首页> 外文期刊>Journal of Ceramic Science and Technology >Data-Driven Innovations in Joint Replacement: Do Ceramic Femoral Heads Contribute to Polyethylene Oxidation?
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Data-Driven Innovations in Joint Replacement: Do Ceramic Femoral Heads Contribute to Polyethylene Oxidation?

机译:数据驱动的联合替代创新:陶瓷股头是否有助于聚乙烯氧化?

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摘要

Renewed attention is being paid to biomaterials used in total hip arthroplasty (THA) given the continued clinical problems of osteolysis and aseptic loosening which result from the long-term wear of acetabular polyethylene (PE) bearing surfaces. One advantage of using ceramic femoral heads is low PE wear, presumably because of the ceramics ' bioinert behavior. However, beyond simple mechanical abrasion, marked differences have been found in the degradation of PE when coupled with different ceramic materials. This study examined the surface characteristics and performance of oxide-based (zirconia-toughened alumina, ZTA) and non-oxide (silicon nitride, Si3N4) femoral heads. Under articulation, ZTA femoral heads were found to release detectable amounts of oxygen from their surfaces into the tribolayer, which resulted in enhanced PE oxidation. In contrast, femoral heads made from Si3N4 scavenged oxygen from the tribolayer, thereby limiting the degradation of PE. This work is the first to challenge the assumption that ceramic materials are inherently stable in vivo, and suggests that the longevity of THA prostheses may depend on the material properties of the ceramic used during surgery. Neglecting these important physical chemistry aspects impedes the scientific development of new materials and favors monopolistic economics in the market, leading to limited choices for surgeons.
机译:鉴于髋臼聚乙烯(PE)轴承表面的长期磨损导致的骨溶解和无菌松动的持续临床问题,重新注意到总髋关节置换术(THA)的生物材料。使用陶瓷股骨头的一个优点是低PE磨损,可能是因为陶瓷的生物素行为。然而,除了简单的机械磨损之外,在与不同陶瓷材料结合时PE的降解已经发现了显着的差异。该研究检测了氧化氧化物(氧化锆 - 增韧氧化铝,ZTA)和非氧化物(氮化硅,Si3N4)股骨头的表面特征和性能。在铰接下,发现ZTA股骨头被发现从它们的表面释放可检测量的氧气进入Tribolayer,导致PE氧化增强。相比之下,由跨摩托的Si3N4清除氧气制成的股骨头,从而限制了PE的降解。这项工作是第一个挑战这种假设,即陶瓷材料在体内本质上稳定,并表明THA假体的寿命可能取决于手术期间使用的陶瓷的材料特性。忽视这些重要的物理化学方面阻碍了新材料的科学发展,并有利于市场上的垄断经济学,导致外科医生的有限选择。

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