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阿尔法脑波振荡与对未关注刺激的成功抑制有关。

Alpha oscillations correlate with the successful inhibition of unattended stimuli.

机构信息

Radboud University Nijmegen, The Netherlands.

出版信息

J Cogn Neurosci. 2011 Sep;23(9):2494-502. doi: 10.1162/jocn.2010.21557. Epub 2010 Aug 3.

Abstract

Because the human visual system is continually being bombarded with inputs, it is necessary to have effective mechanisms for filtering out irrelevant information. This is partly achieved by the allocation of attention, allowing the visual system to process relevant input while blocking out irrelevant input. What is the physiological substrate of attentional allocation? It has been proposed that alpha activity reflects functional inhibition. Here we asked if inhibition by alpha oscillations has behavioral consequences for suppressing the perception of unattended input. To this end, we investigated the influence of alpha activity on motion processing in two attentional conditions using magneto-encephalography. The visual stimuli used consisted of two random-dot kinematograms presented simultaneously to the left and right visual hemifields. Subjects were cued to covertly attend the left or right kinematogram. After 1.5 sec, a second cue tested whether subjects could report the direction of coherent motion in the attended (80%) or unattended hemifield (20%). Occipital alpha power was higher contralateral to the unattended side than to the attended side, thus suggesting inhibition of the unattended hemifield. Our key finding is that this alpha lateralization in the 20% invalidly cued trials did correlate with the perception of motion direction: Subjects with pronounced alpha lateralization were worse at detecting motion direction in the unattended hemifield. In contrast, lateralization did not correlate with visual discrimination in the attended visual hemifield. Our findings emphasize the suppressive nature of alpha oscillations and suggest that processing of inputs outside the field of attention is weakened by means of increased alpha activity.

摘要

由于人类视觉系统不断受到输入信息的冲击,因此需要有有效的机制来过滤掉不相关的信息。这在一定程度上是通过注意力的分配来实现的,使得视觉系统可以处理相关的输入,同时屏蔽不相关的输入。注意力分配的生理基础是什么?有人提出,α 活动反映了功能抑制。在这里,我们想知道α 振荡的抑制是否会对抑制未注意输入的感知产生行为后果。为此,我们使用脑磁图研究了两种注意条件下α 活动对运动处理的影响。使用的视觉刺激由两个随机点运动图同时呈现给左、右眼半视野。被试被提示隐蔽地注意左或右运动图。1.5 秒后,第二个提示测试被试是否能够报告注意(80%)或未注意(20%)半视野中的连贯运动方向。枕叶α 功率在未注意侧比在注意侧更高,这表明未注意半视野受到抑制。我们的主要发现是,在 20%无效提示试验中这种α 侧化与运动方向的感知相关:α 侧化明显的被试在未注意半视野中检测运动方向的能力更差。相比之下,侧化与注意视觉半视野中的视觉辨别力无关。我们的研究结果强调了α 振荡的抑制性质,并表明通过增加α 活动,注意力之外的输入的处理能力被削弱。

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