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Noradrenergic Regulation of Central Amygdala in Aversive Pavlovian-to-Instrumental Transfer

机译:厌恶性巴甫洛夫向器械转移中杏仁核的去甲肾上腺素能调节。

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摘要

The neural mechanisms through which a Pavlovian conditioned stimulus (CS) elicits innate defense responses are well understood. But a Pavlovian CS can also invigorate ongoing instrumental responding, as shown by studies of aversive Pavlovian-to-instrumental transfer (PIT). While the neural circuitry of appetitive PIT has been studied extensively, little is known about the brain mechanisms of aversive PIT. We recently showed the central amygdala (CeA) is essential for aversive PIT. In the current studies, using pharmacology and designer receptors in rodents, we demonstrate that noradrenergic (NE) activity negatively regulates PIT via brainstem locus coeruleus (LC) activity and LC projections to CeA. Our results provide evidence for a novel pathway through which response modulation occurs between brainstem neuromodulatory systems and CeA to invigorate adaptive behavior in the face of threat.
机译:帕夫洛夫条件刺激(CS)引发先天防御反应的神经机制已广为人知。但是,如对厌恶性巴甫洛夫式器械转换(PIT)的研究所示,巴甫洛夫式CS也可以增强正在进行的工具反应。尽管对PIT的神经回路进行了广泛的研究,但对PIT的大脑机制知之甚少。我们最近显示,中央杏仁核(CeA)对于厌恶性PIT至关重要。在当前的研究中,我们使用啮齿动物的药理学和设计受体,我们证明去甲肾上腺素(NE)活性通过脑干轨迹蓝藻(LC)活性和LC对CeA的预测负调控PIT。我们的结果提供了一种新颖的途径的证据,通过该途径,脑干神经调节系统和CeA之间可以发生反应调节,从而在面对威胁时增强适应性行为。

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