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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Central Amygdala Somatostatin Neurons Gate Passive and Active Defensive Behaviors
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Central Amygdala Somatostatin Neurons Gate Passive and Active Defensive Behaviors

机译:中枢杏仁核生长抑素神经元门的被动和主动防御行为

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摘要

The central amygdala (CeA) has a key role in learning and expression of defensive responses. Recent studies indicate that somatostatin-expressing (SOM+) neurons in the lateral division of the CeA (CeL) are essential for the acquisition and recall of conditioned freezing behavior, which has been used as an index of defensive response in laboratory animals during Pavlovian fear conditioning. However, how exactly these neurons participate in fear conditioning and whether they contribute to the generation of defensive responses other than freezing remain unknown. Here, using fiber-optic photometry combined with optogenetic and molecular techniques in behaving mice, we show that SOM+ CeL neurons are activated by threat-predicting sensory cues after fear conditioning and that activation of these neurons suppresses ongoing actions and converts an active defensive behavior to a passive response. Furthermore, inhibition of these neurons using optogenetic or molecular methods promotes active defensive behaviors. Our results provide the first in vivo evidence that SOM+ neurons represent a CeL population that acquires learning-dependent sensory responsiveness during fear conditioning and furthermore reveal an important role of these neurons in gating passive versus active defensive behaviors in animals confronted with threat.
机译:中央杏仁核(CeA)在学习和表达防御反应中起关键作用。最近的研究表明,在CeA(CeL)外侧分裂中表达生长抑素(SOM +)的神经元对于获得和回忆条件性冰冻行为至关重要,该行为已被用作巴甫洛夫式恐惧条件下实验动物防御反应的指标。然而,这些神经元究竟如何参与恐惧调节以及它们是否有助于除冰冻之外的防御反应的产生仍是未知的。在这里,使用光纤光度法结合行为小鼠的光遗传学和分子技术,我们表明恐惧恐惧后,SOM + CeL神经元被威胁预测的感觉线索激活,并且这些神经元的激活抑制了正在进行的动作并将主动防御行为转化为被动回应。此外,使用光遗传学或分子方法抑制这些神经元可促进主动防御行为。我们的结果提供了第一个体内证据,即SOM +神经元代表了CeL种群,在恐惧调节过程中获得了学习依赖性的感觉反应,并且进一步揭示了这些神经元在控制面临威胁的动物的被动防御与主动防御行为中的重要作用。

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