Pagnotta Mattia F, Pascucci David, Plomp Gijs
Perceptual Networks Group, Department of Psychology, University of Fribourg, Fribourg, Switzerland.
Perceptual Networks Group, Department of Psychology, University of Fribourg, Fribourg, Switzerland; Laboratory of Psychophysics, Brain Mind Institute, School of Life Sciences, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
Neuroimage. 2022 Feb 1;246:118782. doi: 10.1016/j.neuroimage.2021.118782. Epub 2021 Dec 5.
Selective attention is a fundamental cognitive mechanism that allows our brain to preferentially process relevant sensory information, while filtering out distracting information. Attention is thought to flexibly gate the communication of irrelevant information through top-down alpha-rhythmic (8-12 Hz) functional connections, which influence early visual processing. However, the dynamic effects of top-down influence on downstream visual processing remain unknown. Here, we used electroencephalography to investigate local and network effects of selective attention while subjects attended to distinct features of identical stimuli. We found that attention-related changes in the functional brain network organization emerge shortly after stimulus onset, accompanied by an overall decrease of functional connectivity. Signatures of attentional selection were evident from a sequential release from alpha-band parietal gating in feature-selective areas. The directed connectivity paths and temporal evolution of this release from gating were consistent with the sensory effect of each feature, providing a neural basis for how visual processing quickly prioritizes relevant information in functionally specialized areas.
选择性注意是一种基本的认知机制,它使我们的大脑能够优先处理相关的感官信息,同时过滤掉干扰信息。人们认为,注意力通过自上而下的阿尔法节律(8 - 12赫兹)功能连接灵活地控制无关信息的传递,这种连接会影响早期视觉处理。然而,自上而下的影响对下游视觉处理的动态效应仍然未知。在这里,我们使用脑电图来研究选择性注意的局部和网络效应,同时让受试者关注相同刺激的不同特征。我们发现,刺激开始后不久,功能性脑网络组织中与注意力相关的变化就会出现,同时伴随着功能连接性的整体下降。注意力选择的特征从特征选择性区域阿尔法波段顶叶门控的顺序释放中明显可见。这种门控释放的定向连接路径和时间演变与每个特征的感官效应一致,为视觉处理如何在功能专门区域快速优先处理相关信息提供了神经基础。