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用于控制棕色脂肪组织产热和颤抖的传出神经通路。

Efferent neural pathways for the control of brown adipose tissue thermogenesis and shivering.

作者信息

Morrison Shaun F

机构信息

Department of Neurological Surgery, Oregon Health and Science University, Portland, OR, United States.

出版信息

Handb Clin Neurol. 2018;156:281-303. doi: 10.1016/B978-0-444-63912-7.00017-5.

Abstract

The fundamental central neural circuits for thermoregulation orchestrate behavioral and autonomic repertoires that maintain body core temperature during thermal challenges that arise from either the ambient or the internal environment. This review summarizes our understanding of the neural pathways within the fundamental thermoregulatory reflex circuitry that comprise the efferent (i.e., beyond thermosensory) control of brown adipose tissue (BAT) and shivering thermogenesis: the motor neuron systems consisting of the BAT sympathetic preganglionic neurons and BAT sympathetic ganglion cells, and the alpha- and gamma-motoneurons; the premotor neurons in the region of the rostral raphe pallidus, and the thermogenesis-promoting neurons in the dorsomedial hypothalamus/dorsal hypothalamic area. Also included are inputs to, and neurochemical modulators of, these efferent neuronal populations that could influence their activity during thermoregulatory responses. Signals of metabolic status can be particularly significant for the energy-hungry thermoeffectors for heat production.

摘要

体温调节的基本中枢神经回路协调行为和自主反应,在由外界或内部环境引起的热挑战期间维持身体核心温度。本综述总结了我们对基本体温调节反射回路中神经通路的理解,这些神经通路包括对棕色脂肪组织(BAT)和寒颤产热的传出(即超出温度感觉)控制:由BAT交感神经节前神经元和BAT交感神经节细胞组成的运动神经元系统,以及α和γ运动神经元;延髓中缝苍白质区域的运动前神经元,以及背内侧下丘脑/下丘脑背侧区域的产热促进神经元。还包括这些传出神经元群体的输入和神经化学调节剂,它们可能在体温调节反应期间影响其活动。代谢状态信号对于需要能量的产热热效应器可能特别重要。

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