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Evaluation of the impact of carotid artery bifurcation angle on hemodynamics by use of computational fluid dynamics: a simulation and volunteer study

机译:通过计算流体动力学评估颈动脉分叉角对血液动力学的影响:模拟和志愿者研究

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In this study, we evaluated the hemodynamics of carotid artery bifurcation with various geometries using simulated and volunteer models based on magnetic resonance imaging (MRI). Computational fluid dynamics (CFD) was analyzed by use of OpenFOAM. The velocity distribution, streamline, and wall shear stress (WSS) were evaluated in a simulated model with known bifurcation angles (30°, 40°, 50°, 60°, derived from patients’ data) and in three-dimensional (3D) healthy volunteer models. Separated flow was observed at the outer side of the bifurcation, and large bifurcation models represented upstream transfer of the point. Local WSS values at the outer bifurcation [both simulated (<30 Pa) and volunteer (<50 Pa) models] were lower than those in the inner region (>100 Pa). The bifurcation angle had a significant negative correlation with the WSS value (p<0.05). The results of this study show that the carotid artery bifurcation angle is related to the WSS value. This suggests that hemodynamic stress can be estimated based on the carotid artery geometry. The construction of a clinical database for estimation of developing atherosclerosis is warranted.
机译:在这项研究中,我们使用基于磁共振成像(MRI)的模拟模型和志愿者模型评估了各种几何形状的颈动脉分叉的血流动力学。通过使用OpenFOAM分析计算流体动力学(CFD)。速度分布,流线和壁切应力(WSS)在具有已知分叉角(根据患者数据得出的30°,40°,50°,60°)和三维(3D)的模拟模型中进行评估健康的志愿者模型。在分叉的外侧观察到分离的流动,并且大的分叉模型表示该点的上游转移。外部分叉处的局部WSS值(模拟(<30 Pa)和志愿者(<50 Pa)模型)均低于内部区域(> 100 Pa)。分叉角与WSS值呈显着负相关(p <0.05)。研究结果表明,颈动脉分叉角与WSS值有关。这表明可以根据颈动脉的几何形状估算血流动力学应力。必须建立用于评估发展中的动脉粥样硬化的临床数据库。

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