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多尺度建模作为一种为外科手术研究规定实际边界条件的工具。

Multiscale modelling as a tool to prescribe realistic boundary conditions for the study of surgical procedures.

作者信息

Laganà K, Dubini G, Migliavacca F, Pietrabissa R, Pennati G, Veneziani A, Quarteroni A

机构信息

Bioengineering Department and Laboratory of Biological Structure Mechanics, Politecnico di Milano, Milan, Italy.

出版信息

Biorheology. 2002;39(3-4):359-64.

Abstract

This work was motivated by the problems of analysing detailed 3D models of vascular districts with complex anatomy. It suggests an approach to prescribing realistic boundary conditions to use in order to obtain information on local as well as global haemodynamics. A method was developed which simultaneously solves Navier-Stokes equations for local information and a non-linear system of ordinary differential equations for global information. This is based on the principle that an anatomically detailed 3D model of a cardiovascular district can be achieved by using the finite element method. In turn the finite element method requires a specific boundary condition set. The approach outlined in this work is to include the system of ordinary differential equations in the boundary condition set. Such a multiscale approach was first applied to two controls: (i) a 3D model of a straight tube in a simple hydraulic network and (ii) a 3D model of a straight coronary vessel in a lumped-parameter model of the cardiovascular system. The results obtained are very close to the solutions available for the pipe geometry. This paper also presents preliminary results from the application of the methodology to a particular haemodynamic problem: namely the fluid dynamics of a systemic-to-pulmonary shunt in paediatric cardiac surgery.

摘要

这项工作的动机源于分析具有复杂解剖结构的血管区域详细三维模型的问题。它提出了一种规定现实边界条件的方法,以便获取局部和整体血液动力学信息。开发了一种方法,该方法同时求解用于局部信息的纳维-斯托克斯方程和用于全局信息的常微分方程非线性系统。这基于这样一个原理,即可以通过有限元方法获得心血管区域的解剖学详细三维模型。反过来,有限元方法需要一组特定的边界条件。本文概述的方法是将常微分方程组纳入边界条件集。这种多尺度方法首先应用于两个控制对象:(i)简单水力网络中直管的三维模型和(ii)心血管系统集总参数模型中直冠状动脉的三维模型。获得的结果与管道几何形状的可用解非常接近。本文还展示了将该方法应用于一个特定血液动力学问题的初步结果:即小儿心脏手术中体肺分流的流体动力学。

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