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精神分裂症中思绪游荡的局部振荡性脑动力学

Local Oscillatory Brain Dynamics of Mind Wandering in Schizophrenia.

作者信息

Prieto Marta, Iglesias-Parro Sergio, Soriano María Felipa, Ibáñez-Molina Antonio

机构信息

Psychology Department, University of Jaén, 23071 Jaén, Spain.

Mental Health Unit, San Agustín University Hospital, 23700 Linares, Spain.

出版信息

Brain Sci. 2021 Jul 9;11(7):910. doi: 10.3390/brainsci11070910.

Abstract

A number of studies have focused on brain dynamics underlying mind wandering (MW) states in healthy people. However, there is limited understanding of how the oscillatory dynamics accompanying MW states and task-focused states are characterized in clinical populations. In this study, we explored EEG local synchrony of MW associated with schizophrenia, under the premise that changes in attention that arise during MW are associated with a different pattern of brain activity. To this end, we measured the power of EEG oscillations in different frequency bands, recorded while participants watched short video clips. In the group of participants diagnosed with schizophrenia, the power in MW states was significantly lower than during task-focused states, mainly in the frontal and posterior regions. However, in the group of healthy controls, the differences in power between the task-focused and MW states occurred exclusively in the posterior region. Furthermore, the power of the frequency bands during MW and during episodes of task-focused attention correlated with cognitive variables such as processing speed and working memory. These findings on dynamic changes of local synchronization in different frequency bands and areas of the cortex can improve our understanding of mental disorders, such as schizophrenia.

摘要

许多研究聚焦于健康人群中走神(MW)状态背后的脑动力学。然而,对于临床人群中伴随MW状态和专注于任务状态的振荡动力学特征的了解有限。在本研究中,我们探讨了与精神分裂症相关的MW的脑电图局部同步性,前提是MW期间出现的注意力变化与不同的脑活动模式相关。为此,我们测量了参与者观看短视频片段时记录的不同频段脑电图振荡的功率。在被诊断为精神分裂症的参与者组中,MW状态下的功率显著低于专注于任务状态时,主要在额叶和后部区域。然而,在健康对照组中,专注于任务状态和MW状态之间的功率差异仅出现在后部区域。此外,MW期间和专注于任务注意力发作期间频段的功率与诸如处理速度和工作记忆等认知变量相关。这些关于皮质不同频段和区域局部同步动态变化的发现可以增进我们对精神障碍如精神分裂症的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f77/8304325/121c4addd2a6/brainsci-11-00910-g001.jpg

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