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首页> 外文期刊>Neuroinformatics >Three-Dimensional Interactive and Stereotactic Human Brain Atlas of White Matter Tracts
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Three-Dimensional Interactive and Stereotactic Human Brain Atlas of White Matter Tracts

机译:白色物质道的三维互动和立体定向人脑图集

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摘要

We present a human brain atlas of white matter (WM) tracts containing 40 major tracts, which is threedimensional (3D), segmented, labeled, interactive, stereotactic and correlated to structure and vasculature. We consider: 1) WM accuracy by correlating WM tracts to underlying neuroanatomy and quantifying them; 2) balance between realism and completeness by processing a sequence of track volumes generated for various parameters with the increasing track number to enable a tract “shape convergence”. MPRAGE and DTI in 64 directions of the same subject were acquired on 3 Tesla. The method has three steps: DTI-MPRAGE registration, 3D tract generation from DTI, to WM reconstruction from MPRAGE to parcellation into 17 components. 82 track volumes were generated for a wide spectrum of parameter values: Fractional Anisotropy threshold in [0.0125, 0.55] and trajectory angle lower than 45°,60°,65°,70°,75°,80°,85°,90°. For each tract, a sequence of track volumes was processed to create/edit contours delineating this tract to achieve its shape convergence. The parcellated tracts were grouped into commissures, associations, projections and posterior fossa tracts, and labeled following Terminologia Anatomica. To facilitate that, a dedicated tract editor is developed which processes multiple track volumes, handles tracts in three representations (tracks, contours, envelopes); provides editing/visualization simultaneously on axial, coronal, sagittal planes; enables tract labeling and coloring; and provides numerous tools (track counting, smoothing and length thresholding; representation conversion and saving; structural atlas support). A stereotactic tract atlas along with parcellated WM was developed to explore in real-time any individual tract or their groups along with surrounding neuroanatomy.
机译:我们提出了包含40个主要区域的人脑白质(WM)区域地图集,该区域是三维(3D),分段,标记,交互,立体定位并与结构和脉管系统相关。我们认为:1)通过将WM道与基础神经解剖结构相关联并对其进行量化来实现WM准确性; 2)通过处理随轨道数增加而为各种参数生成的轨道体积序列,实现轨迹“形状收敛”,从而在真实性和完整性之间取得平衡。在3个Tesla上获取了同一对象在64个方向上的MPRAGE和DTI。该方法包括三个步骤:DTI-MPRAGE配准,从DTI生成3D道,从MPRAGE到WM重构,再分成17个组成部分。对于广泛的参数值,生成了82个轨迹体积:分数各向异性阈值[0.0125,0.55]和轨迹角小于45°,60°,65°,70°,75°,80°,85°,90° 。对于每个道,处理一系列轨迹,以创建/编辑描绘该道的轮廓,以实现其形状收敛。分割后的小道被分为连合,关联,投影和后窝小道,并在解剖学解剖学(Teminologia Anatomica)之后进行标记。为方便起见,开发了专用的道表编辑器,该程序可处理多个轨道体积,以三种表示形式(轨道,轮廓,包络)处理轨道。在轴向,冠状,矢状平面上同时提供编辑/可视化;可以进行道路标记和着色;并提供多种工具(轨迹计数,平滑和长度阈值;表示转换和保存;结构图集支持)。开发了立体定向图谱以及散布的WM,以实时探索任何单个的道或其群以及周围的神经解剖结构。

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