Mapping perception to action in piano practice: a longitudinal DC-EEG study

От восприятия к действию в практике игры на фортепиано: лонгитюдное исследование с использованием ЭЭГ постоянного тока
Marc Bangert, Eckart Altenmüller
2003-10-15

DC-EEGaudio-motor interfaceauditory-sensorimotor co-activitycortical plasticitypiano learning
BACKGROUND: Performing music requires fast auditory and motor processing. Regarding professional musicians, recent brain imaging studies have demonstrated that auditory stimulation produces a co-activation of motor areas, whereas silent tapping of musical phrases evokes a co-activation in auditory regions. Whether this is obtained via a specific cerebral relay station is unclear. Furthermore, the time course of plasticity has not yet been addressed. RESULTS: Changes in cortical activation patterns (DC-EEG potentials) induced by short (20 minute) and long term (5 week) piano learning were investigated during auditory and motoric tasks. Two beginner groups were trained. The 'map' group was allowed to learn the standard piano key-to-pitch map. For the 'no-map' group, random assignment of keys to tones prevented such a map. Auditory-sensorimotor EEG co-activity occurred within only 20 minutes. The effect was enhanced after 5-week training, contributing elements of both perception and action to the mental representation of the instrument. The 'map' group demonstrated significant additional activity of right anterior regions. CONCLUSION: We conclude that musical training triggers instant plasticity in the cortex, and that right-hemispheric anterior areas provide an audio-motor interface for the mental representation of the keyboard.
1
Auditory-sensorimotor cortical co-activity emerged within just 20 minutes of beginner piano training, demonstrating rapid neural plasticity.
2
Five weeks of training enhanced auditory-motor co-activation, integrating perceptual and motor components into the instrument’s mental representation.
3
Learning a standard key-to-pitch mapping produced additional significant activity in right anterior cortical regions compared with random key-tone assignments.
4
The findings identify right-hemispheric anterior regions as a likely auditory-motor interface supporting mental representation of the piano keyboard.

cortical auditory-sensorimotor processing during piano learning in beginner musicians

short- and long-term training-induced cortical plasticity and the auditory–motor interface underlying the mental representation of the piano keyboard

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2003-10-15
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Marc Bangert
Eckart Altenmüller
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