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单次注意力训练技术增加额顶叶脑网络静息态α和β振荡:一项随机对照比较研究

Single Dose of the Attention Training Technique Increases Resting Alpha and Beta-Oscillations in Frontoparietal Brain Networks: A Randomized Controlled Comparison.

作者信息

Knowles Mark M, Wells Adrian

机构信息

Manchester University Hospitals NHS Foundation Trust, Manchester, United Kingdom.

Division of Psychology and Mental Health, The University of Manchester, Manchester, United Kingdom.

出版信息

Front Psychol. 2018 Sep 20;9:1768. doi: 10.3389/fpsyg.2018.01768. eCollection 2018.

Abstract

The Attention Training Technique (ATT) was developed with the aim of reducing self-focused attention and increasing executive control as part of metacognitive therapy. So far there is a paucity of data on the neurophysiological effects of ATT. In the present study we tested for specific effects to determine if attention control components of ATT elicit a specific signature that is different from passive listening. Thirty-six healthy volunteers were randomized to an active (follow instructions) or control (ignore instructions) condition. Resting state EEG was recorded for 3 min with eyes open and eyes closed before and after exposure to training, and the power of the theta, alpha, and beta-bands were analyzed in frontal, midline, and posterior electrodes. The active ATT condition enhanced alpha and beta-band activity during eyes-open, and frontal alpha during eyes-closed ( < 0.005). Frontoparietal changes in Alpha were generally accompanied by changes in Beta in the same brain regions of interest. However, these associations were largely significant in the active ATT rather than the control condition. No between-group differences were observed in the Theta-band. These results suggest a single dose of attention training increases alpha and beta-oscillations in frontoparietal networks. These networks are associated with top-down attentional or executive control.

摘要

注意力训练技术(ATT)是作为元认知疗法的一部分而开发的,旨在减少自我关注并增强执行控制。到目前为止,关于ATT神经生理效应的数据很少。在本研究中,我们测试了特定效应,以确定ATT的注意力控制成分是否会引发与被动聆听不同的特定特征。36名健康志愿者被随机分为主动(遵循指示)或对照(忽略指示)组。在接受训练前后,分别睁眼和闭眼记录3分钟的静息态脑电图,并分析额叶、中线和后部电极处的θ、α和β波段功率。主动ATT组在睁眼时增强了α和β波段活动,闭眼时增强了额叶α活动(P<0.005)。额叶顶叶区域的α变化通常伴随着同一感兴趣脑区的β变化。然而,这些关联在主动ATT组中比在对照组中更显著。在θ波段未观察到组间差异。这些结果表明,单次注意力训练可增加额叶顶叶网络中的α和β振荡。这些网络与自上而下的注意力或执行控制有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28e5/6158576/c81d0efb4f06/fpsyg-09-01768-g001.jpg

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