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Prefrontal entrainment of amygdala activity signals safety in learned fear and innate anxiety

机译:杏仁核活动的额叶前夹带表明学习恐惧和先天性焦虑的安全性

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摘要

Successfully differentiating safety from danger is an essential skill for survival. While decreased activity in the medial prefrontal cortex (mPFC) is associated with fear generalization in animals and humans, the circuit level mechanisms used by the mPFC to discern safety are not clear. To answer this question, we recorded activity in the mPFC, basolateral amygdala (BLA), and dorsal (dHPC) and ventral hippocampus (vHPC) in mice during exposure to learned (differential fear conditioning) and innate (open field) anxiety. We found increased synchrony between the mPFC and BLA in the theta frequency range (4–12 Hz) only in animals that differentiate between averseness and safety. Moreover, during recognized safety across learned and innate paradigms, BLA firing becomes entrained to theta input from the mPFC. These data suggest that selective tuning of BLA firing to mPFC input provides a safety-signaling mechanism whereby the mPFC taps into the microcircuitry of the amygdala to diminish fear.
机译:成功地将安全与危险区分开是生存的一项基本技能。尽管内侧前额叶皮层(mPFC)的活动减少与动物和人类的恐惧泛滥有关,但mPFC用来识别安全性的电路级机制尚不清楚。为了回答这个问题,我们在暴露于学习性(差异性恐惧条件)和先天性(开放性)焦虑症的小鼠中记录了mPFC,基底外侧杏仁核(BLA)和背侧(dHPC)和腹侧海马(vHPC)的活性。我们发现只有在区分厌恶性和安全性的动物中,mPFC和BLA在theta频率范围(4–12 Hz)中的同步性增加。而且,在公认的学习范式和先天范式的公认安全性中,BLA触发会被带入mPFC的theta输入。这些数据表明,选择性调节BLA触发至mPFC输入可提供一种安全信号机制,从而使mPFC进入杏仁核的微电路中以减轻恐惧。

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