Sleep and Metabolism: Implication of Lateral Hypothalamic Neurons.

Q3 Medicine Frontiers of Neurology and Neuroscience Pub Date : 2021-01-01 Epub Date: 2021-05-28 DOI:10.1159/000514966
Lukas T Oesch, Antoine R Adamantidis
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引用次数: 8

Abstract

During the last decade, optogenetic-based circuit mapping has become one of the most common approaches to systems neuroscience, and amassing studies have expanded our understanding of brain structures causally involved in the regulation of sleep-wake cycles. Recent imaging technologies enable the functional mapping of cellular activity, from population down to single-cell resolution, across a broad repertoire of behaviors and physiological processes, including sleep-wake states. This chapter summarizes experimental evidence implicating hypocretins/orexins, melanin-concentrating hormone, and inhibitory neurons from the lateral hypothalamus (LH) in forming an intricate network involved in regulating sleep and metabolism, including feeding behaviors. It further confirms the dual sleep-metabolic functions of LH cells, and sheds light on a possible mechanism underlying brain plasticity during sleep and metabolic disorders.

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睡眠与代谢:下丘脑外侧神经元的意义。
在过去的十年中,基于光遗传学的电路映射已经成为系统神经科学最常用的方法之一,大量的研究扩大了我们对参与睡眠-觉醒周期调节的大脑结构的理解。最近的成像技术使细胞活动的功能映射成为可能,从种群到单细胞分辨率,跨越广泛的行为和生理过程,包括睡眠-觉醒状态。本章总结了下丘脑/食欲素、黑色素浓缩激素和来自外侧下丘脑(LH)的抑制性神经元形成一个复杂的网络,参与调节睡眠和代谢,包括摄食行为的实验证据。这进一步证实了LH细胞的双重睡眠代谢功能,并揭示了睡眠和代谢紊乱时大脑可塑性的可能机制。
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Frontiers of Neurology and Neuroscience
Frontiers of Neurology and Neuroscience Medicine-Neurology (clinical)
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期刊介绍: Focusing on topics in the fields of both Neurosciences and Neurology, this series provides current and unique information in basic and clinical advances on the nervous system and its disorders.
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