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Finite Element Study on the Micromotion of Cementless Total Hip Arthroplasty

机译:非骨水泥全髋关节置换术微运动的有限元研究

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Major problem associated with the cementless design is the lack of stability. Several design features were introduced to provide the much needed stability for bone integration. These include fins, fiber mesh, beads, indentations and collars. The use of collar has been a subject of controversy with mixed reports of clinical outcomes. In this study, the effectiveness of collar in terms of providing stability was analysed using finite element method. Three dimensional model of a human femur was constructed from CT dataset and hip arthroplasty was simulated. With an applied joint contact load simulating physiological gait, micromotion of the implant relative to the bone was calculated via an experimentally validated algorithm. Results showed that collar did not improve stability of the whole stem but only around the medial calcar region.
机译:与非骨水泥设计相关的主要问题是缺乏稳定性。引入了几种设计功能,以提供骨骼集成所需的稳定性。这些包括鳍,纤维网,珠,凹痕和项圈。衣领的使用一直是争议的话题,有关临床结果的报道不一。在这项研究中,使用有限元方法分析了项圈在提供稳定性方面的有效性。从CT数据集构建人股骨的三维模型,并对髋关节置换术进行模拟。在施加模拟生理步态的关节接触负荷的情况下,通过经过实验验证的算法来计算植入物相对于骨骼的微动。结果表明,颈圈并不能改善整个茎的稳定性,而只能改善内侧cal骨周围的稳定性。

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