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Using diffusion MRI to discriminate areas of cortical grey matter

机译:使用扩散MRI区分皮质灰质的区域

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摘要

Cortical area parcellation is a challenging problem that is often approached by combining structural imaging (e.g., quantitative T1, diffusion-based connectivity) with functional imaging (e.g., task activations, topological mapping, resting state correlations). Diffusion MRI (dMRI) has been widely adopted to analyse white matter microstructure, but scarcely used to distinguish grey matter regions because of the reduced anisotropy there. Nevertheless, differences in the texture of the cortical 'fabric' have long been mapped by histologists to distinguish cortical areas. Reliable area-specific contrast in the dMRI signal has previously been demonstrated in selected occipital and sensorimotor areas. We expand upon these findings by testing several diffusion-based feature sets in a series of classification tasks. Using Human Connectome Project (HCP) 3T datasets and a supervised learning approach, we demonstrate that diffusion MRI is sensitive to architectonic differences between a large number of different cortical areas defined in the HCP parcellation. By employing a surface-based cortical imaging pipeline, which defines diffusion features relative to local cortical surface orientation, we show that we can differentiate areas from their neighbours with higher accuracy than when using only fractional anisotropy or mean diffusivity. The results suggest that grey matter diffusion may provide a new, independent source of information for dividing up the cortex.
机译:皮层区地块划分是通常通过组合结构成像(例如,定量T1,基于扩散的连接)与功能成像(例如,任务激活,拓扑映射,静止状态的相关性)走近一个具有挑战性的问题。扩散MRI(DMRI)已被广泛采用来分析白质的微观结构,但几乎不用于区分,因为降低的各向异性那里的灰质区域。然而,在皮质“织物”的质感差异早就被映射通过组织学家分辨皮质区。在DMRI信号可靠特定区域对比度先前已被证明在选择枕部和感觉的地方。我们通过一系列的分类任务测试几个基于扩散的功能集于这些研究结果扩大。使用人类连接组项目(HCP)3T数据集和监督学习方法,我们证明了扩散MRI是大量的HCP定义地块划分不同的皮层区域之间的差异建筑学敏感。通过采用基于表面的皮质成像管道,其限定扩散设有相对于本地皮质表面取向,我们表明,我们可以从他们的邻居区分区域与仅使用各向异性分数或平均扩散的情况相比更高的精度。结果表明,灰质扩散可提供的信息,用于将向上的皮质一个新的独立源。

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