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Numerical analysis of stent expansion process in coronary artery stenosis with the use of non-compliant balloon

机译:非顺应性球囊支架扩张术在冠状动脉狭窄中的数值分析

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In the paper the authors present an applied methodology, data and numerical results for numerical analysis of the stent crimping process and stent implantation in the coronary artery stenosis with the use of a non-compliant angioplasty balloon. The authors focused on the modeling methodology of balloon angioplasty with minimum possible simplification, i.e.: a full load path (compression and inflation in single analysis), 3D unsymmetrical geometry and discretization, highly nonlinear material models (hyperelasticity, plastic kinematic formulation, crushable foam) and sophisticated contact models (bodies with highly different stiffness). The use of a highly compressible crushable foam material model for an arterial plaque is considered as the most original part of the work. The presented results allow for better understanding of the mechanisms governing stent crimping and implementation. (C) 2015 Published by Elsevier Sp. z o.o. on behalf of Nalecz Institute of Biocybemetics and Biomedical Engineering.
机译:在本文中,作者提出了一种应用方法,数据和数值结果,用于使用不顺应性血管成形术球囊对冠状动脉狭窄中的支架压接过程和支架植入进行数值分析。作者专注于球囊血管成形术的建模方法,并尽可能简化,即:全载荷路径(单次分析中的压缩和充气),3D不对称几何和离散化,高度非线性的材料模型(超弹性,塑性运动学公式,可压碎泡沫)和复杂的接触模型(刚度差异很大的实体)。将高度可压缩的可压碎泡沫材料模型用于动脉斑块被认为是这项工作的最原始部分。提出的结果可以更好地理解控制支架压接和实施的机制。 (C)2015由Elsevier Sp。动物园。代表Nalecz生物仿制药和生物医学工程研究所。

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