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Simultaneous estimation of ground reaction force and knee contact force during walking and squatting

机译:散步期间同时估计地面反作用力和膝关节接触力

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摘要

Chronic occupational lower limb injuries such as osteoarthritis require an understanding of mechanical loading conditions in joints during occupational activities. We aimed to develop a human musculoskeletal model and to estimate knee contact force and ground reaction force (GRF) simultaneously during walking and squatting. GRF and joint kinematics were obtained from a subject with electronic total knee replacement during walking and squatting. Force reaction elements were embedded in the knee and foot of a full-body musculoskeletal model. The joint kinematics and ground vertical force were applied to the musculoskeletal model to estimate ground shear force and knee contact force using an inverse dynamics-based optimization. Ground shear force and knee contact force could be estimated simultaneously with root mean square (RMS) error less than 1.6% body weight (BW) and 35% BW, respectively. Simultaneous estimations could be accurately conducted but the RMS error for the knee contact force increased by approximately 10% BW.
机译:慢性职业下肢损伤如骨关节炎需要了解职业活动期间关节的机械载荷条件。我们旨在开发人肌肉骨骼模型,在步行和蹲下时同时估计膝关节接触力和地面反作用力(GRF)。 GRF和关节运动学是从散步和蹲下的电子全膝关节置换的受试者获得的。力反应元件嵌入膝盖和脚脚下的全身肌肉骨骼模型中。将关节​​运动学和地垂直力应用于肌肉骨骼模型,使用逆动力学的优化来估算地面剪切力和膝关节接触力。可以将地面剪切力和膝关节接触力同时估计小于1.6%体重(BW)和35%BW的根均值(RMS)误差。可以准确地进行同时估计,但膝关节接触力的RMS误差增加了大约10%的BW。

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