首页> 美国卫生研究院文献>Frontiers in Human Neuroscience >Common and Unique Neural Systems Underlying the Working Memory Maintenance of Emotional vs. Bodily Reactions to Affective Stimuli: The Moderating Role of Trait Emotional Awareness
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Common and Unique Neural Systems Underlying the Working Memory Maintenance of Emotional vs. Bodily Reactions to Affective Stimuli: The Moderating Role of Trait Emotional Awareness

机译:共同的和独特的神经系统对情感刺激和身体反应对情感刺激的工作记忆保持:特质情绪意识的调节作用

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摘要

Many leading theories suggest that the neural processes underlying the experience of one’s own emotional reactions partially overlap with those underlying bodily perception (i.e., interoception, somatosensation, and proprioception). However, the goal-directed maintenance of one’s own emotions in working memory (EWM) has not yet been compared to WM maintenance of one’s own bodily reactions (BWM). In this study, we contrasted WM maintenance of emotional vs. bodily reactions to affective stimuli in 26 healthy individuals while they underwent functional magnetic resonance imaging. Specifically, we examined the a priori hypothesis that individual differences in trait emotional awareness (tEA) would lead to greater differences between these two WM conditions within medial prefrontal cortex (MPFC). We observed that MPFC activation during EWM (relative to BWM) was positively associated with tEA. Whole-brain analyses otherwise suggested considerable similarity in the neural activation patterns associated with EWM and BWM. In conjunction with previous literature, our findings not only support a central role of body state representation/maintenance in EWM, but also suggest greater engagement of MPFC-mediated conceptualization processes during EWM in those with higher tEA.
机译:许多领先的理论表明,一个人自己的情绪反应所基于的神经过程与那些身体知觉(即,相互感觉,躯体感觉和本体感觉)部分重叠。但是,尚未将以目标为导向的在工作记忆中维持自己的情绪(EWM)与以WM维持自己的身体反应(BWM)相提并论。在这项研究中,我们对比了26名健康个体在接受功能性磁共振成像时对情感刺激的情绪和身体反应的WM维持情况。具体来说,我们检查了先验假说,即特质情绪意识(tEA)的个体差异将导致内侧前额叶皮层(MPFC)内这两种WM条件之间的差异更大。我们观察到,EWM(相对于BWM)中的MPFC激活与tEA正相关。否则,全脑分析表明与EWM和BWM相关的神经激活模式有相当的相似性。结合以前的文献,我们的发现不仅支持机体状态表示/维护在EWM中的重要作用,而且还表明在tEA较高的人群中,MPFC介导的概念化过程更多地参与了EWM。

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