Winarski D J, Pearson J R
IBM Corporation, General Products Division, Tucson, Ariz. 85744.
J Biomech Eng. 1990 Nov;112(4):475-8. doi: 10.1115/1.2891214.
This study extends what had been a purely numerical model that used influence-factor matrices to relate the stump stresses to prosthesis loads for unilateral, below/knee amputees. Previously published influence-factor matrices are now factored into a coefficient matrix times the inverse of a stump geometry matrix. Using actual stump parameters, new information is learned about how the resistive moment of the stump balances the flexion-extension moment of the prosthesis and why certain normal stresses reach a maximum during a specific portion of the stance phase of the prosthesis.
本研究扩展了之前的纯数值模型,该模型使用影响因子矩阵将单侧膝下截肢者的残肢应力与假肢负荷联系起来。以前发表的影响因子矩阵现在被分解为一个系数矩阵乘以一个残肢几何矩阵的逆矩阵。利用实际的残肢参数,我们获得了关于残肢的阻力矩如何平衡假肢屈伸力矩的新信息,以及为什么在假肢站立阶段的特定部分某些法向应力会达到最大值。