首页> 美国卫生研究院文献>International Journal of Biomaterials >Surface Roughness of CoCr and ZrO2 Femoral Heads with Metal Transfer: A Retrieval and Wear Simulator Study
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Surface Roughness of CoCr and ZrO2 Femoral Heads with Metal Transfer: A Retrieval and Wear Simulator Study

机译:带金属转移的CoCr和ZrO2股骨头的表面粗糙度:回收和磨损模拟器研究

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摘要

Metal transfer to femoral heads may result from impingement against the metallic acetabular shell following subluxation/dislocation, or when metallic debris enters the articulation zone. Such transfers roughen the head surface, increasing polyethylene wear in total hip replacements. Presently, we examined the surface roughness of retrieved femoral heads with metallic transfer. Profilometry revealed roughness averages in regions of metal transfer averaging 0.380 μm for CoCr and 0.294 μm for ZrO2 which were one order of magnitude higher than those from non-implanted controls. Scanning electron microscopy (SEM) revealed adherent transfers on these retrievals, with titanium presence confirmed by electron dispersive spectroscopy. Due to the concern for increased wear, metal transfer was induced on non-implanted heads, which were then articulated against flat polyethylene discs in multidirectional sliding wear tests. Increased polyethylene wear was associated with these specimens as compared to unaltered controls. SEM imaging provided visual evidence that the transfers remained adherent following the wear tests. Pre- and post-test roughness averages exceeded 1 μm for both the CoCr and ZrO2 heads. Overall, these results suggest that metal transfer increases the surface roughness of CoCr and ZrO2 femoral heads and that the transfers may remain adherent following articulation against polyethylene, leading to increased polyethylene wear.
机译:半脱位/脱位后,或当金属碎屑进入关节区域时,金属向髋臼壳的撞击可能导致金属转移到股骨头。这种转移会使头部表面变粗糙,增加了整个髋关节置换术中聚乙烯的磨损。目前,我们通过金属转移检查了股骨头的表面粗糙度。轮廓仪显示,在金属转移区域中,CoCr的平均粗糙度平均为0.380μm,ZrO2平均为0.294μm,这比未植入对照的平均粗糙度高一个数量级。扫描电子显微镜(SEM)揭示了这些回收物上的粘附转移,并且电子分散光谱法证实了钛的存在。由于担心增加磨损,因此在未植入的头部上引起了金属转移,然后在多向滑动磨损测试中将其铰接在平坦的聚乙烯圆盘上。与未改变的对照相比,这些样品的聚乙烯磨损增加。 SEM成像提供了视觉证据,表明磨损测试后,转印仍然附着。 CoCr和ZrO2磁头的测试前和测试后平均粗糙度均超过1μm。总体而言,这些结果表明,金属转移会增加CoCr和ZrO2股骨头的表面粗糙度,并且转移可能会在与聚乙烯铰接后保持粘附性,从而增加聚乙烯的磨损。

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