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A novel technique for tailored surface modification of dental implants - a step wise approach based on plasma immersion ion implantation

机译:一种用于量身定制的牙科植入物表面改性的新技术-基于等离子浸入离子植入的逐步方法

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Objectives: A novel technique based on plasma immersion ion implantation (PIII) is presented to modify titanium implant surfaces. Materials and methods: Initially, the implants are cleaned with argon to remove contaminants and the nanostructures are created by the bombardment of the surface with a mix of noble gases. Desired crystal structure of the titanium is obtained by the implantation of oxygen on the contaminant-free surface with particular nanostructures. Results: In this study, turned implants modified by PIII revealed a high density of rutile-TiO2 nanostructures. Turned implants used as control revealed mainly microstructures and amorphous crystal structure. Surface roughness values were similar at the microscale for both turned and turned + PIII implants. Bone response was evaluated by removal torque tests of implants placed in the rabbit tibia and femur. After 4 weeks of healing, turned + PIII demonstrated higher removal torque values (P = 0.001) compared to turned implants. Conclusions: The presence of rutile-TiO2 nanostructures may explain the improved bone formation to turned + PIII implants.
机译:目的:提出了一种基于等离子浸入离子注入(PIII)的新技术来修饰钛注入表面。材料和方法:最初,用氩气清洁植入物以去除污染物,并通过混合稀有气体轰击表面来形成纳米结构。所需的钛晶体结构是通过将氧气注入具有特定纳米结构的无污染表面而获得的。结果:在这项研究中,经PIII改性的车削植入物显示出高密度的金红石型TiO2纳米结构。用作对照的车削植入物主要显示出微观结构和非晶态晶体结构。对于车削和车削+ PIII植入物,在微观尺度上的表面粗糙度值相似。通过去除放置在兔子胫骨和股骨中的植入物的扭矩测试来评估骨反应。愈合4周后,与翻身植入物相比,翻身+ PIII表现出更高的去除扭矩值(P = 0.001)。结论:金红石型TiO2纳米结构的存在可能解释了转向+ PIII植入物的骨形成改善。

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