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使用有限元分析预测全膝关节置换胫骨平台的疲劳失效

Prediction of fatigue failure of a total knee replacement tibial plateau using finite element analysis.

作者信息

Paganelli J V, Skinner H B, Mote C D

机构信息

Bioengineering Graduate Group, University of California, San Francisco.

出版信息

Orthopedics. 1988 Aug;11(8):1161-8. doi: 10.3928/0147-7447-19880801-07.

Abstract

Recent reports of total knee prosthesis fractures have raised concerns over the long-term structural integrity of metal-backed tibial components. Both the development of a fibrous tissue membrane under the tibial plateau of a total knee prosthesis and loading conditions may seriously alter the fatigue life of the metal tibial tray. The effects of the cement and fibrous tissue at the bone-prosthesis interface were studied. Using the method of three-dimensional finite element analysis, peak loads of normal gait were simulated at several locations on the plateau of a generic, single-stemmed, porous-coated, CoCrMo tibial component model, providing information on the effect of abnormal loading patterns. According to the analysis, stresses below the material endurance limit are predicted throughout the prosthesis prior to the development of the fibrous membrane. However, stresses exceeding the yield strength of the material are predicted in a prosthesis that is supported by a fully developed 1 mm membrane, meaning that it has a markedly increased risk of low-cycle fatigue failure. Lateral displacement of the loading is detrimental to prosthesis life because maximum stress increases 100% while posterior displacement of the loading increases maximum stress by only 30%. Anterior loading creates stresses similar to those created by central loading. Because of their susceptibility to low-cycle fatigue failure, simple, single-stemmed prostheses are not recommended in cases of questionable bone stock unless modified. Several design alternatives are proposed.

摘要

近期关于全膝关节假体骨折的报告引发了人们对金属背衬胫骨部件长期结构完整性的担忧。全膝关节假体胫骨平台下方纤维组织膜的形成以及加载条件都可能严重改变金属胫骨托的疲劳寿命。研究了骨 - 假体界面处骨水泥和纤维组织的影响。采用三维有限元分析方法,在一个通用的、单柄、多孔涂层的钴铬钼胫骨部件模型的平台上的多个位置模拟了正常步态的峰值载荷,提供了关于异常加载模式影响的信息。根据分析,在纤维膜形成之前,整个假体的应力预计低于材料耐力极限。然而,在由完全发育的1毫米膜支撑的假体中,预计应力会超过材料的屈服强度,这意味着其低周疲劳失效风险显著增加。加载的横向位移对假体寿命有害,因为最大应力增加100%,而加载的后向位移仅使最大应力增加30%。前向加载产生的应力与中心加载产生的应力相似。由于其易发生低周疲劳失效,对于骨量可疑的情况,除非进行改进,否则不建议使用简单的单柄假体。提出了几种设计替代方案。

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