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Brain white matter tractography based on riemannianmanifold

机译:基于RiemannianManifold的脑白质牵引

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Diffusion tensor imaging (DTI) is the only noninvasive technique of analyzing and qualifying water molecule's diffusion anisotropy in brain tissues. This paper presented a novel algorithm to analyze DTI and brain white matter tractography based on Riemannian manifold. Firstly, a 3x3 symmetric positive definite covariant tensor was constructed for each voxel using DTI, so brain white matte can be represented as a tensor field. Secondly, the tensor field was regarded as Riemannian manifold, and the fluid motion in the tensor field was represented by Navier-Stoke equation, so the problem of brain white matter tractography between two voxels can be transformed into the computation of smallest distance between two points in Riemannian manifold. Finally, distances between two points in Riemannian manifold can be represented by geodesic, and the numerical solution was based on Level-Set method, which was the brain white matter tractography. In experiment, this paper compared our method and the traditional algorithm based on a digital DTI phantom. The experiment result showed that our method could accurately retrieve the DTI tractography, and was more robust than traditional algorithm.
机译:扩散张量成像(DTI)是分析和鉴定水分分子在脑组织中的扩散各向异性的唯一非侵入性技术。本文介绍了一种新的算法,分析了基于黎曼歧管的DTI和脑白质牵引。首先,使用DTI为每种体素构建3x3对称正定的协调张量,因此脑白色遮罩可以表示为张量场。其次,张测磁场被认为是riemannian歧管,并且张力场中的流体运动由Navier-que-stoke方程表示,因此两个体素之间的脑白质横乔问题可以转换为两个点之间最小距离的计算在riemannian歧管中。最后,黎曼歧管中的两个点之间的距离可以由测地值表示,数值溶液基于水平设定方法,是脑白质牵引。实验中,本文比较了基于数字DTI幻像的方法和传统算法。实验结果表明,我们的方法可以准确地检索DTI牵引,比传统算法更强大。

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