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Bioactivity of plasma implanted biomaterials

机译:等离子体植入生物材料的生物活性

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摘要

Plasma immersion ion implantation and deposition (PIII&D) is an effective technique to enhance the surface bioactivity of materials. In this paper, recent progress made in our laboratory on plasma surface modification of biomedical materials is described. NiTi alloys have unique super-elastic and shape memory properties and are suitable for orthopedic implants but the leaching of toxic Ni may pose health hazards in humans. We have recently investigated the use of acetylene, oxygen and nitrogen PIII&D to prevent out-diffusion of nickel and good results have been obtained. Silicon is the most important material in the microelectronics industry but its surface biocompatibility has not been investigated in details. We have recently performed hydrogen PIII into silicon to improve the surface bioactivity and observed biomimetic growth of apatite on the surface in simulated body fluids. Diamond-like carbon (DLC) is widely used in the industry due to its excellent mechanical properties and chemical inertness and by incorporation of elements such as nitrogen and phosphorus, the surface blood compatibility can be improved. The properties as well as in vitro biological test results are discussed in this article.
机译:等离子体浸没离子注入和沉积(PIII&D)是提高材料表面生物活性的有效技术。本文介绍了我们实验室在生物医学材料的等离子体表面改性方面的最新进展。 NiTi合金具有独特的超弹性和形状记忆特性,适用于整形外科植入物,但有毒的Ni浸出会对人体健康造成危害。最近,我们研究了乙炔,氧气和氮气PIII&D的使用,以防止镍向外扩散,并获得了良好的结果。硅是微电子工业中最重要的材料,但尚未对其表面生物相容性进行详细研究。我们最近将氢PIII注入硅中,以改善表面生物活性,并观察到模拟体液中磷灰石在表面上的仿生生长。类金刚石碳(DLC)由于其优异的机械性能和化学惰性以及通过掺入氮和磷等元素而在行业中得到了广泛应用,可以改善血液的表面相容性。本文讨论了这些性质以及体外生物学测试结果。

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