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Enhancement of biocompatibility of nickel-titanium by laser surface modification technology.

机译:通过激光表面改性技术增强镍钛的生物相容性。

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摘要

Nickel Titanium is a relatively new biomaterial that has attracted research interest for biomedical application. The good biocompatibility with specific functional properties of shape memory effect and superelasticity creates a smart material for medical applications. However, there are still concerns on nickel ion release of this alloy if it is going to be implanted for a long time. Nickel ion is carcinogenic and also causes allergic response and degeneration of muscle tissue. The subsequent release of Ni+ ions into the body system is fatal for the long term application of this alloy in the human body.;To improve the long term biocompatibility and corrosion properties of NiTi, different surface treatment techniques have been investigated but no optimum technique has been established yet. This project will investigate the feasibility of applying laser surface alloying technique to improve the corrosion resistance and biocompatibility of NiTi in simulated body fluid condition.;This thesis summarizes the result of laser surface modification of NiTi with Mo, Nb and Co using CO2 laser. The modified layer, which is free of microcracks and pores, acts as physical barrier to reduce nickel release and enhance the surface properties. The hardness values of the Mo-alloyed NiTi, Nb-alloyed NiTi and Co-alloyed NiTi surface were found to be three to four times harder than the NiTi substrate. Corrosion polarization tests also showed that the alloyed NiTi are significantly more resistant than the NiTi alloy. The release of Ni ions can be greatly reduced after laser surface alloying NiTi with Mo, Nb and Co. The improvement in wettability characteristics, the growth of the apatite on the specimen's surface and the adhesion of cell confirm the good biocompatibility after laser surface alloying. It is concluded that laser surface alloying is one of the potential technique not only to improve the corrosion resistance with low nickel release rate, but also retain the good biocompatibility of NiTi.;The technique can be applied to bone fixation plates or implants with relatively large surface area. The results of this project are significant as they add new knowledge on the surface modification of NiTi for long term implant application.
机译:镍钛合金是一种相对较新的生物材料,引起了生物医学应用的研究兴趣。具有良好形状记忆效应和超弹性的特定功能特性的良好生物相容性为医疗应用创造了一种智能材料。但是,如果要长时间植入,该合金仍会释放镍离子。镍离子具有致癌性,还会引起肌肉组织的过敏反应和变性。 Ni +离子随后释放到人体系统中对于这种合金在人体中的长期应用是致命的。;为了提高NiTi的长期生物相容性和腐蚀性能,已经研究了不同的表面处理技术,但是还没有最优的技术成立了。本项目将探讨在模拟体液条件下应用激光表面合金化技术提高NiTi的耐蚀性和生物相容性的可行性。本文总结了用CO2激光对Mo,Nb和Co进行NiTi激光表面改性的结果。不含微裂纹和孔的改性层充当物理屏障,可减少镍的释放并增强表面性能。发现钼合金化的NiTi,铌合金化的NiTi和共合金化的NiTi表面的硬度值是NiTi基体的三到四倍。腐蚀极化测试还表明,合金化的NiTi比NiTi合金具有更高的耐受性。 NiTi与Mo,Nb和Co进行激光表面合金化后,可以大大减少Ni离子的释放。润湿性特性的改善,磷灰石在试样表面的生长以及细胞的粘附性的提高,证明了激光表面合金化后具有良好的生物相容性。结论:激光表面合金化不仅是提高耐蚀性,降低镍释放率的一种潜在技术,而且具有良好的镍钛合金的生物相容性。该技术可应用于较大骨固定板或植入物。表面积。该项目的结果非常重要,因为它们为长期植入应用增加了有关NiTi表面改性的新知识。

著录项

  • 作者

    Ng, Ka Wai.;

  • 作者单位

    Hong Kong Polytechnic University (Hong Kong).;

  • 授予单位 Hong Kong Polytechnic University (Hong Kong).;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 280 p.
  • 总页数 280
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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