Modulation of Functional Connectivity in Auditory-Motor Networks in Musicians Compared with Nonmusicians
Correlation of spontaneous fluctuations at rest between anatomically distinct brain areas are proposed to reflect the profile of individual a priori cognitive biases, coded as synaptic efficacies in cortical networks. Here, we investigate functional connectivity at rest (rs-FC) in musicians and nonm...
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Published in: | Cerebral cortex (New York, N.Y. 1991) Vol. 27; no. 5; pp. 2768 - 2778 |
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Abstract | Correlation of spontaneous fluctuations at rest between anatomically distinct brain areas are proposed to reflect the profile of individual a priori cognitive biases, coded as synaptic efficacies in cortical networks. Here, we investigate functional connectivity at rest (rs-FC) in musicians and nonmusicians to test for differences in auditory, motor, and audiomotor connectivity. As expected, musicians had stronger rs-FC between the right auditory cortex (AC) and the right ventral premotor cortex than nonmusicians, and this stronger rs-FC was greater in musicians with more years of practice. We also found reduced rs-FC between the motor areas that control both hands in musicians compared with nonmusicians, which was more evident in the musicians whose instrument required bimanual coordination and as a function of hours of practice. Finally, we replicated previous morphometric data to show an increased volume in the right AC in musicians, which was greater in those with earlier musical training, and that this anatomic feature was in turn related to greater rs-FC between auditory and motor systems. These results show that functional coupling within the motor system and between motor and auditory areas is modulated as a function of musical training, suggesting a link between anatomic and functional brain features. |
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AbstractList | Correlation of spontaneous fluctuations at rest between anatomically distinct brain areas are proposed to reflect the profile of individual a priori cognitive biases, coded as synaptic efficacies in cortical networks. Here, we investigate functional connectivity at rest (rs-FC) in musicians and nonmusicians to test for differences in auditory, motor, and audiomotor connectivity. As expected, musicians had stronger rs-FC between the right auditory cortex (AC) and the right ventral premotor cortex than nonmusicians, and this stronger rs-FC was greater in musicians with more years of practice. We also found reduced rs-FC between the motor areas that control both hands in musicians compared with nonmusicians, which was more evident in the musicians whose instrument required bimanual coordination and as a function of hours of practice. Finally, we replicated previous morphometric data to show an increased volume in the right AC in musicians, which was greater in those with earlier musical training, and that this anatomic feature was in turn related to greater rs-FC between auditory and motor systems. These results show that functional coupling within the motor system and between motor and auditory areas is modulated as a function of musical training, suggesting a link between anatomic and functional brain features. |
Author | Zatorre, Robert J Ávila, César Palomar-García, María-Ángeles Ventura-Campos, Noelia Bueichekú, Elisenda |
Author_xml | – sequence: 1 givenname: María-Ángeles surname: Palomar-García fullname: Palomar-García, María-Ángeles organization: Neuropsychology and Functional Neuroimaging Group, Department of Basic Psychology, Clinical Psychology and Psychobiology, Universitat Jaume I, 12071 Castellón, Spain – sequence: 2 givenname: Robert J surname: Zatorre fullname: Zatorre, Robert J organization: International Laboratory for Brain, Music and Sound Research (BRAMS), Québec H3C 3J7, Canada – sequence: 3 givenname: Noelia surname: Ventura-Campos fullname: Ventura-Campos, Noelia organization: Neuropsychology and Functional Neuroimaging Group, Department of Basic Psychology, Clinical Psychology and Psychobiology, Universitat Jaume I, 12071 Castellón, Spain – sequence: 4 givenname: Elisenda surname: Bueichekú fullname: Bueichekú, Elisenda organization: Neuropsychology and Functional Neuroimaging Group, Department of Basic Psychology, Clinical Psychology and Psychobiology, Universitat Jaume I, 12071 Castellón, Spain – sequence: 5 givenname: César surname: Ávila fullname: Ávila, César organization: Neuropsychology and Functional Neuroimaging Group, Department of Basic Psychology, Clinical Psychology and Psychobiology, Universitat Jaume I, 12071 Castellón, Spain |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/27166170$$D View this record in MEDLINE/PubMed |
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Keywords | resting state voxel-based morphometry auditory cortex music brain plasticity |
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SubjectTerms | Acoustic Stimulation Adult Auditory Cortex - physiology Auditory Perception - physiology Brain Mapping Female Functional Laterality Humans Learning - physiology Male Motor Cortex - physiology Music Nerve Net - physiology Principal Component Analysis Psychomotor Performance - physiology Statistics as Topic Young Adult |
Title | Modulation of Functional Connectivity in Auditory-Motor Networks in Musicians Compared with Nonmusicians |
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