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首页> 外文期刊>Neuropsychopharmacology >Learning-Induced Changes in mPFC|[ndash]|BLA Connections After Fear Conditioning, Extinction, and Reinstatement of Fear
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Learning-Induced Changes in mPFC|[ndash]|BLA Connections After Fear Conditioning, Extinction, and Reinstatement of Fear

机译:恐惧条件调整,消灭和恢复恐惧后,mPFC | nb || BLA连接的学习诱导变化

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The neural circuit linking the medial prefrontal cortex (mPFC) and the basolateral amygdala (BLA) has crucial roles in both the acquisition and the extinction of fear. However, the mechanism by which this circuit encodes fear and extinction remains unknown. In this study, we monitored changes in the magnitude of evoked field potentials (EFPs) in the mPFC–BLA and BLA–mPFC pathways following auditory fear conditioning and extinction, in freely moving rats. We report that extinction of fear is mediated by depression of the EFPs in the mPFC–BLA and by potentiation in the reciprocal pathway of BLA–mPFC. Interestingly, reinstatement of fear was associated with recovery of freezing and with reversal of the changes in EFPs that were observed following extinction in both pathways. The findings indicate that the mPFC–BLA circuit expresses differential changes following fear and extinction and point to dynamic and plastic changes underlying fear, extinction, and reinstatement. Manipulations targeting these different types of plasticity could constitute a therapeutic tool for the treatment of anxiety disorders.
机译:连接内侧前额叶皮层(mPFC)和基底外侧杏仁核(BLA)的神经回路在恐惧的获取和消退中都起着至关重要的作用。但是,该电路编码恐惧和灭绝的机制仍然未知。在这项研究中,我们监测了自由移动大鼠的听觉恐惧条件和灭绝后mPFC-BLA和BLA-mPFC途径中诱发的场电位(EFP)幅度的变化。我们报告说,恐惧的消退是由mPFC-BLA中EFP的抑制和BLA-mPFC互逆途径的增强介导的。有趣的是,恢复恐惧与冻结恢复和逆转EFPs的变化有关,这两种途径都消失了。研究结果表明,mPFC-BLA电路在恐惧和灭绝后表现出不同的变化,并指出在恐惧,灭绝和恢复中潜在的动态和塑性变化。针对这些不同类型的可塑性的操纵可以构成用于治疗焦虑症的治疗工具。

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