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Redefining Noradrenergic Neuromodulation of Behavior: Impacts of a Modular Locus Coeruleus Architecture

机译:重新定义行为的去甲肾上腺素能神经调节:模块化的轨迹蓝斑构架的影响。

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摘要

The locus coeruleus (LC) is a seemingly singular and compact neuromodulatory nucleus that is a prominent component of disparate theories of brain function due to its broad noradrenergic projections throughout the CNS. As a diffuse neuromodulatory system, noradrenaline affects learning and decision making, control of sleep and wakefulness, sensory salience including pain, and the physiology of correlated forebrain activity (ensembles and networks) and brain hemodynamic responses. However, our understanding of the LC is undergoing a dramatic shift due to the application of state-of-the-art methods that reveal a nucleus of many modules that provide targeted neuromodulation. Here, we review the evidence supporting a modular LC based on multiple levels of observation (developmental, genetic, molecular, anatomical, and neurophysiological). We suggest that the concept of the LC as a singular nucleus and, alongside it, the role of the LC in diverse theories of brain function must be reconsidered.
机译:蓝斑轨迹(LC)是一个看似单一且紧凑的神经调节核,由于其在整个CNS中的广泛的去甲肾上腺素能投射,因此是不同的脑功能理论的重要组成部分。去甲肾上腺素作为一种分散的神经调节系统,会影响学习和决策,睡眠和清醒的控制,包括疼痛在内的感觉显着性以及相关的前脑活动(集合体和网络)的生理以及脑血流动力学反应。但是,由于对最新技术的应用,我们对LC的理解正在发生巨大变化,这些方法揭示了许多提供靶向神经调节作用的模块的核心。在这里,我们回顾了基于多种观察水平(发育,遗传,分子,解剖和神经生理学)支持模块化LC的证据。我们建议,必须重新考虑LC作为奇异核的概念,以及LC在单个脑功能理论中的作用。

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