Institut des Sciences Cognitives Marc Jeannerod, CNRS UMR 5229, Université Claude Bernard Lyon I, 69675, Bron, France.
Centre de Recherche Cerveau et Cognition, Université Paul Sabatier, UMR 5549, 31062, Toulouse, France.
Nat Commun. 2020 Feb 17;11(1):925. doi: 10.1038/s41467-020-14649-7.
Recent studies suggest that attention samples space rhythmically through oscillatory interactions in the frontoparietal network. How these attentional fluctuations coincide with spatial exploration/displacement and exploitation/selection by a dynamic attentional spotlight under top-down control is unclear. Here, we show a direct contribution of prefrontal attention selection mechanisms to a continuous space exploration. Specifically, we provide a direct high spatio-temporal resolution prefrontal population decoding of the covert attentional spotlight. We show that it continuously explores space at a 7-12 Hz rhythm. Sensory encoding and behavioral reports are increased at a specific optimal phase w/ to this rhythm. We propose that this prefrontal neuronal rhythm reflects an alpha-clocked sampling of the visual environment in the absence of eye movements. These attentional explorations are highly flexible, how they spatially unfold depending both on within-trial and across-task contingencies. These results are discussed in the context of exploration-exploitation strategies and prefrontal top-down attentional control.
最近的研究表明,注意力通过额顶网络中的振荡相互作用有节奏地采样空间。在自上而下的控制下,这些注意力波动如何与动态注意力聚光灯的空间探索/位移以及开发/选择相一致尚不清楚。在这里,我们展示了前额叶注意力选择机制对连续空间探索的直接贡献。具体来说,我们提供了对隐蔽注意力聚光灯的直接高时空分辨率前额叶群体解码。我们表明,它以 7-12Hz 的节律连续探索空间。在这个节律的特定最佳相位 w/,感觉编码和行为报告增加。我们提出,这种前额叶神经元节律反映了在没有眼球运动的情况下对视觉环境的 alpha 时钟采样。这些注意力探索具有高度的灵活性,它们如何在空间上展开取决于试验内和跨任务的偶然性。这些结果在探索-开发策略和前额叶自上而下的注意力控制的背景下进行了讨论。