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青春期 DHEA 对视空间振荡动力学发展的影响。

The impact of pubertal DHEA on the development of visuospatial oscillatory dynamics.

机构信息

Institute for Human Neuroscience, Boys Town National Research Hospital, Omaha, Nebraska, USA.

Institute of Child Development, University of Minnesota-Twin Cities, Minneapolis, Minnesota, USA.

出版信息

Hum Brain Mapp. 2022 Dec 1;43(17):5154-5166. doi: 10.1002/hbm.25991. Epub 2022 Jul 1.

Abstract

The adolescent brain undergoes tremendous structural and functional changes throughout puberty. Previous research has demonstrated that pubertal hormones can modulate sexually dimorphic changes in cortical development, as well as age-related maturation of the neural activity underlying cognitive processes. However, the precise impact of pubertal hormones on these functional changes in the developing human brain remains poorly understood. In the current study, we quantified the neural oscillatory activity serving visuospatial processing using magnetoencephalography, and utilized measures of dehydroepiandrosterone (DHEA) as an index of development during the transition from childhood to adolescence (i.e., puberty). Within a sample of typically developing youth (ages 9-15), a novel association between pubertal DHEA and theta oscillatory activity indicated that less mature children exhibited stronger neural responses in higher-order prefrontal cortices during the visuospatial task. Theta coherence between bilateral prefrontal regions also increased with increasing DHEA, such that network-level theta activity became more distributed with more maturity. Additionally, significant DHEA-by-sex interactions in the gamma range were centered on cortical regions relevant for attention processing. These findings suggest that pubertal DHEA may modulate the development of neural oscillatory activity serving visuospatial processing and attention functions during the pubertal period.

摘要

青春期的大脑在整个青春期经历了巨大的结构和功能变化。先前的研究表明,青春期激素可以调节皮质发育的性别二态变化,以及认知过程相关的神经活动的年龄相关成熟。然而,青春期激素对发育中人类大脑这些功能变化的确切影响仍知之甚少。在目前的研究中,我们使用脑磁图量化了用于视觉空间处理的神经振荡活动,并利用脱氢表雄酮(DHEA)作为从儿童期到青春期(即青春期)过渡期间发育的指标。在一组典型的发育中的年轻人(9-15 岁)中,青春期 DHEA 与 theta 振荡活动之间存在新的关联,表明在视觉空间任务中,不太成熟的儿童在前额皮质的高阶区域表现出更强的神经反应。双侧前额区域之间的 theta 相干性也随着 DHEA 的增加而增加,因此随着成熟度的提高,网络水平的 theta 活动变得更加分散。此外,伽马波段中显著的 DHEA-性别相互作用集中在与注意力处理相关的皮质区域。这些发现表明,青春期 DHEA 可能调节青春期视觉空间处理和注意力功能的神经振荡活动的发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9bb/9812248/92fa5c65f82e/HBM-43-5154-g004.jpg

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