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Towards a shape model of white matter fiber bundles using diffusion tensor MRI

机译:利用扩散张量MRI建立白质纤维束的形状模型

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White matter fiber bundles of the human brain form a spatial pattern defined by the anatomical and functional architecture. Human brain atlases provide names for individual tracts and document that these patterns are comparable across subjects. Tractography applied to the tensor field in diffusion tensor imaging (DTI) results in sets of streamlines which can be associated with major fiber tracts. Comparison of fiber tract properties across subjects requires comparison at corresponding anatomical locations. As an alternative to linear and nonlinear registration of DTI images and voxel-based analysis, we propose a novel methodology that models the shape of white matter tracts. A clustering uses similarity of adjacent curves and an iterative processing scheme to group sets of curves to bundles and to reject outliers. Unlike previous work which models fiber tracts as sets of curves centered around a spine, we extend the notion of bundling towards a more general representation of manifolds. We describe tracts, represented as sets of curves of similar shape, by a shape prototype swept along a space trajectory. This approach can naturally describe white matter structures observed either as bundles dispersing towards the cortex or tracts defined as dense patterns of parallel fibers forming manifolds. Curves are parameterized by arc-length and represented by intrinsic local shape properties (curvature and torsion). Feasibility is demonstrated by modeling the left and right cortico-spinal tracts and a part of the transversal callosal tract.
机译:人脑的白质纤维束形成由解剖结构和功能结构定义的空间模式。人脑图集提供了各个区域的名称,并记录了这些模式在各个受试者之间具有可比性。在扩散张量成像(DTI)中将张线图应用于张量场会产生一系列流线,这些流线可能与主要的纤维束相关。跨受试者的纤维束特性比较需要在相应的解剖位置进行比较。作为DTI图像的线性和非线性配准和基于体素的分析的替代方法,我们提出了一种对白质束形状进行建模的新颖方法。聚类使用相邻曲线的相似性和迭代处理方案将曲线集分组为束并排除异常值。与以前的工作将纤维束建模为围绕脊柱的曲线集不同,我们将捆绑的概念扩展为更通用的歧管表示。我们通过沿空间轨迹扫掠的形状原型来描述以相似形状的曲线集表示的区域。这种方法可以自然地描述观察到的白质结构,其表现为束朝着皮质散布,或者束流定义为形成歧管的平行纤维的密集图案。曲线由弧长参数化,并由固有的局部形状属性(曲率和扭转)表示。通过对左右皮质脊髓道和部分横call道建模来证明其可行性。

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