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Perspective on CFD studies of coronary artery disease lesions and hemodynamics: A review

机译:冠状动脉疾病病变和血流动力学的CFD研究展望:综述

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Coronary artery disease (CAD) is the most common cardiovascular disease. Early diagnosis of CAD's physiological significance is of utmost importance for guiding individualized risk-tailored treatment strategies. In this paper, we first review the state-of-the-art clinical diagnostic indices to quantify the severity of CAD and the associated invasive and noninvasive imaging technologies in order to quantify the anatomical parameters of diameter stenosis, area stenosis, and hemodynamic indices of coronary flow reserve and fractional flow reserve. With the development of computational technologies and CFD methods, tremendous progress has been made in applying image-based CFD simulation techniques to elucidate the effects of hemodynamics in vascular pathophysiology toward the initialization and progression of CAD. So then, we review the advancements of CFD technologies in patient-specific modeling, involving the development of geometry reconstruction, boundary conditions, and fluid-structure interaction. Next, we review the applications of CFD to stenotic sites, in order to compute their hemodynamic parameters and study the relationship between the hemodynamic conditions and the clinical indices, to thereby assess the amount of viable myocardium and candidacy for percutaneous coronary intervention. Finally, we review the strengths and limitations of current researches of applying CFD to CAD studies.
机译:冠状动脉疾病(CAD)是最常见的心血管疾病。 CAD的生理学意义的早期诊断对于指导个性化风险定制治疗策略至关重要。在本文中,我们首先回顾了最新的临床诊断指标以量化CAD的严重程度以及相关的有创和无创成像技术,以量化直径狭窄,面积狭窄和血流动力学指标的解剖学参数。冠状动脉血流储备和分数血流储备。随着计算技术和CFD方法的发展,在应用基于图像的CFD模拟技术以阐明血液动力学在血管病理生理学对CAD初始化和进展中的作用方面已取得了巨大进展。因此,然后,我们回顾了CFD技术在特定于患者的建模中的进展,其中涉及几何重建,边界条件和流体-结构相互作用的发展。接下来,我们回顾CFD在狭窄部位的应用,以计算其血液动力学参数,并研究血液动力学状况与临床指标之间的关系,从而评估经皮冠状动脉介入治疗的存活心肌量和候选资格。最后,我们回顾了将CFD应用于CAD研究的最新研究的优势和局限性。

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