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首页> 外文期刊>Neuron >A Role for the Locus Coeruleus in Hippocampal CA1 Place Cell Reorganization during Spatial Reward Learning
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A Role for the Locus Coeruleus in Hippocampal CA1 Place Cell Reorganization during Spatial Reward Learning

机译:在空间奖励学习期间对海马CA1置于海马CA1的基因座CO1的作用

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During spatial learning, hippocampal (HPC) place maps reorganize to represent new goal locations, but little is known about the circuit mechanisms facilitating these changes. Here, we examined how neuromodulation via locus coeruleus (LC) projections to HPC area CA1 (LC-CA1) regulates the overrepresentation of CA1 place cells near rewarded locations. Using two-photon calcium imaging, we monitored the activity of LC-CA1 fibers in the mouse dorsal HPC. We find that the LC-CA1 projection signals the translocation of a reward, predicting behavioral performance on a goal-oriented spatial learning task. An optogenetic stimulation mimicking this LC-CA1 activity induces place cell reorganization around a familiar reward, while its inhibition decreases the degree of overrepresentation around a translocated reward. Our results show that LC acts in conjunction with other factors to induce goaldirected reorganization of HPC representations and provide a better understanding of the role of neuromodulatory actions on HPC place map plasticity.
机译:在空间学习期间,海马(HPC)地图重新组织以代表新的目标位置,但关于促进这些变化的电路机制很少。在这里,我们检查了通过基因座Coeruleus(LC)投影到HPC区域CA1(LC-CA1)的神经调节如何调节CA1的过度陈述,将电池放置在奖励位置附近。使用双光子钙成像,我们监测了小鼠背部HPC中LC-CA1纤维的活性。我们发现LC-CA1投影发出折衷奖励,预测面向目标的空间学习任务的行为性能。模仿该LC-CA1活动的致灭刺激诱导围绕熟悉的奖励的地区细胞重组,而其抑制率降低了围绕易位奖励的超重程度。我们的研究结果表明,LC与其他因素结合起来,以诱导统计统计的综合性统计信息的重组,并更好地了解神经调节行为对HPC地图可塑性的作用。

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