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感觉皮层注意控制的缓慢波动。

Slow fluctuations in attentional control of sensory cortex.

机构信息

Department of Psychology, University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

J Cogn Neurosci. 2011 Feb;23(2):460-70. doi: 10.1162/jocn.2010.21443. Epub 2010 Feb 10.

Abstract

Top-down control of visual sensory cortex has long been tied to the orienting of visual spatial attention on a rapid, moment-to-moment basis. Here, we examined whether sensory responses in visual cortex are also modulated by natural and comparatively slower fluctuations in whether or not one is paying attention to the task at hand. Participants performed a simple visual discrimination task at fixation as the ERPs to task-irrelevant probes in the upper visual periphery were recorded. At random intervals, participants were stopped and asked to report on their attentional state at the time of stoppage-either "on-task" or "off-task." ERPs to the probes immediately preceding these subjective reports were then examined as a function of whether attention was in an on-task versus off-task state. We found that sensory-evoked responses to the probes were significantly attenuated during off-task relative to on-task states, as measured by the visual P1 ERP component. In two additional experiments, we replicated this effect while (1) finding that off-task sensory attenuation extends to the auditory domain, as measured by the auditory N1 ERP component, and (2) eliminating state-dependent shifts in general arousal as a possible explanation for the effects. Collectively, our findings suggest that sensory gain control in cortex is yoked to the natural ebb and flow in how much attention we pay to the current task over time.

摘要

自上而下的视觉感知皮层控制长期以来一直与视觉空间注意力的快速、瞬间定向联系在一起。在这里,我们研究了视觉皮层的感觉反应是否也受到自然的、相对较慢的注意力是否集中在手头任务上的波动的调节。参与者在固定位置执行简单的视觉辨别任务,同时记录上视觉外围的与任务无关的探测的 ERP。在随机间隔时间,参与者被停止并被要求报告停止时的注意力状态——“在任务中”或“不在任务中”。然后,根据注意力是在任务中还是不在任务中,检查这些主观报告之前的探测的 ERP。我们发现,与在任务中状态相比,在不在任务中状态下,探测的感觉诱发反应明显减弱,如视觉 P1 ERP 成分所示。在另外两项实验中,我们复制了这一效应,同时(1)发现不在任务中的感觉衰减扩展到听觉域,如听觉 N1 ERP 成分所示,(2)排除了状态相关的一般觉醒变化作为可能的解释。总的来说,我们的发现表明,皮层中的感觉增益控制与我们随着时间的推移对当前任务的注意力自然起伏有关。

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