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玩视频游戏时的计算成像显示出情绪的皮质和皮质下网络的动态同步。

Computational imaging during video game playing shows dynamic synchronization of cortical and subcortical networks of emotions.

机构信息

Laboratory for Behavioral Neurology and Imaging of Cognition, Department of Fundamental Neuroscience, University of Geneva, Geneva, Switzerland.

Swiss Center for Affective Sciences, University of Geneva, Geneva, Switzerland.

出版信息

PLoS Biol. 2020 Nov 12;18(11):e3000900. doi: 10.1371/journal.pbio.3000900. eCollection 2020 Nov.

Abstract

Emotions are multifaceted phenomena affecting mind, body, and behavior. Previous studies sought to link particular emotion categories (e.g., fear) or dimensions (e.g., valence) to specific brain substrates but generally found distributed and overlapping activation patterns across various emotions. In contrast, distributed patterns accord with multi-componential theories whereby emotions emerge from appraisal processes triggered by current events, combined with motivational, expressive, and physiological mechanisms orchestrating behavioral responses. According to this framework, components are recruited in parallel and dynamically synchronized during emotion episodes. Here, we use functional MRI (fMRI) to investigate brain-wide systems engaged by theoretically defined components and measure their synchronization during an interactive emotion-eliciting video game. We show that each emotion component recruits large-scale cortico-subcortical networks, and that moments of dynamic synchronization between components selectively engage basal ganglia, sensory-motor structures, and midline brain areas. These neural results support theoretical accounts grounding emotions onto embodied and action-oriented functions triggered by synchronized component processes.

摘要

情绪是影响思维、身体和行为的多层面现象。先前的研究试图将特定的情绪类别(如恐惧)或维度(如效价)与特定的大脑基质联系起来,但通常发现各种情绪的激活模式是分布和重叠的。相比之下,分布式模式符合多成分理论,即情绪是由当前事件引发的评价过程产生的,同时结合了调节行为反应的动机、表达和生理机制。根据这一框架,在情绪发作期间,各个组成部分会并行招募,并实现动态同步。在这里,我们使用功能磁共振成像(fMRI)来研究理论定义的组成部分所涉及的大脑广泛系统,并测量它们在互动情绪诱发视频游戏中的同步性。我们表明,每个情绪组成部分都招募了大规模的皮质下网络,而组成部分之间动态同步的时刻则选择性地参与了基底神经节、感觉运动结构和中线脑区。这些神经学结果支持了将情绪建立在由同步组成部分过程触发的具身和面向行动的功能之上的理论解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65bc/7685507/511e2e79e55e/pbio.3000900.g001.jpg

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