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Hippocampal Erk mechanisms linking prediction error to fear extinction: Roles of shock expectancy and contextual aversive valence

机译:海马Erk机制将预测错误与恐惧消退联系起来:休克预期和背景厌恶性价的作用

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Extinction of fear requires learning that anticipated aversive events no longer occur. Animal models reveal that sustained phosphorylation of the extracellular signal-regulated kinase (Erk) in hippocampal CA1 neurons plays an important role in this process. However, the key signals triggering and regulating the activity of Erk are not known. By varying the degree of expected and delivered aversive reinforcement, we demonstrate that Erk specifically responds to prediction errors of contextual aversive events. An increase of somatonuclear phospho-Erk (pErk) within principal CA1 neurons was observed only when the expectation of contextual foot shock was violated, but not when the context was consistently nonreinforced or reinforced by foot shock. The rate of error detection, Erk signaling, and fear extinction markedly depended on shock expectancy and the aversive valence of the context, as revealed by comparison of groups trained with single, continuous, or partial reinforcement. On the basis of these findings, the hippocampal Erk response to prediction errors of aversive outcome is proposed as a unique mechanism of fear extinction. Improving the detection and processing of these errors has the potential to attenuate fear responses in patients with anxiety disorders.
机译:消除恐惧需要了解不再发生预期的厌恶事件。动物模型显示,海马CA1神经元中胞外信号调节激酶(Erk)的持续磷酸化在此过程中起重要作用。但是,触发和调节Erk活动的关键信号尚不清楚。通过改变预期和交付的厌恶强化的程度,我们证明Erk特别能响应上下文厌恶事件的预测错误。仅当违反了情景足部电击的预期时,才观察到主要CA1神经元内的体细胞核磷酸化Erk(pErk)的增加,而当情景持续地不被足部电击增强或增强时,则观察不到。错误检测,Erk信号传递和恐惧消退的发生率明显取决于休克期望值和背景的厌恶效价,这是通过对接受单项,连续或部分强化训练的组进行比较得出的。基于这些发现,提出海马Erk对厌恶预后的预测误差的反应是恐惧消灭的独特机制。改善对这些错误的检测和处理有可能减弱焦虑症患者的恐惧反应。

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