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Positional errors introduced by transient perturbations applied to a multi-joint limb

机译:应用到多关节肢体的瞬态扰动引起的位置误差

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摘要

We explored a recently discovered phenomenon that smooth transient perturbations applied to the hand can lead to violations of equifinality. Healthy subjects occupied an initial hand position against a bias force and tried not to interfere with hand displacements produced by changes in the force. The force changes were smooth and transient (ending up with the same bias force value), with or without a time interval (dwell time) between the force change application and removal. They could lead to an increase or a decrease in the bias force. The subjects performed the task with eyes open and closed. After the force change was over, the hand stopped consistently short of the initial position only when the initial force change increased the bias force. No consistent positional errors were seen for the opposite force change direction. These results were consistent across trials with and without dwell time performed with and without vision. We conclude that the positional errors were not due to muscle properties but reflected a drift in the hand referent coordinate within the central nervous system triggered by the perturbation and driven by the difference between the actual and referent hand coordinates during the dwell time.
机译:我们探索了最近发现的现象,即施加于手的平稳瞬态扰动可能导致违反均等性。健康的受试者抵抗偏压力占据了初始的手部位置,并试图不干扰因力的变化而产生的手部位移。力的变化是平滑且短暂的(最终具有相同的偏置力值),在力变化的施加和移除之间存在或不存在时间间隔(停留时间)。它们可能导致偏压力的增加或减少。受试者睁开双眼执行任务。力改变结束后,仅当初始力改变增加了偏压力时,指针始终停止在初始位置附近。对于相反的力变化方向,没有观察到一致的位置误差。这些结果在有无视力和有无视力的情况下的试验中是一致的。我们得出的结论是,位置误差不是由于肌肉特性引起的,而是反映了中枢神经系统中手参考坐标的漂移,该漂移是由扰动触发的,并且是在停留时间内实际和参考手坐标之间的差异引起的。

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