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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >The wear of a polyethylene socket articulating with a zirconia ceramic femoral head in canine total hip arthroplasty.
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The wear of a polyethylene socket articulating with a zirconia ceramic femoral head in canine total hip arthroplasty.

机译:犬全髋关节置换术中与氧化锆陶瓷股骨头相连的聚乙烯承窝的磨损。

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摘要

Wear of yttria-zirconia (zirconia) in the femoral head was investigated in mature mongrel dogs weighing 10 to 13 kg. Two dogs, which were used as a control group, were sacrificed 18 months after implantation of the uncemented modular hip system with an alumina ceramic (alumina) femoral head. A zirconia femoral head was implanted in five dogs: one was sacrificed 12 months after implantation, two at 18 months, and two at 24 months. In each femoral head and polyethylene (PE) socket, the surface was observed by means of scanning electron microscopy (SEM); the mean articulation surface roughness on the femoral head and PE socket and the thickness of the PE socket were measured. Wear was not seen on the surface of either the zirconia or the alumina heads. In both groups, minute white spots on the smooth surface of the PE socket were visible by SEM. In the alumina and zirconia groups the mean roughness was 0.1 microm. The mean thickness of the PE socket was reduced by 0.2 mm in the alumina group. In the zirconia group it was reduced by 0.2 to 0.3 mm. However, the mechanical strength of zirconia is known to be greater than that of alumina and it may be possible to reduce the diameter of the femoral head. The smaller zirconia head may contribute to the reduction of the wear of the PE socket in an uncemented modular total hip system. Copyright 1999 John Wiley & Sons, Inc.
机译:在重10至13公斤的成年杂种犬中研究了股骨头氧化钇-氧化锆(氧化锆)的磨损。在将非骨水泥型髋关节系统植入氧化铝陶瓷(氧化铝)股骨头后18个月,将两只用作对照组的狗处死。将氧化锆的股骨头植入五只狗中:一只在植入后12个月处死,两只在18个月处死,两只在24个月处死。在每个股骨头和聚乙烯(PE)窝中,通过扫描电子显微镜(SEM)观察表面;测量股骨头和PE窝的平均关节表面粗糙度以及PE窝的厚度。氧化锆或氧化铝头的表面均未见磨损。在两组中,通过SEM都可以看到PE插座光滑表面上的细小白点。在氧化铝和氧化锆组中,平均粗糙度为0.1微米。在氧化铝组中,PE插座的平均厚度减少了0.2 mm。在氧化锆组中,其减小了0.2至0.3mm。然而,已知氧化锆的机械强度大于氧化铝的机械强度,并且有可能减小股骨头的直径。较小的氧化锆头可能有助于减少非水泥模块化全髋关节系统中PE承窝的磨损。版权所有1999 John Wiley&Sons,Inc.

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