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新型高多孔金属髋臼组件在翻修全髋关节置换术中的机械稳定性。

Mechanical stability of novel highly porous metal acetabular components in revision total hip arthroplasty.

机构信息

Department of Orthopaedic Surgery, New England Musculoskeletal Institute, University of Connecticut Health Center, Farmington, Connecticut 06034-4037, USA.

出版信息

J Arthroplasty. 2010 Apr;25(3):337-41. doi: 10.1016/j.arth.2009.03.003. Epub 2009 Apr 9.

Abstract

Highly porous metal acetabular components have emerged for revision hip arthroplasty. However, superior mechanical stability over traditional cementless components has not been demonstrated. Three different cementless acetabular components, including 2 highly porous tantalum designs, were inserted into hemipelvis specimens with a superolateral defect. Mechanical testing was performed to failure using a servohydraulic testing machine. The porous tantalum designs exhibited superior stability over the traditional cementless implant (P < .05). There was no difference in mechanical stability between the rigid modular tantalum shell and the more flexible revision tantalum shell (P > .46). In acetabular revision, highly porous tantalum acetabular components provide superior mechanical stability. However, these results suggest that improved frictional resistance is a more important design feature over implant flexibility with this particular implant.

摘要

高多孔金属髋臼组件已应用于髋关节翻修术。然而,与传统非骨水泥组件相比,其机械稳定性尚未得到证实。将 3 种不同的非骨水泥髋臼组件(包括 2 种高多孔钽设计)插入具有超外侧缺损的半骨盆标本中。使用伺服液压试验机进行失效机械测试。多孔钽设计比传统非骨水泥植入物具有更好的稳定性(P <.05)。刚性模块化钽壳和更灵活的翻修钽壳之间的机械稳定性没有差异(P >.46)。在髋臼翻修中,高多孔钽髋臼组件提供了更好的机械稳定性。然而,这些结果表明,与这种特定植入物的植入物灵活性相比,提高摩擦阻力是一个更重要的设计特征。

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