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Computer Simulation of Knee Arthrometry to Study the Effects of Partial ACL Injury and Tibiofemoral Contact

机译:膝关节动脉的计算机模拟研究部分ACL损伤和胫骨损伤接触的影响

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We simulated the knee arthrometry test to obtain a deeper understanding of the joint's stability behavior and interpret the arthrometric results more effectively. A 2D sagittal plane finite element model of the lower limb in the standard configuration of knee arthrometry was developed using ANSYS APDL. A detailed model of the knee joint was considered including the femoral articulating contour represented by an ellipse, the tibial plateau represented by a circular arc, and four major knee ligaments and their individual bundles represented by linear and nonlinear tensile springs. A deformable layer of articular cartilage was also considered over the tibial plateau to simulate the bones engagement more precisely. The model was analyzed while the tibia was subjected to an anterior drawer force of up to 150N with 10N increments and the tibial anterior translation was obtained. Simulation of the arthrometry test for different curvatures of the tibial plateau revealed that the bones engagement has a considerable effect on the knee joint's laxity. However, a considerable change from the intact knee's data curve was only observed when the ACL total ruptured was simulated. This emphasizes the difficult task involved when trying to distinguish the partial injuries of the ACL using arthrometric data.
机译:我们模拟了膝关节术试验,以更深入地了解关节的稳定性行为,更有效地解释节肢动术结果。使用ANSYS APDL开发了膝关节标准配置中下肢的2D矢状平面有限元模型。膝关节的详细模型被认为包括由椭圆形式表示的股骨铰接轮廓,由圆弧表示的胫骨平台和四个主要膝盖韧带及其由线性和非线性拉伸弹簧表示的各个束。在胫骨平原上也考虑了可变形的关节软骨层,以更精确地模拟骨骼啮合。分析模型,同时胫骨与10N增量的前抽屉高达150n的前抽屉力和胫骨前平翻转。针对胫骨平台的不同曲率测试的仿真显示骨骼接合对膝关节的松弛具有相当大的影响。然而,只有在模拟ACL总破裂时才观察到完整膝关节的数据曲线的相当大的变化。这强调了尝试将ACL的部分损伤与关节数据区分开来涉及的困难任务。

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