神经科学
基底外侧杏仁核
大脑中的恐惧处理
消光(光学矿物学)
前额叶皮质
心理学
光遗传学
扁桃形结构
帕尔瓦布明
恐惧条件反射
神经网络
边缘下皮质
认知
经典条件反射
生物神经网络
刺激(心理学)
英语
生物
古生物学
作者
Patrick Davis,Yosif Zaki,Jamie Maguire,Leon G. Reijmers
摘要
Davis et al. report that fear memories can be critically regulated by parvalbumin-expressing interneurons in the basolateral amygdala. Silencing these interneurons following fear memory extinction caused a reemergence of fear expression that was accompanied by increased activation of fear-encoding neurons and fear-associated 3–6 Hz oscillations within a basolateral amygdala–prefrontal cortex circuit. The mammalian brain contains dedicated circuits for both the learned expression and suppression of fear. These circuits require precise coordination to facilitate the appropriate expression of fear behavior, but the mechanisms underlying this coordination remain unclear. Using a combination of chemogenetics, activity-based neuronal-ensemble labeling and in vivo electrophysiology, we found that fear extinction learning confers on parvalbumin-expressing (PV) interneurons in the basolateral amygdala (BLA) a dedicated role in the selective suppression of a previously encoded fear memory and BLA fear-encoding neurons. In addition, following extinction learning, PV interneurons enable a competing interaction between a 6–12 Hz oscillation and a fear-associated 3–6 Hz oscillation within the BLA. Loss of this competition increases a 3–6 Hz oscillatory signature, with BLA→medial prefrontal cortex directionality signaling the recurrence of fear expression. The discovery of cellular and oscillatory substrates of fear extinction learning that critically depend on BLA PV interneurons could inform therapies aimed at preventing the pathological recurrence of fear following extinction learning.
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