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Novel laser surface texturing for improved primary stability of titanium implants

机译:新型激光表面纹理,用于提高钛植入物的初级稳定性

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摘要

Recently, the production of well-defined patterned surfaces with random or regular micro and nano-features has brought new opportunities for research and development in the field of tissue engineering and regenerative medicine. Among advanced micro and nano processing technologies, laser surface texturing (LST) stands out due to its simplicity, flexibility, precision, reproducibility and relatively low cost. This work studies the development of patterned surfaces controlled by of LST into biomedical grade V titanium, Ti-6Al-4V-alloy. We present different cross-hatched micropattems followed by the characterisation of surface morphology and topography. Structural integrity of the produced patterns is evaluated by friction tests against bone, mimicking the insertion of an implant. Wettability is studied as it is crucial for protein adsorption and cell adhesion. The results show that the surface topography obtained using different patterning plans influences the wetting behaviour and the coefficient of friction against bone.
机译:最近,具有随机或常规微型和纳米特征的明确定义的图案表面的生产为组织工程和再生医学领域的研发带来了新的机会。在先进的微型和纳米加工技术中,激光表面纹理(LST)由于其简单性,灵活性,精度,再现性和相对较低的成本而脱颖而出。这项工作研究了由LST控制的图案化表面进入生物医学级V钛,Ti-6Al-4V-合金的发展。我们呈现不同的交叉阴影镜头,然后表征表面形态和地形。通过对骨的摩擦测试来评估所产生的图案的结构完整性,模仿植入物的插入。研究了润湿性,因为它对于蛋白质吸附和细胞粘附至关重要。结果表明,使用不同的图案化计划获得的表面形貌会影响润湿行为和摩擦系数对骨。

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