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Localization of spontaneous bursting neuronal activity in the preterm human brain with simultaneous EEG-fMRI

机译:同时脑电图功能磁共振成像在早产人脑中自发性爆发神经元活动的定位

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摘要

Electroencephalographic recordings from the developing human brain are characterized by spontaneous neuronal bursts, the most common of which is the delta brush. Although similar events in animal models are known to occur in areas of immature cortex and drive their development, their origin in humans has not yet been identified. Here, we use simultaneous EEG-fMRI to localise the source of delta brush events in 10 preterm infants aged 32–36 postmenstrual weeks. The most frequent patterns were left and right posterior-temporal delta brushes which were associated in the left hemisphere with ipsilateral BOLD activation in the insula only; and in the right hemisphere in both the insular and temporal cortices. This direct measure of neural and hemodynamic activity shows that the insula, one of the most densely connected hubs in the developing cortex, is a major source of the transient bursting events that are critical for brain maturation.
机译:来自发育中的人脑的脑电图记录的特征是自发性神经元爆发,其中最常见的是三角刷。尽管已知动物模型中的类似事件发生在未成熟皮质的区域并驱动其发展,但尚未确定它们在人类中的起源。在这里,我们使用同时​​进行的EEG-fMRI来定位10个月经后32-36周的早产儿三角洲刷事件的来源。最常见的模式是左和右后颞三角肌刷,它们在左半球仅与同侧BOLD激活有关。在右半球的颞叶皮质和颞叶皮质。对神经和血液动力学活动的这种直接测量表明,在发育中的大脑皮层中,绝缘岛是连接最紧密的集线器之一,它是短暂爆发事件的主要来源,对于大脑的成熟至关重要。

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