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枕部α和γ 振荡支持处理刺激值关联的互补机制。

Occipital Alpha and Gamma Oscillations Support Complementary Mechanisms for Processing Stimulus Value Associations.

机构信息

Radboud University Nijmegen.

University of Oxford.

出版信息

J Cogn Neurosci. 2018 Jan;30(1):119-129. doi: 10.1162/jocn_a_01185. Epub 2017 Sep 11.

Abstract

Selective attention is reflected neurally in changes in the power of posterior neural oscillations in the alpha (8-12 Hz) and gamma (40-100 Hz) bands. Although a neural mechanism that allows relevant information to be selectively processed has its advantages, it may lead to lucrative or dangerous information going unnoticed. Neural systems are also in place for processing rewarding and punishing information. Here, we examine the interaction between selective attention (left vs. right) and stimulus's learned value associations (neutral, punished, or rewarded) and how they compete for control of posterior neural oscillations. We found that both attention and stimulus-value associations influenced neural oscillations. Whereas selective attention had comparable effects on alpha and gamma oscillations, value associations had dissociable effects on these neural markers of attention. Salient targets (associated with positive and negative outcomes) hijacked changes in alpha power-increasing hemispheric alpha lateralization when salient targets were attended, decreasing it when they were being ignored. In contrast, hemispheric gamma-band lateralization was specifically abolished by negative distractors. Source analysis indicated occipital generators of both attentional and value effects. Thus, posterior cortical oscillations support both the ability to selectively attend while at the same time retaining the ability to remain sensitive to valuable features in the environment. Moreover, the versatility of our attentional system to respond separately to salient from merely positively valued stimuli appears to be carried out by separate neural processes reflected in different frequency bands.

摘要

选择性注意在神经上反映为后颅神经振荡的功率变化,在 alpha(8-12 Hz)和 gamma(40-100 Hz)频段。虽然允许相关信息被选择性处理的神经机制有其优势,但它可能导致有利润或危险的信息被忽视。神经系统也在处理奖励和惩罚信息。在这里,我们研究了选择性注意(左与右)和刺激的学习价值关联(中性、惩罚或奖励)之间的相互作用,以及它们如何竞争控制后颅神经振荡。我们发现,注意力和刺激价值关联都影响神经振荡。虽然选择性注意对 alpha 和 gamma 振荡都有类似的影响,但价值关联对这些注意力的神经标记物有可分离的影响。突出的目标(与正、负结果相关联)劫持了 alpha 功率的变化,增加了注意时的半球 alpha 侧化,忽略时则降低了它。相比之下,负干扰物特异性地消除了半球 gamma 带的侧化。源分析表明,注意力和价值效应都有枕叶发生器。因此,后皮质振荡既支持选择性注意的能力,同时又保持对环境中有价值特征的敏感性。此外,我们的注意力系统能够分别对突出的而不仅仅是正价值的刺激做出反应,这似乎是由不同频率带中反映的不同神经过程来实现的。

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