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Cueing distraction: electrophysiological evidence for anticipatory active suppression of distractor location

机译:提示分散注意力:预期积极抑制的热生理证据是分散的位置

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It is well known that processing at upcoming target locations can be facilitated, but mixed results have been obtained regarding the inhibition of irrelevant locations when advance information about distractors is available on a trial-to-trial basis. Here, we provide electrophysiological evidence that distractor locations can be anticipatorily suppressed. In an additional singleton search task, distractor cues were presented before the search display, which were either fully predictive or non-predictive of the location of the upcoming salient colour distractor. TheP(D)component of the event-related potential, a marker of active suppression, was elicited by lateral singletons and smaller following predictive than non-predictive cues, indicating that less suppression was required upon presentation of the distractor when its location was known in advance. Presumably, excitability of regions processing the predictively cued locations was anticipatorily reduced to prevent distraction. This idea was further supported by the finding that larger individual cueing benefits in reaction time were associated with stronger reductions of theP(D). There was no behavioural benefit at the group level, however, and implications for the role of individual differences and for the measurement of inhibition in distractor cueing tasks are discussed. The enhancement of target locations, reflected by theN(T)component, was not modulated by the predictiveness of the cues. Overall, our findings add to a growing literature highlighting the importance of inhibitory mechanisms for the guidance of spatial attention by showing that irrelevant locations can be anticipatorily suppressed in a top-down fashion, reducing the impact of even salient stimuli.
机译:众所周知,可以促进即将到来的目标位置处的处理,但是当有关审判试验基础上的有关分离器的预先信息时,就可以获得对不相关位置的抑制的混合结果。在这里,我们提供电生理证据,即可以预期抑制令人满意的位置。在额外的单例搜索任务中,在搜索显示之前呈现了分散的主题,它是完全预测的或非预测即将到来的突出色调分散的位置。事件相关电位的Thep(d)组分是由外侧单身引起的,在预测性的预测性提示之后较小,表明在其位置呈现时,表明在其位置呈现时需要较少的抑制进步。据推测,加工预测电压位置的区域的兴奋性预处理降低,以防止分心。通过该发现进一步支持该想法,即反应时间的较大个体提示益处与较强的THE(d)的减少有关。然而,讨论了群体级别没有行为益处,并讨论了对个人差异的作用和测量在牵引力的提示任务中的作用的影响。由当时(t)组分反射的目标位置的增强未被提示的预测性调制。总体而言,我们的调查结果增加了一个日益增长的文献,突出了抑制机制来实现空间注意的指导,通过表明可以以自上而下的方式抑制无关的位置,降低了甚至突出的刺激的影响。

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