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体内降解速率下可生物降解金属的承载能力和生物学允许极限。

Load-bearing capacity and biological allowable limit of biodegradable metal based on degradation rate in vivo.

机构信息

Department of Mechanical Engineering, Korea University, Seongbuk, Anam-dong, Seoul, Republic of Korea.

出版信息

J Biomed Mater Res B Appl Biomater. 2012 Aug;100(6):1535-44. doi: 10.1002/jbm.b.32722. Epub 2012 Jun 12.

Abstract

In this study, a newly developed Mg-Ca-Zn alloy for low degradation rate and surface erosion properties was evaluated. The compressive, tensile, and fatigue strength were measured before implantation. The degradation behavior was evaluated by analyzing the microstructure and local hardness of the explanted specimen. Mean and maximum degradation rates were measured using micro CT equipment from 4-, 8-, and 16- week explants, and the alloy was shown to display surface erosion properties. Based on these characteristics, the average and minimum load bearing capacities in tension, compression, and bending modes were calculated. According to the degradation rate and references of recommended dietary intakes (RDI), the Mg-Ca-Zn alloy appears to be safe for human use.

摘要

本研究评估了一种新开发的具有低降解率和表面侵蚀特性的 Mg-Ca-Zn 合金。在植入前测量了压缩、拉伸和疲劳强度。通过分析植入物的微观结构和局部硬度来评估降解行为。使用微 CT 设备从 4 周、8 周和 16 周的植入物中测量平均和最大降解率,结果表明该合金具有表面侵蚀特性。基于这些特性,计算了拉伸、压缩和弯曲模式下的平均和最小承载能力。根据降解率和推荐膳食摄入量 (RDI) 的参考值,Mg-Ca-Zn 合金似乎对人体安全。

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