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The relevance of task-irrelevant sounds: hemispheric lateralization and interactions with task-relevant streams

机译:与任务无关的声音的相关性:半球偏侧化以及与任务相关流的交互

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摘要

The effect of unattended task-irrelevant auditory stimuli in the context of an auditory task is not well understood. Using human functional magnetic resonance imaging (fMRI) we compared blood oxygenation level dependent (BOLD) signal changes resulting from monotic task-irrelevant stimulation, monotic task-relevant stimulation and dichotic stimulation with an attended task-relevant stream to one ear and an unattended task-irrelevant stream to the other ear simultaneously. We found strong bilateral BOLD signal changes in the auditory cortex (AC) resulting from monotic stimulation in a passive listening condition. Consistent with previous work, these responses were largest on the side contralateral to stimulation. AC responses to the unattended (task-irrelevant) sounds were preferentially contralateral and strongest for the most difficult condition. Stronger bilateral AC responses occurred during monotic passive-listening than to an unattended stream presented in a dichotic condition, with attention focused on one ear. Additionally, the visual cortex showed negative responses compared to the baseline in all stimulus conditions including passive listening. Our results suggest that during dichotic listening, with attention focused on one ear, (1) the contralateral and the ipsilateral auditory pathways are suppressively interacting; and (2) cross-modal inhibition occurs during purely acoustic stimulation. These findings support the existence of response suppressions within and between modalities in the presence of competing interfering stimuli.
机译:对于听觉任务而言,无人值守的与任务无关的听觉刺激的效果尚不清楚。使用人类功能磁共振成像(fMRI),我们比较了与单任务无关刺激,单任务相关刺激和二项刺激的血液氧合水平依赖性(BOLD)信号变化以及与一只耳朵和无人值守的有人照看的任务相关流-不相关的流同时流向另一只耳朵。我们发现,在被动听觉条件下,单声道刺激会导致听觉皮层(AC)的双侧BOLD信号发生强烈变化。与以前的工作一致,这些反应在刺激对侧最大。 AC对无人值守(与任务无关)的声音的响应最好是对侧的,并且在最困难的情况下最强。在单眼被动听觉中,双侧交流反应比在分叉情况下出现的无人看管流更强,注意力集中在一只耳朵上。此外,在包括被动聆听在内的所有刺激条件下,与基线相比,视觉皮层均显示出负面反应。我们的研究结果表明,在进行二项式听觉时,注意力集中在一只耳朵上,(1)对侧和同侧听觉通路抑制性地相互作用; (2)在纯声刺激过程中会发生交叉模态抑制。这些发现支持在存在竞争性干扰刺激的情况下在模态内部和模态之间存在反应抑制。

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