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模块化颈髋假体中与设计相关的微动磨损

Design-related fretting wear in modular neck hip prosthesis.

作者信息

Viceconti M, Ruggeri O, Toni A, Giunti A

机构信息

Laboratorio di Tecnologia dei Materiali, Istituti Ortopedici Rizzoli, Bologna, Italy.

出版信息

J Biomed Mater Res. 1996 Feb;30(2):181-6. doi: 10.1002/(SICI)1097-4636(199602)30:2<181::AID-JBM7>3.0.CO;2-N.

Abstract

An accelerated cyclic loading corrosion test was used to determine the corrosion behavior of a commercial (GSP) and a prototype titanium hip prosthesis each with a modular neck. Four GSP and four prototype stems were subjected to a 2-Hz cyclic load ranging between 200 and 2,100 N for 1,000,000 cycles. Three stems were tested in an environment of FeCl3 solution, three stems were tested in Ringer's solution, and two stems were tested in air. After cyclic loading, the specimens were carefully examined with optical and scanning electron microscopy (SEM). None of them showed macroscopic or microscopic signs of corrosion, regardless of the environment to which the specimens were subjected. However, macroscopic evidence of mechanical fretting was present at the neck-stem modular junction, primarily concentrated at the medial contact point between stem and neck, especially for the prototype stems. SEM analysis confirmed these observations. The appreciable differences observed between the two designs suggest that the problem can be minimized or eliminated with an accurately designed taper fitting.

摘要

采用加速循环加载腐蚀试验来测定带有模块化颈部的商用(GSP)和原型钛髋关节假体的腐蚀行为。四个GSP假体柄和四个原型假体柄承受2赫兹的循环载荷,载荷范围为200至2100牛,循环1000000次。三个假体柄在氯化铁溶液环境中进行测试,三个假体柄在林格氏溶液中进行测试,两个假体柄在空气中进行测试。循环加载后,用光学显微镜和扫描电子显微镜(SEM)仔细检查标本。无论标本所处环境如何,均未发现宏观或微观腐蚀迹象。然而,在柄-颈模块化连接处存在机械微动的宏观证据,主要集中在柄与颈之间的内侧接触点,尤其是原型假体柄。SEM分析证实了这些观察结果。两种设计之间观察到的明显差异表明,通过精确设计的锥度配合可以将该问题最小化或消除。

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