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Neural correlates of audiovisual integration in music reading

机译:音乐阅读中视听整合的神经相关

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Integration of auditory and visual information is important to both language and music. In the linguistic domain, audiovisual integration alters event-related potentials (ERPs) at early stages of processing (the mismatch negativity (MMN)) as well as later stages (P300(Andres et al., 2011)). However, the role of experience in audiovisual integration is unclear, as reading experience is generally confounded with developmental stage. Here we tested whether audiovisual integration of music appears similar to reading, and how musical experience altered integration. We compared brain responses in musicians and non-musicians on an auditory pitch-interval oddball task that evoked the MMN and P300, while manipulating whether visual pitch-interval information was congruent or incongruent with the auditory information. We predicted that the MMN and P300 would be largest when both auditory and visual stimuli deviated, because audiovisual integration would increase the neural response when the deviants were congruent. The results indicated that scalp topography differed between musicians and non-musicians for both the MMN and P300 response to deviants. Interestingly, musicians' musical training modulated integration of congruent deviants at both early and late stages of processing. We propose that early in the processing stream, visual information may guide interpretation of auditory information, leading to a larger MMN when auditory and visual information mismatch. At later attentional stages, integration of the auditory and visual stimuli leads to a larger P300 amplitude. Thus, experience with musical visual notation shapes the way the brain integrates abstract sound-symbol pairings, suggesting that musicians can indeed inform us about the role of experience in audiovisual integration. (C) 2016 The Authors. Published by Elsevier Ltd.
机译:听觉和视觉信息的整合对于语言和音乐都很重要。在语言领域,视听整合在处理的早期阶段(失配负(MMN))以及后期阶段(P300(Andres等,2011))都会改变事件相关电位(ERP)。但是,经验在视听整合中的作用尚不清楚,因为阅读经验通常与发展阶段相混淆。在这里,我们测试了音乐的视听整合是否看起来类似于阅读,以及音乐体验如何改变了整合。我们比较了音乐人和非音乐人在诱发MMN和P300的听觉音高间隔时间奇异球任务时的大脑反应,同时控制了视觉音高间隔时间信息是否与听觉信息一致或不一致。我们预测,当听觉和视觉刺激均发生偏离时,MMN和P300会最大,因为当差异一致时,视听整合会增加神经反应。结果表明,对于MMN和P300对偏差的响应,音乐家和非音乐家的头皮地形都不同。有趣的是,音乐家的音乐训练在处理的早期和后期调节了全等偏差的整合。我们建议在处理流程的早期,视觉信息可以指导听觉信息的解释,从而在听觉和视觉信息不匹配时导致更大的MMN。在以后的注意力阶段,听觉和视觉刺激的整合会导致更大的P300振幅。因此,具有音乐视觉符号的体验塑造了大脑整合抽象声音符号配对的方式,这表明音乐家确实可以告知我们有关体验在视听融合中的作用的信息。 (C)2016作者。由Elsevier Ltd.发布

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