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影响聚乙烯髋臼杯与钛合金髋臼壳之间初始微动的因素。

Factors influencing the initial micromotion between polyethylene acetabular cups and titanium alloy shells.

作者信息

Kyle Richard F, Riddle Cheryl D, Kyle Matthew, Rockswold Sara, Bourgeault Craig

机构信息

Orthopaedic Biomechanics Laboratory of the Midwest Orthopaedic Research Foundation and Minneapolis Medical Research Foundation, Minnesota, USA.

出版信息

J Arthroplasty. 2006 Apr;21(3):443-8. doi: 10.1016/j.arth.2005.04.039.

Abstract

Mechanical test factors affecting short-term rotational stability under combined torsional and compressive loading was assessed in modular press-fit acetabular components with 4 different locking mechanism designs, by measuring the micromotion of the liner-shell interface at either room (20 degrees C) or body temperature (37 degrees C) and with either a high (2,943 N) or low (490 N) compressive load. Liner-shell constructs whose short-term stability was statistically significantly affected by temperature exhibited more rotational stability at body temperature than at room temperature. Liner-shell constructs whose short-term stability was statistically significantly affected by the level of compressive load exhibited more rotational stability with high compressive loads than with low loads. Liner-shell constructs with different locking mechanism designs were influenced by temperature and compressive loads differently. It is recommended to consider including these factors in tests of acetabular component locking mechanisms.

摘要

通过测量在室温(20摄氏度)或体温(37摄氏度)下以及高(2943牛)或低(490牛)压缩载荷作用下,具有4种不同锁定机制设计的模块化压配髋臼组件中衬垫-外壳界面的微动,评估了在扭转和压缩联合载荷下影响短期旋转稳定性的机械测试因素。短期稳定性受温度影响具有统计学显著差异的衬垫-外壳结构在体温下比在室温下表现出更高的旋转稳定性。短期稳定性受压缩载荷水平影响具有统计学显著差异的衬垫-外壳结构在高压缩载荷下比在低压缩载荷下表现出更高的旋转稳定性。具有不同锁定机制设计的衬垫-外壳结构受温度和压缩载荷的影响不同。建议在髋臼组件锁定机制测试中考虑这些因素。

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