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From medical imaging to computer simulation of Fractional Flow Reserve in four coronary artery trees

机译:从医学成像到计算机模拟四棵冠状动脉血流储备分数

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We present the results of a computational study of coronary trees obtained from CT acquisition at resolution of 0.35mm × 0.35mm × 0.4mm and presenting significant stenotic plaques. We analyze the cardiovascular implications of stenotic plaques for a sizeable number of patients and show that the standard clinical criterion for surgical or percutaneous intervention, based on the Fractional Flow Reserve (FFR), is well reproduced by simulations in a range of inflow conditions that can be finely controlled. The relevance of the present study is related to the reproducibility of FFR data by simulating the coronary trees at global level via high performance simulation methods together with an independent assessment based on in vitro hemodynamics. The data show that controlling the flow Reynolds number is a viable procedure to account for FFR as heart-cycle time averages and maximal hyperemia, as measured in vivo. The reproducibility of the clinical data with simulation offers a systematic approach to measuring the functional implications of stenotic plaques.
机译:我们介绍了以0.35mm×0.35mm×0.4mm的分辨率从CT采集获得的冠状动脉树的计算研究结果,并显示出明显的狭窄斑块。我们分析了狭窄斑块对大量患者的心血管影响,并显示基于分数血流储备量(FFR)的外科手术或经皮介入治疗的标准临床标准已通过一系列可在一定条件下进行的模拟得到了很好的再现受到严格控制。本研究的相关性与FFR数据的可重复性有关,方法是通过高性能模拟方法在全球范围内模拟冠状动脉树,并基于体外血流动力学进行独立评估,从而实现FFR数据的可重复性。数据显示,控制雷诺数是一种可行的方法,可将FFR视为体内平均的心动周期平均时间和最大充血时间。临床数据与模拟的可重复性为测量狭窄斑块的功能影响提供了一种系统的方法。

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