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首页> 外文期刊>Journal of Biomechanics >Computational replication of the patient-specific stenting procedure for coronary artery bifurcations: From OCT and CT imaging to structural and hemodynamics analyses
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Computational replication of the patient-specific stenting procedure for coronary artery bifurcations: From OCT and CT imaging to structural and hemodynamics analyses

机译:特定于患者的冠状动脉分叉支架置入过程的计算复制:从OCT和CT成像到结构和血液动力学分析

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摘要

The optimal stenting technique for coronary artery bifurcations is still debated. With additional advances computational simulations can soon be used to compare stent designs or strategies based on verified structural and hemodynamics results in order to identify the optimal solution for each individual's anatomy. In this study, patient-specific simulations of stent deployment were performed for 2 cases to replicate the complete procedure conducted by interventional cardiologists. Subsequent computational fluid dynamics (CFD) analyses were conducted to quantify hemodynamic quantities linked to restenosis.
机译:冠状动脉分叉的最佳支架置入技术仍在争论中。随着更多的进步,基于已验证的结构和血液动力学结果,计算仿真可以很快用于比较支架设计或策略,从而确定每个个体解剖结构的最佳解决方案。在这项研究中,针对2例患者进行了患者特定的支架部署模拟,以复制介入心脏病专家进行的完整程序。随后进行了计算流体动力学(CFD)分析,以量化与再狭窄相关的血液动力学量。

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