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Motor synergies: feedback and error compensation within and between trials

机译:运动协同作用:试验中和试验之间的反馈和误差补偿

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The aim of the current study was to examine the influence of visual feedback on compensatory variations in force within and between trials. In Experiment 1, the task was to maintain a constant force of 5 N for 15 s using both index fingers. In Experiment 2, the task was to produce discrete force pulses such that the peak value of the sum of the two finger forces was 5 N. In both experiments, there were three conditions that manipulated the amount of visual feedback of the force trace. Results showed that the within-trial correlations between the finger forces increased when feedback was degraded, indicating that the two fingers were increasingly constrained toward acting as a single unit. Similarly, between-trial correlations showed that the amount of error compensation decreased when feedback was removed, indicating that participants produced a smaller set of goal equivalent solutions. It appears that feedback has a dual role in coordination—removing the constraints on the degrees of freedom within trials, and facilitating the utilization of redundancy between trials. The distinction between these two classes of variation is central to understanding the redundancy problem in motor control.
机译:当前研究的目的是检验视觉反馈对试验内和试验间力的补偿性变化的影响。在实验1中,任务是使用两个食指将5 N的恒定力保持15 s。在实验2中,任务是产生离散的力脉冲,以使两个手指力之和的峰值为5N。在两个实验中,都有三种条件操纵力迹线的视觉反馈量。结果表明,当反馈降级时,手指力之间的试验内相关性增加,表明两个手指越来越倾向于充当一个单元。同样,两次试验之间的相关性表明,删除反馈后,误差补偿的数量会减少,这表明参与者产生了一套较小的目标等效解决方案。反馈似乎在协调中起着双重作用-消除了审判中自由度的限制,并促进了审判之间冗余的利用。这两类变化之间的区别对于理解电机控制中的冗余问题至关重要。

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