The Dancing Brain: Structural and Functional Signatures of Expert Dance Training
Танцующий мозг: структурные и функциональные особенности, связанные с профессиональной танцевальной подготовкой
2017-11-27
SCID: 54.1/ajf2tcpe
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action observation networkbrain plasticitydiffusion tensor imagingexpert dance trainingfunctional connectivity
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Abstract (AI)
Dance – as a ritual, therapy, and leisure activity – has been known for thousands of years. Today, dance is increasingly used as therapy for cognitive and neurological disorders such as dementia and Parkinson’s disease. Surprisingly, the effects of dance training on the healthy young brain are not well understood despite the necessity of such information for planning successful clinical interventions. Therefore, this study examined actively performing, expert-level trained college students as a model of long-term exposure to dance training. To study the long-term effects of dance training on the human brain, we compared 20 young expert female Dancers with normal body mass index with 20 age- and education-matched Non-Dancers with respect to brain structure and function. We used diffusion tensor, morphometric, resting state and task-related functional MRI, a broad cognitive assessment, and objective measures of selected dance skill (Dance Central video game and a balance task). Dancers showed superior performance in the Dance Central video game and balance task, but showed no differences in cognitive abilities. We found little evidence for training-related differences in brain volume in Dancers. Dancers had lower anisotropy in the corticospinal tract. They also activated the action observation network (AON) to greater extent than Non-Dancers when viewing dance sequences. Dancers showed altered functional connectivity of the AON, and of the general motor learning network. These functional connectivity differences were related to dance skill and balance and training-induced structural characteristics. Our findings have the potential to inform future study designs aiming to monitor dance training-induced plasticity in clinical populations.
Key Findings
1
Dance training produced little evidence of differences in overall brain volume, but dancers had lower anisotropy in the corticospinal tract.
2
Dancers exhibited altered functional connectivity in the action observation and general motor-learning networks; these differences related to dance skill, balance, and training-associated structural characteristics.
3
Despite long-term dance training, dancers showed no measurable advantage in broad cognitive abilities.
4
Expert dancers outperformed age- and education-matched non-dancers on Dance Central gameplay and a balance task.
5
When viewing dance sequences, dancers showed greater activation of the action observation network than non-dancers.
Research Object
the healthy young human brain after long-term expert dance training, studied in expert female college dancers versus age- and education-matched non-dancers
Research Subject
dance-training-related structural and functional brain signatures, including brain volume, corticospinal-tract anisotropy, action-observation and motor-learning network activation and connectivity, and their relationships with dance skill and balance
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2017-11-27
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