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RESEARCH PRODUCT
Music Training Enhances Rapid Neural Plasticity of N1 and P2 Source Activation for Unattended Sounds
Miia EseppänenMiia EseppänenJarmo EhämäläinenAnu-katriina EpesonenMari EtervaniemiMari EtervaniemiMari Etervaniemisubject
medicine.medical_specialtySpeech recognitionauditory perceptual learningElectroencephalographyAudiologybehavioral disciplines and activities050105 experimental psychologylcsh:RC321-57103 medical and health sciencesBehavioral Neuroscience0302 clinical medicinePerceptual learningNeuroplasticitymedicine0501 psychology and cognitive sciencesEEG10. No inequalityOddball paradigmlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryBiological Psychiatryta515Original Researchmedicine.diagnostic_test05 social sciencesN1Passive Exposurerapid plasticityP2musical expertiseP1Psychiatry and Mental healthNeuropsychology and Physiological PsychologyNeurologyPsychologymusic training030217 neurology & neurosurgeryNeurosciencedescription
Neurocognitive studies have demonstrated that long-term music training enhances the processing of unattended sounds. It is not clear, however, whether music training also modulates rapid (within tens of minutes) neural plasticity for sound encoding. To study this phenomenon, we examined whether adult musicians display enhanced rapid neural plasticity compared to non-musicians. More specifically, we compared the modulation of P1, N1, and P2 responses to standard sounds between four unattended passive blocks. Among the standard sounds, infrequently presented deviant sounds were presented (the so-called oddball paradigm). In the middle of the experiment (after two blocks), an active task was presented. Source analysis for event-related potentials (ERPs) showed that N1 and P2 source activation was selectively decreased in musicians after 15 min of passive exposure to sounds and that P2 source activation was found to be re-enhanced after the active task in musicians. Additionally, ERP analysis revealed that in both musicians and non-musicians, P2 ERP amplitude was enhanced after 15 min of passive exposure but only at the frontal electrodes. Furthermore, in musicians, the N1 ERP was enhanced after the active discrimination task but only at the parietal electrodes. Musical training modulates the rapid neural plasticity reflected in N1 and P2 source activation for unattended regular standard sounds. Enhanced rapid plasticity of N1 and P2 is likely to reflect faster auditory perceptual learning in musicians.
year | journal | country | edition | language |
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2012-03-01 | Frontiers in Human Neuroscience |