首页> 外文期刊>Journal of orthopaedic science : >Contamination of surfaces for osseointegration of cementless total hip implants by small aluminium oxide particles: analysis of established implants by use of a new technique.
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Contamination of surfaces for osseointegration of cementless total hip implants by small aluminium oxide particles: analysis of established implants by use of a new technique.

机译:小氧化铝颗粒污染骨整合骨整合的表面:通过使用新技术分析已建立的植入物。

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摘要

The failure of total hip replacements because of wear, particle-induced osteolysis, and aseptic loosening has focussed interest on factors potentially affecting the rate of wear. In this context the effect of particle release from the bone-implant interface of cementless implants is poorly understood. The surface structure for bony ongrowth of many cementless implants is created by grit-blasting. Remnants from this process (Al2O3 particles) on these surfaces have been reported; these remnants have the potential to cause third-body wear.We report a novel technique for isolation and quantification of alumina particle contamination. Stems from different manufacturers were electrochemically activated and etched to isolate the alumina residues. After filtration the particles were characterised by scanning electron microscopy and energy-dispersive X-ray analysis.Many Al2O3 particles were found on all the implants tested. A mean of 426,814 particles per mm(2) was measured. Particle size distribution ranged from 0.125 to 66.304?μm with a peak in the range 0.25-1?μm.Our main finding was a large amount of small Al2O3 particles on all blasted surfaces. On the basis of our results these alumina particle remnants cannot be excluded as a factor causing increased third-body wear.
机译:由于磨损,粒子诱导的骨解和无菌松动是由于磨损,粒子诱导的骨质溶解和无菌疏松的失败,对可能影响磨损率的因素来说令人兴奋。在这种情况下,颗粒释放从软泥植入物的骨植入界面的影响很差。通过砂砾喷射产生许多粘土植入物的骨骨梭菌的表面结构。已经报道了来自该方法(Al 2 O 3颗粒)的残余物;这些残余物有可能导致第三机身磨损。我们报告了一种用于分离和定量氧化铝粒子污染的新技术。来自不同制造商的茎被电化学活化并蚀刻以分离氧化铝残留物。过滤后,通过扫描电子显微镜和能量分散X射线分析表征颗粒。在测试的所有植入物上发现了Many Al2O3颗粒。测量每毫米(2)的426,814个颗粒的平均值。粒度分布的范围为0.125至66.304ΩΩμm,峰值在0.25-1ΩΩm.μm的范围内。您的主要发现是所有喷砂表面上的大量小Al2O3颗粒。在我们的结果的基础上,这些氧化铝颗粒残留不能被排除为导致增加的第三体磨损的因素。

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