Publication

Increased functional connectivity in the right dorsal auditory stream after a full year of piano training in healthy older adults

Résumé

Learning to play an instrument at an advanced age may help to counteract or slow down age-related cognitive decline. However, studies investigating the neural underpinnings of these effects are still scarce. One way to investigate the effects of brain plasticity is using resting-state functional connectivity (FC). The current study compared the effects of learning to play the piano (PP) against participating in music listening/musical culture (MC) lessons on FC in 109 healthy older adults. Participants underwent resting-state functional magnetic resonance imaging at three time points: at baseline, and after 6 and 12 months of interventions. Analyses revealed piano training-specific FC changes after 12 months of training. These include FC increase between right Heschl's gyrus (HG), and other right dorsal auditory stream regions. In addition, PP showed an increased anticorrelation between right HG and dorsal posterior cingulate cortex and FC increase between the right motor hand area and a bilateral network of predominantly motor-related brain regions, which positively correlated with fine motor dexterity improvements. We suggest to interpret those results as increased network efficiency for auditory-motor integration. The fact that functional neuroplasticity can be induced by piano training in healthy older adults opens new pathways to countervail age related decline.

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Concepts associés (36)
Système auditif
Le système auditif est le système sensoriel du sens de l'ouïe. Il est composé de deux systèmes: le système auditif périphérique et le système auditif central. Dans le système auditif périphérique, on retrouve l’oreille externe, moyenne et interne. Le système auditif central comprend le nerf auditif jusqu’au cortex auditif. Le long de son trajet de l'extérieur jusqu'au cerveau antérieur, l'information sonore est conservée et en même temps modifiée de diverses manières.
Motor skill
A motor skill is a function that involves specific movements of the body's muscles to perform a certain task. These tasks could include walking, running, or riding a bike. In order to perform this skill, the body's nervous system, muscles, and brain have to all work together. The goal of motor skill is to optimize the ability to perform the skill at the rate of success, precision, and to reduce the energy consumption required for performance. Performance is an act of executing a motor skill or task.
Cortex moteur
Le cortex moteur désigne l'ensemble des aires du cortex cérébral qui participent à la planification, au contrôle et à l'exécution des mouvements volontaires des muscles du corps. D'un point de vue anatomique, le cortex moteur est situé dans la partie postérieure du lobe frontal, au niveau de la région caudale de la circonvolution frontale ascendante en avant du sillon central. Le cortex moteur est en interaction constante avec d'autres structures nerveuses impliquées dans le mouvement comme le système des ganglions de la base et le cervelet.
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