Lyon Neuroscience Research Center, CRNL, CNRS, UMR5292, INSERM, U1028, F-69000, Lyon, France.
University of Lyon 1, F-69000, Lyon, France.
Atten Percept Psychophys. 2021 May;83(4):1861-1877. doi: 10.3758/s13414-021-02251-y. Epub 2021 Mar 11.
Auditory rhythms create powerful expectations for the listener. Rhythmic cues with the same temporal structure as subsequent sentences enhance processing compared with irregular or mismatched cues. In the present study, we focus on syllable detection following matched rhythmic cues. Cues were aligned with subsequent sentences at the syllable (low-level cue) or the accented syllable (high-level cue) level. A different group of participants performed the task without cues to provide a baseline. We hypothesized that unaccented syllable detection would be faster after low-level cues, and accented syllable detection would be faster after high-level cues. There was no difference in syllable detection depending on whether the sentence was preceded by a high-level or low-level cue. However, the results revealed a priming effect of the cue that participants heard first. Participants who heard a high-level cue first were faster to detect accented than unaccented syllables, and faster to detect accented syllables than participants who heard a low-level cue first. The low-level-first participants showed no difference between detection of accented and unaccented syllables. The baseline experiment confirmed that hearing a low-level cue first removed the benefit of the high-level grouping structure for accented syllables. These results suggest that the initially perceived rhythmic structure influenced subsequent cue perception and its influence on syllable detection. Results are discussed in terms of dynamic attending, temporal context effects, and implications for context effects in neural entrainment.
听觉节奏为听众创造了强烈的期待。与不规则或不匹配的线索相比,具有与后续句子相同时间结构的节奏线索会增强处理。在本研究中,我们专注于匹配节奏线索后的音节检测。线索与后续句子在音节(低级线索)或重音音节(高级线索)水平上对齐。另一组参与者在没有线索的情况下执行任务,以提供基线。我们假设,在低水平线索后,非重读音节的检测会更快,而在高水平线索后,重读音节的检测会更快。根据句子之前是高级线索还是低级线索,音节检测没有差异。然而,结果显示出线索的启动效应,即参与者首先听到的线索。首先听到高级线索的参与者检测重读音节比非重读音节更快,检测重读音节比首先听到低级线索的参与者更快。首先听到低级线索的参与者在检测重读音节和非重读音节之间没有差异。基线实验证实,首先听到低级线索会消除高级分组结构对重读音节的益处。这些结果表明,最初感知到的节奏结构会影响后续线索感知及其对音节检测的影响。结果从动态注意、时间上下文效应以及对神经同步中的上下文效应的影响方面进行了讨论。