Gannon Matthew A, Knapp Ashley A, Adams Thomas G, Long Stephanie M, Parks Nathan A
Department of Psychological Science, University of Arkansas, Fayetteville, Arkansas, United States of America.
Department of Psychiatry, Yale University, New Haven, Connecticut, United States of America.
PLoS One. 2016 Sep 8;11(9):e0162190. doi: 10.1371/journal.pone.0162190. eCollection 2016.
Neural mechanisms of selective attention must be capable of adapting to variation in the absolute size of an attended stimulus in the ever-changing visual environment. To date, little is known regarding how attentional selection interacts with fluctuations in the spatial expanse of an attended object. Here, we use event-related potentials (ERPs) to investigate the scaling of attentional enhancement and suppression across the visual field. We measured ERPs while participants performed a task at fixation that varied in its attentional demands (attentional load) and visual angle (1.0° or 2.5°). Observers were presented with a stream of task-relevant stimuli while foveal, parafoveal, and peripheral visual locations were probed by irrelevant distractor stimuli. We found two important effects in the N1 component of visual ERPs. First, N1 modulations to task-relevant stimuli indexed attentional selection of stimuli during the load task and further correlated with task performance. Second, with increased task size, attentional modulation of the N1 to distractor stimuli showed a differential pattern that was consistent with a scaling of attentional selection. Together, these results demonstrate that the size of an attended stimulus scales the profile of attentional selection across the visual field and provides insights into the attentional mechanisms associated with such spatial scaling.
在不断变化的视觉环境中,选择性注意的神经机制必须能够适应被注意刺激绝对大小的变化。迄今为止,关于注意选择如何与被注意对象空间范围的波动相互作用,我们知之甚少。在这里,我们使用事件相关电位(ERP)来研究整个视野中注意增强和抑制的缩放情况。我们在参与者执行一项注视任务时测量ERP,该任务的注意需求(注意负荷)和视角(1.0°或2.5°)有所不同。在中央凹、近中央凹和周边视觉位置被无关干扰刺激探测时,向观察者呈现一系列与任务相关的刺激。我们在视觉ERP的N1成分中发现了两个重要效应。首先,对与任务相关刺激的N1调制在负荷任务期间索引了刺激的注意选择,并且进一步与任务表现相关。其次,随着任务规模的增加,对干扰刺激的N1注意调制呈现出一种差异模式,这与注意选择的缩放一致。总之,这些结果表明,被注意刺激的大小缩放了整个视野中注意选择的概况,并为与这种空间缩放相关的注意机制提供了见解。