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将叠加的地面反作用力分解为左右力分布。

Decomposition of superimposed ground reaction forces into left and right force profiles.

作者信息

Davis B L, Cavanagh P R

机构信息

Department of Biomedical Engineering and Applied Therapeutics, Cleveland Clinic Foundation, OH 44195.

出版信息

J Biomech. 1993 Apr-May;26(4-5):593-7. doi: 10.1016/0021-9290(93)90020-f.

Abstract

The process of collecting ground reaction force data by mounting a forceplate beneath a treadmill belt has the advantage that numerous walking trials can be analyzed without the problem of subjects 'targeting' their footsteps. However, a potential problem is that the measured forces represent a summation of bilateral force profiles during the double support phase of walking. To address this issue, an algorithm is described for decomposing superimposed ground reaction force data into individual left and right profiles. It is based on an examination of the side-to-side oscillations of the measured center of pressure (CoP). Whenever the measured CoP exceeds a certain threshold, it is assumed that the person is being supported by a single limb, and the measured GRF data reflect the forces under that limb. Conversely, when the measured CoP indicates that both feet are on the treadmill, it is assumed that the location of the individual CoP under each foot is given by wL2 and wR2. These quantities reflect the greatest excursion of the measured CoP towards the left and right sides of the forceplate, respectively. With this assumption, individual GRF profiles can be calculated by means of solving two simultaneous equations--one describing the equilibrium of forces in the vertical direction, and one describing the equilibrium of moments about an antero-posterior axis of the forceplate. The algorithm describing this procedure is simple enough to be implemented on a spreadsheet and yields estimates for average force, impulse, peak force and stance time that are typically within 3% of the true values.

摘要

通过在跑步机皮带下方安装测力板来收集地面反作用力数据的过程具有这样的优势

可以分析大量的步行试验,而不存在受试者“对准”脚步的问题。然而,一个潜在的问题是,测量到的力代表了步行双支撑阶段双侧力分布的总和。为了解决这个问题,本文描述了一种算法,用于将叠加的地面反作用力数据分解为单独的左右分布。它基于对测量的压力中心(CoP)左右摆动的检查。每当测量到的CoP超过某个阈值时,就假设人由单肢支撑,并且测量到的GRF数据反映该肢体下方的力。相反,当测量到的CoP表明双脚都在跑步机上时,假设每只脚下的个体CoP位置由wL2和wR2给出。这些量分别反映了测量到的CoP向测力板左右两侧的最大偏移。基于这个假设,可以通过求解两个联立方程来计算个体GRF分布——一个描述垂直方向上的力平衡,另一个描述围绕测力板前后轴的力矩平衡。描述这个过程的算法足够简单,可以在电子表格上实现,并且得到的平均力、冲量、峰值力和支撑时间的估计值通常在真实值的3%以内。

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