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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Determining material loss from the femoral stem trunnion in hip arthroplasty using a coordinate measuring machine
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Determining material loss from the femoral stem trunnion in hip arthroplasty using a coordinate measuring machine

机译:使用坐标测量机确定髋关节置换术中股骨耳轴的材料损失

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摘要

In contrast to the articulating and taper surfaces of failed total hip replacements, volumetric wear analysis of trunnions is not routinely performed. Metal wear particles from the trunnion may contribute not only to the failures of metal-on-metal total hip replacements but also to all hip replacements utilising metal trunnions. A validation study was performed with the material removed in stages from the trunnions of an Exeter V40 stem, a Corail stem and an Accolade stem to simulate different magnitudes of wear. The material loss from the trunnions was measured both volumetrically with a coordinate measuring machine and gravimetrically with a high-precision balance. A cohort of 28 ex vivo trunnions was also measured using the coordinate measuring machine. The maximum error between the two methods was found to be 0.13mm(3). This result was comparable with the coordinate measuring machine method for the taper surface (0.2mm(3)). The ex vivo trunnions had a median wear volume of 0.14mm(3) (range: 0.04-0.28mm(3)). This is the first study to determine the accuracy of volumetric wear measurements of trunnions by comparing against gravimetric measurements. Volumetric wear analysis of trunnions may provide additional insights into failures of modular total hip prostheses and will be performed routinely at our centre.
机译:与失败的全髋关节置换的关节表面和锥度表面相反,耳轴的体积磨损分析不是常规进行的。耳轴的金属磨损颗粒不仅可能导致金属对金属的整体髋关节置换术的失败,而且可能导致使用金属耳轴的所有髋关节置换术失败。进行了一项验证研究,分阶段从Exeter V40阀杆,Corail阀杆和Accolade阀杆的耳轴中去除了材料,以模拟不同程度的磨损。耳轴的材料损失既可以使用坐标测量机进行体积测量,也可以使用高精度天平进行重量分析。还使用坐标测量机测量了28个离体耳轴的队列。两种方法之间的最大误差为0.13mm(3)。此结果与锥度表面(0.2mm(3))的坐标测量机方法相当。离体耳轴的中值磨损量为0.14mm(3)(范围:0.04-0.28mm(3))。这是通过与重力测量值进行比较来确定耳轴的体积磨损测量值的准确性的第一项研究。耳轴的体积磨损分析可能会提供更多关于模块化全髋关节假体故障的见解,并将在我们中心常规进行。

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