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Increase in Grasp Force Reflects a Desire to Improve Movement Precision

机译:抓力的增加反映了对提高运动精度的渴望

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摘要

Grasping is an action engraved in the human genome, enabling newborn infants to hang from a monkey-bar immediately after birth. The grasp force provides rich information about the brain’s control of arm movements. In this study, we tested the hypothesis that the grasp force increases to improve the hand’s movement precision during reaching. In two reaching experiments, subjects increased grasp force to suppress movement imprecision that arose from both self-generated motor noise and from an unpredictable environment. Furthermore, the grasp force did not increase constantly, but increased specifically along the movement where the hand’s deviation was greatest. The increased grasp was premeditated and was not a reaction to environmental forces, suggesting that the central nervous system has a predictive, state-dependent model of movement precision during reaching. The grasp force provides a high temporal resolution and calibration-less estimate of movement precision adaptation.
机译:抓握是人类基因组中刻画的一种动作,使新生婴儿在出生后立即可以悬挂在猴子栏上。抓握力可提供有关大脑对手臂运动的控制的丰富信息。在这项研究中,我们测试了以下假设:握力增加以提高手在伸手过程中的运动精度。在两个达到的实验中,受试者增加了抓地力,以抑制由于自身产生的电动机噪声和不可预测的环境而引起的运动不精确性。此外,抓地力并不是一直增加,而是随着手的偏斜最大的运动而特别增加。增强的抓握是有预谋的,并不是对环境力的反应,这表明中枢神经系统在到达过程中具有预测性的,与状态有关的运动精度模型。抓握力提供了较高的时间分辨率和运动校准精度的无需校准的估计。

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