Neurophysiological and Autonomic Dynamics of Threat Processing during Sustained Social Fear Generalization.

IF 3.1 3区 医学 Q2 NEUROSCIENCES
Jourdan J Pouliot, Richard T Ward, Caitlin M Traiser, Payton Chiasson, Faith E Gilbert, Andreas Keil
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Abstract

Survival in dynamic environments requires that organisms learn to predict danger from situational cues. One key facet of threat prediction is generalization from a predictive cue to similar cues, ensuring that a cue-outcome contingency is applied beyond the original learning environment. Generalization has been observed in laboratory studies of aversive conditioning: Behavioral and physiological processes generalize responses from a stimulus paired with threat (the conditioned stimulus [CS+]) to unpaired stimuli, with response magnitudes varying with CS+ similarity. In contrast, work focusing on sensory responses in visual cortex has found a sharpening pattern, in which responses to stimuli closely resembling the CS+ are maximally suppressed, potentially reflecting lateral inhibitory interactions with the CS+ representation. Originally demonstrated with simple visual cues, changes in visuocortical tuning have also been observed in threat generalization learning across facial identities. It is unclear to what extent these visuocortical changes represent transient or sustained effects and if generalization learning requires prior conditioning to the CS+. The present study addressed these questions using EEG and pupillometry in an aversive generalization paradigm involving hundreds of trials using a gradient of facial identities. Visuocortical steady-state visual evoked potential sharpening occurred after dozens of trials of generalization learning without prior differential conditioning, but diminished as learning continued. By contrast, generalization of alpha power suppression, pupil dilation, and self-reported valence and arousal was seen throughout the experiment. Findings are consistent with threat processing models emphasizing the role of changing visucocortical and attentional dynamics when forming, curating, and shaping fear memories as observers continue learning about stimulus-outcome contingencies.

持续的社交恐惧泛化过程中威胁处理的神经生理学和自律神经动力学。
要在动态环境中生存,生物就必须学会从环境线索中预测危险。威胁预测的一个关键方面就是从预测线索到类似线索的泛化,确保线索-结果的或然性适用于最初的学习环境之外。在厌恶性条件反射的实验室研究中已经观察到了泛化现象:行为和生理过程会将与威胁配对的刺激物(条件刺激 [CS+])的反应泛化到未配对的刺激物上,反应幅度随 CS+ 的相似性而变化。与此相反,针对视觉皮层感觉反应的研究发现了一种锐化模式,即对与 CS+ 非常相似的刺激的反应受到最大程度的抑制,这可能反映了与 CS+ 表征之间的横向抑制性相互作用。视觉皮层调谐的变化最初是通过简单的视觉线索证明的,但在面部特征的威胁泛化学习中也观察到了这种变化。目前还不清楚这些视觉皮层的变化在多大程度上代表了瞬时或持续的效应,也不清楚泛化学习是否需要事先对 CS+ 进行条件反射。本研究使用脑电图和瞳孔测量法在一个厌恶泛化范式中解决了这些问题,该范式涉及数百次使用梯度面部特征的试验。视觉皮层稳态视觉诱发电位在进行了数十次泛化学习后出现了锐化,而事先并没有进行差异条件反射,但随着学习的继续而减弱。相反,在整个实验过程中,α功率抑制、瞳孔放大以及自我报告的情绪和唤醒都出现了泛化。研究结果与威胁处理模型一致,该模型强调在观察者继续学习刺激-结果或然性的过程中,视觉皮层和注意力动态变化在形成、策划和塑造恐惧记忆时的作用。
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来源期刊
Journal of Cognitive Neuroscience
Journal of Cognitive Neuroscience 医学-神经科学
CiteScore
5.30
自引率
3.10%
发文量
151
审稿时长
3-8 weeks
期刊介绍: Journal of Cognitive Neuroscience investigates brain–behavior interaction and promotes lively interchange among the mind sciences.
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