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髋臼方向对高交联聚乙烯内衬应力分布的影响。

Effect of acetabular orientation on stress distribution of highly cross-linked polyethylene liners.

作者信息

Lam Luthan, Drew Timothy, Boscainos Petros

出版信息

Orthopedics. 2013 Nov;36(11):e1346-52. doi: 10.3928/01477447-20131021-13.

Abstract

Several case reports have documented the fracture of highly cross-linked polyethylene (HCLPE) liners used in total hip arthroplasty (THA). Although uncommon, fractured liners result in considerable morbidity for patients and require revision surgery. One postulated mechanism that leads to this type of implant failure is malorientation of the acetabular component. The purpose of this study was to investigate the effect of acetabular orientation on the stress distribution of HCLPE liners used in THA by means of finite element analysis. Three-dimensional models of a commonly used HCLPE liner were created corresponding to 12 different acetabular component orientations (inclination ranging from 20° to 70° and version ranging from 20° of retroversion to 40° of anteversion). A static stress analysis of the finite element models was performed under conditions simulating peak gait loads. The results of the analysis revealed that excessive inclination and extremes of version were associated with an increase in peak stress magnitudes. The locations of peak stress also were found to lie within the rim notch and locking ring groove regions, which were consistent with the fracture locations reported in published case reports. Therefore, the acetabular component should be oriented carefully during implantation to reduce the risk of rim loading and subsequent liner fracture. In addition, an alternative liner design may further help reduce stress risers and risk of fracture.

摘要

几例病例报告记录了全髋关节置换术(THA)中使用的高度交联聚乙烯(HCLPE)衬垫的骨折情况。尽管这种情况不常见,但衬垫骨折会给患者带来相当大的发病率,并且需要进行翻修手术。一种推测导致这种类型植入物失败的机制是髋臼部件的安装方向错误。本研究的目的是通过有限元分析来研究髋臼方向对THA中使用的HCLPE衬垫应力分布的影响。创建了一个常用HCLPE衬垫的三维模型,对应12种不同的髋臼部件方向(倾斜度范围为20°至70°,旋转角度范围为20°后倾至40°前倾)。在模拟峰值步态负荷的条件下对有限元模型进行了静态应力分析。分析结果表明,过度倾斜和极端旋转角度与峰值应力大小的增加有关。峰值应力的位置也被发现位于边缘切口和锁定环凹槽区域内,这与已发表病例报告中报道的骨折位置一致。因此,在植入过程中应仔细调整髋臼部件的方向,以降低边缘负荷和随后衬垫骨折的风险。此外,一种替代的衬垫设计可能进一步有助于减少应力集中和骨折风险。

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