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在由一组冗余手指进行力产生的任务中研究的误差补偿原理。

A principle of error compensation studied within a task of force production by a redundant set of fingers.

作者信息

Latash M L, Li Z M, Zatsiorsky V M

机构信息

Department of Kinesiology, Pennsylvania State University, University Park 16802, USA.

出版信息

Exp Brain Res. 1998 Sep;122(2):131-8. doi: 10.1007/s002210050500.

Abstract

Based on previous studies, we formulated a principle of error compensation as a major principle of synergy organization during motor tasks performed by a redundant set of effectors. Within the present study, we tested the principle by an investigation of the performance of individual fingers during isometric force production when another task was performed simultaneously. Subjects were asked to press at about 30% of the maximal contraction force with three fingers (index, middle, and ring) acting in parallel. Then, they were required to perform a series of taps at 2 Hz with one of the fingers. In all the tasks, nontapping fingers changed their force production without a time delay with the changes in the force by the tapping finger. During tapping with the index and with the middle finger, both nontapping fingers showed changes in their force negatively correlated with changes in force of the tapping finger. During tapping with the ring finger, two types of behavior could be seen in different subjects with the force of the middle finger going out of phase (group 1) or in phase (group 2) with the force of the ring finger. In both cases, the force of the index finger was out of phase with the force of the ring finger. These changes, on average, induced a compensation for the expected drop in finger force during tapping, ranging in different conditions from 94% to 102%. The ratio of forces produced by the nontapping fingers did not change during the tapping in all the cases except group 2 during ring-finger tapping, when the index finger started to generate significantly higher force as compared to the middle finger. We interpret the data as results of the action of a feed-forward central mechanism leading to parallel changes in forces produced by fingers united into a structural unit.

摘要

基于先前的研究,我们制定了误差补偿原则,作为由一组冗余效应器执行运动任务时协同组织的主要原则。在本研究中,我们通过调查在同时执行另一项任务时等长力产生过程中单个手指的表现来测试该原则。受试者被要求用三根手指(食指、中指和无名指)平行施加约30%的最大收缩力。然后,他们被要求用其中一根手指以2Hz的频率进行一系列敲击。在所有任务中,未敲击的手指会随着敲击手指的力的变化而无时间延迟地改变其力的产生。在用食指和中指敲击时,两根未敲击的手指的力的变化与敲击手指的力的变化呈负相关。在用无名指敲击时,在不同受试者中可以看到两种行为类型,其中中指的力与无名指的力不同相(第1组)或同相(第2组)。在这两种情况下,食指的力与无名指的力不同相。这些变化平均导致了对敲击过程中预期手指力下降的补偿,在不同条件下范围为94%至102%。在所有情况下,除了在用无名指敲击时第2组的情况外,未敲击手指产生的力的比例在敲击过程中没有变化,在第2组中,食指开始产生比中指明显更高的力。我们将这些数据解释为前馈中枢机制作用的结果,该机制导致组成一个结构单元的手指产生的力发生平行变化。

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