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Using Observed Contrast Motion During Cardiac Catheterization to Tune Patient Specific Coronary Blood Flow Simulations

机译:在心脏导管插入过程中使用观察到的对比运动来调谐患者特异性冠状动脉血流模拟

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In the assessment of coronary artery disease, virtual Fractional Flow Reserve is an emerging technology that uses patient specific of Computational Fluid Dynamics simulations to infer the pressure loss through a stenosis, replacing an effective, but expensive technique based on the use of a pressure wire. To date, most vFFR efforts make use of reduced order lumped parameter models for the inlet and outlet/s of the coronary arterial tree to approximate the patient specific boundary conditions, but suffer from the inability to specify the associated parameters in a patient specific manner. When applying vFFR in a catheter laboratory setting using X-Ray angiograms as the basis for creating the geometrical model, there is some indirect functional information available through observing the motion of the radio-opaque contrast agent. In this work, we present a novel method for tuning the arterial resistances, based on simulating the contrast release and minimising a misfit defined in terms of simulated and observed arrival times of the contrast at multiple points within a coronary tree.
机译:在冠状动脉疾病的评估,虚拟血流储备分数是一种新兴技术,计算流体动力学模拟的用途患者特定于通过狭窄推断的压力损失,取代基于使用的压力线的有效的,但昂贵的技术。迄今为止,大多数vFFR努力利用降阶的集总参数模型的冠状动脉分支接近患者的具体边界条件,但无法明确在患者特定的方式相关的参数遭受的入口和出口/秒。当使用X射线的导管实验室环境施加vFFR造影作为创建几何模型的基础上,有可通过观察不透射线造影剂的运动一些间接的功能信息。在这项工作中,我们提出用于调谐动脉电阻,基于模拟对比度释放和最小化的冠状动脉树内的多个点处的对比度的模拟和观察到的到达时间来定义的失配的新方法。

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