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抓握过程中的两种错误处理模式。

Two modes of error processing in reaching.

作者信息

Magescas Frederic, Urquizar Christian, Prablanc Claude

机构信息

Espace et Action, INSERM, U864, Bron, France.

出版信息

Exp Brain Res. 2009 Mar;193(3):337-50. doi: 10.1007/s00221-008-1629-9. Epub 2008 Nov 15.

Abstract

Several processes are devoted to error reduction for the production of purposeful actions. When motor responses deviate from their goal, online corrections can be performed either under voluntary control with additional sub-movements or under fast automatic control with smooth velocity profiles. When errors cannot be corrected online and are repeated over trials, subsequent responses can be improved iteratively through adaptation, a progressive adjustment of motor commands that acts to reduce the magnitude of error. It has been argued that reaching adaptation results essentially from a conflict between actual sensory feedback and expected sensory feedback. Here, we specifically compare two innovative hand-reaching paradigms that provide the subject with undistorted hand sensory feedback. Both paradigms induce motor planning errors unknown to the subjects. Experiment 1 yields a continuous retinal and visuomotor feedback which allows fast and complete automatic online corrections. In experiment 2, all visual feedback is eliminated during movement execution. This prevents online correction and provides information on hand-to-target visual error at movement end only. Despite a reiterated motor planning error and an automatic online correction of the whole error, experiment 1 shows a complete lack of adaptation. In contrast, experiment 2 which yields the same motor planning error exhibits a robust and generalized adaptation, although devoid of limb inter-sensory mismatch. These results demonstrate independence between the induced motor adaptation and automatic online correction, both characterized by the lack of any cognitive interference. Despite these quite different processes acting upon either motor planning or motor control, the general structure of the movement kinematics remains unaltered. A putative visuomotor cerebro-cerebellar network accounting for our results is proposed.

摘要

有几个过程致力于减少产生有目的动作时的误差。当运动反应偏离其目标时,可以通过额外的子动作在自主控制下进行在线校正,或者通过具有平滑速度曲线的快速自动控制进行在线校正。当误差无法在线校正且在多次试验中重复出现时,后续反应可以通过适应进行迭代改进,即对运动指令进行渐进调整以减少误差幅度。有人认为,伸手适应主要源于实际感觉反馈与预期感觉反馈之间的冲突。在此,我们专门比较了两种创新的伸手范式,它们为受试者提供了未失真的手部感觉反馈。两种范式都会引发受试者未知的运动计划误差。实验1产生连续的视网膜和视觉运动反馈,允许快速且完全自动的在线校正。在实验2中,运动执行过程中所有视觉反馈都被消除。这阻止了在线校正,仅在运动结束时提供手到目标的视觉误差信息。尽管存在反复的运动计划误差和对整个误差的自动在线校正,但实验1显示完全没有适应现象。相比之下,实验2产生相同的运动计划误差,尽管没有肢体感觉间不匹配,但仍表现出强大的、普遍的适应。这些结果表明,所诱导的运动适应与自动在线校正之间相互独立,两者的特征均为缺乏任何认知干扰。尽管这些过程在运动计划或运动控制方面有很大不同,但运动运动学的总体结构保持不变。我们提出了一个假定的视觉运动脑-小脑网络来解释我们的结果。

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