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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >In vitro and in vivo performance of Ti6Al4V implants with plasma-sprayed osteoconductive hydroxylapatite-bioinert titania bond coat 'duplex' systems: an experimental study in sheep
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In vitro and in vivo performance of Ti6Al4V implants with plasma-sprayed osteoconductive hydroxylapatite-bioinert titania bond coat 'duplex' systems: an experimental study in sheep

机译:血浆喷涂骨传导性羟基磷灰石-生物惰性二氧化钛粘结涂层“双相”系统的Ti6Al4V植入物的体外和体内性能:在绵羊中的实验研究

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摘要

To evaluate the in vivo performance of "duplex" hydroxylapatite top coat/TiO_2 bond coat systems, cylindrical Ti6Al4V rods of 130 mm in length and 11-13 mm in diameter were coated by atmospheric plasma spray (APS) technique with both a standard hydroxylapatite (HAp) layer and a HAp + TiO_2 bond coat "duplex" layer. In this pilot study coated and uncoated rods serving as controls were implanted into the femur of sheep so that their distal ends were freely suspended in the medulla of the femur. After an observation time of six months it was found that bone apposition and bone ingrowth were considerably increased in the presence of a osteoconductive coating. In particular, in vivo spalling and delamination frequently observed with HAp coatings was virtually absent in duplex coatings owing to the strong adhesion of the bond coat to the HAp top coat that anchored the latter solidly to the metallic surface of the implant. Some tentative mechanisms leading to this improved coating adhesion will be discussed.
机译:为了评估“双面”羟基磷灰石面漆/ TiO_2粘结涂层系统的体内性能,通过大气等离子喷涂(APS)技术将长度为130 mm,直径为11-13 mm的圆柱形Ti6Al4V棒涂有标准羟基磷灰石( HAp)层和HAp + TiO_2粘结涂层“双工”层。在该初步研究中,将作为对照的包被和未包被的棒植入绵羊的股骨中,以使其远端自由悬挂在股骨的髓质中。在六个月的观察时间后,发现在存在骨传导性涂层的情况下,骨并置和骨向内生长显着增加。特别是,由于粘结层与HAp面漆之间的牢固粘附力,使HAp涂层牢固地锚定在植入物的金属表面上,实际上在双相涂层中几乎没有HAp涂层经常观察到的体内剥落和分层。将讨论一些导致这种涂层附着力提高的试验性机理。

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