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首页> 外文期刊>Communications in numerical methods in engineering >Modelling pipeline for subject-specific arterial blood flow-A review
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Modelling pipeline for subject-specific arterial blood flow-A review

机译:特定受试者动脉血流的建模管道-综述

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摘要

In this paper, a robust and semi-automatic modelling pipeline for blood flow through subject-specific arterial geometries is presented. The framework developed consists of image segmentation, domain discretization (meshing) and fluid dynamics. All the three subtopics of the pipeline are explained using an example of flow through a severely stenosed human carotid artery. In the Introduction, the state-of-the-art of both image segmentation and meshing is presented in some detail, and wherever possible the advantages and disadvantages of the existing methods are analysed. Followed by this, the deformable model used for image segmentation is presented. This model is based upon a geometrical potential force (GPF), which is a function of the image. Both the GPF calculation and level set determination are explained. Following the image segmentation method, a semi-automatic meshing method used in the present study is explained in full detail. All the relevant techniques required to generate a valid domain discretization are presented. These techniques include generating a valid surface mesh, skeletonization, mesh cropping, boundary layer mesh construction and various mesh cosmetic methods that are essential for generating a high-quality domain discretization. After presenting the mesh generation procedure, how to generate flow boundary conditions for both the inlets and outlets of a geometry is explained in detail. This is followed by a brief note on the flow solver, before studying the blood flow through the carotid artery with a severe stenosis.
机译:在本文中,提出了一种健壮且半自动的建模管道,用于通过特定对象的动脉几何形状的血流。开发的框架包括图像分割,域离散化(网格划分)和流体动力学。以流经严重狭窄的人颈动脉的流动为例说明了管道的所有三个子主题。在简介中,详细介绍了图像分割和网格划分的最新技术,并在可能的情况下分析了现有方法的优缺点。随后,提出了用于图像分割的可变形模型。该模型基于几何势力(GPF),它是图像的函数。解释了GPF计算和水平集确定。继图像分割方法之后,将详细解释本研究中使用的半自动网格划分方法。介绍了生成有效域离散化所需的所有相关技术。这些技术包括生成有效的表面网格,骨架化,网格裁剪,边界层网格构造以及各种网格美容方法,这些方法对于生成高质量的域离散化至关重要。在介绍了网格生成过程之后,将详细说明如何为几何图形的入口和出口生成流边界条件。接下来,在研究流经严重狭窄的颈动脉的血流之前,先对血流求解器进行简要说明。

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