Department of Psychology, The Chinese University of Hong Kong, Shatin, Hong Kong SAR.
The Brain and Mind Institute, The Chinese University of Hong Kong, Shatin, Hong Kong SAR.
Soc Cogn Affect Neurosci. 2021 Jan 18;16(1-2):58-71. doi: 10.1093/scan/nsaa077.
The idea that external rhythms synchronize attention cross-modally has attracted much interest and scientific inquiry. Yet, whether associated attentional modulations are indeed rhythmical in that they spring from and map onto an underlying meter has not been clearly established. Here we tested this idea while addressing the shortcomings of previous work associated with confounding (i) metricality and regularity, (ii) rhythmic and temporal expectations or (iii) global and local temporal effects. We designed sound sequences that varied orthogonally (high/low) in metricality and regularity and presented them as task-irrelevant auditory background in four separate blocks. The participants' task was to detect rare visual targets occurring at a silent metrically aligned or misaligned temporal position. We found that target timing was irrelevant for reaction times and visual event-related potentials. High background regularity and to a lesser extent metricality facilitated target processing across metrically aligned and misaligned positions. Additionally, high regularity modulated auditory background frequencies in the EEG recorded over occipital cortex. We conclude that external rhythms, rather than synchronizing attention cross-modally, confer general, nontemporal benefits. Their predictability conserves processing resources that then benefit stimulus representations in other modalities.
外部节奏跨模式同步注意力的观点引起了广泛关注和科学研究。然而,相关注意力调节是否确实具有节奏性,即它们是否源于并映射到潜在的节拍上,尚未得到明确证实。在这里,我们在解决先前与混淆相关的工作的缺点的同时检验了这一观点,这些缺点涉及(i)节拍性和规律性,(ii)节奏和时间期望,或(iii)全局和局部时间效应。我们设计了在节拍性和规律性上正交变化的声音序列,并在四个单独的块中作为无关的听觉背景呈现。参与者的任务是检测在无声节拍对齐或不对齐的时间位置出现的罕见视觉目标。我们发现,目标时间对反应时间和视觉事件相关电位没有影响。高背景规律性,在较小程度上还有节拍性,有利于在节拍对齐和不对齐位置的目标处理。此外,高规律性调节了在枕叶皮层记录的 EEG 中的听觉背景频率。我们得出结论,外部节奏并没有跨模式同步注意力,而是带来了一般的、非时间的好处。它们的可预测性节省了处理资源,这些资源随后有利于其他模式中的刺激表示。