Perception of phrase structure in music

Восприятие фразовой структуры в музыке
Thomas R. Knösche, Christiane Neuhaus, Jens Haueisen, Kai Alter, Burkhard Maeß, Otto W. Witte, Angela D. Friederici
2005-01-27

EEG and MEGclosure positive shift (CPS)limbic systemmusical phrase boundariessource localization
Neither music nor spoken language form uniform auditory streams, rather, they are structured into phrases. For the perception of such structures, the detection of phrase boundaries is crucial. We discovered electroencephalography (EEG) and magnetoencephalography (MEG) correlates for the perception of phrase boundaries in music. In EEG, this process was marked by a positive wave approximately between 500 and 600 ms after the offset of a phrase boundary with a centroparietal maximum. In MEG, we found major activity in an even broader time window (400-700 ms). Source localization revealed that likely candidates for the generation of the observed effects are structures in the limbic system, including anterior and posterior cingulate as well as posterior mediotemporal cortex. The timing and topography of the EEG effect bear some resemblance to a positive shift (closure positive shift, CPS) found for prosodic phrase boundaries during speech perception in an earlier study, suggesting that the underlying processes might be related. Because the brain structures, which possibly underlie the observed effects, are known to be involved in memory and attention processes, we suggest that the CPS may not reflect the detection of the phrase boundary as such, but those memory and attention related processes that are necessary to guide the attention focus from one phrase to the next, thereby closing the former and opening up the next phrase.
1
EEG and MEG revealed neural correlates of musical phrase-boundary perception, demonstrating measurable brain responses to phrase structure.
2
MEG showed substantial phrase-boundary-related activity across a broader 400–700 ms time window.
3
Phrase boundaries elicited an EEG positive wave approximately 500–600 ms after phrase offset, with a centroparietal maximum.
4
Source localization implicated limbic structures, including anterior and posterior cingulate regions and posterior mediotemporal cortex.
5
The EEG response resembled the speech-related closure positive shift, potentially reflecting memory- and attention-related reorientation between phrases rather than boundary detection alone.

phrase boundaries in music during auditory perception

EEG and MEG correlates and underlying memory- and attention-related neural processes involved in perceiving and shifting attention across musical phrase boundaries

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2005-01-27
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Thomas R. Knösche
Christiane Neuhaus
Jens Haueisen
Kai Alter
Burkhard Maeß
Otto W. Witte
Angela D. Friederici
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