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后稳定型膝关节假体中胫骨前柱的应力分析

Stress analysis of the anterior tibial post in posterior stabilized knee prostheses.

作者信息

Huang Chang-Hung, Liau Jiann-Jong, Huang Chun-Hsiung, Cheng Cheng-Kung

机构信息

Orthopaedic Biomechanics Laboratory, Institute of Biomedical Engineering, National Yang Ming University, No. 155, Sec. 2, Li-Nung Street, Shih-Pai, Taipei 11221, Taiwan.

出版信息

J Orthop Res. 2007 Apr;25(4):442-9. doi: 10.1002/jor.20336.

Abstract

Recent retrieval studies have indicated a high incidence of polyethylene wear on the anterior tibial post caused by impingement. This study investigated the influences of post-cam design features and component alignment on the stress distribution in the anterior tibial post when subjected to the impingement loading. Two three-dimensional finite element models of posterior stabilized knee prostheses were constructed, one with flat on flat (FF) and another with curve on curve (CC) contact surfaces between anterior tibial post and femoral cam. The polyethylene insert was modeled with elastoplastic properties. Nine cases, three hyperextension angles (0 degrees , 5 degrees , and 10 degrees ) combined with three axial tibial rotations (0 degrees , 2.5 degrees , and 5 degrees ) simulating different component alignments were analyzed. A vertical compressive load of 2,000 N and an extension moment of 45 Nm were applied simultaneously. The FF model had larger stress increases than the CC model in both hyperextension and tibial rotation compared with the neutral position. The maximum increase for the FF model was 68% in peak contact stress, 125% in von Mises stress, and 58% in tensile stress in the extreme case of 10 degrees of hyperextension combined with 5 degrees of axial rotation. Stress concentration was found at the anterior corner of the post in the FF model; this was not found in the CC model. The curve on curve design can reduce edge loading on the tibial post, especially during axial tibiofemoral rotation.

摘要

最近的检索研究表明,撞击导致胫骨前柱聚乙烯磨损的发生率很高。本研究调查了后凸轮设计特征和部件对线对胫骨前柱在撞击载荷下应力分布的影响。构建了两个后稳定型膝关节假体的三维有限元模型,一个胫骨前柱与股骨凸轮之间的接触面为平面与平面(FF)接触,另一个为曲面与曲面(CC)接触。聚乙烯衬垫采用弹塑性特性建模。分析了9种情况,即3种过伸角度(0度、5度和10度)与3种胫骨轴向旋转(0度、2.5度和5度)相结合,模拟不同的部件对线。同时施加2000N的垂直压缩载荷和45Nm的伸展力矩。与中立位相比,在过伸和胫骨旋转时,FF模型的应力增加幅度均大于CC模型。在10度过伸与5度轴向旋转的极端情况下,FF模型的峰值接触应力最大增加68%,冯·米塞斯应力最大增加125%,拉应力最大增加58%。在FF模型中,应力集中出现在柱体的前角;而在CC模型中未发现这种情况。曲面与曲面设计可减少胫骨柱上的边缘载荷,尤其是在胫股轴向旋转期间。

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