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首页> 外文期刊>Journal of biomedical materials research, Part A >Stability of passivated 316L stainless steel oxide films for cardiovascular stents.
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Stability of passivated 316L stainless steel oxide films for cardiovascular stents.

机译:用于心血管支架的钝化316L不锈钢氧化膜的稳定性。

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Passivated 316L stainless steel is used extensively in cardiovascular stents. The degree of chloride ion attack might increase as the oxide film on the implant degrades from exposure to physiological fluid. Stability of 316L stainless steel stent is a function of the concentration of hydrated and hydrolyated oxide concentration inside the passivated film. A high concentration of hydrated and hydrolyated oxide inside the passivated oxide film is required to maintain the integrity of the passivated oxide film, reduce the chance of chloride ion attack, and prevent any possible leaching of positively charged ions into the surrounding tissue that accelerate the inflammatory process. Leaching of metallic ions from corroded implant surface into surrounding tissue was confirmed by the X-ray mapping technique. The degree of thrombi weight percentage [W(ao): (2.1 +/- 0.9)%; W(ep): (12.5 +/- 4.9)%, p < 0.01] between the amorphous oxide (AO) and the electropolishing (EP) treatment groups was statistically significant in ex-vivo extracorporeal thrombosis experiment of mongrel dog. The thickness of neointima (T(ao): 100 +/- 20 microm; T(ep): 500 +/- 150 microm, p < 0.01) and the area ratio of intimal response at 4 weeks (AR(ao): 0.62 +/- 0.22; AR(ep): 1.15 +/- 0.42, p < 0.001) on the implanted iliac stents of New Zealand rabbit could be a function of the oxide properties.
机译:钝化316L不锈钢广泛用于心血管支架。随着植入物上的氧化膜因暴露于生理流体而降解,氯离子攻击的程度可能会增加。 316L不锈钢支架的稳定性是钝化膜内部水合和水解氧化物浓度的函数。在钝化氧化膜内部需要高浓度的水合和水解氧化物,以保持钝化氧化膜的完整性,减少氯离子攻击的机会,并防止带正电的离子浸入周围组织中,从而可能加速炎症反应处理。 X射线绘图技术证实了金属离子从腐蚀的植入物表面渗入周围组织的情况。血栓重量百分率[W(ao):( 2.1 +/- 0.9)%; W(ep):在杂种犬的离体体外血栓形成实验中,无定形氧化物(AO)和电抛光(EP)处理组之间的(12.5 +/- 4.9)%,p <0.01]具有统计学意义。新内膜的厚度(T(ao):100 +/- 20微米; T(ep):500 +/- 150微米,p <0.01)和4周内膜反应的面积比(AR(ao):0.62) +/- 0.22; AR(ep):1.15 +/- 0.42,p <0.001)在新西兰兔植入的支架上可能与氧化物的性质有关。

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