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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Alteration of the amount and morphology of wear particles by the addition of loading profile transitions during artificial hip wear testing
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Alteration of the amount and morphology of wear particles by the addition of loading profile transitions during artificial hip wear testing

机译:通过在人工髋部磨损测试过程中增加载荷分布过渡来改变磨损颗粒的数量和形态

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Current validation tests of total hip arthroplasty endo-prostheses capture only a single activity performed by patients: continuous walking. A more representative test that includes transitions from a static loaded position to dynamic motion would simulate common motions by patients in which they change from standing to walking. The introduction of such transitions into a traditional test protocol could provide insight into actual wear behaviours and more realistic wear particle properties such as size and shape. First, the introduction of transitions will increase the measured wear rate. Second, the amount of wear will be positively correlated to the number of transitions per day. Finally, the size and shape of polyethylene particle produced via testing with transitions will differ from those of a conventional continuous walking test. Three identical sets of four cobalt chromium femoral heads and sterilized acetabular cups sterilized in ethylene oxide were tested in 30 per cent bovine serum under three conditions: continuous walking (0 transitions/day), 10 transitions/day, and 100 transitions/day. A day was defined as 2500 steps. The static and peak dynamic loads were 260 N and 1.9 kN respectively. A testing duration of 106 cycles was completed for each of the three tests. The wear rate was found to be inversely related to the number of transitions. Particle analysis showed that the particle size decreased as the number of transitions increased. Particles from the 100 transitions/day test were more fibular and produced more particles of the size known to promote an immune reactive response. Contrary to our hypothesis, as the number of transitions performed by patients increased, the wear rate and accumulated wear decreased. In addition, as the number of transitions increased, a larger percentage of wear particles were in the submicron size range. Consequently, despite a decrease in wear due to the presence of loading profile transitions, there is a potentially greater risk of osteolysis owing to the increased production of immunoreactive particles.
机译:当前对全髋关节置换术内假体的验证测试仅捕获患者执行的一项活动:连续行走。更具代表性的测试包括从静态加载位置到动态运动的转换,可以模拟患者从站立到行走的共同运动。将这种过渡引入传统的测试协议中可以提供对实际磨损行为以及更实际的磨损颗粒属性(例如尺寸和形状)的洞察力。首先,过渡的引入将增加测得的磨损率。其次,磨损量将与每天的过渡次数成正相关。最后,通过过渡测试产生的聚乙烯颗粒的尺寸和形状将不同于常规的连续行走测试。在以下条件下,在30%的牛血清中测试了三组相同的四个钴铬合金股骨头和灭菌的髋臼杯,并在30%的牛血清中测试了以下三个条件:连续行走(每天0次转换,每天10次转换和每天100次转换)。一天定义为2500步。静态和峰值动态载荷分别为260 N和1.9 kN。三个测试中的每个测试的测试持续时间为106个周期。发现磨损率与转变次数成反比。颗粒分析表明,随着转变次数的增加,粒径减小。每天进行100次转换的颗粒的纤维状更强,产生的颗粒尺寸更大,可促进免疫反应。与我们的假设相反,随着患者执行的过渡次数增加,磨损率和累积磨损减少。另外,随着转变数量的增加,较大百分比的磨损颗粒在亚微米尺寸范围内。因此,尽管由于加载轮廓过渡的存在而使磨损降低,但由于免疫反应性颗粒的产生增加,可能存在更大的溶骨风险。

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