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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >In vivo oxidation in retrieved highly crosslinked tibial inserts
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In vivo oxidation in retrieved highly crosslinked tibial inserts

机译:回收的高度交联的胫骨插入物中的体内氧化

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The current study determined (I) the environment where oxidation in a series of retrieved, HXL UHMWPE tibial inserts occurred (in vivo or postexplant); and (II) the effect of fabrication variables (irradiation source, irradiation dose) and thermal processing after irradiation (annealing or remelting) on oxidation resistance. Hypotheses examined are (1) HXL UHMWPE tibial inserts have potential to oxidize in vivo, and (2) annealed HXL UHMWPE oxidizes at a higher rate in vivo than remelted HXL UHMWPE. Highly crosslinked UHMWPE tibial inserts (87), received by an IRB-approved retrieval laboratory from 20 surgeons at 10 institutions across the U.S., were analyzed from 2005 to 2011. Fourier transform infrared spectroscopy was used to determine oxidation and trans-vinylene index for each retrieved insert. Measured oxidation that was maximum subsurface was found in 56% of all HXL tibial inserts. This maximum oxidation correlated significantly with in vivo time, trans-vinylene index, and thermal processing after irradiation. Articular oxidation rate correlated with crosslinking irradiation dose and thermal processing after irradiation. Retrieved below-melt annealed tibial inserts had significantly higher articular oxidation rates than remelted tibial inserts (p < 0.001). Articular oxidation rates correlated positively with cross-linking irradiation dose and postirradiation thermal processing. Edge oxidation correlated with postirradiation thermal processing. Oxidation of HXL UHMWPE may have clinical implications for tibial inserts, since loss of UHMWPE toughness resulting from oxidation has led to fatigue damage in gamma-sterilized tibial inserts. ? 2012 Wiley Periodicals, Inc.
机译:当前的研究确定(I)在一系列回收的HXL UHMWPE胫骨插入物中发生氧化的环境(体内或植入后); (II)制造变量(辐照源,辐照剂量)和辐照后的热处理(退火或重熔)对抗氧化性的影响。检验的假说是:(1)HXL UHMWPE胫骨插入物可能在体内氧化,(2)退火的HXL UHMWPE在体内的氧化速率比重熔的HXL UHMWPE高。 2005年至2011年,分析了高度交联的UHMWPE胫骨嵌件(87),该材料由IRB批准的取回实验室从美国10个机构的20位外科医生那里获得。检索到的插入。在所有HXL胫骨嵌件中,有56%的表面被测到最大的氧化。该最大氧化与体内时间,反乙烯指数和辐照后的热处理显着相关。关节氧化率与交联剂量和辐照后的热处理有关。收回的低于融化的退火胫骨插入物的关节氧化率明显高于重新熔化的胫骨插入物(p <0.001)。关节氧化速率与交联辐射剂量和辐射后热处理呈正相关。边缘氧化与辐射后热处理有关。 HXL UHMWPE的氧化可能对胫骨嵌件有临床意义,因为氧化导致的UHMWPE韧性丧失已导致伽玛消毒的胫骨嵌件疲劳损坏。 ? 2012 Wiley期刊公司

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