首页> 外文会议>IEEE International Symposium on Biomedical Imaging >HAMILTON-JACOBI SKELETONS ON CORTICAL SURFACES WITH APPLICATIONS IN CHARACTERIZING THE GYRIFICATION PATTERN IN WILLIAMS SYNDROME
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HAMILTON-JACOBI SKELETONS ON CORTICAL SURFACES WITH APPLICATIONS IN CHARACTERIZING THE GYRIFICATION PATTERN IN WILLIAMS SYNDROME

机译:Hamilton-Jacobi在皮质表面上的骷髅,其应用在威廉姆斯综合征中的主动曲线化

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We propose in this paper a novel approach for the automatic detection of sulcal lines on cortical surfaces as the skeleton of sulcal regions. As a first step, we partition a cortical surface into sulcal and gyral regions by using graph cuts to guarantee a global minimum for an associated variational optimization problem. The Hamilton-Jacobi skeleton method is then extended to subsets of triangular meshes using geodesic distance transforms obtained with the fast marching algorithm on triangular meshes. By decomposing the resulting skeleton into branches, we also develop an alternative approach to measure the complexity of the gyrification pattern of the cortex. In our experiments, we apply our method to a group of 40 healthy controls and 42 subjects with Williams syndrome. We report statistically significant group differences that validate previous findings of an increase in cortical complexity in Williams syndrome.
机译:本文提出了一种新颖的方法,用于在皮质表面上自动检测作为硫的骨骼区域的硫脉线。作为第一步,我们通过使用曲线图将皮质表面分配成硫酸和陀螺区域,以保证相关变分优化问题的全局最小值。然后,使用在三角网格上的快速行进算法获得的测地距离变换将Hamilton-jacobi骨架方法扩展到三角形网格的子集。通过将得到的骨架分解成分支,我们还开发了一种替代方法来测量皮质的热化模式的复杂性。在我们的实验中,我们将我们的方法应用于一组40个健康的对照和42名受威廉姆斯综合征的受试者。我们举报了统计上有巨大的群体差异,以验证威廉姆斯综合征的皮质复杂性增加的先前发现。

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