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Towards a Better Corrosion Resistance and Biocompatibility Improvement of Nitinol Medical Devices

机译:寻求更好的耐腐蚀性和镍钛诺医疗器械的生物相容性

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摘要

Haemocompatibility of Nitinol implantable devices and their corrosion resistance as well as resistance to fracture are very important features of advanced medical implants. The authors of the paper present some novel methods capable to improve Nitinol implantable devices to some marked degree beyond currently used electropolishing (EP) processes. Instead, a magnetoelectropolishing process should be advised. The polarization study shows that magnetoelectropolished Nitinol surface is more corrosion resistant than that obtained after a standard EP and has a unique ability to repassivate the surface. Currently used sterilization processes of Nitinol implantable devices can dramatically change physicochemical properties of medical device and by this influence its biocompatibility. The Authors' experimental results clearly show the way to improve biocompatibility of NiTi alloy surface. The final sodium hypochlorite treatment should replace currently used Nitinol implantable devices sterilization methods which rationale was also given in our previous study.
机译:镍钛诺可植入装置的血液相容性及其抗腐蚀性以及抗断裂性是先进医疗植入物的重要特征。该论文的作者提出了一些新颖的方法,能够将镍钛诺可植入设备的性能提高到目前使用的电抛光(EP)工艺以外的程度。相反,应建议进行磁电抛光工艺。极化研究表明,与标准EP后相比,磁电抛光镍钛诺合金表面具有更高的耐腐蚀性,并且具有独特的钝化表面能力。当前使用的镍钛诺可植入设备的灭菌过程可以极大地改变医疗设备的理化特性,并由此影响其生物相容性。作者的实验结果清楚地表明了改善NiTi合金表面生物相容性的方法。最终的次氯酸钠处理应取代目前使用的镍钛诺可植入设备的灭菌方法,我们先前的研究也给出了原理。

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