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A Finite Element 3D Model of in Vivo Human Knee Joint Based on MRI for the Tibiofemoral Joint Contact Analysis

机译:基于MRI的体内人体膝关节的有限元3D模型进行胫铁夫运动接触分析

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The contact behaviors of in vivo knee during weight bearing were quantified using MRI-based 3D knee model. The model included the cortical and trabecular bone of the femur and tibia, cartilage of the femoral condyles and tibial plateau, both the medial and lateral menisci with their horn attachments. Explicit dynamic nonlinear finite element techniques were discussed to simulate biomechanical features of tibio-femeral joint under different loads condition, considering the relative slide and friction existing in the knee. The simulating results show that the contact area increased while the loads increased. Both the ratio of the contact area and the ratio of contact force of medial and laterial tibial plateau were almost constant under the different loads along the axis of the tibia during the supporting phase in a gait, and yet the contact points of the compressive force were changed.
机译:使用MRI的3D膝上膝盖模型量化体内膝关节中体内膝关节的接触行为。该模型包括股骨和胫骨的皮质和小梁骨,股骨章程和胫骨平台的软骨,内侧和侧面半月丝与其角附着物。讨论了明确的动态非线性有限元技术以在不同载荷条件下模拟胫股股份质的生物力学特征,考虑到膝关节中存在的相对载玻片和摩擦。模拟结果表明,接触面积在负载增加时增加。接触面积的比率和内侧胫骨平台的接触力的比率均在步态的支撑阶段沿着胫骨轴的不同载荷下几乎恒定,但是压缩力的接触点是改变了。

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