首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Experimental versus computational analysis of micromotions at the implant-bone interface
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Experimental versus computational analysis of micromotions at the implant-bone interface

机译:种植体-骨界面微动的实验与计算分析

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摘要

In total hip arthroplasty, micromotions at the implant-bone interface influence the long-term survival of the prosthesis. These micromotions are often measured using sensors that are fixed to the implant and bone at points that are remote from the interface. Given that the implant-bone system is not rigid, errors may be introduced. It is not possible to assess the magnitude of these errors with the currently available experimental methods. However, this problem can be investigated using the finite element method (FEM). The hypothesis that the actual interface micromotions differ from those measured in the experimental manner was tested using a case-specific FE model, validated against deflection experiments. The FE model was used to simulate an 'experimental' method to measure micromotions. This 'experimental' method was performed by mimicking the distance between the measurement points; the implant point was selected at the interface while the bony point was at the outer surface of bone. No correlation was found between the micromotions computed at the interface and when using remote reference points. Moreover, the magnitudes of micromotions computed with the latter method were considerably greater. By reducing the distance between the reference points the error decreased, but the correlation stayed unchanged. Care needs to be taken when interpreting the results of micromotion measurement systems that use bony reference points at a distance from the actual interface.
机译:在全髋关节置换术中,植入物-骨界面的微动会影响假体的长期存活。通常使用固定在植入物和骨骼上的传感器在远离界面的位置测量这些微动。考虑到植入物-骨系统不是刚性的,可能会引入错误。用当前可用的实验方法无法评估这些误差的大小。但是,可以使用有限元方法(FEM)研究此问题。使用针对特定情况的有限元模型测试了实际界面微运动与以实验方式测量的微运动不同的假设,并针对挠度实验进行了验证。 FE模型用于模拟测量微运动的“实验”方法。这种“实验”方法是通过模拟测量点之间的距离来完成的。在界面处选择植入点,而在骨骼的外表面上选择骨点。在接口处计算的微动与使用远程参考点时的微动之间未发现相关性。此外,用后一种方法计算的微动幅度要大得多。通过减小参考点之间的距离,误差减小,但是相关性保持不变。在解释使用距离实际界面一定距离的骨质参考点的微运动测量系统的结果时,应格外小心。

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