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高功能自闭症青少年的大脑静息态网络:空间连通性和时间神经动力学分析。

Brain resting-state networks in adolescents with high-functioning autism: Analysis of spatial connectivity and temporal neurodynamics.

机构信息

Department of Electrical Engineering Eindhoven University of Technology Eindhoven The Netherlands.

Department of Neurology Maastricht University Medical Center Maastricht The Netherlands.

出版信息

Brain Behav. 2018 Jan 17;8(2):e00878. doi: 10.1002/brb3.878. eCollection 2018 Feb.

Abstract

INTRODUCTION

Autism spectrum disorder (ASD) is mainly characterized by functional and communication impairments as well as restrictive and repetitive behavior. The leading hypothesis for the neural basis of autism postulates globally abnormal brain connectivity, which can be assessed using functional magnetic resonance imaging (fMRI). Even in the absence of a task, the brain exhibits a high degree of functional connectivity, known as intrinsic, or resting-state, connectivity. Global default connectivity in individuals with autism versus controls is not well characterized, especially for a high-functioning young population. The aim of this study is to test whether high-functioning adolescents with ASD (HFA) have an abnormal resting-state functional connectivity.

MATERIALS AND METHODS

We performed spatial and temporal analyses on resting-state networks (RSNs) in 13 HFA adolescents and 13 IQ- and age-matched controls. For the spatial analysis, we used probabilistic independent component analysis (ICA) and a permutation statistical method to reveal the RSN differences between the groups. For the temporal analysis, we applied Granger causality to find differences in temporal neurodynamics.

RESULTS

Controls and HFA display very similar patterns and strengths of resting-state connectivity. We do not find any significant differences between HFA adolescents and controls in the spatial resting-state connectivity. However, in the temporal dynamics of this connectivity, we did find differences in the causal effect properties of RSNs originating in temporal and prefrontal cortices.

CONCLUSION

The results show a difference between HFA and controls in the temporal neurodynamics from the ventral attention network to the salience-executive network: a pathway involving cognitive, executive, and emotion-related cortices. We hypothesized that this weaker dynamic pathway is due to a subtle trigger challenging the cognitive state prior to the resting state.

摘要

简介

自闭症谱系障碍(ASD)主要表现为功能和交流障碍以及限制和重复行为。自闭症神经基础的主要假设是大脑整体连接异常,这可以通过功能磁共振成像(fMRI)进行评估。即使在没有任务的情况下,大脑也表现出高度的功能连接,称为内在的或静息状态的连接。自闭症患者与对照组之间的大脑全局默认连接尚不清楚,特别是对于高功能的年轻人群。本研究旨在测试高功能自闭症青少年(HFA)是否存在静息状态功能连接异常。

材料与方法

我们对 13 名 HFA 青少年和 13 名智商和年龄匹配的对照组进行了静息状态网络(RSN)的空间和时间分析。在空间分析中,我们使用概率独立成分分析(ICA)和置换统计方法来揭示组间 RSN 的差异。在时间分析中,我们应用格兰杰因果关系来发现时间神经动力学的差异。

结果

对照组和 HFA 表现出非常相似的静息状态连接模式和强度。我们没有发现 HFA 青少年和对照组之间在空间静息状态连接方面有任何显著差异。然而,在这种连接的时间动力学中,我们确实发现了起源于颞叶和前额叶皮质的 RSN 的因果效应特性存在差异。

结论

研究结果表明,HFA 与对照组之间在从腹侧注意网络到突显-执行网络的时间神经动力学方面存在差异:这是一条涉及认知、执行和情绪相关皮质的通路。我们假设,这种较弱的动态通路是由于在静息状态之前的认知状态受到微妙触发的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1c2/5822569/1333bab4e5db/BRB3-8-e00878-g001.jpg

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