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杏仁核介导的情绪面部表情知觉决策中的连接。

Amygdala mediated connectivity in perceptual decision-making of emotional facial expressions.

机构信息

Department of Physics and Astronomy, Georgia State University, Atlanta, GA 30303, USA.

出版信息

Brain Connect. 2013;3(4):386-97. doi: 10.1089/brain.2013.0145.

Abstract

Recognizing emotional facial expressions is a part of perceptual decision-making processes in the brain. Arriving at a decision for the brain becomes more difficult when available sensory information is limited or ambiguous. We used clear and noisy pictures with happy and angry emotional expressions and asked 32 participants to categorize these pictures based on emotions. There were significant differences in behavioral accuracy and reaction time between the decisions of clear and noisy images. The functional magnetic resonance imaging activations showed that the inferior occipital gyrus (IOG), fusiform gyrus (FG), amygdala (AMG) and ventrolateral prefrontal cortex (VPFC) along with other regions were active during the perceptual decision-making process. Using dynamic causal modeling analysis, we obtained three important results. First, from Bayesian model selection (BMS) approach, we found that the feed-forward network activity was enhanced during the processing of clear and noisy happy faces more than during the processing of clear angry faces. The AMG mediated this feed-forward connectivity in processing of clear and noisy happy faces, whereas the AMG mediation was absent in case of clear angry faces. However, this network activity was enhanced in case of noisy angry faces. Second, connectivity parameters obtained from Bayesian model averaging (BMA) suggested that the forward connectivity dominated over the backward connectivity during such processes. Third, based on the BMA parameters, we found that the easier tasks modulated effective connectivity from IOG to FG, AMG, and VPFC more than the difficult tasks did. These findings suggest that both parallel and hierarchical brain processes are at work during perceptual decision-making of negative, positive, unambiguous and ambiguous emotional expressions, but the AMG-mediated feed-forward network plays a dominant role in such decisions.

摘要

识别面部表情是大脑感知决策过程的一部分。当可用的感觉信息有限或模棱两可时,大脑做出决策就变得更加困难。我们使用清晰和嘈杂的带有快乐和愤怒情绪表达的图片,要求 32 名参与者根据情绪对这些图片进行分类。清晰和嘈杂图像的决策在行为准确性和反应时间上存在显著差异。功能磁共振成像激活显示,在下顶叶脑回(IOG)、梭状回(FG)、杏仁核(AMG)和腹外侧前额叶皮层(VPFC)以及其他区域在感知决策过程中活跃。使用动态因果建模分析,我们获得了三个重要结果。首先,从贝叶斯模型选择(BMS)方法中,我们发现,在处理清晰和嘈杂的快乐面孔时,前馈网络活动比处理清晰和嘈杂的愤怒面孔时增强。AMG 介导了清晰和嘈杂的快乐面孔处理中的这种前馈连接,而在清晰的愤怒面孔处理中则不存在 AMG 介导。然而,在嘈杂的愤怒面孔处理中,这种网络活动增强了。其次,贝叶斯模型平均(BMA)得到的连接参数表明,在这些过程中,前向连接支配着后向连接。第三,基于 BMA 参数,我们发现,简单任务比困难任务更能调节从 IOG 到 FG、AMG 和 VPFC 的有效连接。这些发现表明,在对负面、正面、明确和模糊的情绪表达进行感知决策时,平行和分层的大脑过程都在起作用,但 AMG 介导的前馈网络在这些决策中起着主导作用。

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