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感觉运动再校准取决于将感觉预测误差归因于内部原因。

Sensorimotor recalibration depends on attribution of sensory prediction errors to internal causes.

机构信息

Department of Cognitive Neurology, Hertie Institute for Clinical Brain Research, University of Tübingen, Tübingen, Germany.

出版信息

PLoS One. 2013;8(1):e54925. doi: 10.1371/journal.pone.0054925. Epub 2013 Jan 24.

Abstract

Sensorimotor learning critically depends on error signals. Learning usually tries to minimise these error signals to guarantee optimal performance. Errors can, however, have both internal causes, resulting from one's sensorimotor system, and external causes, resulting from external disturbances. Does learning take into account the perceived cause of error information? Here, we investigated the recalibration of internal predictions about the sensory consequences of one's actions. Since these predictions underlie the distinction of self- and externally produced sensory events, we assumed them to be recalibrated only by prediction errors attributed to internal causes. When subjects were confronted with experimentally induced visual prediction errors about their pointing movements in virtual reality, they recalibrated the predicted visual consequences of their movements. Recalibration was not proportional to the externally generated prediction error, but correlated with the error component which subjects attributed to internal causes. We also revealed adaptation in subjects' motor performance which reflected their recalibrated sensory predictions. Thus, causal attribution of error information is essential for sensorimotor learning.

摘要

感觉运动学习主要依赖于错误信号。学习通常会尽量减少这些错误信号,以保证最佳表现。然而,错误可能有内部原因,源自自身的感觉运动系统,也可能有外部原因,源自外部干扰。学习是否考虑到错误信息的感知原因?在这里,我们研究了对自身动作的感官后果的内部预测的重新校准。由于这些预测是自我和外部产生的感官事件区分的基础,我们假设只有归因于内部原因的预测错误才会对其进行重新校准。当主体在虚拟现实中面对指向运动的实验诱导的视觉预测错误时,他们会重新校准运动的预测视觉后果。重新校准与外部产生的预测错误不成比例,而是与主体归因于内部原因的错误分量相关。我们还揭示了主体运动表现的适应,这反映了他们重新校准的感官预测。因此,错误信息的因果归因对于感觉运动学习至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52f0/3554678/fa6a707a63ef/pone.0054925.g001.jpg

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