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利用非均质各向异性肺组织弹性特性对肺内气流进行计算流体动力学建模。

Computational fluid dynamics modeling of airflow inside lungs using heterogenous anisotropic lung tissue elastic properties.

作者信息

Ilegbusi Olusegun, Li Ziang, Min Yugang, Meeks Sanford, Kupelian Patrick, Santhanam Anand P

机构信息

Mechanics, Material and Aerospace Engineering, University of Central Florida, USA.

出版信息

Stud Health Technol Inform. 2012;173:205-11.

Abstract

The aim of this paper is to model the airflow inside lungs during breathing and its fluid-structure interaction with the lung tissues and the lung tumor using subject-specific elastic properties. The fluid-structure interaction technique simultaneously simulates flow within the airway and anisotropic deformation of the lung lobes. The three-dimensional (3D) lung geometry is reconstructed from the end-expiration 3D CT scan datasets of humans with lung cancer. The lung is modeled as a poro-elastic medium with anisotropic elastic property (non-linear Young's modulus) obtained from inverse lung elastography of 4D CT scans for the same patients. The predicted results include the 3D anisotropic lung deformation along with the airflow pattern inside the lungs. The effect is also presented of anisotropic elasticity on both the spatio-temporal volumetric lung displacement and the regional lung hysteresis.

摘要

本文的目的是利用个体特异性弹性特性,对呼吸过程中肺内的气流及其与肺组织和肺肿瘤的流固相互作用进行建模。流固相互作用技术同时模拟气道内的流动和肺叶的各向异性变形。三维(3D)肺几何结构是从肺癌患者的呼气末3D CT扫描数据集中重建的。将肺建模为具有各向异性弹性特性(非线性杨氏模量)的多孔弹性介质,该特性从同一患者的4D CT扫描的逆肺弹性成像中获得。预测结果包括3D各向异性肺变形以及肺内的气流模式。还展示了各向异性弹性对时空肺容积位移和区域肺滞后的影响。

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