腹内侧前额叶皮层,而不是杏仁核,对负面情绪面孔的反应可以预测贪婪的人格特征。

IF 4.7 2区 心理学 Q1 BEHAVIORAL SCIENCES
Kun Deng, Weipeng Jin, Keying Jiang, Zixi Li, Hohjin Im, Shuning Chen, Hanxiao Du, Shunping Guan, Wei Ge, Chuqiao Wei, Bin Zhang, Pinchun Wang, Guang Zhao, Chunhui Chen, Liqing Liu, Qiang Wang
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引用次数: 0

摘要

本研究采用基于任务和静息状态的功能连通性分析(ntotal = 452)探讨了杏仁核反应是否能预测贪婪人格特质(GPT)。在队列1 (n = 83)中,基于任务的功能性磁共振成像(t-fMRI)结果显示,杏仁核对恐惧和愤怒面孔的反应与GPT之间没有直接关联。相反,全脑分析显示,与恐惧+愤怒的面孔>形状相比,GPT与右侧腹内侧前额叶皮层(vmPFC)、边缘上回和角回的激活呈显著负相关。此外,基于任务的心理生理相互作用(PPI)分析表明,与低GPT组相比,高GPT组在处理恐惧或愤怒的面孔时,vmPFC种子与自上而下的控制网络和视觉通路的功能连通性较弱。在队列2中,静息状态功能连通性(rs-FC)分析表明,高GPT个体的vmPFC种子与自上而下控制网络和视觉通路之间的连通性更强。通过对队列1的PPI分析,比较两个队列,双侧杏仁核种子显示高组与自上而下控制网络的关联较弱。然而,他们在队列2中表现出不同的rs-FC模式(例如,GPT与左侧杏仁核自上而下网络FC呈正相关,而与右侧杏仁核视觉通路FC负相关)。这项研究强调了vmPFC在理解GPT中的作用及其功能连接,而不是杏仁核的反应性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reactivity of the ventromedial prefrontal cortex, but not the amygdala, to negative emotion faces predicts greed personality trait.

This study explored whether amygdala reactivity predicted the greed personality trait (GPT) using both task-based and resting-state functional connectivity analyses (ntotal = 452). In Cohort 1 (n = 83), task-based functional magnetic resonance imaging (t-fMRI) results from a region-of-interest (ROI) analysis revealed no direct correlation between amygdala reactivity to fearful and angry faces and GPT. Instead, whole-brain analyses revealed GPT to robustly negatively vary with activations in the right ventromedial prefrontal cortex (vmPFC), supramarginal gyrus, and angular gyrus in the contrast of fearful + angry faces > shapes. Moreover, task-based psychophysiological interaction (PPI) analyses showed that the high GPT group showed weaker functional connectivity of the vmPFC seed with a top-down control network and visual pathways when processing fearful or angry faces compared to their lower GPT counterparts. In Cohort 2, resting-state functional connectivity (rs-FC) analyses indicated stronger connectivity between the vmPFC seed and the top-down control network and visual pathways in individuals with higher GPT. Comparing the two cohorts, bilateral amygdala seeds showed weaker associations with the top-down control network in the high group via PPI analyses in Cohort 1. Yet, they exhibited distinct rs-FC patterns in Cohort 2 (e.g., positive associations of GPT with the left amygdala-top-down network FC but negative associations with the right amygdala-visual pathway FC). The study underscores the role of the vmPFC and its functional connectivity in understanding GPT, rather than amygdala reactivity.

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来源期刊
Behavioral and Brain Functions
Behavioral and Brain Functions 医学-行为科学
CiteScore
5.90
自引率
0.00%
发文量
11
审稿时长
6-12 weeks
期刊介绍: A well-established journal in the field of behavioral and cognitive neuroscience, Behavioral and Brain Functions welcomes manuscripts which provide insight into the neurobiological mechanisms underlying behavior and brain function, or dysfunction. The journal gives priority to manuscripts that combine both neurobiology and behavior in a non-clinical manner.
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