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区域特异性的α振荡活动调制有助于促进视觉和听觉模式的加工。

Region-specific modulations in oscillatory alpha activity serve to facilitate processing in the visual and auditory modalities.

机构信息

Department of Psychiatry, Academic Medical Center, University of Amsterdam, The Netherlands.

Radboud University Medical Centre Nijmegen, Department of Psychiatry; Radboud University Nijmegen, Donders Institute for Brain, Cognition and Behaviour, Centre for Cognitive Neuroimaging; Department of Neurology, University of California, San Francisco, California.

出版信息

Neuroimage. 2014 Feb 15;87:356-62. doi: 10.1016/j.neuroimage.2013.10.052. Epub 2013 Nov 2.

Abstract

There have been a number of studies suggesting that oscillatory alpha activity (~10 Hz) plays a pivotal role in attention by gating information flow to relevant sensory regions. The vast majority of these studies have looked at shifts of attention in the spatial domain and only in a single modality (often visual or sensorimotor). In the current magnetoencephalography (MEG) study, we investigated the role of alpha activity in the suppression of a distracting modality stream. We used a cross-modal attention task where visual cues indicated whether participants had to judge a visual orientation or discriminate the auditory pitch of an upcoming target. The visual and auditory targets were presented either simultaneously or alone, allowing us to behaviorally gauge the "cost" of having a distractor present in each modality. We found that the preparation for visual discrimination (relative to pitch discrimination) resulted in a decrease of alpha power (9-11 Hz) in the early visual cortex, with a concomitant increase in alpha/beta power (14-16 Hz) in the supramarginal gyrus, a region suggested to play a vital role in short-term storage of pitch information (Gaab et al., 2003). On a trial-by-trial basis, alpha power over the visual areas was significantly correlated with increased visual discrimination times, whereas alpha power over the precuneus and right superior temporal gyrus was correlated with increased auditory discrimination times. However, these correlations were only significant when the targets were paired with distractors. Our work adds to increasing evidence that the top-down (i.e. attentional) modulation of alpha activity is a mechanism by which stimulus processing can be gated within the cortex. Here, we find that this phenomenon is not restricted to the domain of spatial attention and can be generalized to other sensory modalities than vision.

摘要

已有多项研究表明,振荡 alpha 活动(~10 Hz)通过将信息流引导至相关感觉区域,在注意力中发挥关键作用。这些研究绝大多数都关注空间域注意力的转移,且仅在单一模态(通常是视觉或感觉运动)中进行。在当前的脑磁图(MEG)研究中,我们研究了 alpha 活动在抑制干扰模态流中的作用。我们使用了一种跨模态注意任务,其中视觉线索指示参与者是否必须判断视觉方向或辨别即将出现的目标的听觉音高。视觉和听觉目标要么同时呈现,要么单独呈现,这使我们能够从行为上衡量每种模态中存在干扰物的“代价”。我们发现,相对于音高辨别,视觉辨别(相对于音高辨别)的准备导致早期视觉皮层中的 alpha 功率(9-11 Hz)降低,同时在缘上回(被认为在音高信息的短期存储中起着至关重要的作用的区域)中的 alpha / beta 功率(14-16 Hz)增加。在逐次试验的基础上,视觉区域的 alpha 功率与视觉辨别时间的增加显着相关,而顶叶内上回和右侧颞上回的 alpha 功率与听觉辨别时间的增加相关。然而,只有当目标与干扰物配对时,这些相关性才具有统计学意义。我们的工作增加了越来越多的证据,即 alpha 活动的自上而下(即注意力)调制是在皮层内对刺激处理进行门控的一种机制。在这里,我们发现这种现象不仅限于空间注意力的领域,并且可以推广到视觉以外的其他感觉模态。

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