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The Kinematic and Static Analysis of the Tibio-Femoral Joint Based on a Novel Spatial Mechanism

机译:基于新型空间机制的胫腓关节运动学和静态分析

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To reveal the characteristics of knee movement and tibio-femoral joint contact force, a novel single degree of freedom spatial mechanism is built to simulate the joint kinematics based on a three dimensional model of the human knee. The length changes of the three ligaments can be obtained by establishing and solving the kinematics spiral function. Based on this mechanism, a static model is built where linear springs are used to model the ligaments and whose stiffness coefficients are obtained by the finite element method. The main strength of the proposed model is that it associates the knee's flexion motion with internal/external rotation of the tibia based on the isometricity of the anterior cruciate ligament. This offers an efficient method to model and analyse the changes of ligament lengths and static kinematics after ligament reconstruction, which is crucial in designing knee recovery and rehabilitation equipment.
机译:为了揭示膝盖运动和胫股关节接触力的特征,建立了一种新颖的单自由度空间机制,以基于人体膝盖的三维模型来模拟关节运动学。通过建立和求解运动学螺旋函数,可以获得三个韧带的长度变化。基于这种机制,建立了一个静态模型,其中使用线性弹簧对韧带进行建模,并通过有限元方法获得其刚度系数。提出的模型的主要优点是,它基于前交叉韧带的等距关系将膝盖的屈伸运动与胫骨的内部/外部旋转关联起来。这为韧带重建后韧带长度和静态运动学的变化建模和分析提供了一种有效的方法,这对于设计膝关节康复和康复设备至关重要。

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