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首页> 外文期刊>American Journal of Physiology >Hindbrain noradrenergic A2 neurons: diverse roles in autonomic, endocrine, cognitive, and behavioral functions.
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Hindbrain noradrenergic A2 neurons: diverse roles in autonomic, endocrine, cognitive, and behavioral functions.

机译:后脑去甲肾上腺素A2神经元:在自主神经,内分泌,认知和行为功能中的多种作用。

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摘要

Central noradrenergic (NA) signaling is broadly implicated in behavioral and physiological processes related to attention, arousal, motivation, learning and memory, and homeostasis. This review focuses on the A2 cell group of NA neurons, located within the hindbrain dorsal vagal complex (DVC). The intra-DVC location of A2 neurons supports their role in vagal sensory-motor reflex arcs and visceral motor outflow. A2 neurons also are reciprocally connected with multiple brain stem, hypothalamic, and limbic forebrain regions. The extra-DVC connections of A2 neurons provide a route through which emotional and cognitive events can modulate visceral motor outflow and also a route through which interoceptive feedback from the body can impact hypothalamic functions as well as emotional and cognitive processing. This review considers some of the hallmark anatomical and chemical features of A2 neurons, followed by presentation of evidence supporting a role for A2 neurons in modulating food intake, affective behavior, behavioral and physiological stress responses, emotional learning, and drug dependence. Increased knowledge about the organization and function of the A2 cell group and the neural circuits in which A2 neurons participate should contribute to a better understanding of how the brain orchestrates adaptive responses to the various threats and opportunities of life and should further reveal the central underpinnings of stress-related physiological and emotional dysregulation.
机译:中枢去甲肾上腺素(NA)信号广泛涉及与注意力,唤醒,动机,学习和记忆以及体内稳态有关的行为和生理过程。这篇评论集中在位于后脑背迷走神经复合体(DVC)内的NA神经元的A2细胞群。 A2神经元在DVC内的位置支持其在迷走感觉运动反射弧和内脏运动外流中的作用。 A2神经元也与多个脑干,下丘脑和边缘前脑区相互连接。 A2神经元的DVC外连接提供了一条途径,通过该途径情感和认知事件可以调节内脏运动外流,还提供了一条途径,通过该途径,来自人体的感受性反馈可以影响下丘脑功能以及情感和认知过程。这篇综述考虑了A2神经元的一些标志性解剖和化学特征,随后提出了支持A2神经元在调节食物摄入,情感行为,行为和生理应激反应,情感学习以及药物依赖性中作用的证据。对A2细胞组和A2神经元参与的神经回路的组织和功能的了解的增加,应有助于更好地理解大脑如何精心安排对各种威胁和生命机会的适应性反应,并应进一步揭示A2神经元的主要基础。与压力有关的生理和情绪失调。

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