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A Tract-Specific Framework for White Matter Morphometry Combining Macroscopic and Microscopic Tract Features

机译:结合宏观和微观特征的白物形态计量学专用框架

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Diffusion tensor imaging plays a key role in our understanding of white matter (WM) both in normal populations and in populations with brain disorders. Existing techniques focus primarily on using diffusivity-based quantities derived from diffusion tensor as surrogate measures of microstructural tissue properties of WM. In this paper, we describe a novel tract-specific framework that enables the examination of WM morphometry at both the macroscopic and microscopic scales. The framework leverages the skeleton-based modeling of sheet-like WM fasciculi using the continuous medial representation, which gives a natural definition of thickness and supports its comparison across subjects. The thickness measure provides a macroscopic characterization of WM fasciculi that complements existing analysis of microstructural features. The utility of the framework is demonstrated in quantifying WM atrophy in Amyotrophic Lateral Sclerosis, a severe neurodegenerative disease of motor neurons. We show that, compared to using microscopic features alone, combining the macroscopic and microscopic features gives a more holistic characterization of the disease.
机译:扩散张量成像在我们对正常人群和脑部疾病人群的白质(WM)的理解中起着关键作用。现有技术主要集中在使用从扩散张量得到的基于扩散的量作为WM的微结构组织特性的替代量度。在本文中,我们描述了一种新颖的特定于管道的框架,该框架能够在宏观和微观尺度上检查WM形态。该框架利用连续的中间表示,利用薄片状WM fasciculi的基于骨架的建模,这给出了厚度的自然定义并支持其跨主题的比较。厚度测量提供了WM fasciculi的宏观特征,可补充对微观结构特征的现有分析。该框架的实用性在量化肌萎缩性侧索硬化症(一种严重的运动神经元神经退行性疾病)中的WM萎缩中得到了证明。我们表明,与单独使用微观特征相比,将宏观特征与微观特征相结合可以更全面地表征疾病。

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