Institute of Electrical Engineering, YanShan University, Qinhuangdao, 066000, China.
College of Electronic & Information Engineering, Hebei University, Baoding, China.
Neuroimage Clin. 2020;26:102251. doi: 10.1016/j.nicl.2020.102251. Epub 2020 Mar 20.
Autism spectrum disorder (ASD) is associated with altered patterns of over- and under-connectivity of neural circuits. Age-related changes in neural connectivities remain unclear for autistic children as compared with normal children. In this study, a parts-based network-decomposition technique, known as non-negative matrix factorization (NMF), was applied to identify a set of possible abnormal connectivity patterns in brains affected by ASD, using resting-state electroencephalographic (EEG) data. Age-related changes in connectivities in both inter- and intra-hemispheric areas were studied in a total of 256 children (3-6 years old), both with and without ASD. The findings included the following: (1) the brains of children affected by ASD were characterized by a general trend toward long-range under-connectivity, particularly in interhemispheric connections, combined with short-range over-connectivity; (2) long-range connections were often associated with slower rhythms (δ and θ), whereas synchronization of short-range networks tended to be associated with faster frequencies (α and β); and (3) the α-band specific patterns of interhemispheric connections in ASD could be the most prominent during early childhood neurodevelopment. Therefore, NMF would be useful for further exploring the early childhood developmental functional connectivity of children aged 3-6 with ASD as well as with typical development. Additionally, long-range interhemispheric alterations in connectivity may represent a potential biomarker for the identification of ASD.
自闭症谱系障碍 (ASD) 与神经回路的过度和不足连接模式改变有关。与正常儿童相比,自闭症儿童的神经连接随年龄的变化尚不清楚。在这项研究中,应用基于部分的网络分解技术,即非负矩阵分解 (NMF),使用静息态脑电图 (EEG) 数据来识别受 ASD 影响的大脑中可能存在的一组异常连接模式。研究了共 256 名(3-6 岁)儿童的大脑半球间和半球内区域的连接随年龄的变化,这些儿童既有 ASD 也没有 ASD。研究结果包括:(1) ASD 患儿的大脑表现出长程下连接的普遍趋势,特别是在半球间连接中,同时伴有短程上连接;(2)长程连接通常与较慢的节律(δ 和 θ)相关,而短程网络的同步性往往与较快的频率(α 和 β)相关;(3) ASD 中半球间连接的 α 波段特定模式在儿童早期神经发育期间最为突出。因此,NMF 对于进一步探索 3-6 岁 ASD 儿童以及典型发育儿童的早期儿童发育功能连接具有重要意义。此外,连接的长程半球间改变可能代表 ASD 识别的潜在生物标志物。