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大脑视觉皮层的侧化 alpha 活动和慢电位变化,反映了注意的内源性和外源性定向的时间进程。

Lateralized alpha activity and slow potential shifts over visual cortex track the time course of both endogenous and exogenous orienting of attention.

机构信息

Department of Psychology, University of California, San Diego 92092, USA.

Department of Psychology, University of California, San Diego 92092, USA; Department of Psychological and Brain Sciences, Dartmouth College, USA.

出版信息

Neuroimage. 2021 Jan 15;225:117495. doi: 10.1016/j.neuroimage.2020.117495. Epub 2020 Oct 24.

Abstract

Spatial attention can be oriented endogenously, based on current task goals, or exogenously, triggered by salient events in the environment. Based upon literature demonstrating differences in the time course and neural substrates of each type of orienting, these two attention systems are often treated as fundamentally distinct. However, recent studies suggest that rhythmic neural activity in the alpha band (8-13 Hz) and slow waves in the event-related potential (ERP) may emerge over parietal-occipital cortex following both endogenous and exogenous attention cues. To assess whether these neural changes index common processes of spatial attention, we conducted two within-subject experiments varying the two main dimensions over which endogenous and exogenous attention tasks typically differ: cue informativity (spatially predictive vs. non-predictive) and cue format (centrally vs. peripherally presented). This task design allowed us to tease apart neural changes related to top-down goals and those driven by the reflexive orienting of spatial attention, and examine their interactions in a novel hybrid cross-modal attention task. Our data demonstrate that both central and peripheral cues elicit lateralized ERPs over parietal-occipital cortex, though at different points in time, consistent with these ERPs reflecting the orienting of spatial attention. Lateralized alpha activity was also present across all tasks, emerging rapidly for peripheral cues and sustaining longer for spatially informative cues. Overall, these data indicate that distinct slow-wave ERPs index the spatial orienting of endogenous and exogenous attention, while lateralized alpha activity represents a common signature of visual-cortical biasing in anticipation of potential targets across both types of attention.

摘要

空间注意既可以内源性地基于当前任务目标进行定向,也可以外源性地由环境中的显著事件触发。基于文献中展示的每种定向类型的时程和神经基础的差异,这两种注意系统通常被视为截然不同。然而,最近的研究表明,在顶枕叶皮质上,alpha 波段(8-13 Hz)的节律性神经活动和事件相关电位(ERP)中的慢波可能在内外源性注意线索后出现。为了评估这些神经变化是否标志着空间注意的共同过程,我们进行了两项在两个主要维度上变化的被试内实验,这两个维度通常是内源性和外源性注意任务之间的主要差异:线索信息性(空间预测与非预测)和线索格式(中央与外周呈现)。这种任务设计使我们能够梳理与自上而下的目标相关的神经变化,以及由空间注意的反射性定向驱动的神经变化,并在一个新颖的混合跨模态注意任务中检查它们的相互作用。我们的数据表明,中央和外周线索都会在顶枕叶皮质上引起侧化的 ERP,但时间不同,这与这些 ERPs 反映空间注意的定向一致。侧化的 alpha 活动也存在于所有任务中,对于外周线索迅速出现,并在空间信息线索中持续更长时间。总的来说,这些数据表明,不同的慢波 ERP 标志着内源性和外源性注意的空间定向,而侧化的 alpha 活动代表了在两种注意类型中,对潜在目标的视觉皮层偏向的共同特征。

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