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Finite Element Simulations of Hard-On-Soft Hip Joint Prosthesis Accounting for Dynamic Loads Calculated from a Musculoskeletal Model during Walking

机译:硬骨骼-髋关节假体的有限元模拟考虑了骨骼肌肉模型在行走过程中产生的动态载荷

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摘要

The hip joint replacement is one of the most successful orthopedic surgical procedures although it involves challenges to overcome. The patient group undergoing total hip arthroplasty now includes younger and more active patients who require a broad range of motion and a longer service lifetime for the replacement joint. It is well known that wear tests have a long duration and they are very expensive, thus studying the effects of geometry, loading, or alignment perturbations may be performed by Finite Element Analysis. The aim of the study was to evaluate total deformation and stress intensity on ultra-high molecular weight polyethylene liner coupled with hard material head during one step. Moving toward in-silico wear assessment of implants, in the presented simulations we used a musculoskeletal multibody model of a human body giving the loading and relative kinematic of the investigated tribo-system during the gait. The analysis compared two frictional conditions -dry and wet and two geometrical cases- with and without radial clearance. The loads and rotations followed the variability of the gait cycle as well as stress/strain acting in the UHWMPE cup. The obtained results allowed collection of the complete stress/strain description of the polyethylene cup during the gait and calculation of the maximum contact pressure on the lateral edge of the insert. The tensional state resulted in being more influenced by the geometrical conditions in terms of radial clearance than by the variation of the friction coefficients due to lubrication phenomena.
机译:髋关节置换术是最成功的骨科手术方法之一,尽管它涉及要克服的挑战。现在,接受全髋关节置换术的患者群体包括年轻且活跃的患者,这些患者需要广泛的运动范围并需要更长的替换关节使用寿命。众所周知,磨损测试的持续时间长并且非常昂贵,因此可以通过有限元分析来研究几何形状,载荷或对准扰动的影响。这项研究的目的是评估超高分子量聚乙烯衬里与硬质材料头部结合在一起的总变形和应力强度。转向植入物的硅内磨损评估,在提出的模拟中,我们使用了人体的肌肉骨骼多体模型,给出了步态中所研究的摩擦系统的负荷和相对运动学。该分析比较了两种摩擦条件(干,湿和两种几何情况),有无径向间隙。载荷和旋转遵循步态周期的变化以及作用于UHWMPE杯中的应力/应变。获得的结果允许收集步态期间聚乙烯杯的完整应力/应变描述,并计算插入件侧边缘上的最大接触压力。在径向间隙方面,受拉伸状态的影响比受润滑现象引起的摩擦系数变化的影响更大。

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