Shen Fu-Wen, McKellop Harry
J. Vernon Luck Orthopaedic Research Center Orthopaedic Hospital Los Angeles, CA 90007, USA.
Clin Orthop Relat Res. 2005 Jan(430):80-8.
Two methods were developed and evaluated for cross-linking the bearing surface of a polyethylene acetabular cup to a limited depth, in order to improve its resistance to wear without degrading the mechanical properties of the bulk of the component. In the first method, low-energy electron beams were used to cross-link only the bearing surface of the cups to a maximum depth of about 2 mm. The cups then were annealed at 100 degrees C in vacuum for 3 or 6 days to reduce the residual free radicals, and the resultant resistance to oxidation was compared by artificially aging the cups at 80 degrees C in air. Chemically cross-linked surface layers were produced by coating the bearing surfaces of the cups with a thin layer of polyethylene powder mixed with 1% weight peroxide, and compressing them at 6.9 MPa (1000 psi) and 170 degrees C. This resulted in a cross-linked surface layer that extended about 3 mm deep, with a gradual transition to conventional (noncross-linked) polyethylene in the bulk of the implant. In hip simulator wear tests with highly polished (implant quality) femoral balls, both types of surface cross-linking were found to improve markedly the wear resistance of the acetabular cups. In tests with roughened femoral balls, the wear rates were much higher and were comparable to those obtained with similarly roughened balls against noncross-linked polyethylene cups in a previous study, indicating that the full benefit of cross-linking may not be realized under conditions of severe third-body abrasion. Nevertheless, these results show a promising approach for optimizing the wear resistance and the bulk mechanical properties of polyethylene components in total joint arthroplasty.
开发并评估了两种方法,用于在有限深度内交联聚乙烯髋臼杯的承重表面,以提高其耐磨性,同时不降低部件主体的机械性能。在第一种方法中,使用低能电子束仅对髋臼杯的承重表面进行交联,最大深度约为2毫米。然后将髋臼杯在100摄氏度的真空中退火3或6天,以减少残余自由基,并通过在80摄氏度的空气中人工老化髋臼杯来比较所得的抗氧化性。通过用与1%重量的过氧化物混合的聚乙烯粉末薄层涂覆髋臼杯的承重表面,并在6.9兆帕(1000磅力/平方英寸)和170摄氏度下压缩,制备化学交联表面层。这产生了一个约3毫米深的交联表面层,在植入物主体中逐渐过渡到常规(非交联)聚乙烯。在使用高度抛光(植入物质量)的股骨球进行的髋关节模拟器磨损试验中,发现两种表面交联类型均显著提高了髋臼杯的耐磨性。在使用粗糙股骨球的试验中,磨损率要高得多,与先前研究中使用类似粗糙球与非交联聚乙烯杯的磨损率相当,这表明在严重三体磨损条件下可能无法实现交联的全部益处。尽管如此,这些结果显示了一种优化全关节置换术中聚乙烯部件耐磨性和主体机械性能的有前景的方法。