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The increase in cobalt release in metal-on-polyethylene hip bearings in tests with third body abrasives

机译:在第三体磨料的测试中金属对聚乙烯髋关节轴承中钴释放量的增加

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摘要

Hypersensitivity reactions in patients receiving metal-on-metal hip replacements have been attributed to corrosion products as observed by elevated cobalt and chromium ions in the blood. Although the majority of cases are reported in metal-on-metal, incidences of these reactions have been reported in the metal-on-polyethylene patient population. To date, no in vitro study has considered cobalt release for this bearing combination. This study considered four 28 mm and seven 52 mm diameter metal-on-polyethylene bearings tested following ISO standard hip simulator conditions as well as under established abrasive conditions. These tests showed measurable cobalt in all bearings under standard conditions. Cobalt release, as well as polyethylene wear, increased with diameter, increasing from 52 to 255 ppb. The introduction of bone cement particles into the articulation doubled polyethylene wear and cobalt release while alumina particles produced significant damage on the heads demonstrated by cobalt levels of 70,700 ppb and an increased polyethylene wear from a mean value of 9–160 mm3/mc. Cobalt release was indicative of head damage and correlated with polyethylene wear at the next gravimetric interval. The removal of third body particles resulted in continued elevated cobalt levels in the 52 mm diameter bearings tested with alumina compared to standard conditions but the bearings tested with bone cement particles returned to standard levels. The polyethylene wear in the bone cement tested bearings also recovered to standard levels, although the alumina tested bearings continued to wear at a higher rate of 475 mm3/mc. Cobalt release was shown to occur in metal-on-polyethylene bearings indicating damage to the metal head resulting in increased polyethylene wear. While large diameter metal-on-polyethylene bearings may provide an increased range of motion and a reduced dislocation risk, increased levels of cobalt are likely to be released and this needs to be fully considered before being widely adopted.
机译:接受金属对金属髋关节置换术的患者的超敏反应可归因于腐蚀产物,如血液中钴和铬离子升高所观察到的。尽管大多数病例报告于金属对金属,但在聚乙烯对金属患者人群中也报告了这些反应的发生率。迄今为止,还没有体外研究考虑过这种轴承组合的钴释放。这项研究考虑了在ISO标准臀部模拟器条件下以及在既定的磨蚀条件下测试的四个直径为28 mm和七个直径为52 mm的聚乙烯上金属轴承。这些测试表明,在标准条件下,所有轴承中的钴均可以测量。钴的释放以及聚乙烯的磨损随着直径的增加而增加,从52 p​​pb增加到255ppb。将骨水泥颗粒引入关节后,聚乙烯的磨损和钴的释放量增加了一倍,而氧化铝颗粒对头部的伤害显着,钴含量为70,700 ppb,聚乙烯的磨损也由9-160 mm 3 < / sup> / mc。钴释放表明头部受损,并与下一个重量间隔的聚乙烯磨损相关。与标准条件相比,去除第三体颗粒导致用氧化铝测试的直径为52 mm的轴承中钴水平持续升高,但使用骨水泥颗粒测试的轴承恢复到标准水平。尽管经氧化铝测试的轴承继续以475 mm 3 / mc的较高速率磨损,但骨水泥测试轴承中的聚乙烯磨损也恢复到标准水平。钴的释放被证明在聚乙烯上的金属轴承中发生,表明金属头部的损坏导致聚乙烯磨损增加。尽管大直径聚乙烯上金属轴承可提供更大的运动范围并降低位错风险,但钴的释放量可能会增加,因此在广泛采用之前需要充分考虑。

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