Department of Psychology, University of Bologna, Italy.
Department of Psychology, University of Bologna, Italy.
Biol Psychol. 2023 Feb;177:108512. doi: 10.1016/j.biopsycho.2023.108512. Epub 2023 Jan 29.
Past work has shown that when a peripheral sound captures our attention, it activates the contralateral visual cortex as revealed by an event-related potential component labelled the auditory-evoked contralateral occipital positivity (ACOP). This cross-modal activation of the visual cortex has been observed even when the sounds were not relevant to the ongoing task (visual or auditory), suggesting that peripheral sounds automatically activate the visual cortex. However, it is unclear whether top-down factors such as visual working memory (VWM) load and endogenous attention, which modulate the impact of task-irrelevant information, may modulate this spatially-specific component. Here, we asked participants to perform a lateralized VWM task (change detection), whose performance is supported by both endogenous spatial attention and VWM storage. A peripheral sound that was unrelated to the ongoing task was delivered during the retention interval. The amplitude of sound-elicited ACOP was analyzed as a function of the spatial correspondence with the cued hemifield, and of the memory array set-size. The typical ACOP modulation was observed over parieto-occipital sites in the 280-500 ms time window after sound onset. Its amplitude was not affected by VWM load but was modulated when the location of the sound did not correspond to the hemifield (right or left) that was cued for the change detection task. Our results suggest that sound-elicited activation of visual cortices, as reflected in the ACOP modulation, is unaffected by visual working memory load. However, endogenous spatial attention affects the ACOP, challenging the hypothesis that it reflects an automatic process.
过去的工作表明,当周围的声音引起我们的注意时,它会激活对侧视觉皮层,这在事件相关电位成分中表现为听觉诱发对侧枕部正性波(ACOP)。即使声音与正在进行的任务(视觉或听觉)无关,这种视觉皮层的跨模态激活也被观察到,这表明周围的声音会自动激活视觉皮层。然而,目前尚不清楚自上而下的因素(如视觉工作记忆(VWM)负载和内源性注意)是否会调节这种空间特异性成分,因为这些因素会调节与任务无关的信息的影响。在这里,我们要求参与者执行一个侧化的 VWM 任务(变化检测),该任务的性能由内源性空间注意和 VWM 存储共同支持。在保持间隔期间,会发出与正在进行的任务无关的外围声音。作为与提示的半视野的空间对应以及记忆数组集大小的函数,分析了声音诱发的 ACOP 的幅度。在声音起始后 280-500 毫秒的时间窗口中,在顶枕部位置观察到典型的 ACOP 调制。其幅度不受 VWM 负载的影响,但当声音的位置与用于变化检测任务的提示的半视野(右或左)不对应时,会被调制。我们的结果表明,声音诱发的视觉皮层激活,如 ACOP 调制所反映的,不受视觉工作记忆负载的影响。然而,内源性空间注意会影响 ACOP,这挑战了它反映自动过程的假设。