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Atlas-based analysis of neurodevelopment from infancy to adulthood using diffusion tensor imaging and applications for automated abnormality detection.

机译:使用扩散张量成像和自动异常检测的应用,基于图集的从婴儿期到成年期神经发育的分析。

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Quantification of normal brain maturation is a crucial step in understanding developmental abnormalities in brain anatomy and function. The aim of this study was to develop atlas-based tools for time-dependent quantitative image analysis, and to characterize the anatomical changes that occur from 2years of age to adulthood. We used large deformation diffeomorphic metric mapping to register diffusion tensor images of normal participants into the common coordinates and used a pre-segmented atlas to segment the entire brain into 176 structures. Both voxel- and atlas-based analyses reported a structure that showed distinctive changes in terms of its volume and diffusivity measures. In the white matter, fractional anisotropy (FA) linearly increased with age in logarithmic scale, while diffusivity indices, such as apparent diffusion coefficient (ADC), and axial and radial diffusivity, decreased at a different rate in several regions. The average, variability, and the time course of each measured parameter are incorporated into the atlas, which can be used for automated detection of developmental abnormalities. As a demonstration of future application studies, the brainstem anatomy of cerebral palsy patients was evaluated and the altered anatomy was delineated.
机译:正常大脑成熟的量化是了解大脑解剖结构和功能发育异常的关键步骤。这项研究的目的是开发基于时间图的定量图像分析的基于图集的工具,并表征从2岁到成年的解剖变化。我们使用大变形微分度量映射将正常参与者的扩散张量图像注册到公共坐标中,并使用预先分割的地图集将整个大脑分成176个结构。基于体素和图集的分析均报告了一种结构,该结构在其体积和扩散率指标方面显示出独特的变化。在白质中,分数各向异性(FA)随着年龄的增长呈对数线性增长,而诸如表观扩散系数(ADC)以及轴向和径向扩散率之类的扩散率指数则在多个区域以不同的速率下降。每个测量参数的平均值,变异性和时间过程都包含在地图集中,可用于自动检测发育异常。为了进一步应用研究,对脑瘫患者的脑干解剖结构进行了评估,并描述了改变后的解剖结构。

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