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血管结构几何分析框架:在脑动脉瘤中的应用。

A framework for geometric analysis of vascular structures: application to cerebral aneurysms.

作者信息

Piccinelli Marina, Veneziani Alessandro, Steinman David A, Remuzzi Andrea, Antiga Luca

机构信息

Department of Mathematics and Computer Science,Emory University, Atlanta, GA 30332, USA.

出版信息

IEEE Trans Med Imaging. 2009 Aug;28(8):1141-55. doi: 10.1109/TMI.2009.2021652. Epub 2009 May 12.

Abstract

There is well-documented evidence that vascular geometry has a major impact in blood flow dynamics and consequently in the development of vascular diseases, like atherosclerosis and cerebral aneurysmal disease. The study of vascular geometry and the identification of geometric features associated with a specific pathological condition can therefore shed light into the mechanisms involved in the pathogenesis and progression of the disease. Although the development of medical imaging technologies is providing increasing amounts of data on the three-dimensional morphology of the in vivo vasculature, robust and objective tools for quantitative analysis of vascular geometry are still lacking. In this paper, we present a framework for the geometric analysis of vascular structures, in particular for the quantification of the geometric relationships between the elements of a vascular network based on the definition of centerlines. The framework is founded upon solid computational geometry criteria, which confer robustness of the analysis with respect to the high variability of in vivo vascular geometry. The techniques presented are readily available as part of the VMTK, an open source framework for image segmentation, geometric characterization, mesh generation and computational hemodynamics specifically developed for the analysis of vascular structures. As part of the Aneurisk project, we present the application of the present framework to the characterization of the geometric relationships between cerebral aneurysms and their parent vasculature.

摘要

有充分的文献证据表明,血管几何形状对血流动力学有重大影响,进而对血管疾病(如动脉粥样硬化和脑动脉瘤疾病)的发展产生影响。因此,对血管几何形状的研究以及与特定病理状况相关的几何特征的识别,可以揭示疾病发病机制和进展中所涉及的机制。尽管医学成像技术的发展为体内血管系统的三维形态提供了越来越多的数据,但用于血管几何形状定量分析的强大而客观的工具仍然缺乏。在本文中,我们提出了一个用于血管结构几何分析的框架,特别是基于中心线的定义来量化血管网络各元素之间的几何关系。该框架基于坚实的计算几何标准,相对于体内血管几何形状的高度变异性,赋予了分析的稳健性。所提出的技术作为VMTK的一部分很容易获得,VMTK是一个专门为血管结构分析而开发的用于图像分割、几何表征、网格生成和计算血流动力学的开源框架。作为Aneurisk项目的一部分,我们展示了本框架在表征脑动脉瘤与其母血管之间几何关系方面的应用。

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