首页> 外文会议>Image Processing pt.2; Progress in Biomedical Optics and Imaging; vol.7 no.30 >White Matter Fiber Tractography based on a Directional Diffusion Field in Diffusion Tensor MRI
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White Matter Fiber Tractography based on a Directional Diffusion Field in Diffusion Tensor MRI

机译:扩散张量MRI中基于方向性扩散场的白质纤维显微术

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Diffusion tensor (DT) MRI provides the directional information of water molecular diffusion, which can be utilized to estimate the connectivity of white matter tract pathways in the human brain. Several white matter tractography methods have been developed to reconstruct the white matter fiber tracts using DT-MRI. With conventional methods (e.g., streamline techniques), however, it would be very difficult to trace the white matter tracts passing through the fiber crossing and branching regions due to the ambiguous directional information with the partial volume effect. The purpose of this study was to develop a new white matter tractography method which permits fiber tract branching and passing through crossing regions. Our tractography method is based on a three-dimensional (3D) directional diffusion function (DDF), which was defined by three eigenvalues and their corresponding eigenvectors of DT in each voxel. The DDF-based tractography (DDFT) consists of the segmentation of white matter tract region and fiber tracking process. The white matter tract regions were segmented by thresholding the 3D directional diffusion field, which was generated by the DDF. In fiber tracking, the DDFT method estimated the local tract direction based on overlap of the DDFs instead of the principal eigenvector, which has been used in conventional methods, and reconstructed tract branching by means of a one-to-many relation model. To investigate the feasibility and usefulness of the DDFT method, we applied it to DT-MRI data of five normal subjects and seven patients with a brain tumor. With the DDFT method, the detailed anatomy of white matter tracts was depicted more appropriately than the conventional methods.
机译:扩散张量(DT)MRI提供了水分子扩散的方向信息,可用于估计人脑中白质通道的连通性。已经开发了几种白质束成像方法,以使用DT-MRI重建白质纤维束。然而,利用常规方法(例如流线技术),由于具有部分体积效应的方向信息不明确,将很难追踪通过纤维交叉和分支区域的白质束。这项研究的目的是开发一种新的白质束摄影方法,该方法可以使纤维束分支并穿过交叉区域。我们的射线照相术方法基于三维(3D)方向扩散函数(DDF),该函数由每个体素中DT的三个特征值及其对应的特征向量定义。基于DDF的tractography(DDFT)包括白质束区域的分割和纤维跟踪过程。通过对DDF生成的3D方向扩散场进行阈值化,对白质区进行分割。在光纤跟踪中,DDFT方法基于DDF的重叠而不是传统方法中使用的主要特征向量来估计局部管道方向,并通过一对多关系模型重建管道分支。为了研究DDFT方法的可行性和实用性,我们将其应用于5名正常受试者和7名脑肿瘤患者的DT-MRI数据。使用DDFT方法,可以比传统方法更恰当地描述白质束的详细解剖结构。

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