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Improved biological performance of Ti implants due to surface modification by micro-arc oxidation.

机译:由于微弧氧化对表面进行了改性,从而改善了钛植入物的生物学性能。

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摘要

The surface of a titanium (Ti) implant was modified by micro-arc oxidation (MAO) treatment. A porous layer was formed on the Ti surface after the oxidation treatment. The phase and morphology of the oxide layer were dependent on the voltage applied during the oxidation treatment. With increasing voltage, the roughness and thickness of the film increased and the TiO(2) phase changed from anatase to rutile. During the MAO treatment, Ca and P ions were incorporated into the oxide layer. The in vitro cell responses of the specimen were also dependant on the oxidation conditions. With increasing voltage, the ALP activity increased, while the cell proliferation rate decreased. Preliminary in vivo tests of the MAO-treated specimens on rabbits showed a considerable improvement in their osseointegration capability as compared to the pure titanium implant.
机译:钛(Ti)植入物的表面通过微弧氧化(MAO)处理进行了改性。氧化处理后在Ti表面上形成多孔层。氧化物层的相和形态取决于在氧化处理期间施加的电压。随着电压的增加,膜的粗糙度和厚度增加,并且TiO(2)相从锐钛矿变为金红石。在MAO处理期间,将Ca和P离子结合到氧化物层中。标本的体外细胞反应也取决于氧化条件。随着电压的升高,ALP活性增加,而细胞增殖速率降低。与纯钛植入物相比,对MAO处理的标本在兔子上进行的初步体内测试显示,其骨整合能力得到了显着改善。

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