Structural Biomechanics, Department of Civil and Environmental Engineering, Imperial College London, Skempton Building, South Kensington Campus, London SW7 2AZ, UK.
J Biomech. 2012 Jun 1;45(9):1698-704. doi: 10.1016/j.jbiomech.2012.03.026. Epub 2012 Apr 16.
The impact of anatomical variation and surgical error on excessive wear and loosening of the acetabular component of large diameter metal-on-metal hip arthroplasties was measured using a multi-factorial analysis through 112 different simulations. Each surgical scenario was subject to eight different daily loading activities using finite element analysis. Excessive wear appears to be predominantly dependent on cup orientation, with inclination error having a higher influence than version error, according to the study findings. Acetabular cup loosening, as inferred from initial implant stability, appears to depend predominantly on factors concerning the area of cup-bone contact, specifically the level of cup seating achieved and the individual patient's anatomy. The extent of press fit obtained at time of surgery did not appear to influence either mechanism of failure in this study.
通过 112 种不同的模拟,采用多因素分析法来测量解剖变异和手术误差对大直径金属对金属髋关节置换术后髋臼部件过度磨损和松动的影响。每个手术方案都使用有限元分析进行了 8 种不同的日常加载活动。研究结果表明,过度磨损似乎主要取决于杯的方向,倾斜误差的影响高于偏差误差。根据初始植入物稳定性推断,髋臼杯松动似乎主要取决于与杯-骨接触面积有关的因素,特别是杯的安装程度和患者的个体解剖结构。在这项研究中,手术时获得的压配合程度似乎都不影响这两种失效机制。