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MAGNESIUM ALLOYS FOR BIOABSORBABLE STENTS: A FEASIBILITY ASSESSMENT

机译:镁合金的生物可吸收性:可行性评估

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Today, stent designs consist of permanent metal alloy scaffolds which hold arteries open after percutaneous coronary intervention (PCI) to maintain arterial blood flow. Bioabsorbable stents are being investigated as an alternate for permanent stents, that disintegrate and dissolve in the body. In this article, we profile magnesium (Mg) alloy as a candidate for bioabsorbable stent material, and discuss aspects of its properties and challenges. Experimental data are generated in effort to draw correlations between in vivo vessel absorption and in vitro degradation, and to provide an overview of alloy mechanical properties, stent designs, and electrochemical behaviors. Preclinical porcine coronary model test results exhibit early on-set and rapid corrosion presenting a challenge to researchers to establish material design concepts that balance degradation time, duration for need of scaffolding, and healing.
机译:如今,支架设计由永久性金属合金支架组成,这些支架在经皮冠状动脉介入治疗(PCI)后保持动脉开放,以维持动脉血流。正在研究可生物吸收的支架作为永久性支架的替代品,该支架可在体内分解并溶解。在本文中,我们将镁(Mg)合金描述为可生物吸收的支架材料的候选材料,并讨论了其性能和面临的挑战。产生实验数据是为了得出体内血管吸收与体外降解之间的相关性,并概述合金的机械性能,支架设计和电化学行为。临床前猪冠状动脉模型测试结果显示出早期发作和快速腐蚀,这对研究人员提出挑战,以建立平衡降解时间,需要支架的持续时间和愈合的材料设计概念。

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