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Emergence of Persistent Networks in Long-Term Intracranial EEG Recordings

机译:长期颅内脑电图记录中持久性网络的出现。

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摘要

Over the past two decades, the increased ability to analyze network relationships among neural structures has provided novel insights into brain function. Most network approaches, however, focus on static representations of the brain's physical or statistical connectivity. Few studies have examined how brain functional networks evolve spontaneously over long epochs of continuous time. To address this, we examine functional connectivity networks deduced from continuous long-term electrocorticogram recordings. For a population of six human patients, we identify a persistent pattern of connections that form a frequency-band-dependent network template, and a set of core connections that appear frequently and together. These structures are robust, emerging from brief time intervals (∼100 s) regardless of cognitive state. These results suggest that a metastable, frequency-band-dependent scaffold of brain connectivity exists from which transient activity emerges and recedes.
机译:在过去的二十年中,分析神经结构之间的网络关系的能力增强,已为大脑功能提供了新颖的见解。但是,大多数网络方法都专注于大脑物理或统计连接的静态表示。很少有研究检查大脑功能网络如何在连续的长时间内自发地进化。为了解决这个问题,我们研究了从连续的长期皮质电图记录推断出的功能连接网络。对于六名人类患者,我们确定了一个持久的连接模式,这些连接形成了一个依赖于频带的网络模板,以及一组经常出现并一起出现的核心连接。这些结构是健壮的,从短暂的时间间隔(约100 s)出现,而不管认知状态如何。这些结果表明存在一个大脑连接的亚稳态的,依赖于频带的支架,瞬态活动从该支架中出现和消退。

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