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退火交联(Crossfire)聚乙烯与传统聚乙烯作为髋关节承重材料的性能比较。

Comparison of the properties of annealed crosslinked (Crossfire) and conventional polyethylene as hip bearing materials.

作者信息

Kurtz Steve M, Manley Michael, Wang Aiguo, Taylor Scott, Dumbleton John

机构信息

Exponent, Inc., Philadelphia, Pennsylvania, USA.

出版信息

Bull Hosp Jt Dis. 2002;61(1-2):17-26.

Abstract

In 1998, orthopaedic manufacturers started to introduce highly crosslinked ultra-high molecular weight polyethylene (UHMWPE) for total hip replacement bearings. Today's highly-crosslinked UHMWPEs materials are irradiation processed with a total dose ranging between 50 and 105 kGy, depending upon the manufacturer. Each manufacturer has adopted a different route for producing their highly crosslinked UHMWPE that includes a combination of three important processing steps: an irradiation step, an intra or post-irradiation thermal processing step, and a sterilization step. This paper reviews the choices available to an implant designer when developing a highly-crosslinked UHMWPE as an orthopaedic bearing material. We suggest that the application of annealing rather than re-melting in the thermal processing step allows the retention of important mechanical properties in the finished material. This approach will be illustrated with test data on Crossfire (Stryker Howmedica Osteonics, Mahwah, NJ), an annealed, highly-crosslinked UHMWPE developed specifically for total hip replacements. We compare the physical, mechanical, and wear properties of Crossfire with that of conventional (N2-Vac) UHMWPE and with materials produced using published melt irradiation technology. At the short term (2 and 3 years) the results demonstrated through clinical follow-up, clinical results for Crossfire, are encouraging. Longer follow-up is necessary to confirm the benefits to patients from reduction of debris released from the articulation.

摘要

1998年,骨科医疗器械制造商开始将高度交联的超高分子量聚乙烯(UHMWPE)用于全髋关节置换的轴承。如今的高度交联UHMWPE材料是通过辐照处理的,总剂量在50至105千戈瑞之间,具体取决于制造商。每个制造商生产其高度交联UHMWPE都采用了不同的途径,其中包括三个重要加工步骤的组合:辐照步骤、辐照期间或辐照后的热处理步骤以及灭菌步骤。本文综述了植入物设计者在开发高度交联UHMWPE作为骨科轴承材料时可采用的选择。我们建议,在热处理步骤中采用退火而非重新熔融的方法,能够使最终材料保留重要的机械性能。将通过Crossfire(史赛克豪美迪卡骨科学公司,新泽西州马哈瓦)的测试数据来说明这种方法,Crossfire是一种专门为全髋关节置换开发的经过退火处理的高度交联UHMWPE。我们将Crossfire的物理、机械和磨损性能与传统的(氮气真空)UHMWPE以及使用已发表的熔体辐照技术生产的材料进行比较。从短期(2年和3年)临床随访所展示的结果来看,Crossfire的临床结果令人鼓舞。需要更长时间的随访来确认减少关节处碎屑释放给患者带来的益处。

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