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首页> 外文期刊>Clinical Orthopaedics and Related Research >Second-generation highly cross-linked X3 polyethylene wear: a preliminary radiostereometric analysis study.
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Second-generation highly cross-linked X3 polyethylene wear: a preliminary radiostereometric analysis study.

机译:第二代高度交联的X3聚乙烯磨损:初步的放射立体分析研究。

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BACKGROUND: First-generation highly cross-linked polyethylene liners have reduced the incidence of wear particle-induced osteolysis. However, failed acetabular liners have shown evidence of surface cracking, mechanical failure, and oxidative damage. This has led to the development of second-generation highly cross-linked polyethylene, which has improved wear and mechanical properties and resistance to oxidation in vitro. Owing to its recent introduction, there are no publications describing its clinical performance. QUESTIONS/PURPOSES: We assessed early clinical wear of a second-generation highly cross-linked polyethylene liner and compared its clinical performance with the published results of hip simulator tests and with first-generation highly cross-linked polyethylene annealed liners. PATIENTS AND METHODS: Twenty-one patients were enrolled in a prospective cohort study. Clinical outcome and femoral head penetration were measured for 19 patients at 6 months and 1 and 2 years postoperatively. RESULTS: The median proximal head penetration was 0.009 mm and 0.024 mm at 1 and 2 years, respectively. The median two-dimensional (2-D) head penetration was 0.083 mm and 0.060 mm at 1 and 2 years, respectively. The median proximal wear rate between 1 and 2 years was 0.015 mm/year. CONCLUSIONS: The wear rate calculated was similar to the in vitro wear rate reported for this material; however, it was less than the detection threshold for this technique. Although longer followup is required for wear to reach a clinically quantifiable level, this low level of wear is encouraging for the future clinical performance of this material. LEVEL OF EVIDENCE: Level IV, therapeutic study. See the Guidelines for Authors for a complete description of levels of evidence.
机译:背景:第一代高度交联的聚乙烯衬里降低了磨损颗粒引起的骨溶解的发生率。但是,失败的髋臼内衬显示出表面开裂,机械故障和氧化损伤的迹象。这导致了第二代高度交联聚乙烯的开发,该聚乙烯具有改善的磨损和机械性能以及体外抗氧化性。由于其最近的介绍,没有出版物描述其临床表现。问题/目的:我们评估了第二代高度交联聚乙烯衬里的早期临床磨损,并将其临床性能与已发表的髋关节模拟器测试结果以及第一代高度交联聚乙烯退火衬里进行了比较。患者与方法:二十一名患者参加了一项前瞻性队列研究。在术后6个月以及术后1年和2年对19例患者的临床结局和股骨头穿透力进行了测量。结果:在第1年和第2年,中位近端头穿透力分别为0.009毫米和0.024毫米。在1年和2年时,中位二维(2-D)头的穿透深度分别为0.083 mm和0.060 mm。 1至2年之间的中位近端磨损率为0.015毫米/年。结论:计算出的磨损率与该材料报道的体外磨损率相似。但是,它小于此技术的检测阈值。尽管需要更长的随访时间才能使磨损达到临床上可量化的水平,但这种低水平的磨损对于这种材料的未来临床表现是令人鼓舞的。证据级别:IV级,治疗研究。有关证据水平的完整说明,请参见《作者指南》。

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