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首页> 外文期刊>Gait & posture >Center of pressure velocity reflects body acceleration rather than body velocity during quiet standing.
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Center of pressure velocity reflects body acceleration rather than body velocity during quiet standing.

机译:在安静站立时,压力速度的中心反映的是身体的加速度,而不是身体的速度。

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摘要

The purpose of this study was to test the hypothesis that the center of pressure (COP) velocity reflects the center of mass (COM) acceleration due to a large derivative gain in the neural control system during quiet standing. Twenty-seven young (27.2±4.5 years) and twenty-three elderly (66.2±5.0 years) subjects participated in this study. Each subject was requested to stand quietly on a force plate for five trials, each 90 s long. The COP and COM displacements, the COP and COM velocities, and the COM acceleration were acquired via a force plate and a laser displacement sensor. The amount of fluctuation of each variable was quantified using the root mean square. Following the experimental study, a simulation study was executed to investigate the experimental findings. The experimental results revealed that the COP velocity was correlated with the COM velocity, but more highly correlated with the COM acceleration. The equation of motion of the inverted pendulum model, however, accounts only for the correlation between the COP and COM velocities. These experimental results can be meaningfully explained by the simulation study, which indicated that the neural motor command presumably contains a significant portion that is proportional to body velocity. In conclusion, the COP velocity fluctuation reflects the COM acceleration fluctuation rather than the COM velocity fluctuation, implying that the neural motor command controlling quiet standing posture contains a significant portion that is proportional to body velocity.
机译:这项研究的目的是检验以下假设:由于静默站立期间神经控制系统中的较大导数增益,压力中心速度(COP)反映了质量中心(COM)加速度。二十七名年轻人(27.2±4.5岁)和二十三名老年人(66.2±5.0岁)参加了这项研究。每个受试者被要求静静地站在测力板上进行五次试验,每次试验持续90 s。 COP和COM位移,COP和COM速度以及COM加速度是通过测力板和激光位移传感器获得的。使用均方根量化每个变量的波动量。在实验研究之后,进行了模拟研究以调查实验结果。实验结果表明,COP速度与COM速度相关,但与COM加速度的相关性更高。但是,倒立摆模型的运动方程仅说明COP和COM速度之间的相关性。这些实验结果可以通过仿真研究进行有意义的解释,该仿真研究表明,神经运动命令可能包含与身体速度成比例的重要部分。总之,COP速度波动反映的是COM加速度波动,而不是COM速度波动,这意味着控制安静站立姿势的神经电机命令包含与人体速度成比例的重要部分。

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