股骨假体关节表面的磨损、蠕变和摩擦热及其对长期性能的影响——第一部分,综述。

J A Davidson, G Schwartz
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引用次数: 0

摘要

重建关节的蠕变和磨损是一个复杂的过程,导致不良的组织反应,活动范围减小,最终进行翻修。随着重建关节的设计和手术技术的改进,关节系统和材料的长期性能变得更加重要,特别是对于年轻、体重更重和更活跃的患者。以前在发音系统的长期表现中忽略的一个方面是这些系统在发音过程中产生热量的趋势,特别是在长时间的相对剧烈的活动中。本研究回顾了关节润滑、摩擦、磨损和整体系统性能的各个方面。局部加热会增加超高分子量聚乙烯的蠕变、磨损和氧化降解,因此,特别关注热量产生对这些系统长期性能的影响。由于这个问题的复杂性,对这些不同性能方面的处理分为两个部分。本部分,第一部分,回顾了发音表现的各个方面。第二部分介绍了摩擦,加热和扭矩测试的各种金属和陶瓷髋关节系统的结果。还提出了摩擦加热的标准,并讨论了与散热有关的各种传热机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wear, creep, and frictional heat of femoral implant articulating surfaces and the effect on long-term performance--Part I, A review.

Creep and wear of articulating reconstructed joints is a complex process, resulting in adverse tissue response, decreased range of motion, and eventual revision. As improvements are made in the design and surgical techniques of reconstructed joints, the long-term performance of the articulating system and materials becomes more important, particularly for younger, heavier, and more active patients. One aspect previously ignored in the long-term performance of articulating systems is the tendency for these systems to generate heat during articulation, particularly for extended periods of relatively strenuous activity. The present study reviews the various aspects of joint lubrication, friction, wear, and overall system performance. Local heating can increase the creep, wear, and oxidation degradation of UHMWPE, thus, specific attention is given to the effect that heat generation can have on long-term performance of these systems. Because of the complexity of this issue, the treatment of these various performance aspects is divided into two parts. The present part, Part I, reviews the various aspects of articulation performance. Part II presents results of friction, heating, and torque testing of various metal and ceramic hip systems. Criteria for frictional heating is also presented, along with discussion related to the various heat transfer mechanisms involved with heat dissipation.

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