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零亏格曲面共形映射及其在脑表面映射中的应用。

Genus zero surface conformal mapping and its application to brain surface mapping.

作者信息

Gu Xianfeng, Wang Yalin, Chan Tony F, Thompson Paul M, Yau Shing-Tung

机构信息

Department of Computer and Information Science and Engineering, University of Florida, FL 32611, USA.

出版信息

IEEE Trans Med Imaging. 2004 Aug;23(8):949-58. doi: 10.1109/TMI.2004.831226.

Abstract

We developed a general method for global conformal parameterizations based on the structure of the cohomology group of holomorphic one-forms for surfaces with or without boundaries (Gu and Yau, 2002), (Gu and Yau, 2003). For genus zero surfaces, our algorithm can find a unique mapping between any two genus zero manifolds by minimizing the harmonic energy of the map. In this paper, we apply the algorithm to the cortical surface matching problem. We use a mesh structure to represent the brain surface. Further constraints are added to ensure that the conformal map is unique. Empirical tests on magnetic resonance imaging (MRI) data show that the mappings preserve angular relationships, are stable in MRIs acquired at different times, and are robust to differences in data triangulation, and resolution. Compared with other brain surface conformal mapping algorithms, our algorithm is more stable and has good extensibility.

摘要

我们基于有边界或无边界曲面的全纯一次形式上同调群的结构,开发了一种用于全局共形参数化的通用方法(顾和丘,2002年),(顾和丘,2003年)。对于亏格为零的曲面,我们的算法可以通过最小化映射的调和能量,找到任意两个亏格为零流形之间的唯一映射。在本文中,我们将该算法应用于皮质表面匹配问题。我们使用网格结构来表示脑表面。进一步添加约束以确保共形映射是唯一的。对磁共振成像(MRI)数据的实证测试表明,这些映射保留了角度关系,在不同时间获取的MRI中是稳定的,并且对数据三角剖分和分辨率的差异具有鲁棒性。与其他脑表面共形映射算法相比,我们的算法更稳定且具有良好的可扩展性。

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