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首页> 外文期刊>Journal of Neurophysiology >Experimental measure of arm stiffness during single reaching movements with a time-frequency analysis
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Experimental measure of arm stiffness during single reaching movements with a time-frequency analysis

机译:时频分析的单伸运动过程中手臂刚度的实验测量

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摘要

We tested an innovative method to estimate joint stiffness and damping during multijoint unfettered arm movements. The technique employs impulsive perturbations and a time-frequency analysis to estimate the arm's mechanical properties along a reaching trajectory. Each single impulsive perturbation provides a continuous estimation on a single-reach basis, making our method ideal to investigate motor adaptation in the presence of force fields and to study the control of movement in impaired individuals with limited kinematic repeatability. In contrast with previous dynamic stiffness studies, we found that stiffness varies during movement, achieving levels higher than during static postural control. High stiffness was associated with elevated reflexive activity. We observed a decrease in stiffness and a marked reduction in long-latency reflexes around the reaching movement velocity peak. This pattern could partly explain the difference between the high stiffness reported in postural studies and the low stiffness measured in dynamic estimation studies, where perturbations are typically applied near the peak velocity point.
机译:我们测试了一种创新的方法来估计多关节不受约束的手臂运动过程中的关节刚度和阻尼。该技术采用脉冲扰动和时频分析来估计手臂沿到达轨迹的机械性能。每个单个冲动扰动都会在单作用范围内提供连续的估计,这使我们的方法成为研究存在力场的情况下运动适应性以及研究运动学可重复性有限的受损个体运动控制的理想方法。与以前的动态刚度研究相反,我们发现刚度在运动过程中会发生变化,从而达到比静态姿势控制更高的水平。高刚度与反射活动增加有关。我们观察到刚度降低,到达运动速度峰值附近的长时延反射明显降低。这种模式可以部分解释姿势研究中报告的高刚度与动态估计研究中测量的低刚度之间的差异,在动态估计研究中,通常在峰值速度点附近施加扰动。

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