Lanting Brent A, Teeter Matthew G, Howard James L, MacDonald Steven J, Van Citters Douglas W
Division of Orthopaedic Surgery, Department of Surgery, London Health Sciences Centre-University Campus, University of Western Ontario, London, Ontario, Canada.
Department of Surgery, London Health Sciences Centre-University Campus, University of Western Ontario, London, Ontario, Canada.
J Arthroplasty. 2017 Aug;32(8):2574-2579. doi: 10.1016/j.arth.2017.03.012. Epub 2017 Mar 29.
Trunnion tribocorrosion in total hip arthroplasties is concerning, but retrieval studies often are subjective or lack comparison groups. Quantitative comparisons of clinically relevant implants are required. The purpose of this investigation was to evaluate material loss in metal-on-metal (MoM) and metal-on-polyethylene (MoP) total hip articulations while controlling for trunnion design and head size.
The 166 retrieved femoral heads from 2 manufacturers were analyzed. Four cohorts based on head size, trunnion design, manufacturer, and articulation type (MoM vs MoP) were created. Corrosion was measured by a coordinate measurement machine, and material loss was assessed (MATLAB).
Retrieved femoral heads from MoP articulations had 5 times less trunnion material loss than MoM articulations, on average, for both manufacturers. There was no difference in material loss between large modular head (>40 mm) and 36-mm MoM hip trunnion. Implants with a material loss above the detectable limit demonstrated a correlation with time in vivo only in MoP articulations.
Retrieved femoral heads from MoP bearing couples had a lower magnitude of material loss than MoM couples, independent of head diameter. A time in vivo effect was only seen in MoP bearings.
全髋关节置换术中的耳轴摩擦腐蚀令人担忧,但翻修研究往往主观或缺乏对照组。需要对临床相关植入物进行定量比较。本研究的目的是在控制耳轴设计和股骨头尺寸的同时,评估金属对金属(MoM)和金属对聚乙烯(MoP)全髋关节置换中的材料损失。
分析了来自2个制造商的166个翻修股骨头。根据股骨头尺寸、耳轴设计、制造商和关节类型(MoM与MoP)创建了4个队列。通过坐标测量机测量腐蚀,并评估材料损失(MATLAB)。
对于两个制造商,MoP关节的翻修股骨头耳轴材料损失平均比MoM关节少5倍。大型模块化股骨头(>40mm)和36mm MoM髋关节耳轴之间的材料损失没有差异。材料损失高于可检测极限的植入物仅在MoP关节中显示出与体内时间的相关性。
MoP关节对的翻修股骨头材料损失程度低于MoM关节对,与股骨头直径无关。仅在MoP关节中观察到体内时间效应。