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Patient-Specific Simulation of Carotid Artery Stenting Using Computational Fluid Dynamics

机译:使用计算流体动力学的针对患者的颈动脉支架模拟

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摘要

An image-based computational methodology to predict the outcome of carotid artery stenting procedures is presented. Anatomically realistic models are reconstructed from contrast-enhanced magnetic resonance angiography images using deformable models. Physiologic flow conditions are obtained from phase-contrast magnetic resonance angiography data. Finite element flow calculations are obtained before and after modifying the anatomical models in order to simulate stenting procedures. The methodology was tested on image data from a patient with carotid artery stenosis. Significant changes in the blood flow through the common carotid and internal carotid artery were found after conducting a "virtual stenting" intervention. Pending experimental validation, this methodology may potentially be used to plan and optimize vascular stenting procedures on a patient-specific basis.
机译:提出了一种基于图像的计算方法来预测颈动脉支架置入术的结果。使用可变形模型从对比增强的磁共振血管造影图像重建解剖学现实模型。从相差磁共振血管造影数据获得生理流动条件。在修改解剖模型以模拟支架置入术之前和之后,可获得有限元流量计算。对该方法的测试来自颈动脉狭窄患者的图像数据。在进行“虚拟支架植入”干预后,发现通过颈总动脉和颈总动脉的血流发生了显着变化。在进行实验验证之前,此方法可能会潜在地用于根据患者特定计划和优化血管支架置入程序。

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