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Development of network synchronization predicts language abilities

机译:网络同步的发展预测语言能力

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摘要

Synchronization of oscillations among brain areas is understood to mediate network communication supporting cognition, perception and language. How task-dependent synchronization during word production develops throughout childhood and adolescence, as well as how such network coherence is related to the development of language abilities, remains poorly understood. To address this, we recorded magnetoencephalography (MEG) while 73 participants aged 4 – 18 years performed a verb generation task. Atlas-guided source reconstruction was performed, and phase synchronization among regions was calculated. Task-dependent increases in synchronization were observed in the theta, alpha and beta frequency ranges, and network synchronization differences were observed between age groups. Task-dependent synchronization was strongest in the theta band, as were differences between age groups. Network topologies were calculated for brain regions associated with verb generation, and were significantly associated with both age and language abilities. These findings establish the maturational trajectory of network synchronization underlying expressive language abilities throughout childhood and adolescence, and provide the first evidence for an association between large-scale neurophysiological network synchronization and individual differences in the development of language abilities.
机译:大脑区域之间的振荡同步被理解为介导支持认知,感知和语言的网络通信。在整个儿童期和青少年期,单词生成过程中与任务相关的同步如何发展,以及这种网络连贯性如何与语言能力的发展相关,仍然知之甚少。为了解决这个问题,我们记录了脑磁图(MEG),同时73名4至18岁的参与者执行了动词生成任务。进行了Atlas制导的源重建,并计算了区域之间的相位同步。在θ,α和β频率范围内观察到任务相关的同步增加,并且在年龄组之间观察到网络同步差异。任务相关的同步在θ带中最强,年龄组之间的差异也是如此。网络拓扑是针对与动词生成相关的大脑区域进行计算的,并且与年龄和语言能力显着相关。这些发现建立了整个童年和青春期表达语言能力基础的网络同步的成熟轨迹,并为大规模神经生理网络同步与语言能力发展中的个体差异之间的关联提供了第一个证据。

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