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基于个体颈动脉分叉的血液动力学分析:下游周边血管阻抗的 CFD 模型。

Hemodynamics analysis of patient-specific carotid bifurcation: a CFD model of downstream peripheral vascular impedance.

机构信息

School of Aerospace, Mechanical and Manufacturing Engineering, and Health Innovations Research Institute (HIRi), RMIT University, PO Box 71, Bundoora, VIC 3083, Australia.

出版信息

Int J Numer Method Biomed Eng. 2013 Apr;29(4):476-91. doi: 10.1002/cnm.2529. Epub 2012 Nov 21.

Abstract

The study of cardiovascular models was presented in this paper based on medical image reconstruction and computational fluid dynamics. Our aim is to provide a reality platform for the purpose of flow analysis and virtual intervention outcome predication for vascular diseases. By connecting two porous mediums with transient permeability at the downstream of the carotid bifurcation branches, a downstream peripheral impedance model was developed, and the effect of the downstream vascular bed impedance can be taken into consideration. After verifying its accuracy with a healthy carotid bifurcation, this model was implemented in a diseased carotid bifurcation analysis. On the basis of time-averaged wall shear stress, oscillatory shear index, and the relative residence time, fractions of abnormal luminal surface were highlighted, and the atherosclerosis was assessed from a hemodynamic point of view. The effect of the atherosclerosis on the transient flow division between the two branches because of the existence of plaque was also analysed. This work demonstrated that the proposed downstream peripheral vascular impedance model can be used for computational modelling when the outlets boundary conditions are not available, and successfully presented the potential of using medical imaging and numerical simulation to provide existing clinical prerequisites for diagnosis and therapeutic treatment.

摘要

本文基于医学图像重建和计算流体动力学研究了心血管模型。我们的目的是为血管疾病的流动分析和虚拟干预结果预测提供一个真实的平台。通过在颈动脉分叉下游连接两个具有瞬态渗透率的多孔介质,开发了下游外周阻抗模型,可以考虑下游血管床阻抗的影响。在使用健康的颈动脉分叉验证其准确性后,该模型被应用于颈动脉分叉病变的分析中。基于时均壁切应力、振荡剪切指数和相对滞留时间,突出了异常管腔表面的分数,并从血流动力学角度评估了动脉粥样硬化。还分析了斑块存在时对两个分支之间瞬态流量分配的影响。这项工作表明,当出口边界条件不可用时,所提出的下游外周血管阻抗模型可用于计算建模,并成功展示了使用医学成像和数值模拟为诊断和治疗提供现有临床前提的潜力。

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