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Synergistic Effects of Surface Chemistry and Topologic Structure from Modified Microarc Oxidation Coatings on Ti Implants for Improving Osseointegration

机译:修饰的微弧氧化涂层对钛植入物表面化学和拓扑结构的协同作用,以改善骨整合。

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摘要

Microarc oxidation,(MAO) coating, containing Ca, P, Si, and Na elements on a titanium (Ti) implant has been steam-hydrothermally treated and further,mediated by post-heat treatment to overcome the, Compromised bone-implant integration. The bone;regeneration, bone-implant contact, and biomechanical push-out force of the modified Ti implants are discussed thoroughly in this work. The best in vivo performances for the steam-hydrothermally treated one is attributed to the synergistic effects of surface chemistry and topologic structure. Through post-heat treatment, we Can decouple the effects of surface chemistry and the nanoscale topologic structure easily. Attributed to the excellent in vivo performance of the surface-modified Ti implant, the steam-hydrothermal treatment could be a promising strategy to improve the osseointegration of the MAO, coating covered Ti implant.
机译:钛(Ti)植入物上包含Ca,P,Si和Na元素的微弧氧化(MAO)涂层经过蒸汽水热处理,并通过后热处理进一步介导,以克服受损的骨植入物整合。在这项工作中,将详细讨论改性钛植入物的骨再生,骨植入物接触和生物力学推出力。经蒸汽水热处理的最佳体内性能归因于表面化学和拓扑结构的协同作用。通过后热处理,我们可以轻松地将表面化学作用与纳米级拓扑结构分离。归因于表面改性的钛植入物的出色的体内性能,蒸汽水热处理可能是一种有前途的策略,可以改善包覆有涂层的钛植入物的MAO的骨整合。

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