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Engineered Functional Surfaces by Laser Microprocessing for Biomedical Applications

机译:通过激光微加工为生物医学应用设计功能表面

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摘要

Metallic biomaterials are increasingly being used in various medical applications due to their high strength,fracture resistance,good electrical conductivity,and biocompatibility.However,their practical applications have been largely limited due to poor surface performance.Laser microprocessing is an advanced method of enhancing the surface-related properties of biomaterials.This work demonstrates the capability of laser microprocessing for biomedical metallic materials including magnesium and titanium alloys,with potential applications in cell adhesion and liquid biopsy.We investigate laser-material interaction,microstructural evolution,and surface performance,and analyze cell behavior and the surface-enhanced Raman scattering(SERS)effect.Furthermore,we explore a theoretical study on the laser microprocessing of metallic alloys that shows interesting results with potential applications.The results show that cells exhibit good adhesion behavior at the surface of the laser-treated surface,with a preferential direction based on the textured structure.A significant SERS enhancement of 6×10^3 can be obtained at the laser-textured surface during Raman measurement.
机译:金属生物材料由于其高强度,耐断裂性,良好的导电性和生物相容性而越来越多地用于各种医疗应用中。然而,由于表面性能差,它们的实际应用受到了很大的限制。激光微处理是一种增强金属生物材料的先进方法。这项工作展示了激光微加工对包括镁和钛合金在内的生物医学金属材料的能力,并有望在细胞粘附和液体活检中应用。我们研究激光与材料的相互作用,微观结构演变和表面性能,以及分析了细胞行为和表面增强拉曼散射(SERS)效应。此外,我们探索了对金属合金进行激光微加工的理论研究,该研究显示出有趣的结果并具有潜在的应用前景。结果表明,细胞在金属表面具有良好的粘附性能激光处理过的表面ce,具有基于纹理结构的优先方向。在拉曼测量期间,可以在激光纹理化的表面上获得显着的SERS增强6×10 ^ 3。

著录项

  • 来源
    《工程(英文)》 |2018年第006期|P.822-830|共9页
  • 作者单位

    [1]School of Mechanical Engineering and Automation,Beihang University,Beijing 100083,China;

    [2]Hefei Innovation Research Institute,Beihang University,Hefei 230013,China;

    [3]Department of Oncology,Center of Excellence,BOE Hefei Digital Hospital Co.,Ltd.,Hefei 230013,China;

    [1]School of Mechanical Engineering and Automation,Beihang University,Beijing 100083,China;

    [1]School of Mechanical Engineering and Automation,Beihang University,Beijing 100083,China;

    [4]Beijing Long March Space Vehicle Research Institute,First Academy of the China Aerospace Corporation,Beijing 100076,China;

    [1]School of Mechanical Engineering and Automation,Beihang University,Beijing 100083,China;

    [2]Hefei Innovation Research Institute,Beihang University,Hefei 230013,China;

    [5]National Engineering Laboratory of Additive Manufacturing for Large Metallic Components,Beihang University,Beijing 100083,China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 自然科学总论;
  • 关键词

    Laser microprocessing; Functional surface; Metallic alloy; Niocompatibility; SERS;

    机译:激光微加工;功能表面;金属合金;生物相容性;SETS;
  • 入库时间 2022-08-19 04:25:06
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