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前额皮质在自上而下引导的视觉感知过程中调节后顶叶α 振荡。

Prefrontal cortex modulates posterior alpha oscillations during top-down guided visual perception.

机构信息

Helen Wills Neuroscience Institute, University of California, Berkeley, CA 94720;

Department of Psychology, University of Oslo, 0373 Oslo, Norway.

出版信息

Proc Natl Acad Sci U S A. 2017 Aug 29;114(35):9457-9462. doi: 10.1073/pnas.1705965114. Epub 2017 Aug 14.

Abstract

Conscious visual perception is proposed to arise from the selective synchronization of functionally specialized but widely distributed cortical areas. It has been suggested that different frequency bands index distinct canonical computations. Here, we probed visual perception on a fine-grained temporal scale to study the oscillatory dynamics supporting prefrontal-dependent sensory processing. We tested whether a predictive context that was embedded in a rapid visual stream modulated the perception of a subsequent near-threshold target. The rapid stream was presented either rhythmically at 10 Hz, to entrain parietooccipital alpha oscillations, or arrhythmically. We identified a 2- to 4-Hz delta signature that modulated posterior alpha activity and behavior during predictive trials. Importantly, delta-mediated top-down control diminished the behavioral effects of bottom-up alpha entrainment. Simultaneous source-reconstructed EEG and cross-frequency directionality analyses revealed that this delta activity originated from prefrontal areas and modulated posterior alpha power. Taken together, this study presents converging behavioral and electrophysiological evidence for frontal delta-mediated top-down control of posterior alpha activity, selectively facilitating visual perception.

摘要

有意识的视觉感知被认为源于功能特化但广泛分布的皮质区域的选择性同步。有人提出,不同的频带指数不同的典型计算。在这里,我们在精细的时间尺度上探测视觉感知,以研究支持前额叶依赖的感觉处理的振荡动力学。我们测试了一个嵌入在快速视觉流中的预测上下文是否会调节随后的近阈值目标的感知。快速流要么以 10 Hz 的节奏呈现,以引发顶枕部的 alpha 振荡,要么不规则地呈现。我们确定了一个 2 到 4 Hz 的 delta 特征,该特征在预测试验中调节了后部 alpha 活动和行为。重要的是,delta 介导的自上而下的控制减弱了自上而下的 alpha 引发对行为的影响。同时进行的源重建 EEG 和跨频方向分析表明,这种 delta 活动源自前额叶区域,并调节后部 alpha 功率。总之,这项研究提供了行为和电生理证据,证明了前额叶 delta 介导的对后部 alpha 活动的自上而下控制,选择性地促进了视觉感知。

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