首页> 外文期刊>The Journal of arthroplasty >The effect of femoral prosthesis design on cement strain in cemented total hip arthroplasty.
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The effect of femoral prosthesis design on cement strain in cemented total hip arthroplasty.

机译:股骨假体设计对全髋关节置换术中水泥应变的影响。

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摘要

Finite element studies show that the highest cement stresses are located at the most proximal and distal ends of the prosthesis. In vitro biomechanical and histologic analyses of autopsy-retrieved cemented femoral components show these areas to be associated with cement-prosthesis debonding. In this study, cement strains were measured in 2 geometrically different femoral stems in paired cadaver femora: A straight, collared, moderately tapered stem (Centralign) was compared with an anatomically curved, collarless, dramatically tapered stem (Scientific Hip Prosthesis [SHP]). Results showed that the maximum strain and the overall strain profile differed between the 2 stems. The Centralign had peak strains located at the most proximal gauge positions, whereas the peak strains of the SHP were located around the middle of the femoral stem. Minimization of cement strain, especially at the crucial proximal and distal areas of the stem, by altering component design may be able to reduce cement-prosthesis debonding and improve clinical results.
机译:有限元研究表明,最高的骨水泥应力位于假体的最近端和最远端。尸检取骨的骨水泥假体的体外生物力学和组织学分析表明,这些区域与骨水泥假体的剥离有关。在这项研究中,在成对的尸体股骨中的两个几何不同的股骨柄中测量了水泥应变:将笔直的,领状的,适度锥形的茎(Centralign)与解剖学上弯曲的,无领的,显着锥形的茎(科学髋关节假体[SHP])进行了比较。结果表明,两个茎之间的最大应变和整体应变曲线不同。 Centralign的峰值应变位于最接近标距的位置,而SHP的峰值应变位于股骨干的中间。通过更改组件设计,最大程度地降低水泥应变,特别是在茎的关键近端和远端区域,可以减少水泥假体的脱粘并改善临床效果。

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