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在安静站立期间,压力中心速度反映的是身体加速度而非身体速度。

Center of pressure velocity reflects body acceleration rather than body velocity during quiet standing.

作者信息

Masani Kei, Vette Albert H, Abe Masaki O, Nakazawa Kimitaka

机构信息

Rehabilitation Engineering Laboratory, Lyndhurst Centre, Toronto Rehabilitation Institute-University Health Network, 520 Sutherland Drive, Toronto, Ontario M4G 3V9, Canada; Rehabilitation Engineering Laboratory, Institute of Biomaterials and Biomedical Engineering, University of Toronto, 164 College Street, Toronto, Ontario M5S 3G9, Canada.

Department of Mechanical Engineering, University of Alberta, 4-9 Mechanical Engineering Building, Edmonton, Alberta T6G 2G8, Canada; Glenrose Rehabilitation Hospital, Alberta Health Services, 10230 - 111 Avenue NW, Edmonton, Alberta T5G 0B7, Canada.

出版信息

Gait Posture. 2014 Mar;39(3):946-52. doi: 10.1016/j.gaitpost.2013.12.008. Epub 2013 Dec 19.

Abstract

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.

摘要

本研究的目的是检验以下假设

在安静站立过程中,由于神经控制系统中存在较大的导数增益,压力中心(COP)速度反映了质心(COM)加速度。27名年轻受试者(27.2±4.5岁)和23名老年受试者(66.2±5.0岁)参与了本研究。要求每位受试者在测力平台上安静站立5次,每次时长90秒。通过测力平台和激光位移传感器获取COP和COM位移、COP和COM速度以及COM加速度。使用均方根对每个变量的波动量进行量化。在实验研究之后,进行了模拟研究以探究实验结果。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。然而,倒立摆模型的运动方程仅解释了COP和COM速度之间的相关性。模拟研究能够对这些实验结果做出有意义的解释,该研究表明神经运动指令可能包含很大一部分与身体速度成正比的部分。总之,COP速度波动反映的是COM加速度波动而非COM速度波动,这意味着控制安静站立姿势的神经运动指令包含很大一部分与身体速度成正比的部分。

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