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自我肯定的压力缓冲效应的神经机制。

Neural mechanisms of self-affirmation's stress buffering effects.

作者信息

Dutcher Janine M, Eisenberger Naomi I, Woo Hayoung, Klein William M P, Harris Peter R, Levine John M, Creswell John David

机构信息

Department of Psychology, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

Department of Psychology, University of California, Los Angeles, CA 90095, USA.

出版信息

Soc Cogn Affect Neurosci. 2020 Nov 10;15(10):1086-1096. doi: 10.1093/scan/nsaa042.

Abstract

Self-affirmation can buffer stress responses across different contexts, yet the neural mechanisms for these effects are unknown. Self-affirmation has been shown to increase activity in reward-related neural regions, including the ventral striatum and ventromedial prefrontal cortex (VMPFC). Given that reward-related prefrontal cortical regions such as the VMPFC are involved in reducing neurobiological and behavioral responses to stress, we hypothesized that self-affirmation would activate VMPFC and also reduce neural responses to stress in key neural threat system regions such as the dorsal anterior cingulate cortex (dACC) and anterior insula (AI). We explored this hypothesis using self-affirmation and evaluative stress tasks following a within-subjects design in the fMRI scanner. Consistent with prior work, self-affirmation blocks led to lower self-reported stress and improved performance. With respect to neural activity, compared to control blocks, self-affirmation blocks led to greater VMPFC activity, and subsequently less left AI (but not dACC) activity during stress task blocks. Functional connectivity analyses revealed greater connectivity between the VMPFC and left and right AI during self-affirmation compared to control. These findings begin to articulate the neural circuits involved in self-affirmation's effects during exposure to stressors, and more broadly specify neural reward-based responses to stressful situations.

摘要

自我肯定能够在不同情境下缓冲应激反应,但其背后的神经机制尚不明确。研究表明,自我肯定会增强与奖赏相关的神经区域的活动,包括腹侧纹状体和腹内侧前额叶皮质(VMPFC)。鉴于诸如VMPFC等与奖赏相关的前额叶皮质区域参与减少对压力的神经生物学和行为反应,我们推测自我肯定会激活VMPFC,并减少关键神经威胁系统区域(如背侧前扣带回皮质(dACC)和前脑岛(AI))对压力的神经反应。我们在功能磁共振成像扫描仪中采用被试内设计,通过自我肯定和评估性应激任务来探究这一假设。与先前的研究一致,自我肯定组导致自我报告的压力降低且表现改善。在神经活动方面,与对照组相比,自我肯定组在应激任务组期间导致VMPFC活动增强,随后左侧AI(而非dACC)活动减少。功能连接分析显示,与对照组相比,自我肯定期间VMPFC与左右AI之间的连接性更强。这些发现开始阐明在暴露于应激源期间自我肯定效应所涉及的神经回路,并更广泛地明确基于神经奖赏的对应激情况的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/702c/7657454/9920f10b5669/nsaa042f1.jpg

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