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Intrinsic Connectivity Networks Alpha Oscillations and Tonic Alertness: A Simultaneous Electroencephalography/Functional Magnetic Resonance Imaging Study

机译:内部连接网络Alpha振荡和滋补警觉性:同步脑电图/功能磁共振成像研究。

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摘要

Trial-by-trial variability in perceptual performance on identical stimuli has been related to spontaneous fluctuations in ongoing activity of intrinsic functional connectivity networks (ICNs). In a paradigm requiring sustained vigilance for instance, we previously observed that higher prestimulus activity in a cingulo-insular-thalamic network facilitated subsequent perception. Here, we test our proposed interpretation that this network underpins maintenance of tonic alertness. We used simultaneous acquisition of functional magnetic resonance imaging (fMRI) and electroencephalography (EEG) in the absence of any paradigm to test an ensuing hypothesis, namely that spontaneous fluctuations in this ICN′s activity (as measured by fMRI) should show a positive correlation with the electrical signatures of tonic alertness (as recorded by concurrent EEG). We found in human subjects (19 male, 7 female) that activity in a network comprising dorsal anterior cingulate cortex, anterior insula, anterior prefrontal cortex and thalamus is positively correlated with global field power (GFP) of upper alpha band (10–12 Hz) oscillations, the most consistent electrical index of tonic alertness. Conversely, and in line with earlier findings, alpha band power was negatively correlated with activity in another ICN, the so-called dorsal attention network which is most prominently involved in selective spatial attention. We propose that the cingulo-insular-thalamic network serves maintaining tonic alertness through generalized expression of cortical alpha oscillations. Attention is mediated by activity in other systems, e.g., the dorsal attention network for space, selectively disrupts alertness-related suppression and hence manifests as local attenuation of alpha activity.
机译:在相同的刺激下,感知性能的逐次试验变异与内在功能连接网络(ICN)正在进行的活动中的自发波动有关。例如,在需要持续保持警惕的范例中,我们之前观察到,在扣带-丘脑-丘脑网络中较高的刺激前活动促进了随后的感知。在这里,我们测试了我们提出的解释,即该网络支撑了进补警觉性的维持。我们在没有任何范例的情况下使用功能性磁共振成像(fMRI)和脑电图(EEG)的同时采集来检验随后的假设,即该ICN活动的自发波动(通过fMRI测量)应显示正相关具有滋补警觉的电子信号(由并发脑电图记录)。我们在人类受试者(男19例,女7例)中发现,由背扣带前皮质,前岛鞘,前额叶前皮质和丘脑组成的网络中的活动与上阿尔法谱带(10–12 Hz)的整体视野能量(GFP)正相关)振荡,是进补警觉性最一致的电指标。相反,与早期发现一致,阿尔法谱带功率与另一个ICN(所谓的背侧注意力网络)的活动呈负相关,该背侧注意力网络最明显地参与了选择性空间注意力。我们建议扣带-丘脑-丘脑网络通过皮层α振荡的广义表达来维持强直性警觉。注意力是由其他系统的活动介导的,例如空间的背部注意力网络,选择性地破坏了与警觉性有关的抑制,因此表现为α活性的局部减弱。

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