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Amygdala Inhibitory Circuits Regulate Associative Fear Conditioning

机译:Amygdala抑制电路调节联想恐惧调理

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Associative memory formation is essential for an animal’s survival by ensuring adaptive behavioral responses in an ever-changing environment. This is particularly important under conditions of immediate threats such as in fear learning. One of the key brain regions involved in associative fear learning is the amygdala. The basolateral amygdala is the main entry site for sensory information to the amygdala complex, and local plasticity in excitatory basolateral amygdala principal neurons is considered to be crucial for learning of conditioned fear responses. However, activity and plasticity of excitatory circuits are tightly controlled by local inhibitory interneurons in a spatially and temporally defined manner. In this review, we provide an updated view on how distinct interneuron subtypes in the basolateral amygdala contribute to the acquisition and extinction of conditioned fear memories.
机译:通过确保在不断变化的环境中的适应性行为响应,联想记忆形成对于动物的生存至关重要。 在恐惧学习等即时威胁的条件下,这尤其重要。 涉及联想恐惧学习的关键大脑区域之一是Amygdala。 Basolateral Amygdala是对杏仁菌的感官信息的主要进入部位,并且兴奋性基底外侧杏仁属主要神经元的局部可塑性被认为是学习条件恐惧反应的至关重要。 然而,兴奋性电路的活性和可塑性通过局部抑制性核心以空间和时间定义的方式紧密控制。 在这篇综述中,我们提供了关于基于基石Amygdala中的独特Interneuron亚型的更新视图,这有助于收购和灭绝条件恐惧记忆。

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