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自闭症谱系障碍青少年及其一级亲属的γ 波段神经振荡与语言技能之间的关系。

The relationship between gamma-band neural oscillations and language skills in youth with Autism Spectrum Disorder and their first-degree relatives.

机构信息

Center for Child Health, Behavior and Development, Seattle Children's Research Institute, 1920 Terry Ave., Seattle, WA, 98101, USA.

Department of Psychiatry and Behavioral Science, University of Washington, Seattle, WA, USA.

出版信息

Mol Autism. 2024 May 7;15(1):19. doi: 10.1186/s13229-024-00598-1.

Abstract

BACKGROUND

Most children with Autism Spectrum Disorder (ASD) have co-occurring language impairments and some of these autism-specific language difficulties are also present in their non-autistic first-degree relatives. One of the possible neural mechanisms associated with variability in language functioning is alterations in cortical gamma-band oscillations, hypothesized to be related to neural excitation and inhibition balance.

METHODS

We used a high-density 128-channel electroencephalography (EEG) to register brain response to speech stimuli in a large sex-balanced sample of participants: 125 youth with ASD, 121 typically developing (TD) youth, and 40 unaffected siblings (US) of youth with ASD. Language skills were assessed with Clinical Evaluation of Language Fundamentals.

RESULTS

First, during speech processing, we identified significantly elevated gamma power in ASD participants compared to TD controls. Second, across all youth, higher gamma power was associated with lower language skills. Finally, the US group demonstrated an intermediate profile in both language and gamma power, with nonverbal IQ mediating the relationship between gamma power and language skills.

LIMITATIONS

We only focused on one of the possible neural contributors to variability in language functioning. Also, the US group consisted of a smaller number of participants in comparison to the ASD or TD groups. Finally, due to the timing issue in EEG system we have provided only non-phase-locked analysis.

CONCLUSIONS

Autistic youth showed elevated gamma power, suggesting higher excitation in the brain in response to speech stimuli and elevated gamma power was related to lower language skills. The US group showed an intermediate pattern of gamma activity, suggesting that the broader autism phenotype extends to neural profiles.

摘要

背景

大多数自闭症谱系障碍(ASD)儿童伴有共患语言障碍,其中一些自闭症特异性语言困难也存在于其非自闭症一级亲属中。与语言功能变异性相关的一种可能的神经机制是皮质伽马波段振荡的改变,据推测与神经兴奋和抑制平衡有关。

方法

我们使用高密度 128 通道脑电图(EEG)记录了来自性别平衡的大样本参与者(125 名自闭症儿童,121 名正常发育(TD)儿童和 40 名自闭症儿童的未受影响的兄弟姐妹(US))对言语刺激的大脑反应。语言技能用语言基本要素临床评估量表进行评估。

结果

首先,在言语处理过程中,与 TD 对照组相比,ASD 参与者的伽马功率明显升高。其次,在所有儿童中,较高的伽马功率与较低的语言技能相关。最后,US 组在语言和伽马功率方面均表现出中等程度的特征,非言语智商中介了伽马功率与语言技能之间的关系。

局限性

我们仅关注语言功能变异性的一个可能的神经贡献因素。此外,与 ASD 或 TD 组相比,US 组的参与者人数较少。最后,由于 EEG 系统的时间问题,我们仅提供了非锁相分析。

结论

自闭症儿童表现出较高的伽马功率,这表明大脑对言语刺激的反应中兴奋度较高,而较高的伽马功率与较低的语言技能相关。US 组表现出中间模式的伽马活动,这表明广泛的自闭症表型延伸到神经特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5a8/11075235/2d0c9bee6a85/13229_2024_598_Fig1_HTML.jpg

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