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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Oxide ceramic femoral heads contribute to the oxidation of polyethylene liners in artificial hip joints
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Oxide ceramic femoral heads contribute to the oxidation of polyethylene liners in artificial hip joints

机译:氧化物陶瓷股头头部有助于人造髋关节中的聚乙烯衬垫氧化

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Experimental evidence demonstrates that a loss of stoichiometry at the surface of oxide bioceramic femoral heads enhances the oxidation rate of polyethylene acetabular liners in artificial hip joints. Contradicting the common notion that ceramics are bioinert, three independent experiments confirmed substantial chemical interactions between the ceramic femoral heads and their polyethylene counterparts. The experiments reported herein included hydrothermal tests, frictional tests, and hip-simulator experiments. It was discovered that oxide and non-oxide femoral heads differently affected the oxidation processes at the surface of the polyethylene liners, all other testing parameters being equal. Analytical data from X-ray photoelectron (XPS), cath-odoluminescence (CL), Fourier-transform infrared (FTIR), and Raman spectroscopies unequivocally and consistently showed that the oxidation rate of polyethylene liners was greater when coupled with oxide as opposed to non-oxide ceramic heads. XPS analyses of O-Al-O bond fractions at the surface of a zirconia-toughened alumina (ZTA) short-term (20 months in vivo) femoral heads retrieval showed a similar to 50% reduction in favor of oxygen vacancy O-Al-V-O and hydroxylated Al-O-H bonds. Off-stoichiometry drifts were confirmed in vitro under both static and dynamic conditions. They triggered oxidation and tangibly affected an advanced highly cross-linked sequentially irradiated and annealed ultra-high molecular weight polyethylene (UHMWPE) liner (increase in oxidation index up to Delta OI similar to 1.2 after 5 x 10(5) cycles under dynamic swing conditions). Second-generation UHMWPE liners infused with vitamin E were also affected by the free flow of oxygen from the oxide femoral heads, although to a lesser extent. The fundamental findings of this study, which were also confirmed on re-trievals, call for revised standards in material design and testing. Adopting these new criteria will provide an improved understanding of the importance of off-stoichiometry at the head/liner interface and may lead to significant extensions in artificial joint lifetimes.
机译:实验证据表明,氧化物生物陶瓷股头表面的化学计量损失增强了人造髋关节中聚乙烯髋臼衬里的氧化速率。与陶瓷是Bioinert的常见观念相矛盾,三个独立实验证实了陶瓷股头及其聚乙烯对应物之间的实质化学相互作用。本文报道的实验包括水热试验,摩擦试验和髋部模拟器实验。发现氧化物和非氧化物股骨头不同地影响聚乙烯衬垫表面的氧化过程,所有其他测试参数相等。来自X射线光电子(XPS),Cath- odolminescence(Cl),傅里叶变换红外(FTIR)和拉曼光谱的分析数据明确且始终如一地表明,当与氧化物相反时,聚乙烯衬里的氧化速率更大氧化物陶瓷头。 XPS分析氧化锆 - 增韧氧化铝(ZTA)短期(体内20个月)股骨头检索的O-Al-O键馏分的分析显示出类似于氧气空位的50%-Al-的50% VO和羟基化的Al-OH键。在静态和动态条件下,在体外确认偏离化学计量漂移。它们引发氧化和变形影响先进的高度交联的序列照射和退火的超高分子量聚乙烯(UHMWPE)衬里(在动态摆动条件下在5×10(5)次循环后的氧化指数增加到ΔOi的氧化指数上升)。与维生素E注入的第二代UHMWPE衬垫也受到氧化物股头的自由流动的影响,尽管在较小程度上。本研究的根本调查结果,也在重新犯罪上确认,呼吁在材料设计和测试中进行修订标准。采用这些新标准将提供改进对头部/衬垫界面处的脱离化学计量的重要性的了解,并且可能导致人工关节寿命的显着延伸。

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