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使用逆动力学和叉积函数评估中度膝关节骨关节炎步态中的膝关节力矩结果:一项比较研究。

Knee moment outcomes using inverse dynamics and the cross product function in moderate knee osteoarthritis gait: A comparison study.

作者信息

Rutherford Derek James, Baker Matthew

机构信息

School of Physiotherapy, Faculty of Health, Dalhousie University, Halifax, NS, Canada; School of Biomedical Engineering, Faculty of Engineering, Dalhousie University, Halifax, NS, Canada.

School of Physiotherapy, Faculty of Health, Dalhousie University, Halifax, NS, Canada.

出版信息

J Biomech. 2018 Sep 10;78:150-154. doi: 10.1016/j.jbiomech.2018.07.021. Epub 2018 Jul 17.

Abstract

Inverse dynamics are the cornerstone of biomechanical assessments to calculate knee moments during walking. In knee osteoarthritis, these outcomes have been used to understand knee pathomechanics, but the complexity of an inverse dynamic model may limit the uptake of joint moments in some clinical and research structures. The objective was to determine whether discrete features of the sagittal and frontal plane knee moments calculated using inverse dynamics compare to knee moments calculated using a cross product function. Knee moments from 74 people with moderate knee osteoarthritis were assessed after ambulating at a self-selected speed on an instrumented dual belt treadmill. Standardized procedures were used for surface marker placement, gait speed determination and data processing. Net external frontal and sagittal plane knee moments were calculated using inverse dynamics and the three-dimensional position of the knee joint center with respect to the center of pressure was crossed with the three-dimensional ground reaction forces in the cross product function. Correlations were high between outcomes of the moment calculations (r > 0.9) and for peak knee adduction moment, knee adduction moment impulse and difference between peak flexion and extension moments, the cross product function resulted in absolute values less than 10% of those calculated using inverse dynamics in this treadmill walking environment. This computational solution may allow the integration of knee moment calculations to understand knee osteoarthritis gait without data collection or computational complexity.

摘要

逆动力学是在步行过程中计算膝关节力矩的生物力学评估的基石。在膝关节骨关节炎中,这些结果已被用于理解膝关节病理力学,但逆动力学模型的复杂性可能会限制某些临床和研究结构中关节力矩的应用。目的是确定使用逆动力学计算的矢状面和额状面膝关节力矩的离散特征与使用叉积函数计算的膝关节力矩相比如何。74名中度膝关节骨关节炎患者在装有仪器的双带跑步机上以自选速度行走后,对其膝关节力矩进行了评估。使用标准化程序进行表面标记放置、步态速度测定和数据处理。使用逆动力学计算净外部额状面和矢状面膝关节力矩,并将膝关节中心相对于压力中心的三维位置与叉积函数中的三维地面反作用力相乘。力矩计算结果之间的相关性很高(r>0.9),对于峰值膝关节内收力矩、膝关节内收力矩冲量以及峰值屈曲和伸展力矩之间的差异,在这种跑步机行走环境中,叉积函数得出的绝对值小于使用逆动力学计算值的10%。这种计算方法可能允许整合膝关节力矩计算,以在无需数据收集或计算复杂性的情况下理解膝关节骨关节炎步态。

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