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感觉运动学习增强听觉感知过程中的预期。

Sensorimotor Learning Enhances Expectations During Auditory Perception.

作者信息

Mathias Brian, Palmer Caroline, Perrin Fabien, Tillmann Barbara

机构信息

Department of Psychology, McGill University, Montreal, H3A 1B1, Canada.

Lyon Neuroscience Research Center, Auditory Cognition and Psychoacoustics Team, CNRS UMR 5292, INSERM U1028, University Lyon 1, F-69000, Lyon, France.

出版信息

Cereb Cortex. 2015 Aug;25(8):2238-54. doi: 10.1093/cercor/bhu030. Epub 2014 Mar 12.

Abstract

Sounds that have been produced with one's own motor system tend to be remembered better than sounds that have only been perceived, suggesting a role of motor information in memory for auditory stimuli. To address potential contributions of the motor network to the recognition of previously produced sounds, we used event-related potential, electric current density, and behavioral measures to investigate memory for produced and perceived melodies. Musicians performed or listened to novel melodies, and then heard the melodies either in their original version or with single pitch alterations. Production learning enhanced subsequent recognition accuracy and increased amplitudes of N200, P300, and N400 responses to pitch alterations. Premotor and supplementary motor regions showed greater current density during the initial detection of alterations in previously produced melodies than in previously perceived melodies, associated with the N200. Primary motor cortex was more strongly engaged by alterations in previously produced melodies within the P300 and N400 timeframes. Motor memory traces may therefore interface with auditory pitch percepts in premotor regions as early as 200 ms following perceived pitch onsets. Outcomes suggest that auditory-motor interactions contribute to memory benefits conferred by production experience, and support a role of motor prediction mechanisms in the production effect.

摘要

由自身运动系统产生的声音往往比仅被感知的声音记忆得更好,这表明运动信息在听觉刺激记忆中发挥着作用。为了探究运动网络对先前产生声音识别的潜在贡献,我们使用事件相关电位、电流密度和行为测量方法来研究对产生和感知旋律的记忆。音乐家演奏或聆听新颖的旋律,然后以原始版本或单个音高改变的形式再次听到这些旋律。生产学习提高了后续的识别准确性,并增加了对音高改变的N200、P300和N400反应的幅度。与N200相关,在最初检测先前产生旋律的改变时,运动前区和辅助运动区的电流密度比先前感知旋律时更大。在P300和N400时间范围内,初级运动皮层在先前产生旋律的改变中参与度更高。因此,运动记忆痕迹可能在感知音高开始后200毫秒就与运动前区的听觉音高感知相互作用。结果表明,听觉 - 运动相互作用有助于生产经验带来的记忆益处,并支持运动预测机制在生产效应中的作用。

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