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健康与疾病状态下冠状动脉血流动力学对血管结构变化的敏感性。

Sensitivity of coronary hemodynamics to vascular structure variations in health and disease.

作者信息

Garcha Arnav, Grande Gutiérrez Noelia

机构信息

Mechanical Engineering, Carnegie Mellon University, Pittsburgh, 15213, USA.

出版信息

Sci Rep. 2025 Jan 27;15(1):3325. doi: 10.1038/s41598-025-85781-x.

Abstract

Local hemodynamics play an essential role in the initiation and progression of coronary artery disease. While vascular geometry alters local hemodynamics, the relationship between vascular structure and hemodynamics is poorly understood. Previous computational fluid dynamics (CFD) studies have explored how anatomy influences plaque-promoting hemodynamics. For example, areas exposed to low wall shear stress (ALWSS) can indicate regions of plaque growth. However, small sample sizes, idealized geometries, and simplified boundary conditions have limited their scope. We generated 230 synthetic models of left coronary arteries and simulated coronary hemodynamics with physiologically realistic boundary conditions. We measured the sensitivity of hemodynamic metrics to changes in bifurcation angles, positions, diameter ratios, tortuosity, and plaque topology. Our results suggest that the diameter ratio between left coronary branches plays a substantial role in generating adverse hemodynamic phenotypes and can amplify the effect of other geometric features such as bifurcation position and angle, and vessel tortuosity. Introducing mild plaque in the models did not change correlations between structure and hemodynamics. However, certain vascular structures can induce ALWSS at the trailing edge of the plaque. Our analysis demonstrates that coronary artery vascular structure can provide key insight into the hemodynamic environments conducive to plaque formation and growth.

摘要

局部血流动力学在冠状动脉疾病的发生和发展中起着至关重要的作用。虽然血管几何形状会改变局部血流动力学,但血管结构与血流动力学之间的关系却知之甚少。以往的计算流体动力学(CFD)研究探讨了解剖结构如何影响促进斑块形成的血流动力学。例如,暴露于低壁面剪切应力(ALWSS)的区域可指示斑块生长区域。然而,小样本量、理想化的几何形状和简化的边界条件限制了这些研究的范围。我们生成了230个左冠状动脉的合成模型,并使用生理现实的边界条件模拟了冠状动脉血流动力学。我们测量了血流动力学指标对分叉角度、位置、直径比、弯曲度和斑块拓扑结构变化的敏感性。我们的结果表明,左冠状动脉分支之间的直径比对产生不利的血流动力学表型起着重要作用,并且可以放大其他几何特征(如分叉位置和角度以及血管弯曲度)的影响。在模型中引入轻度斑块并没有改变结构与血流动力学之间的相关性。然而,某些血管结构可在斑块后缘诱导ALWSS。我们的分析表明,冠状动脉血管结构可为有助于斑块形成和生长的血流动力学环境提供关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e11/11770140/7d215dcfa0de/41598_2025_85781_Fig1_HTML.jpg

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