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Dynamics of Distraction: Competition among Auditory Streams Modulates Gain and Disrupts Inter-Trial Phase Coherence in the Human Electroencephalogram

机译:分心动力学:听觉流之间的竞争调节增益,破坏人类脑电图的试验间相干性。

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摘要

Auditory distraction is a failure to maintain focus on a stream of sounds. We investigated the neural correlates of distraction in a selective-listening pitch-discrimination task with high (competing speech) or low (white noise) distraction. High-distraction impaired performance and reduced the N1 peak of the auditory Event-Related Potential evoked by probe tones. In a series of simulations, we explored two theories to account for this effect: disruption of sensory gain or a disruption of inter-trial phase consistency. When compared to these simulations, our data were consistent with both effects of distraction. Distraction reduced the gain of the auditory evoked potential and disrupted the inter-trial phase consistency with which the brain responds to stimulus events. Tones at a non-target, unattended frequency were more susceptible to the effects of distraction than tones within an attended frequency band.
机译:听觉分心是无法将注意力集中在声音流上。我们调查了选择性听音高低歧视任务中高(竞争性语音)或低(白噪声)注意力分散的神经相关性。高分心会削弱性能,并降低探针音调所引起的听觉事件相关电位的N1峰。在一系列的模拟中,我们探索了两种理论来解释这种影响:感觉增益的破坏或试验间相位一致性的破坏。与这些模拟进行比较时,我们的数据与分心的两种效果均一致。注意力分散会降低听觉诱发电位的增益,并破坏大脑对刺激事件做出反应的试验间相一致性。与目标频段内的音调相比,处于非目标,无人看管的频率的音调更容易分散注意力。

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