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任务后静息状态的脑动力学受专业技能影响:来自棒球运动员的见解。

Brain dynamics of post-task resting state are influenced by expertise: Insights from baseball players.

作者信息

Muraskin Jordan, Dodhia Sonam, Lieberman Gregory, Garcia Javier O, Verstynen Timothy, Vettel Jean M, Sherwin Jason, Sajda Paul

机构信息

Department of Biomedical Engineering, Columbia University, New York, New York.

U.S. Army Research Laboratory, Human Research and Engineering Directorate, Aberdeen Proving Ground, Aberdeen, Maryland.

出版信息

Hum Brain Mapp. 2016 Dec;37(12):4454-4471. doi: 10.1002/hbm.23321. Epub 2016 Jul 22.

Abstract

Post-task resting state dynamics can be viewed as a task-driven state where behavioral performance is improved through endogenous, non-explicit learning. Tasks that have intrinsic value for individuals are hypothesized to produce post-task resting state dynamics that promote learning. We measured simultaneous fMRI/EEG and DTI in Division-1 collegiate baseball players and compared to a group of controls, examining differences in both functional and structural connectivity. Participants performed a surrogate baseball pitch Go/No-Go task before a resting state scan, and we compared post-task resting state connectivity using a seed-based analysis from the supplementary motor area (SMA), an area whose activity discriminated players and controls in our previous results using this task. Although both groups were equally trained on the task, the experts showed differential activity in their post-task resting state consistent with motor learning. Specifically, we found (1) differences in bilateral SMA-L Insula functional connectivity between experts and controls that may reflect group differences in motor learning, (2) differences in BOLD-alpha oscillation correlations between groups suggests variability in modulatory attention in the post-task state, and (3) group differences between BOLD-beta oscillations that may indicate cognitive processing of motor inhibition. Structural connectivity analysis identified group differences in portions of the functionally derived network, suggesting that functional differences may also partially arise from variability in the underlying white matter pathways. Generally, we find that brain dynamics in the post-task resting state differ as a function of subject expertise and potentially result from differences in both functional and structural connectivity. Hum Brain Mapp 37:4454-4471, 2016. © 2016 The Authors Human Brain Mapping Published by Wiley Periodicals, Inc.

摘要

任务后静息态动力学可被视为一种任务驱动状态,在这种状态下,行为表现通过内源性、非显性学习得到改善。对于个体具有内在价值的任务被假定会产生促进学习的任务后静息态动力学。我们对一级大学棒球运动员同时进行了功能磁共振成像/脑电图(fMRI/EEG)和扩散张量成像(DTI)测量,并与一组对照组进行比较,以检查功能和结构连接性的差异。参与者在静息态扫描前执行了一个替代棒球投球的“是/否”任务,我们使用基于种子点的分析方法,从辅助运动区(SMA)比较了任务后静息态连接性,在我们之前使用该任务的研究结果中,该区域的活动能够区分运动员和对照组。尽管两组在任务上接受了同等程度的训练,但专家组在任务后静息态中表现出与运动学习一致的不同活动。具体而言,我们发现:(1)专家组和对照组之间双侧SMA-岛叶功能连接性存在差异,这可能反映了运动学习中的组间差异;(2)两组之间BOLD-α振荡相关性的差异表明任务后状态下调节性注意力存在变异性;(3)BOLD-β振荡的组间差异可能表明运动抑制的认知处理情况。结构连接性分析确定了功能衍生网络部分区域的组间差异,这表明功能差异也可能部分源于潜在白质通路的变异性。总体而言,我们发现任务后静息态中的脑动力学因受试者专业水平而异,并且可能是功能和结构连接性差异共同导致的结果。《人类大脑图谱》37:4454 - 4471,2016年。© 2016作者 人类大脑图谱 由威利期刊公司出版

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db7b/6867339/d24d7e269275/HBM-37-4454-g001.jpg

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