Abstract
Morphological differences in the auditory brain of musicians compared to nonmusicians are often associated with life-long musical activity. Cross-sectional studies, however, do not allow for any causal inferences, and most experimental studies testing music-driven adaptations investigated children. Although the importance of the age at which musical training begins is widely recognized to impact neuroplasticity, there have been few longitudinal studies examining music-related changes in the brains of older adults. Using magnetic resonance imaging, we measured cortical thickness (CT) of 12 auditory-related regions of interest before and after 6 months of musical instruction in 134 healthy, right-handed, normal-hearing, musically-naive older adults (64–76 years old). Prior to the study, all participants were randomly assigned to either piano training or to a musical culture/music listening group. In five regions—left Heschl's gyrus, left planum polare, bilateral superior temporal sulcus, and right Heschl's sulcus—we found an increase in CT in the piano training group compared with the musical culture group. Furthermore, CT of the right Heschl's gyrus could be identified as a morphological substrate supporting speech in noise perception. The results support the conclusion that playing an instrument is an effective stimulator for cortical plasticity, even in older adults.
| Originalsprache | Englisch |
|---|---|
| Zeitschrift | Annals of the New York Academy of Sciences |
| Jahrgang | 1513 |
| Ausgabenummer | 1 |
| Seiten (von - bis) | 21-30 |
| Seitenumfang | 10 |
| ISSN | 0077-8923 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - 07.2022 |
Fördermittel
We would like to thank Michael Großbach, Matt McCrary, Lynne Osterloh, and Tabea Luise Simonis for their support. Further, we thank Yamaha Germany for providing all electronic pianos, stands, and headphones. This work was funded by the German Research Foundation (Grant no. 323965454) and the Swiss National Science Foundation (Grant no. 100019E-170410). Financial support was also provided by the Kurt Fries Foundation, the Dalle Molle Foundation, and the Edith Maryon Foundation. F.W. wrote the initial draft of this manuscript. D.M., F.W., and K.J. acquired the data. C.A.H.M. preprocessed the MRI data. F.W. performed the statistical analysis. C.E.J. and E.A. wrote the grant proposal submitted to the DFG (Deutsche Forschungs-gemeinschaft) and SNSF (Swiss National Science Foundation). M.K. and T.H.C.K. gave detailed input to the grant application. All authors critically reviewed, revised the article, and approved the submitted manuscript. We would like to thank Michael Großbach, Matt McCrary, Lynne Osterloh, and Tabea Luise Simonis for their support. Further, we thank Yamaha Germany for providing all electronic pianos, stands, and headphones. This work was funded by the German Research Foundation (Grant no. 323965454) and the Swiss National Science Foundation (Grant no. 100019E-170410). Financial support was also provided by the Kurt Fries Foundation, the Dalle Molle Foundation, and the Edith Maryon Foundation. Open Access funding enabled and organized by Projekt DEAL.
| Träger | Trägernummer |
|---|---|
| Dalle Molle Foundation | |
| Edith Maryon Foundation | |
| Kurt Fries Foundation | |
| Tabea Luise Simonis | |
| Deutsche Forschungsgemeinschaft | 323965454 |
| Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung | 100019E-170410 |
UN SDGs
Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung
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SDG 3 – Gesundheit und Wohlergehen
Strategische Forschungsbereiche und Zentren
- Forschungsschwerpunkt: Gehirn, Hormone, Verhalten - Center for Brain, Behavior and Metabolism (CBBM)
DFG-Fachsystematik
- 2.23-08 Kognitive und systemische Humanneurowissenschaften
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