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平面和高边聚乙烯髋臼衬垫的应力分布有限元分析。

Finite Element Analysis of Stress Distribution in Flat and Elevated-Rim Polyethylene Acetabular Liners.

机构信息

Department of Orthopaedic Surgery, Faculty of Medicine, Oita University, Yufu, Japan.

出版信息

Clin Orthop Surg. 2020 Sep;12(3):291-297. doi: 10.4055/cios19145. Epub 2020 Jun 29.

Abstract

BACKGROUD

No study has compared flat and elevated-rim polyethylene liners in terms of stress distribution on the bearing surface. The purpose of this study was to investigate the difference in stress distribution between flat and elevated-rim polyethylene liners.

METHODS

A stress analysis was performed by using the 3-dimensional finite element method. The cup was placed at an open angle of 20°, the flat liner and the liner with a 10° elevation was placed at inclination angles of 80°, 70°, and 60°.

RESULTS

Compared with the 60° flat liner, the 80° and 70° flat liners showed higher stress at the liner edge. In the elevated-rim liner, the stress was high at the liner edge along the cup edge. When the von Mises equivalent stress was applied to each element of the liner, the high stress area (volume) was the largest for the 80° flat liner, second largest for the 80° elevated-rim liner, and third largest for the 70° flat liner. The average contact pressure also followed the same order.

CONCLUSIONS

Elevated-rim liners affect the stress distribution by increasing the area of contact. However, since elevated-rim liners exhibit high stress at the cup edge, they are likely to result in new problems including liner failure. These findings could aid surgeons in the selection of liners and determination of revision methods such as isolated liner exchange vs. acetabular cup revision for a well-fixed metal cup with a higher inclination angle in revision total hip arthroplasty.

摘要

背景

目前尚无研究比较平面和高边聚乙烯衬垫在承载面的应力分布方面的差异。本研究旨在探讨平面和高边聚乙烯衬垫在应力分布方面的差异。

方法

采用三维有限元法进行应力分析。将杯体置于开放角为 20°的位置,将平面衬垫和倾斜角为 10°的衬垫分别置于 80°、70°和 60°的倾斜角。

结果

与 60°平面衬垫相比,80°和 70°平面衬垫在衬垫边缘处的应力更高。在高边衬垫中,沿杯缘衬垫边缘处的应力较高。当每个衬垫单元的 von Mises 等效应力施加时,80°平面衬垫的高应力区域(体积)最大,80°高边衬垫次之,70°平面衬垫最小。平均接触压力也遵循相同的顺序。

结论

高边衬垫通过增加接触面积来影响应力分布。然而,由于高边衬垫在杯缘处存在高应力,因此可能会导致新的问题,包括衬垫失效。这些发现可以帮助外科医生选择衬垫,并确定翻修方法,例如对于固定良好的金属杯,在翻修全髋关节置换术中,如果倾斜角度较高,可以选择单独更换衬垫或髋臼杯翻修。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1862/7449856/5b11ed257b05/cios-12-291-g001.jpg

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