首页> 外文会议>ASME bioengineering conference >TIBIO-FEMORAL CONTACT FORCE DURING GAIT: AN ITERATIVE METHOD USING EMG-CONSTRAINED MULTI-BODY SIMULATION AND FINITE ELEMENT ANALYSIS
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TIBIO-FEMORAL CONTACT FORCE DURING GAIT: AN ITERATIVE METHOD USING EMG-CONSTRAINED MULTI-BODY SIMULATION AND FINITE ELEMENT ANALYSIS

机译:步态胫腓接触力:一种使用肌电约束的多体模拟和有限元分析的迭代方法

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In this study, we present an innovative methodology (Figure 1) to calculate patient specific tibio-femoral (TF) contact forces by integrating medical image data, 3D skin-mounted marker trajectories, ground reaction forces, electromyography (EMG) data and finite element analysis (FEA). The muscle redundancy problem is solved through an EMG-constrained optimization approach. Calculated muscle forces are input to a FEA to calculate TF contact forces. Kinematics of the degrees of freedom (DOFs) of the knee that cannot be accurately assessed from the trajectories of skin-mounted markers, are estimated using a novel iterative procedure which combines muscle force calculation with dynamic FEA. The presented methodology is applied to analyze TF contact forces of a walking trial performed on an instrumented treadmill of which the speed was sequentially ramped up and down. The results presented in this abstract will be validated against the in-vivo measured TF contact forces.
机译:在这项研究中,我们提出了一种创新的方法(图1),通过整合医学图像数据,3D皮肤标记器轨迹,地面反作用力,肌电图(EMG)数据和有限元来计算患者特定的胫股(TF)接触力分析(FEA)。通过EMG约束优化方法解决了肌肉冗余问题。计算出的肌肉力输入到FEA中,以计算TF接触力。使用结合了肌肉力计算和动态FEA的新型迭代程序,可以估计无法从皮肤安装标记的轨迹准确评估出膝盖的自由度(DOF)的运动学。本文介绍的方法适用于分析在有条件跑步机上进行的步行试验的TF接触力,该跑步机的速度依次递增和递减。本摘要中呈现的结果将针对体内测得的TF接触力进行验证。

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