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棒球运动员的自主神经中枢网络改变:一项静息态 fMRI 研究。

Altered Central Autonomic Network in Baseball Players: A Resting-state fMRI Study.

机构信息

Department of Biomedical Engineering, National Yang-Ming University, Taipei, 11221, Taiwan, ROC.

Research Center for Mind, Brain and Learning, National Chengchi University, Taipei, 11605, Taiwan, ROC.

出版信息

Sci Rep. 2019 Jan 14;9(1):110. doi: 10.1038/s41598-018-36329-9.

Abstract

The physiological adaptive regulation of healthy population with a high fitness level is associated with enhanced cognitive control in brain. This study further investigated the effects of different levels of sporting experience on intrinsic brain networks involved in central autonomic processing using resting-state functional magnetic resonance imaging. We explored functional connectivity of four core regions within central autonomic network (CAN), namely posterior midcingulate cortex (pMCC), left amygdala (AMYG), and right anterior (aINS) and left posterior insular cortices, in advanced and intermediate baseball players, and compared their strength of connectivity with individuals without baseball-playing experience. Functional connectivity maps across three groups confirmed a close relationship between CAN and large-scale brain networks in sensory, motor and cognitive domains. Crucially, both advanced and intermediate batters demonstrated enhanced connectivity between pMCC and sensorimotor network, between right aINS and dorsal anterior cingulate cortex, and between left AMYG and right putamen, than controls. These results reflected a stronger interregional coupling in sensorimotor and cognitive control, and in motor skill consolidation. In conclusion, we provided evidence that different levels of sporting experience could reorganize/enhance intrinsic functional connectivity for central autonomic processing.

摘要

高水平健康人群的生理适应性调节与大脑认知控制增强有关。本研究进一步使用静息态功能磁共振成像研究了不同运动经验水平对参与中枢自主处理的固有脑网络的影响。我们探讨了中枢自主网络(CAN)内四个核心区域的功能连接,即后扣带回皮质(pMCC)、左杏仁核(AMYG)、右侧前岛叶(aINS)和左侧后岛叶皮质,在高级和中级棒球运动员中,并将它们的连接强度与没有棒球运动经验的个体进行了比较。三个组的功能连接图都证实了 CAN 与感觉、运动和认知领域的大脑大网络之间的密切关系。至关重要的是,高级和中级击球手在 pMCC 与感觉运动网络之间、右侧 aINS 与背侧前扣带回之间以及左侧 AMYG 与右侧壳核之间的连接都比对照组更强。这些结果反映了感觉运动和认知控制以及运动技能巩固中的区域间耦合更强。总之,我们提供的证据表明,不同的运动经验水平可以重新组织/增强中枢自主处理的固有功能连接。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d18/6331574/671fb7a35f86/41598_2018_36329_Fig1_HTML.jpg

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