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脑-心耦合在 P300 潜伏期与前扣带皮层和脑岛有关——一项心脑电协方差追踪研究。

Brain-heart coupling at the P300 latency is linked to anterior cingulate cortex and insula--a cardio-electroencephalographic covariance tracing study.

机构信息

Department of Psychology, Philipps-Universität Marburg, Marburg, Germany.

出版信息

Biol Psychol. 2013 Sep;94(1):185-91. doi: 10.1016/j.biopsycho.2013.05.017. Epub 2013 Jun 2.

Abstract

Prior work on the coupling of cortical and cardiac responses to feedback demonstrated that feedback-evoked single-trial EEG magnitudes 300 ms post-stimulus predict the degree of subsequent cardiac acceleration. The main goal of the current study was to explore the neural sources of this phenomenon using (a) independent component analysis in conjunction with dipole fitting and (b) low resolution electromagnetic tomography (LORETA) in N=14 participants who performed a gambling task with feedback presented after each trial. It was shown that independent components localized near anterior cingulate cortex produced robust within-subjects correlations with feedback-evoked heart-period, suggesting that anterior cingulate cortex activity 300ms after feedback presentation predicts the strength of subsequent cardiac acceleration. Moreover, interindividual differences in evoked left insular cortex LORETA-estimated activity at around 300ms moderated within-subjects EEG-heart period correlations. These results suggest that key regions of central autonomic control are involved in cortico-cardiac coupling evoked by feedback stimuli.

摘要

先前关于皮质和心脏对反馈的反应耦合的研究表明,刺激后 300 毫秒反馈诱发的单试 EEG 幅度可预测随后心脏加速的程度。本研究的主要目的是使用 (a) 独立成分分析结合偶极子拟合和 (b) 在 N=14 名参与者中探索这种现象的神经源,这些参与者在每次试验后都进行了带有反馈的赌博任务。结果表明,定位于前扣带皮层附近的独立成分与反馈诱发的心动周期产生了强大的个体内相关性,表明反馈后 300 毫秒的前扣带皮层活动预测了随后心脏加速的强度。此外,个体间诱发的左岛叶皮层 LORETA 估计活动的差异在个体内 EEG-心动周期相关性中起调节作用。这些结果表明,中央自主控制的关键区域参与了由反馈刺激引起的皮质-心脏耦合。

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