首页> 美国卫生研究院文献>eNeuro >Two Sides of the Same Coin: Distinct Sub-Bands in the α Rhythm Reflect Facilitation and Suppression Mechanisms during Auditory Anticipatory Attention
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Two Sides of the Same Coin: Distinct Sub-Bands in the α Rhythm Reflect Facilitation and Suppression Mechanisms during Auditory Anticipatory Attention

机译:同一枚硬币的两个侧面:α节奏中不同的子带反映了听觉预期注意过程中的促进和抑制机制

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摘要

Anticipatory attention results in enhanced response to task-relevant stimulus, and reduced processing of unattended input, suggesting the deployment of distinct facilitatory and suppressive mechanisms. α Oscillations are a suitable candidate for supporting these mechanisms. We aimed to examine the role of α oscillations, with a special focus on peak frequencies, in facilitatory and suppressive mechanisms during auditory anticipation, within the auditory and visual regions. Magnetoencephalographic (MEG) data were collected from fourteen healthy young human adults (eight female) performing an auditory task in which spatial attention to sounds was manipulated by visual cues, either informative or not of the target side. By incorporating uninformative cues, we could delineate facilitating and suppressive mechanisms. During anticipation of a visually-cued auditory target, we observed a decrease in α power around 9 Hz in the auditory cortices; and an increase around 13 Hz in the visual regions. Only this power increase in high α significantly correlated with behavior. Importantly, within the right auditory cortex, we showed a larger increase in high α power when attending an ipsilateral sound; and a stronger decrease in low α power when attending a contralateral sound. In summary, we found facilitatory and suppressive attentional mechanisms with distinct timing in task-relevant and task-irrelevant brain areas, differentially correlated to behavior and supported by distinct α sub-bands. We provide new insight into the role of the α peak-frequency by showing that anticipatory attention is supported by distinct facilitatory and suppressive mechanisms, mediated in different low and high sub-bands of the α rhythm, respectively.
机译:预期的注意力会导致对与任务相关的刺激的反应增强,并减少对无人值守输入的处理,这表明部署了独特的促进和抑制机制。 α振荡是支持这些机制的合适候选者。我们旨在检查α振荡的作用,特别关注峰值频率在听觉和视觉区域内的听觉预期过程中的促进和抑制机制中。磁脑电图(MEG)数据是从执行听觉任务的十四名健康的年轻人(八名女性)中收集的,这些听觉任务是通过视觉提示来操纵对声音的空间关注的,无论提示是目标端还是有用端。通过引入无用的线索,我们可以描述促进和抑制机制。在预期有视觉提示的听觉目标的过程中,我们观察到听觉皮层中9 Hz附近的α功率降低;并在视觉区域增加约13 Hz。只有高α的功率增加才与行为显着相关。重要的是,在右侧听觉皮层中,当出现同侧声音时,我们显示出较高的高α功率增加;当听到对侧声音时,低α功率的降低更大。总之,我们发现与任务相关和与任务无关的大脑区域具有不同时机的促进性和抑制性注意力机制,与行为差异相关,并且受到不同的α子带的支持。我们通过显示预期的注意力受到不同的促进和抑制机制的支持,从而提供了对α峰值频率的作用的新见解,这些机制分别在不同的α节奏的低和高子带中介导。

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