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A subject-specific inverse-dynamics approach for estimating joint stiffness in sideways fall

机译:一种特定于对象的逆动力学方法,用于估计侧向跌落时的关节僵硬

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摘要

Sideways fall has been identified as the most critical situation leading to hip fracture in the elderly. The stiffness and damping property of the body joints are necessary for constructing effective biomechanical models to study fall dynamics. However, very little has been known about the joint behaviour when the body is in fall. We developed a subject specific inverse-dynamics approach to estimate the joint stiffness and damping property. The anthropometric parameters required for constructing the inverse-dynamics model was extracted from the subject's whole body dual energy X-ray absorptiometry (DXA) image. The motion data of the body in sideways fall were obtained by protected fall tests using the same subject. The joints were represented by the Kelvin-Voigt model with undetermined stiffness and damping parameters, which were then determined by solving the inverse problems. For validation purpose,the obtained joint stiffness and damping parameters were substituted back into the dynamics equations and the forward problems were solved. The predicted fall kinematic variables were compared with those measured from the fall tests. Good agreements were observed, indicating that the proposed approach is reliable and reasonably accurate.
机译:侧身跌落被认为是导致老年人髋部骨折的最关键情况。人体关节的刚度和阻尼特性对于构建有效的用于研究跌落动力学的生物力学模型是必不可少的。但是,对于人体跌倒时的关节行为知之甚少。我们开发了特定于主题的逆动力学方法来估计接头的刚度和阻尼特性。从受试者的全身双能X射线吸收法(DXA)图像中提取了构造逆动力学模型所需的人体测量参数。侧身跌倒的身体运动数据是通过使用同一对象的受保护跌倒测试获得的。关节由具有不确定的刚度和阻尼参数的Kelvin-Voigt模型表示,然后通过解决反问题来确定。为了验证目的,将获得的接头刚度和阻尼参数代入动力学方程,并解决了正向问题。将预测的跌倒运动学变量与跌倒测试中测得的变量进行比较。观察到良好的协议,表明所提出的方法是可靠且合理准确的。

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