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The initial stability and contact mechanics of a press-fit resurfacing arthroplasty of the hip

机译:髋关节压配合表面置换术的初始稳定性和接触力学

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摘要

Finite element analysis was used to examine the initial stability after hip resurfacing and the effect of the procedure on the contact mechanics at the articulating surfaces. Models were created with the components positioned anatomically and loaded physiologically through major muscle forces. Total micromovement of less than 10 μm was predicted for the press-fit acetabular components models, much below the 50 μm limit required to encourage osseointegration. Relatively high compressive acetabular and contact stresses were observed in these models. The press-fit procedure showed a moderate influence on the contact mechanics at the bearing surfaces, but produced marked deformation of the acetabular components. No edge contact was predicted for the acetabular components studied.It is concluded that the frictional compressive stresses generated by the 1 mm to 2 mm interference-fit acetabular components, together with the minimal micromovement, would provide adequate stability for the implant, at least in the immediate post-operative situation.
机译:使用有限元分析来检查髋关节表面重修后的初始稳定性以及该过程对关节表面接触力学的影响。创建的模型具有在解剖上定位并通过主要肌肉力在生理上加载的组件。预计压入髋臼组件模型的总微动小于10μm,远低于鼓励骨整合所需的50μm极限。在这些模型中观察到较高的髋臼压缩应力和接触应力。压入程序显示出对轴承表面接触力学的适度影响,但髋臼组件产生了明显的变形。没有预测到所研究的髋臼组件会发生边缘接触。结论是,由1 mm至2 mm的过盈配合髋臼组件产生的摩擦压缩应力以及最小的微动,至少在植入物中可为植入物提供足够的稳定性。术后立即情况。
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