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一种用于肺通气模拟的树状实质耦合模型。

A tree-parenchyma coupled model for lung ventilation simulation.

作者信息

Pozin Nicolas, Montesantos Spyridon, Katz Ira, Pichelin Marine, Vignon-Clementel Irene, Grandmont Céline

机构信息

INRIA Paris, 2 Rue Simone IFF, 75012, Paris, France.

Sorbonne Universités, UPMC Univ. Paris 6, Laboratoire Jacques-Louis Lions, 75252, Paris, France.

出版信息

Int J Numer Method Biomed Eng. 2017 Nov;33(11). doi: 10.1002/cnm.2873. Epub 2017 Jun 20.

Abstract

In this article, we develop a lung ventilation model. The parenchyma is described as an elastic homogenized media. It is irrigated by a space-filling dyadic resistive pipe network, which represents the tracheobronchial tree. In this model, the tree and the parenchyma are strongly coupled. The tree induces an extra viscous term in the system constitutive relation, which leads, in the finite element framework, to a full matrix. We consider an efficient algorithm that takes advantage of the tree structure to enable a fast matrix-vector product computation. This framework can be used to model both free and mechanically induced respiration, in health and disease. Patient-specific lung geometries acquired from computed tomography scans are considered. Realistic Dirichlet boundary conditions can be deduced from surface registration on computed tomography images. The model is compared to a more classical exit compartment approach. Results illustrate the coupling between the tree and the parenchyma, at global and regional levels, and how conditions for the purely 0D model can be inferred. Different types of boundary conditions are tested, including a nonlinear Robin model of the surrounding lung structures.

摘要

在本文中,我们开发了一种肺通气模型。实质被描述为一种弹性均匀介质。它由一个填充空间的二元电阻管网灌溉,该管网代表气管支气管树。在这个模型中,树和实质紧密耦合。树在系统本构关系中引入了一个额外的粘性项,这在有限元框架中导致了一个完整的矩阵。我们考虑一种利用树结构的高效算法,以实现快速的矩阵 - 向量乘积计算。这个框架可用于模拟健康和疾病状态下的自由呼吸和机械诱导呼吸。考虑了从计算机断层扫描获取的患者特异性肺几何形状。可以从计算机断层扫描图像上的表面配准推导出逼真的狄利克雷边界条件。该模型与一种更经典的出口隔室方法进行了比较。结果说明了树和实质在全局和区域层面的耦合,以及如何推断纯零维模型的条件。测试了不同类型的边界条件,包括周围肺结构的非线性罗宾模型。

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