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多关节运动的本体感觉控制:双手画圈

Proprioceptive control of multijoint movement: bimanual circle drawing.

作者信息

Verschueren S M, Swinnen S P, Cordo P J, Dounskaia N V

机构信息

Department of Kinesiology, Catholic University of Leuven, Heverlee (Leuven), Belgium.

出版信息

Exp Brain Res. 1999 Jul;127(2):182-92. doi: 10.1007/s002210050788.

Abstract

Proprioception is used by the central nervous system (CNS) in the control of the spatial and temporal characteristics of single joint and multiple joint movement. The present study addressed the role of proprioception in the control of bilateral cyclical movements of the limbs. Normal blindfolded human subjects drew circles simultaneously and symmetrically with the two arms (16 cm diameter, 1 /s) upon two digitizing tablets. In selected trials, vibration (60-70 Hz) was applied to the tendon of the biceps and/or anterior deltoid muscles of the dominant arm to distort the proprioceptive information from muscle spindle afferents. One goal of this study was to identify whether tendon vibration influenced the spatial characteristics of circles drawn by the vibrated, dominant arm and the non-vibrated, non-dominant arm. A second goal was to determine the effect of vibration on the temporal coupling between the two arms during circle drawing. The results revealed that tendon vibration affected the spatial characteristics of circles drawn by the vibrated arm in a manner similar to that previously found for unilateral circle drawing. During bimanual circle drawing, vibration had only a minimal effect on the spatial characteristics of the non-vibrated, non-dominant arm. Temporal interlimb coupling was quantified by the relative phasing between the arms. Without tendon vibration, the dominant arm led the non-dominant arm. Vibration of the dominant arm increased the average phase lead. In a first control experiment, vibration of the non-dominant arm decreased the phase lead of the dominant arm, or even reversed it to a non-dominant arm phase lead. In a second control experiment, the subjects performed the bimanual circle-drawing task with vision of only the vibrated arm, in which case there was no spatial distortion of the circles drawn by the vibrated arm, but the phase relation between the two arms was still shifted as if vision were completely unavailable. It was concluded that, in bimanual movements such as these, the spatial and temporal characteristics of movement are controlled independently. Whereas the spatial characteristics of hand movement seem to be controlled unilaterally, the temporal characteristics of interlimb coupling appear to be controlled by proprioceptive information from both limbs, possibly by a proprioceptive triggering mechanism.

摘要

本体感觉被中枢神经系统(CNS)用于控制单关节和多关节运动的空间和时间特征。本研究探讨了本体感觉在控制肢体双侧周期性运动中的作用。正常的蒙眼人类受试者在两个数字化平板电脑上同时且对称地用双臂画圈(直径16厘米,每秒1圈)。在选定的试验中,对优势臂的肱二头肌和/或三角肌前部肌腱施加振动(60 - 70赫兹),以扭曲来自肌梭传入纤维的本体感觉信息。本研究的一个目标是确定肌腱振动是否会影响被振动的优势臂和未振动的非优势臂所画圆圈的空间特征。第二个目标是确定振动对画圈过程中双臂之间时间耦合的影响。结果显示,肌腱振动以类似于先前在单侧画圈中发现的方式影响被振动臂所画圆圈的空间特征。在双手画圈过程中,振动对未振动的非优势臂的空间特征影响极小。肢体间的时间耦合通过双臂之间的相对相位来量化。在没有肌腱振动时,优势臂领先于非优势臂。优势臂的振动增加了平均相位领先。在第一个对照实验中,非优势臂的振动减少了优势臂的相位领先,甚至将其反转,变为非优势臂领先。在第二个对照实验中,受试者仅在能看到被振动臂的情况下进行双手画圈任务,在这种情况下,被振动臂所画圆圈没有空间扭曲,但双臂之间的相位关系仍然发生了变化,就好像完全没有视觉一样。得出的结论是,在这样的双手运动中,运动的空间和时间特征是独立控制的。手部运动的空间特征似乎是单侧控制的,而肢体间耦合的时间特征似乎是由来自双侧肢体的本体感觉信息控制的,可能是通过一种本体感觉触发机制。

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