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Atypical age-dependent effects of autism on white matter microstructure in children of 2–7 years

机译:自闭症对2-7岁儿童白质微观结构的非典型年龄依赖性影响

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摘要

Atypical age-dependent changes of white matter (WM) microstructure play a central role in abnormal brain maturation of the children with autism spectrum disorder (ASD), but their early manifestations have not been systematically characterized. The entire brain core WM voxels were surveyed to detect differences in WM microstructural development between 31 children with ASD of 2–7 years and 19 age-matched children with typical development (TD), using measurements of fractional anisotropy (FA) and radial diffusivity (RD) from diffusion tensor imaging (DTI). The anatomical locations, distribution, and extent of the core WM voxels with atypical age-dependent changes in a specific tract or tract group were delineated and evaluated by integrating the skeletonized WM with a digital atlas. Exclusively unidirectional FA increases and RD decreases in widespread WM tracts were revealed in children with ASD before 4 years, with bi-directional changes found for children with ASD of 2–7 years. Compared to progressive development that raised FA and lowered RD during 2–7 years in the TD group, flattened curves of WM maturation were found in multiple major WM tracts of all five tract groups, particularly associational and limbic tracts, in the ASD group with trend lines of ASD and TD crossed around 4 years. We found atypical age-dependent changes of FA and RD widely and heterogeneously distributed in WM tracts of children with ASD. The early higher WM microstructural integrity before 4 years reflects abnormal neural patterning, connectivity and pruning that may contribute to aberrant behavioral and cognitive development in ASD.
机译:白质(WM)的非典型年龄依赖性变化在自闭症谱系障碍(ASD)儿童的异常大脑成熟中起着核心作用,但尚未对其早期表现进行系统地表征。调查了整个大脑核心WM体素,以检测分数各向异性(FA)和径向扩散率(31)2至7岁的ASD儿童和19个年龄相仿的典型发育(TD)儿童之间的WM微结构发育差异( RD)来自扩散张量成像(DTI)。通过将骨架化的WM与数字地图集集成在一起,来描绘和评估核心WM体素的解剖位置,分布和范围,该特定区域或特定区域中具有非典型的年龄相关性变化。在4岁之前,患有ASD的儿童仅出现了广泛的WM道的单向FA升高和RD降低,而ASD的儿童则在2–7岁时出现了双向变化。与TD组在2-7年内FA升高和RD降低的进行性发展相比,在ASD组中,所有五个道群的多个主要WM道,特别是缔合和边缘道,均发现WM成熟曲线平坦ASD和TD的生产线跨越了大约4年。我们发现非典型年龄的FA和RD的变化广泛地和异质地分布在ASD儿童的WM道中。在4年之前,早期的WM微结构完整性较高,这反映了异常的神经模式,连接性和修剪,这可能有助于ASD的异常行为和认知发展。

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