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运动的大脑:综合多模态认知与全身协调训练诱导的功能连接变化

The Exercising Brain: Changes in Functional Connectivity Induced by an Integrated Multimodal Cognitive and Whole-Body Coordination Training.

作者信息

Demirakca Traute, Cardinale Vita, Dehn Sven, Ruf Matthias, Ende Gabriele

机构信息

Department of Neuroimaging, Central Institute of Mental Health, Medical Faculty Mannheim, Heidelberg University, J5, 68159 Mannheim, Germany.

出版信息

Neural Plast. 2016;2016:8240894. doi: 10.1155/2016/8240894. Epub 2015 Dec 27.

Abstract

This study investigated the impact of "life kinetik" training on brain plasticity in terms of an increased functional connectivity during resting-state functional magnetic resonance imaging (rs-fMRI). The training is an integrated multimodal training that combines motor and cognitive aspects and challenges the brain by introducing new and unfamiliar coordinative tasks. Twenty-one subjects completed at least 11 one-hour-per-week "life kinetik" training sessions in 13 weeks as well as before and after rs-fMRI scans. Additionally, 11 control subjects with 2 rs-fMRI scans were included. The CONN toolbox was used to conduct several seed-to-voxel analyses. We searched for functional connectivity increases between brain regions expected to be involved in the exercises. Connections to brain regions representing parts of the default mode network, such as medial frontal cortex and posterior cingulate cortex, did not change. Significant connectivity alterations occurred between the visual cortex and parts of the superior parietal area (BA7). Premotor area and cingulate gyrus were also affected. We can conclude that the constant challenge of unfamiliar combinations of coordination tasks, combined with visual perception and working memory demands, seems to induce brain plasticity expressed in enhanced connectivity strength of brain regions due to coactivation.

摘要

本研究通过静息态功能磁共振成像(rs-fMRI)期间功能连接性增加,探讨了“生活动力学”训练对大脑可塑性的影响。该训练是一种综合多模态训练,结合了运动和认知方面,并通过引入新的和不熟悉的协调任务来挑战大脑。21名受试者在13周内完成了至少11次每周一小时的“生活动力学”训练课程,以及rs-fMRI扫描前后的训练。此外,还纳入了11名进行了2次rs-fMRI扫描的对照受试者。使用CONN工具箱进行了几次种子点到体素的分析。我们搜索了预期参与运动的脑区之间功能连接性的增加。与代表默认模式网络部分的脑区(如内侧前额叶皮层和后扣带回皮层)的连接没有变化。视觉皮层与上顶叶部分区域(BA7)之间出现了显著的连接改变。运动前区和扣带回也受到了影响。我们可以得出结论,对不熟悉的协调任务组合的持续挑战,加上视觉感知和工作记忆需求,似乎会因共同激活而在增强脑区连接强度方面诱导大脑可塑性。

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