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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Impacts of coronary artery eccentricity on macro-recirculation and pressure drops using computational fluid dynamics

机译:APS -70TH流体动力学的APS分工年会 - 事件 - 冠状动脉偏心对宏观再循环和压力下降的影响使用计算流体动力学

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Coronary artery disease remains a major cause of mortality in developed countries, and is most often due to a localized flow-limiting stenosis, or narrowing, of coronary arteries. Patients often undergo invasive procedures such as X-ray angiography and fractional flow reserve to diagnose flow-limiting lesions. Even though such diagnostic techniques are well-developed, the effects of diseased coronary segments on local flow are still poorly understood. Therefore, this study investigated the effect of irregular geometries of diseased coronary segments on the macro-recirculation and local pressure minimum regions. We employed an idealized coronary artery model with a diameter of stenosis of 75{%}. By systematically adjusting the eccentricity and the asymmetry of the coronary stenosis, we uncovered an increase in macro-recirculation size. Most importantly, the presence of this macro-recirculation signifies a local pressure minimum (identified by $lambda_{mathrm{2}}$ vortex identification method). This local pressure minimum has a profound effect on the pressure drops in both longitudinal and planar directions, which has implications for diagnosis and treatment of coronary artery disease.
机译:冠状动脉疾病仍然是发达国家死亡率的主要原因,最常见是由于冠状动脉的局部流动限制狭窄或缩小。患者经常经历侵入性手术,如X射线血管造影和分数流量储备,以诊断流动限制病变。尽管这种诊断技术良好,但患病冠状动脉段对局部流动的影响仍然很差。因此,本研究研究了患病冠状动脉段的不规则几何形状对宏观再循环和局部压力最小区域的影响。我们雇用了一种理想化的冠状动脉模型,其直径为75 {%}。通过系统地调节偏心度和冠状动脉狭窄的不对称性,我们发现宏观再循环尺寸的增加。最重要的是,这种宏再循环的存在表示局部压力最小值(由$ lambda_ {mathrm {mathrm {2}} $ vortex识别方法标识)。这种局部压力最小对纵向和平面方向的压降产生了深远的影响,这具有对冠状动脉疾病的诊断和治疗具有影响。

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