IF 6.3 1区 医学 Q1 GENETICS & HEREDITY
Guannan Shen, Heather L Green, Marybeth McNamee, Rose E Franzen, Marissa DiPiero, Jeffrey I Berman, Matthew Ku, Luke Bloy, Song Liu, Megan Airey, Sophia Goldin, Lisa Blaskey, Emily S Kuschner, Mina Kim, Kimberly Konka, Gregory A Miller, J Christopher Edgar
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引用次数: 0

摘要

我们和其他研究人员已经证明,静息态(RS)α峰频率(PAF)是自闭症谱系障碍(ASD)幼儿的潜在临床标志物,先前的研究观察到,学龄期自闭症谱系障碍儿童的 PAF 比发育正常(TD)儿童的 PAF 高,而且静息态 PAF 与 TD 处理速度之间存在关联,但与自闭症谱系障碍无关。与这些发现相关的大脑机制尚不清楚。一些研究发现,在儿童中,更成熟的视辐射白质与更高的 PAF 相关。其他研究报告了 TD 而非 ASD 的白质和神经活动相关性。本研究假设,RS PAF 的群体差异部分是由于视辐射白质和 PAF 关联的群体差异造成的。本研究对 TD 和 ASD 儿童纵向队列中的 RS PAF(使用脑磁图(MEG)测量)、视辐射白质(使用弥散张量成像(DTI)测量)的成熟度以及与处理速度的关联进行了评估。第一时间的 MEG 和 DTI 测量是在儿童 6-8 岁(59 名 TD 和 56 名 ASD)时进行的,并在 1.5 年和 3 年后进行了后续脑部测量。两组儿童的顶叶-枕叶 PAF 均随着年龄的增长而增加,增幅为 0.13 赫兹/年,组别主效应显示 ASD 儿童的 PAF 预期高于 TD 儿童(3 个时间点的平均值为 0.26 赫兹)。在不同年龄段,RS PAF 可以预测 TD 的处理速度,但不能预测 ASD 的处理速度。最后,更成熟的视辐射白质测量(FA、RD、MD、AD)与两组中更高的 PAF 相关。目前的研究结果提供了更多证据,支持将RS PAF作为6-10岁ASD儿童的大脑标记物,并复制了TD而非ASD中RS PAF与处理速度之间的关联。关于RS PAF群体差异(ASD领先TD约2岁)可通过视辐射白质的群体差异来解释的假设未得到支持,大脑结构-功能关联表明,在两个群体中,更成熟的视辐射白质与更高的RS PAF相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
White matter microstructure as a potential contributor to differences in resting state alpha activity between neurotypical and autistic children: a longitudinal multimodal imaging study.

We and others have demonstrated the resting-state (RS) peak alpha frequency (PAF) as a potential clinical marker for young children with autism spectrum disorder (ASD), with previous studies observing a higher PAF in school-age children with ASD versus typically developing (TD) children, as well as an association between the RS PAF and measures of processing speed in TD but not ASD. The brain mechanisms associated with these findings are unknown. A few studies have found that in children more mature optic radiation white matter is associated with a higher PAF. Other studies have reported white matter and neural activity associations in TD but not ASD. The present study hypothesized that group differences in the RS PAF are due, in part, to group differences in optic radiation white matter and PAF associations. The maturation of the RS PAF (measured using magnetoencephalography(MEG)), optic radiation white matter (measured using diffusion tensor imaging(DTI)), and associations with processing speed were assessed in a longitudinal cohort of TD and ASD children. Time 1 MEG and DTI measures were obtained at 6-8 years old (59TD and 56ASD) with follow-up brain measures collected ~ 1.5 and ~ 3 years later. The parietal-occipital PAF increased with age in both groups by 0.13 Hz/year, with a main effect of group showing the expected higher PAF in ASD than TD (an average of 0.26 Hz across the 3 time points). Across age, the RS PAF predicted processing speed in TD but not ASD. Finally, more mature optic radiation white matter measures (FA, RD, MD, AD) were associated with a higher PAF in both groups. Present findings provide additional evidence supporting the use of the RS PAF as a brain marker in children with ASD 6-10 years old, and replicate findings of an association between the RS PAF and processing speed in TD but not ASD. The hypothesis that the RS PAF group differences (with ASD leading TD by about 2 years) would be explained by group differences in optic radiation white matter was not supported, with brain structure-function associations indicating that more mature optic radiation white matter is associated with a higher RS PAF in both groups.

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来源期刊
Molecular Autism
Molecular Autism GENETICS & HEREDITY-NEUROSCIENCES
CiteScore
12.10
自引率
1.60%
发文量
44
审稿时长
17 weeks
期刊介绍: Molecular Autism is a peer-reviewed, open access journal that publishes high-quality basic, translational and clinical research that has relevance to the etiology, pathobiology, or treatment of autism and related neurodevelopmental conditions. Research that includes integration across levels is encouraged. Molecular Autism publishes empirical studies, reviews, and brief communications.
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