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Music drives brain plasticity.音乐促进大脑可塑性。
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The plastic human brain.塑料人的大脑。
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What's new in neuroimaging methods?神经成像方法有哪些新进展?
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The architecture of the golfer's brain.高尔夫球手大脑的结构。
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Neural correlates of impaired cognitive-behavioral flexibility in anorexia nervosa.神经性厌食症中认知行为灵活性受损的神经关联
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专业女性芭蕾舞演员感觉运动网络中的结构性神经可塑性。

Structural neuroplasticity in the sensorimotor network of professional female ballet dancers.

机构信息

Institute of Psychology, University of Zurich, Switzerland.

出版信息

Hum Brain Mapp. 2010 Aug;31(8):1196-206. doi: 10.1002/hbm.20928.

DOI:10.1002/hbm.20928
PMID:20024944
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6870845/
Abstract

Evidence suggests that motor, sensory, and cognitive training modulates brain structures involved in a specific practice. Functional neuroimaging revealed key brain structures involved in dancing such as the putamen and the premotor cortex. Intensive ballet dance training was expected to modulate the structures of the sensorimotor network, for example, the putamen, premotor cortex, supplementary motor area (SMA), and the corticospinal tracts. We investigated gray (GM) and white matter (WM) volumes, fractional anisotropy (FA), and mean diffusivity (MD) using magnetic resonance-based morphometry and diffusion tensor imaging in 10 professional female ballet dancers compared with 10 nondancers. In dancers compared with nondancers, decreased GM volumes were observed in the left premotor cortex, SMA, putamen, and superior frontal gyrus, and decreased WM volumes in both corticospinal tracts, both internal capsules, corpus callosum, and left anterior cingulum. FA was lower in the WM underlying the dancers' left and right premotor cortex. There were no significant differences in MD between the groups. Age of dance commencement was negatively correlated with GM and WM volume in the right premotor cortex and internal capsule, respectively, and positively correlated with WM volume in the left precentral gyrus and corpus callosum. Results were not influenced by the significantly lower body mass index of the dancers. The present findings complement the results of functional imaging studies in experts that revealed reduced neural activity in skilled compared with nonskilled subjects. Reductions in brain activity are accompanied by local decreases in GM and WM volumes and decreased FA.

摘要

有证据表明,运动、感觉和认知训练可以调节特定实践所涉及的大脑结构。功能神经影像学揭示了与舞蹈相关的关键大脑结构,如壳核和运动前皮质。密集的芭蕾舞训练预计会调节感觉运动网络的结构,例如壳核、运动前皮质、辅助运动区(SMA)和皮质脊髓束。我们使用基于磁共振的形态测量法和弥散张量成像,对 10 名专业女性芭蕾舞演员与 10 名非舞蹈者进行了研究,比较了他们的灰质(GM)和白质(WM)体积、各向异性分数(FA)和平均弥散度(MD)。与非舞蹈者相比,舞蹈者的左运动前皮质、SMA、壳核和额上回的 GM 体积减少,两侧皮质脊髓束、内囊、胼胝体和左前扣带的 WM 体积减少。舞蹈者左、右侧运动前皮质下 WM 的 FA 较低。两组间 MD 无显著差异。舞蹈起始年龄与右侧运动前皮质和内囊的 GM 和 WM 体积分别呈负相关,与左侧中央前回和胼胝体的 WM 体积呈正相关。研究结果不受舞蹈者显著较低的体重指数的影响。这些发现补充了专家功能成像研究的结果,这些研究表明,与非专家相比,熟练者的神经活动减少。脑活动的减少伴随着 GM 和 WM 体积的局部减少和 FA 的降低。