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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Ceramic femoral heads prevent runaway wear for highly crosslinked polyethylene acetabular cups by third-body bone cement particles
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Ceramic femoral heads prevent runaway wear for highly crosslinked polyethylene acetabular cups by third-body bone cement particles

机译:陶瓷股头防止失控的穿高交联聚乙烯髋臼的杯子还有第三个物体骨水泥粒子

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摘要

Third-body wear due to entrapment of loose bone cement particles has been identified as one of the major factors that are responsible for elevated wear debris generation in total hip replacement. Previous studies have shown that the wear rate of non-crosslinked UHMWPE acetabular cups against metallic femoral heads accelerates significantly with increasing the concentration of cement particles in lubricant whereas the use of ceramic heads prevents such a runaway wear. The present study looks at the effect of third-body bone cement particles on the wear rate of highly crosslinked UHMWPE acetabular cups against both metal and ceramic femoral heads in a hip joint simulator. It is hypothesized that ceramic heads would prevent runaway wear for highly crosslinked polyethylene cups against a heavy concentration of polymethylmethacrylate (PMMA) bone cement particles in lubricant. This hypothesis was indeed verified by the present hip simulator study.
机译:还有第三个物体穿由于松骨的圈套水泥颗粒已被确定为一个负责的主要因素高架在全髋关节磨损产物生成更换。非交联型UHMWPE髋臼的专用的磨损率杯对金属股加速显著提高浓度水泥粒子润滑剂而使用陶瓷头阻止这样的失控的磨损。本研究考察的影响还有第三个物体骨水泥颗粒的磨损率高度交联的UHMWPE髋臼的杯子金属和陶瓷股正面髋关节模拟器。陶瓷头将防止失控的穿对高交联聚乙烯杯沉重的浓度有机玻璃骨水泥(PMMA)粒子润滑剂。假设确实验证了目前的臀部模拟器的研究。

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