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Salient Sounds Activate Human Visual Cortex Automatically

机译:突出的声音会自动激活人类视觉皮层

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摘要

Sudden changes in the acoustic environment enhance perceptual processing of subsequent visual stimuli that appear in close spatial proximity. Little is known, however, about the neural mechanisms by which salient sounds affect visual processing. In particular, it is unclear whether such sounds automatically activate visual cortex. To shed light on this issue, this study examined event-related brain potentials (ERPs) that were triggered either by peripheral sounds that preceded task-relevant visual targets (Experiment 1) or were presented during purely auditory tasks (Experiments 2–4). In all experiments the sounds elicited a contralateral ERP over the occipital scalp that was localized to neural generators in extrastriate visual cortex of the ventral occipital lobe. The amplitude of this cross-modal ERP was predictive of perceptual judgments about the contrast of colocalized visual targets. These findings demonstrate that sudden, intrusive sounds reflexively activate human visual cortex in a spatially specific manner, even during purely auditory tasks when the sounds are not relevant to the ongoing task.
机译:声学环境的突然变化增强了在空间上接近的后续视觉刺激的感知处理能力。但是,关于凸出的声音影响视觉处理的神经机制知之甚少。尤其不清楚这种声音是否会自动激活视觉皮层。为了阐明这个问题,本研究研究了与事件相关的脑电势(ERP),这些电势是由与任务相关的视觉目标之前的外围声音触发的(实验1)或在纯听觉任务中出现的(实验2-4)。在所有实验中,声音在枕骨头皮上方的对侧视皮层中的神经发生器中产生了在枕骨头皮上的对侧ERP。这种跨模式ERP的幅度可预测有关共定位视觉目标对比度的感知判断。这些发现表明,突然的,刺耳的声音以特定于空间的方式反射性地激活了人类的视觉皮层,即使在纯粹的听觉任务中,当声音与正在进行的任务无关时也是如此。

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