首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >A new interface element with progressive damage and osseointegration for modeling of interfaces in hip resurfacing
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A new interface element with progressive damage and osseointegration for modeling of interfaces in hip resurfacing

机译:具有渐进式损伤和骨整合的新界面元素,用于髋关节表面置换中的界面建模

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摘要

Finite element models of orthopedic implants such as hip resurfacing femoral components usually rely on contact elements to model the load-bearing interfaces that connect bone, cement and implant. However, contact elements cannot simulate progressive degradation of bone-cement interfaces or osseointegration. A new interface element is developed to alleviate these shortcomings. This element is capable of simulating the nonlinear progression of bone-cement interface debonding or bone-implant interface osseointegration, based on mechanical stimuli in normal and tangential directions. The new element is applied to a hip resurfacing femoral component with a stem made of a novel biomimetic composite material. Three load cases are applied sequentially to simulate the 6-month period required for osseointegration of the stem. The effect of interdigitation depth of the bone-cement interface is found to be negligible, with only minor variations of micromotions. Numerical results show that the biomimetic stem progressively osseointegrates (a averages 0.7 on the stem surface, with spot-welds) and that bone-stem micromotions decrease below 10mm. Osseointegration also changes the load path within the femoral bone: a decrease of 300μ? was observed in the femoral head, and the inferomedial part of the femoral neck showed a slight increase of 165μ?. There was also increased stress in the implant stem (from 7 to 11 MPa after osseointegration), indicating that part of the load is supported through the stem. The use of the new osseointegratable interface element has shown the osseointegration potential of the biomimetic stem. Its ability to model partially osseointegrated interfaces based on the mechanical conditions at the interface means that the new element could be used to study load transfer and osseointegration patterns on other models of uncemented hip resurfacing femoral components.
机译:诸如髋关节置换股骨组件之类的整形外科植入物的有限元模型通常依赖于接触元件来建模连接骨骼,水泥和植入物的承重界面。然而,接触元件不能模拟骨水泥界面的逐步退化或骨整合。开发了新的界面元素以减轻这些缺点。此元素能够基于法向和切向的机械刺激来模拟骨水泥界面剥离或骨-植入物界面骨整合的非线性进程。该新元件通过新型仿生复合材料制成的茎杆应用于股骨髋关节表面置换部件。依次施加三个载荷工况,以模拟茎骨整合所需的6个月时间。骨水泥界面的交叉深度的影响被发现可以忽略不计,只有微小的变化。数值结果表明,仿生茎逐渐骨整合(在茎表面平均0.7,带有点焊),并且茎干微动减小到10mm以下。骨整合还改变了股骨内的负荷路径:减少了300μ?在股骨头处观察到股骨颈,股骨颈的下腹部分显示微微增加了165μl。植入物茎杆中的应力也增加了(骨整合后从7到11 MPa),表明部分载荷通过茎杆得到支撑。新的骨整合界面元素的使用显示了仿生茎的骨整合潜力。它能够根据界面处的机械条件对部分骨整合界面进行建模,这意味着该新元件可用于研究其他非骨水泥化股骨表面置换模型的载荷转移和骨整合模式。

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