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在空闲时使注意力系统对分心脱敏:视觉注意力领域的一种新的潜在学习现象。

Desensitizing the attention system to distraction while idling: A new latent learning phenomenon in the visual attention domain.

机构信息

Center for Mind/Brain Sciences, University of Trento.

Department of Psychology, University of Fribourg.

出版信息

J Exp Psychol Gen. 2018 Dec;147(12):1827-1850. doi: 10.1037/xge0000503. Epub 2018 Oct 25.

Abstract

For the good and the bad, the world around us is full of distraction. In particular, onset stimuli that appear abruptly in the scene grab attention, thus disrupting the ongoing task. Different cognitive mechanisms for distractor filtering have been proposed, but prevalent accounts share the idea that filtering is accomplished to shield target processing from interference. Here we provide novel evidence that challenges this view, as passive exposure to a repeating visual onset is sufficient to trigger learning-dependent mechanisms to filter the unwanted stimulation. In other words, our study shows that during passive exposure the cognitive system is capable of learning about the characteristics of the salient yet irrelevant stimulation, and to reduce the responsiveness of the attention system to it, thus significantly decreasing the impact of the distractor upon start of an active task. However, despite passive viewing efficiently attenuates the spatial capture of attention, a short-lived performance cost is found when the distractor is initially encountered within the context of the active task. This cost, which dissipates in a few trials, likely reflects the need to familiarize with the distractor, already seen during passive viewing, in the new context of the active task. Although top-down inhibitory signals can be applied to distractors for the successful completion of goal-directed behavior, our results emphasize the role of more automatic habituation mechanisms for distraction exclusion based on a neural model of the history of the irrelevant stimulation. (PsycINFO Database Record (c) 2018 APA, all rights reserved).

摘要

对于好的和坏的,我们周围的世界充满了干扰。特别是,突然出现在场景中的起始刺激会引起注意,从而干扰正在进行的任务。已经提出了用于干扰过滤的不同认知机制,但流行的解释都认为过滤是为了防止目标处理受到干扰。在这里,我们提供了新的证据,挑战了这种观点,因为被动暴露于重复的视觉起始足以引发学习依赖性机制来过滤不需要的刺激。换句话说,我们的研究表明,在被动暴露期间,认知系统能够了解突出但不相关刺激的特征,并降低注意力系统对其的反应性,从而显著降低干扰对主动任务开始的影响。然而,尽管被动观看有效地减弱了空间注意的捕获,但在主动任务的背景下最初遇到干扰时会发现短暂的性能成本。这种成本在几次试验中消散,可能反映了需要在主动任务的新背景下熟悉已经在被动观看中看到的干扰。尽管可以应用自上而下的抑制信号来干扰以完成目标导向行为,但我们的结果强调了基于无关刺激历史的神经模型的更自动习惯机制在排除干扰方面的作用。

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