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针对特定个体生物医学几何形状的半自动表面和体积网格生成。

Semi-automatic surface and volume mesh generation for subject-specific biomedical geometries.

作者信息

Sazonov Igor, Nithiarasu Perumal

机构信息

Computational Bioengineering Group, College of Engineering, Swansea University, Swansea SA2 8PP, U.K.

出版信息

Int J Numer Method Biomed Eng. 2012 Jan;28(1):133-57. doi: 10.1002/cnm.1470.

Abstract

An overview of surface and volume mesh generation techniques for creating valid meshes to carry out biomedical flows is provided. The methods presented are designed for robust numerical modelling of biofluid flow through subject-specific geometries. The applications of interest are haemodynamics in blood vessels and air flow in upper human respiratory tract. The methods described are designed to minimize distortion to a given domain boundary. They are also designed to generate a triangular surface mesh first and then volume mesh (tetrahedrons) with high quality surface and volume elements. For blood flow applications, a simple procedure to generate a boundary layer mesh is also described. The methods described here are semi-automatic in nature because of the fact that the geometries are complex, and automation of the procedures may be possible if high quality scans are used.

摘要

本文概述了用于创建有效网格以进行生物医学流动模拟的表面和体积网格生成技术。所介绍的方法旨在对生物流体通过特定个体几何结构的流动进行稳健的数值建模。感兴趣的应用领域包括血管中的血液动力学以及人体上呼吸道中的气流。所描述的方法旨在将给定域边界的变形降至最低。它们还旨在首先生成三角形表面网格,然后生成具有高质量表面和体积单元的体积网格(四面体)。对于血流应用,还描述了一种生成边界层网格的简单程序。由于几何结构复杂,这里描述的方法本质上是半自动的,如果使用高质量扫描,程序的自动化可能是可行的。

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