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Haemodynamic Effect of Coronary Angulations on Subsequent Development of Coronary Artery Disease: A Preliminary Study

机译:冠状动脉角对冠状动脉疾病后续发育的血流动力学作用:初步研究

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The aim of this study is to investigate the hemodynamic effect of the angulations in the left coronary bifurcation on subsequent development of coronary artery disease. Eight 3D left coronary artery models were generated based on the anatomical details and simulated for numerical analysis. The angulations at the left coronary bifurcation were simulated with angles ranging from 120°, 105°, 90°, 75°, 60°, 45°, 30° to 15°. Computational fluid dynamic models were produced for analysis of flow velocity, wall pressure and wall shear stress. Our results showed that wide angled models produced low wall shear stress and high wall pressure at the left coronary bifurcation regions, whereas, flow pattern was more smooth and laminar with narrow angled models than those with wide angle models. Our analysis indicates the flow-field correlation between coronary angulation and development of atherosclerosis. Future studies are required to analyse the realistic coronary models from patients' data with different degree of coronary stenosis.
机译:本研究的目的是探讨左冠状动脉疾病的左冠状动脉分叉角度的血流动力学效应。基于解剖细节生成八个3D左冠状动脉模型,并模拟数值分析。模拟左冠状动脉分叉的角度,角度范围为120°,105°,90°,75°,60°,45°,30°至15°。生产用于分析流速,壁压和壁剪切应力的计算流体动力学模型。我们的研究结果表明,宽角度的模型在左冠状动脉分叉区域产生了低壁剪切应力和高壁压力,而流动图案比具有广角模型的较窄角度较窄的层状模型。我们的分析表明冠状动脉角度和动脉粥样硬化的发育之间的流场相关性。未来的研究是以不同程度的冠状动脉狭窄的患者数据分析从患者数据的现实冠状动脉模型。

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