首页> 美国卫生研究院文献>The Journal of Neuroscience >Simultaneous EEG-fMRI Reveals Temporal Evolution of Coupling between Supramodal Cortical Attention Networks and the Brainstem
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Simultaneous EEG-fMRI Reveals Temporal Evolution of Coupling between Supramodal Cortical Attention Networks and the Brainstem

机译:同时脑电图功能磁共振成像揭示超峰皮质注意网络和脑干之间的耦合的时间演变。

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摘要

Cortical and subcortical networks have been identified that are commonly associated with attention and task engagement, along with theories regarding their functional interaction. However, a link between these systems has not yet been demonstrated in healthy humans, primarily because of data acquisition and analysis limitations. We recorded simultaneous EEG–fMRI while subjects performed auditory and visual oddball tasks and used these data to investigate the BOLD correlates of single-trial EEG variability at latencies spanning the trial. We focused on variability along task-relevant dimensions in the EEG for identical stimuli and then combined auditory and visual data at the subject level to spatially and temporally localize brain regions involved in endogenous attentional modulations. Specifically, we found that anterior cingulate cortex (ACC) correlates strongly with both early and late EEG components, whereas brainstem, right middle frontal gyrus (rMFG), and right orbitofrontal cortex (rOFC) correlate significantly only with late components. By orthogonalizing with respect to event-related activity, we found that variability in insula and temporoparietal junction is reflected in reaction time variability, rOFC and brainstem correlate with residual EEG variability, and ACC and rMFG are significantly correlated with both. To investigate interactions between these correlates of temporally specific EEG variability, we performed dynamic causal modeling (DCM) on the fMRI data. We found strong evidence for reciprocal effective connections between the brainstem and cortical regions. Our results support the adaptive gain theory of locus ceruleus–norepinephrine (LC–NE) function and the proposed functional relationship between the LC–NE system, right-hemisphere ventral attention network, and P300 EEG response.
机译:已经确定了通常与注意力和任务投入相关的皮质和皮质下网络,以及有关其功能相互作用的理论。但是,这些系统之间的联系尚未在健康人类中得到证实,这主要是由于数据采集和分析的局限性。我们记录了同时进行的脑电图–功能磁共振成像,而受试者执行了听觉和视觉上的奇异球任务,并使用这些数据调查了整个试验的潜伏期中单次试验脑电图变异性的BOLD相关性。我们针对相同的刺激集中于脑电图中与任务相关的维度上的可变性,然后在对象水平上组合听觉和视觉数据,以时空定位参与内源性注意力调节的大脑区域。具体来说,我们发现前扣带回皮层(ACC)与早期和晚期EEG组件都密切相关,而脑干,右中额回(rMFG)和右眶额皮层(rOFC)仅与晚期组件显着相关。通过正交于事件相关的活动,我们发现在岛顶和颞顶交界处的变异性反映在反应时间的变异性中,rOFC和脑干与残余的脑电图变异性相关,而ACC和rMFG与两者显着相关。为了研究时间特异性EEG变异性的这些相关因素之间的相互作用,我们对fMRI数据进行了动态因果建模(DCM)。我们发现脑干和皮层区域之间相互有效联系的有力证据。我们的结果支持蓝斑-去甲肾上腺素功能(LC-NE)的自适应增益理论,以及LC-NE系统,右半球腹侧注意网络和P300 EEG反应之间拟议的功能关系。

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