首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Reconstruction of blood flow patterns in a human carotid bifurcation: a combined CFD and MRI study.
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Reconstruction of blood flow patterns in a human carotid bifurcation: a combined CFD and MRI study.

机译:重建人颈动脉分叉处的血流模式:CFD和MRI组合研究。

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摘要

The carotid bifurcation is a common site for clinically significant atherosclerosis, and the development of this disease may be influenced by the local hemodynamic environment. It has been shown that vessel geometry and pulsatile flow conditions are the predominant factors that determine the detailed blood flow patterns at the carotid bifurcation. This study was initiated to quantify the velocity profiles and wall shear stress (WSS) distributions in an anatomically true model of the human carotid bifurcation using data acquired from magnetic resonance (MR) imaging scans of an individual subject. A numerical simulation approach combining the image processing and computational fluid dynamics (CFD) techniques was developed. Individual vascular anatomy and pulsatile flow conditions were all incorporated into the computer model. It was found that the geometry of the carotid bifurcation was highly complex, involving helical curvature and out-of-plane branching. These geometrical features resulted in patterns of flow and wall shear stress significantly different from those found in simplified planar carotid bifurcation models. Comparisons between the predicted flow patterns and MR measurement demonstrated good quantitative agreement.
机译:颈动脉分叉是临床上显着的动脉粥样硬化的常见部位,这种疾病的发展可能受局部血液动力学环境的影响。已经表明,血管的几何形状和脉动血流状况是决定颈动脉分叉处详细血流模式的主要因素。开始这项研究的目的是使用从单个受试者的磁共振(MR)成像扫描中获得的数据,对人颈动脉分叉的解剖学真实模型中的速度分布和壁切应力(WSS)分布进行量化。开发了一种将图像处理和计算流体动力学(CFD)技术相结合的数值模拟方法。各个血管的解剖结构和脉动血流情况都被纳入计算机模型。发现颈动脉分叉的几何形状非常复杂,涉及螺旋曲率和面外分支。这些几何特征导致流动和壁剪应力的模式与简化的平面颈动脉分叉模型中的模式明显不同。预测的流型和MR测量值之间的比较表明了良好的定量一致性。

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