Research & Development Center, Active Implants Corporation, Netanya 42505, Israel.
J Orthop Res. 2011 Dec;29(12):1859-66. doi: 10.1002/jor.21471. Epub 2011 May 31.
Soft bearing materials that aim to reproduce the tribological function of the natural joint are gaining popularity as an alternative concept to conventional hard bearing materials in the hip and knee. However, it has not been proven so far that an elastic cushion bearing can be sufficiently durable as a long term (∼20 years) articulating joint prosthesis. The use of new bearing materials should be supported by accurate descriptions of the implant following usage and of the number, volume, and type of wear particles generated. We report on a long-term 20 million cycle (Mc) wear study of a commercial hip replacement system composed of a compliant polycarbonate-urethane (PCU) acetabular liner coupled to a cobalt-chromium alloy femoral head. The PCU liner showed excellent wear characteristics in terms of its low and steady volumetric wear rate (5.8-7.7 mm(3)/Mc) and low particle generation rate (2-3 × 10(6) particles/Mc). The latter is 5-6 orders of magnitude lower than that of highly cross-linked polyethylene and 6-8 orders of magnitude lower than that of metal-on-metal bearings. Microscopic analysis of the implants after the simulation demonstrated a low damage level to the implants' articulating surfaces. Thus, the compliant PCU bearing may provide a substantial advantage over traditional bearing materials.
作为替代传统髋关节和膝关节硬面材料的概念,旨在复制天然关节摩擦学功能的软性承荷材料正日益普及。然而,到目前为止,还没有证据表明弹性垫承荷材料作为长期(~20 年)关节假体能够具有足够的耐用性。新的承荷材料的应用应通过对植入物使用后的准确描述以及产生的磨损颗粒的数量、体积和类型来支持。我们报告了一个关于商业髋关节置换系统的长达 2000 万次循环(Mc)磨损的长期研究,该系统由一个顺应性聚碳酸酯-聚氨酯(PCU)髋臼衬垫与钴铬合金股骨头耦合而成。PCU 衬垫表现出优异的磨损特性,其体积磨损率低且稳定(5.8-7.7 mm³/Mc),颗粒生成率低(2-3×10⁶ 颗粒/Mc)。后者比高度交联聚乙烯低 5-6 个数量级,比金属对金属轴承低 6-8 个数量级。模拟后的植入物的微观分析表明,植入物的接触表面的损伤程度较低。因此,顺应性 PCU 轴承可能比传统轴承材料具有显著优势。