有限元法
仰卧位
流固耦合
软件
多边形网格
管道(软件)
血流
压缩性
流量(数学)
计算机科学
流体力学
机械
模拟
工程类
机械工程
物理
医学
结构工程
外科
放射科
计算机图形学(图像)
程序设计语言
作者
Olivia Miraucourt,Stéphanie Salmon,Marcela Szopos,Marc Thiriet
标识
DOI:10.1080/10255842.2016.1247833
摘要
The development of a software platform incorporating all aspects, from medical imaging data, through three-dimensional reconstruction and suitable meshing, up to simulation of blood flow in patient-specific geometries, is a crucial challenge in biomedical engineering. In the present study, a fully three-dimensional blood flow simulation is carried out through a complete rigid macrovascular circuit, namely the intracranial venous network, instead of a reduced order simulation and partial vascular network. The biomechanical modeling step is carefully analyzed and leads to the description of the flow governed by the dimensionless Navier–Stokes equations for an incompressible viscous fluid. The equations are then numerically solved with a free finite element software using five meshes of a realistic geometry obtained from medical images to prove the feasibility of the pipeline. Some features of the intracranial venous circuit in the supine position such as asymmetric behavior in merging regions are discussed.
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