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Fluid-structure interaction including volumetric coupling with homogenised subdomains for modeling respiratory mechanics

机译:流体-结构相互作用,包括与均质子域的体积耦合,用于建模呼吸力学

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摘要

In this article, a novel approach is presented for combining standard fluid-structure interaction with additional volumetric constraints to model fluid flow into and from homogenised solid domains. The proposed algorithm is particularly interesting for investigations in the field of respiratory mechanics as it enables the mutual coupling of airflow in the conducting part and local tissue deformation in the respiratory part of the lung by means of a volume constraint. In combination with a classical monolithic fluid-structure interaction approach, a comprehensive model of the human lung can be established that will be useful to gain new insights into respiratory mechanics in health and disease. To illustrate the validity and versatility of the novel approach, three numerical examples including a patient-specific lung model are presented. The proposed algorithm proves its capability of computing clinically relevant airflow distribution and tissue strain data at a level of detail that is not yet achievable, neither with current imaging techniques nor with existing computational models. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:在本文中,提出了一种新颖的方法,可以将标准的流体结构相互作用与附加的体积约束条件结合起来,以对流入和流出均质固体域的流体进行建模。所提出的算法对于呼吸力学领域的研究特别有趣,因为它可以借助体积约束使传导部分中的气流与肺部呼吸部分中的局部组织变形相互耦合。结合经典的整体式流体-结构相互作用方法,可以建立人肺的综合模型,这将有助于获得对健康和疾病中呼吸力学的新见解。为了说明这种新方法的有效性和多功能性,给出了三个数值示例,包括一个特定于患者的肺部模型。所提出的算法证明了利用现有的成像技术或现有的计算模型,都无法以尚未达到的细节水平计算临床相关的气流分布和组织应变数据的能力。版权所有(c)2016 John Wiley&Sons,Ltd.

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