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氧化锆股骨部件可减少膝关节磨损模拟器中的聚乙烯磨损。

Oxidized zirconium femoral components reduce polyethylene wear in a knee wear simulator.

作者信息

Ezzet Kace A, Hermida Juan C, Colwell Clifford W, D'Lima Darryl D

机构信息

Scripps Clinic, Division of Orthopaedic Surgery, La Jolla, CA 92037, USA.

出版信息

Clin Orthop Relat Res. 2004 Nov(428):120-4. doi: 10.1097/01.blo.0000148576.70780.13.

Abstract

Polyethylene wear remains a major problem that can jeopardize the long-term durability of prostheses used in total knee arthroplasty. Oxidized zirconium is a material that combines the strength of a metal with the wear properties of a ceramic. This study evaluated the wear rates of polyethylene inserts against oxidized zirconium femoral components. Three oxidized zirconium femoral components and three Co-Cr femoral components of identical geometry used in total knee arthroplasty were articulated against standard tibial components with modular tibial inserts made of noncross-linked ultra-high molecular weight polyethylene. Gravimetric and volumetric polyethylene wear rates were calculated after 5 million gait cycles on an AMTI knee wear simulator. Oxidized zirconium reduced polyethylene wear by 42% compared with Co-Cr alloy. This study shows that oxidized zirconium can reduce polyethylene wear substantially when used for fixed-bearing total knee arthroplasty.

摘要

聚乙烯磨损仍然是一个重大问题,它可能危及全膝关节置换术中使用的假体的长期耐用性。氧化锆是一种兼具金属强度和陶瓷耐磨性能的材料。本研究评估了聚乙烯衬垫与氧化锆股骨部件之间的磨损率。在全膝关节置换术中使用的三个几何形状相同的氧化锆股骨部件和三个钴铬合金股骨部件,与由非交联超高分子量聚乙烯制成的模块化胫骨衬垫的标准胫骨部件进行铰接。在AMTI膝关节磨损模拟器上经过500万个步态周期后,计算聚乙烯的重量磨损率和体积磨损率。与钴铬合金相比,氧化锆使聚乙烯磨损减少了42%。这项研究表明,在固定平台全膝关节置换术中使用氧化锆时,可大幅减少聚乙烯磨损。

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