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Fear renewal preferentially activates ventral hippocampal neurons projecting to both amygdala and prefrontal cortex in rats

机译:恐惧更新优先激活大鼠投射到杏仁核和前额叶皮层的腹侧海马神经元

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Anxiety, trauma and stress-related disorders are often characterized by a loss of context-appropriate emotional responding. The contextual retrieval of emotional memory involves hippocampal projections to the medial prefrontal cortex and amygdala; however the relative contribution of these projections is unclear. To address this question, we characterized retrieval-induced Fos expression in ventral hippocampal (VH) neurons projecting to the prelimbic cortex (PL) and basal amygdala (BA) after the extinction of conditioned fear in rats. After extinction, freezing behavior (an index of learned fear) to the auditory conditioned stimulus was suppressed in the extinction context, but was “renewed” in another context. Hippocampal neurons projecting to either PL or BA exhibited similar degrees of context-dependent Fos expression; there were more Fos-positive neurons in each area after the renewal, as opposed, to suppression of fear. Importantly, however, VH neurons projecting to both PL and BA were more likely to express Fos during fear renewal than neurons projecting to either PL or BA alone. These data suggest that although projections from the hippocampus to PL and BA are similarly involved in the contextual retrieval of emotional memories, VH neurons with collaterals to both areas may be particularly important for synchronizing prefrontal-amygdala circuits during fear renewal.
机译:焦虑,创伤和与压力有关的疾病通常以缺乏适合情境的情绪反应为特征。情绪记忆的上下文检索涉及到前额内侧皮层和杏仁核的海马突触。然而,这些预测的相对贡献尚不清楚。为了解决这个问题,我们描述了条件恐惧症消失后,在腹侧海马(VH)神经元中恢复诱导的Fos表达,该神经元投射到前肢皮层(PL)和基底杏仁核(BA)。灭绝后,在灭绝环境中抑制了对听觉条件刺激的冻结行为(一种学习恐惧的指数),但在另一种情况下“恢复了”。投射到PL或BA的海马神经元表现出相似程度的上下文相关Fos表达;在更新之后,每个区域中都有更多的Fos阳性神经元,这与抑制恐惧相反。然而,重要的是,投射到PL和BA的VH神经元在恐惧更新期间比投射到单独PL或BA的神经元更有可能表达Fos。这些数据表明,尽管从海马到PL和BA的预测也类似地参与了情绪记忆的情境恢复,但在恐惧更新期间,同步带到两个区域的VH神经元对于同步前额-杏仁核回路可能尤其重要。

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