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Tracking the fear memory engram: discrete populations of neurons within amygdala hypothalamus and lateral septum are specifically activated by auditory fear conditioning

机译:追踪恐惧记忆的过程:杏仁核下丘脑和外侧中隔内离散的神经元群体通过听觉恐惧调节被特别激活

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摘要

Memory formation is thought to occur via enhanced synaptic connectivity between populations of neurons in the brain. However, it has been difficult to localize and identify the neurons that are directly involved in the formation of any specific memory. We have previously used fos-tau-lacZ (FTL) transgenic mice to identify discrete populations of neurons in amygdala and hypothalamus, which were specifically activated by fear conditioning to a context. Here we have examined neuronal activation due to fear conditioning to a more specific auditory cue. Discrete populations of learning-specific neurons were identified in only a small number of locations in the brain, including those previously found to be activated in amygdala and hypothalamus by context fear conditioning. These populations, each containing only a relatively small number of neurons, may be directly involved in fear learning and memory.
机译:记忆形成被认为是通过增强大脑中神经元群体之间的突触连通性而发生的。但是,很难定位和识别直接参与任何特定记忆形成的神经元。我们以前曾使用过fos-tau-lacZ(FTL)转基因小鼠来识别杏仁核和下丘脑中离散的神经元种群,这些神经元通过恐惧条件适应性激活。在这里,我们检查了由于恐惧条件而导致的神经元激活,这种听觉条件更具体。仅在大脑中的少数几个位置识别出离散的学习特定神经元,包括先前因情境恐惧条件而在杏仁核和下丘脑中被激活的神经元。这些群体,每个群体仅包含相对少量的神经元,可能直接参与恐惧学习和记忆。

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