Garvin Kevin L, Hartman Curtis W, Mangla Jimmi, Murdoch Nathan, Martell John M
Department of Orthopaedic Surgery and Rehabilitation, University of Nebraska Medical Center, Omaha, NE 68198-1080, USA.
Clin Orthop Relat Res. 2009 Jan;467(1):141-5. doi: 10.1007/s11999-008-0544-5. Epub 2008 Oct 23.
Oxidized zirconium, a material with a ceramic surface on a metal substrate, and highly cross-linked polyethylene are two materials developed to reduce wear. We measured in vivo femoral head penetration in patients with these advanced bearings. We hypothesized the linear wear rates would be lower than those published for cobalt-chrome and standard polyethylene. We retrospectively reviewed a select series of 56 THAs in a relatively young, active patient population utilizing oxidized zirconium femoral heads and highly cross-linked polyethylene acetabular liners. Femoral head penetration was determined using the Martell computerized edge-detection method. All patients were available for 2-year clinical and radiographic followup. True linear wear was 4 microm/year (95% confidence intervals, +/- 59 microm/year). The early wear rates in this cohort of relatively young, active patients were low and we believe justify the continued study of these alternative bearing surfaces.
Level IV, therapeutic study. See the Guidelines for Authors for a complete description of levels of evidence.
氧化锆是一种在金属基底上具有陶瓷表面的材料,高交联聚乙烯是另外两种为减少磨损而研发的材料。我们测量了使用这些先进关节轴承的患者体内股骨头的下沉情况。我们假设其线性磨损率会低于已公布的钴铬合金和标准聚乙烯的磨损率。我们回顾性分析了一系列选定的56例全髋关节置换术患者,这些患者相对年轻且活动量大,使用的是氧化锆股骨头和高交联聚乙烯髋臼内衬。采用马特尔计算机边缘检测法测定股骨头下沉情况。所有患者均接受了为期2年的临床和影像学随访。真实线性磨损为每年4微米(95%置信区间,±59微米/年)。在这群相对年轻、活动量大的患者中,早期磨损率较低,我们认为这为继续研究这些替代关节面提供了依据。
IV级,治疗性研究。有关证据水平的完整描述,请参阅作者指南。