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Diffusion spectrum magnetic resonance imaging (DSI) tractography of crossing fibers.

机译:交叉纤维的扩散光谱磁共振成像(DSI)图像。

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摘要

MRI tractography is the mapping of neural fiber pathways based on diffusion MRI of tissue diffusion anisotropy. Tractography based on diffusion tensor imaging (DTI) cannot directly image multiple fiber orientations within a single voxel. To address this limitation, diffusion spectrum MRI (DSI) and related methods were developed to image complex distributions of intravoxel fiber orientation. Here we demonstrate that tractography based on DSI has the capacity to image crossing fibers in neural tissue. DSI was performed in formalin-fixed brains of adult macaque and in the brains of healthy human subjects. Fiber tract solutions were constructed by a streamline procedure, following directions of maximum diffusion at every point, and analyzed in an interactive visualization environment (TrackVis). We report that DSI tractography accurately shows the known anatomic fiber crossings in optic chiasm, centrum semiovale, and brainstem; fiber intersections in gray matter, including cerebellar folia and the caudate nucleus; and radial fiber architecture in cerebral cortex. In contrast, none of these examples of fiber crossing and complex structure was identified by DTI analysis of the same data sets. These findings indicate that DSI tractography is able to image crossing fibers in neural tissue, an essential step toward non-invasive imaging of connectional neuroanatomy.
机译:MRI磁共振成像是基于组织弥散各向异性的弥散MRI绘制神经纤维通路的映射。基于扩散张量成像(DTI)的牵引术无法直接对单个体素内的多个纤维方向进行成像。为了解决这个限制,开发了扩散谱MRI(DSI)和相关方法来成像体素纤维取向的复杂分布。在这里,我们证明了基于DSI的放射线照相术具有对神经组织中的交叉纤维成像的能力。 DSI在成年猕猴的福尔马林固定的大脑和健康人的大脑中进行。纤维束解决方案通过遵循每个点的最大扩散方向的流线型程序构建,并在交互式可视化环境(TrackVis)中进行分析。我们报告说,DSI体层摄影术准确显示了视交叉,中央半卵和脑干中的已知解剖学纤维交叉。灰质中的纤维相交点,包括小脑叶和尾状核;和大脑皮层的放射状纤维结构。相反,通过相同数据集的DTI分析,没有发现这些纤维交叉和复杂结构的例子。这些发现表明,DSI体层摄影术能够对神经组织中的交叉纤维成像,这是朝向连接神经解剖结构进行非侵入性成像的必不可少的步骤。

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