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前额叶γ振荡中认知重评目标的表征。

Representation of cognitive reappraisal goals in frontal gamma oscillations.

作者信息

Kang Jae-Hwan, Jeong Ji Woon, Kim Hyun Taek, Kim Sang Hee, Kim Sung-Phil

机构信息

Department of Brain and Cognitive Engineering, Korea University, Seoul, Republic of Korea.

Department of Psychology, Korea University, Seoul, Republic of Korea.

出版信息

PLoS One. 2014 Nov 17;9(11):e113375. doi: 10.1371/journal.pone.0113375. eCollection 2014.

Abstract

Recently, numerous efforts have been made to understand the neural mechanisms underlying cognitive regulation of emotion, such as cognitive reappraisal. Many studies have reported that cognitive control of emotion induces increases in neural activity of the control system, including the prefrontal cortex and the dorsal anterior cingulate cortex, and increases or decreases (depending upon the regulation goal) in neural activity of the appraisal system, including the amygdala and the insula. It has been hypothesized that information about regulation goals needs to be processed through interactions between the control and appraisal systems in order to support cognitive reappraisal. However, how this information is represented in the dynamics of cortical activity remains largely unknown. To address this, we investigated temporal changes in gamma band activity (35-55 Hz) in human electroencephalograms during a cognitive reappraisal task that was comprised of three reappraisal goals: to decease, maintain, or increase emotional responses modulated by affect-laden pictures. We examined how the characteristics of gamma oscillations, such as spectral power and large-scale phase synchronization, represented cognitive reappraisal goals. We found that left frontal gamma power decreased, was sustained, or increased when the participants suppressed, maintained, or amplified their emotions, respectively. This change in left frontal gamma power appeared during an interval of 1926 to 2453 ms after stimulus onset. We also found that the number of phase-synchronized pairs of gamma oscillations over the entire brain increased when participants regulated their emotions compared to when they maintained their emotions. These results suggest that left frontal gamma power may reflect cortical representation of emotional states modulated by cognitive reappraisal goals and gamma phase synchronization across whole brain regions may reflect emotional regulatory efforts to achieve these goals. Our study may provide the basis for an electroencephalogram-based neurofeedback system for the cognitive regulation of emotion.

摘要

最近,人们为了解诸如认知重评等情绪认知调节背后的神经机制付出了诸多努力。许多研究报告称,对情绪的认知控制会导致控制系统(包括前额叶皮层和背侧前扣带回皮层)的神经活动增加,以及评估系统(包括杏仁核和脑岛)的神经活动增加或减少(取决于调节目标)。据推测,关于调节目标的信息需要通过控制和评估系统之间的相互作用来处理,以支持认知重评。然而,这种信息在皮层活动动态中是如何表征的,在很大程度上仍然未知。为了解决这个问题,我们在一项认知重评任务中研究了人类脑电图中伽马波段活动(35 - 55赫兹)的时间变化,该任务包括三个重评目标:减少、维持或增加由充满情感的图片所调节的情绪反应。我们研究了伽马振荡的特征,如频谱功率和大规模相位同步,是如何表征认知重评目标的。我们发现,当参与者分别抑制、维持或放大他们的情绪时,左额叶伽马功率会降低、保持稳定或增加。这种左额叶伽马功率的变化出现在刺激开始后的1926至2453毫秒的时间段内。我们还发现,与维持情绪时相比,当参与者调节情绪时,全脑范围内伽马振荡的相位同步对数量增加。这些结果表明,左额叶伽马功率可能反映了由认知重评目标调节的情绪状态的皮层表征,而全脑区域的伽马相位同步可能反映了为实现这些目标所做的情绪调节努力。我们的研究可能为基于脑电图的情绪认知调节神经反馈系统提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e20f/4234654/b33c8de0d804/pone.0113375.g001.jpg

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