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术中制造的假体-股骨系统振动行为的有限元分析

A finite element analysis of the vibrational behaviour of the intra-operatively manufactured prosthesis-femur system.

作者信息

Pastrav L C, Devos J, Van der Perre G, Jaecques S V N

机构信息

Katholieke Universiteit Leuven, Division of Biomechanics and Engineering Design (BMGO), Belgium.

出版信息

Med Eng Phys. 2009 May;31(4):489-94. doi: 10.1016/j.medengphy.2008.11.017. Epub 2009 Jan 10.

Abstract

In total hip replacement (THR) a good initial stability of the prosthetic stem in the femur, which corresponds to a good overall initial contact, will help assure a good long-term result. During the insertion the implant stability increases and, as a consequence, the resonance frequencies increase, allowing the assessment of the implant fixation by vibration analysis. The influence of changing contact conditions on the resonance frequencies was however not yet quantitatively understood and therefore a finite element analysis (FEA) was set up. Modal analyses on the hip stem-femur system were performed in various contact situations. By modelling the contact changes by means of the contact tolerance options in the finite element software, contact could be varied over the entire hip stem surface or only in specific zones (proximal, central, distal) while keeping other system parameters constant. The results are in agreement with previous observations: contact increase causes positive resonance frequency shifts and the dynamic behaviour is most influenced by contact changes in the proximal zone. Although the finite element analysis did not establish a monotonous relationship between the vibrational mode number and the magnitude of the resonance frequency shift, in general the higher modes are more sensitive to the contact change.

摘要

在全髋关节置换术(THR)中,假体柄在股骨中良好的初始稳定性,这对应于良好的整体初始接触,将有助于确保良好的长期效果。在植入过程中,植入物的稳定性增加,因此共振频率增加,从而可以通过振动分析评估植入物的固定情况。然而,接触条件变化对共振频率的影响尚未得到定量理解,因此建立了有限元分析(FEA)。在各种接触情况下对髋关节柄 - 股骨系统进行模态分析。通过在有限元软件中使用接触公差选项对接触变化进行建模,可以在整个髋关节柄表面或仅在特定区域(近端、中部、远端)改变接触,同时保持其他系统参数不变。结果与先前的观察结果一致:接触增加会导致共振频率正向偏移,并且动态行为受近端区域接触变化的影响最大。尽管有限元分析没有在振动模态数与共振频率偏移量之间建立单调关系,但一般来说,较高的模态对接触变化更敏感。

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