感觉信息来执行运动的。不幸的是,我们的感官往往容易出错。在这里,我们表明,运动系统利用了前一个动作的预测和感觉结果之间的不匹配(感觉预测误差),从而在一定程度上能够抵抗我们感知过程的易错性。参与者在各种距离处以眼平视为目标进行伸手抓握动作。即使提供了手的视觉反馈和触觉反馈,抓握开口仍受到目标距离的影响。至关重要的是,抓握开口以及手的轨迹也受到前一个动作的系统影响。一个基于感觉预测误差调整视觉运动映射来修改视觉运动系统内部状态的模型可以很好地预测这些结果。总之,运动系统似乎处于持续的微调过程中,这使得抓握运动的产生和控制更能抵抗由我们感知错误引起的干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/110f/6172279/e24b4a86eaab/41598_2018_33009_Fig1_HTML.jpg

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