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Dynamic Finite Element Analysis of Mobile Bearing Type Knee Prosthesis under Deep Flexional Motion

机译:移动式膝关节假体在深屈运动下的动态有限元分析

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摘要

The primary objective of this study is to distinguish between mobile bearing and fixed bearing posterior stabilized knee prostheses in the mechanics performance using the finite element simulation. Quantifying the relative mechanics attributes and survivorship between the mobile bearing and the fixed bearing prosthesis remains in investigation among researchers. In the present study, 3-dimensional computational model of a clinically used mobile bearing PS type knee prosthesis was utilized to develop a finite element and dynamic simulation model. Combination of displacement and force driven knee motion was adapted to simulate a flexion motion from 0° to 135° with neutral, 10°, and 20° internal tibial rotation to represent deep knee bending. Introduction of the secondary moving articulation in the mobile bearing knee prosthesis has been found to maintain relatively low shear stress during deep knee motion with tibial rotation.
机译:这项研究的主要目的是通过有限元模拟在力学性能上区分活动轴承和固定轴承后稳定膝关节假体。研究人员还需要量化移动轴承和固定轴承假体之间的相对力学属性和存活率。在本研究中,利用临床使用的移动轴承PS型膝关节假体的3维计算模型来开发有限元和动态仿真模型。位移和受力驱动的膝盖运动相结合,可以模拟从0°到135°的屈曲运动,胫骨内部呈中性,10°和20°的内部旋转,以表示膝盖深度弯曲。已经发现在可移动的支承膝关节假体中引入次级运动关节在胫骨旋转的深膝运动中保持相对较低的剪切应力。

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