生物医学用途的非晶和结晶镁合金

K. Cesarz-Andraczke, A. Kania, K. Młynarek, R. Babilas
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引用次数: 3

摘要

非晶和结晶镁合金,开发用于医疗应用-特别是植入-呈现生物相容性镁合金(Mg-Zn, Mg-Zn- ca, Mg-Ca等)的特点。本章简要介绍镁在人体中的作用以及镁在医学上的应用。介绍了在医学中使用镁合金的概念(优点和局限性)及其潜在应用范围(骨科植入学,心脏外科等)。本章根据镁合金的结构(无定形、结晶)和合金元素(稀土元素、贵金属等)将镁合金分类为潜在的生物材料。介绍了非晶和结晶镁合金的降解机理和体外降解行为。本章还讨论了合金元素(稀土元素、贵金属)对体外降解过程的影响。提出了通过改性镁合金表面(施加保护层)来降低镁合金降解率的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Amorphous and Crystalline Magnesium Alloys for Biomedical Applications
Amorphous and crystalline magnesium alloys, developed for medical applications – especially implantology – present the characteristics of biocompatible magnesium alloys (Mg-Zn, Mg-Zn-Ca, Mg-Ca etc.). This chapter provides a brief description of the role of magnesium in the human body and the use of Mg in medicine. It presents the concept of using magnesium alloys in medicine (advantages and limitations) and the scope of their potential applications (orthopedic implantology, cardiac surgery etc.). The chapter shows classification of magnesium alloys as potential biomaterials, due to their structure (amorphous, crystalline) and alloying elements (rare earth elements, noble metals etc.). The mechanism and in vitro degradation behavior of magnesium alloys with amorphous and crystalline structures are described. The chapter also discusses the influence of alloying elements (rare earth elements, noble metals) on the in vitro degradation process. It also presents the methods of reducing the degradation rate of magnesium alloys by modifying their surface (application of protective layers).
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