The role of serotonin and norepinephrine in sleep-waking activity.

P J Morgane, W C Stern
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引用次数: 9

Abstract

A critical review of the evidences relating the biogenic amines serotonin and norepinephrine to the states of slow-wave and rapid eye movement (REM) sleep is presented. Various alternative explanations for specific chemical regulation of the individual sleep states, including the phasic events of REM sleep, are evaluated within the overall framework of the monoamine theory of sleep. Several critical neuropsychopharmacological studies relating to metabolsim of the amines in relation to sleep-waking behavior are presented. Models of the chemical neuronal circuitry involved in sleep-waking activity are derived and interactions between several brainstem nuclei, particularly the raphé complex and locus coeruleus, are discussed. Activity in these aminergic systems in relation to oscillations in the sleep-waking cycles is evaluated. In particular, the assessment of single cell activity in specific chemical systems in relations to chemical models of sleep is reviewed. Overall, it appears that the biogenic amines, especially serotonin and norepinephrine, play key roles in the generation and maintenance of the sleep states. These neurotransmitters participate in some manner in the "triggering" processes necessary for actuating each sleep phase and in regulating the transitions from sleep to waking activity. The biogenic amines are, however, probably not "sleep factors" or direct inducers of the sleep states. Rather, they appear to be components of a multiplicity of interacting chemical circuitry in the brain whose activity maintains various chemical balances in different brain regions. Shifts in these balances appear to be involved in the triggering and maintenance of the various states comprising the vigilance continuum.

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血清素和去甲肾上腺素在睡眠-觉醒活动中的作用。
对生物胺血清素和去甲肾上腺素与慢波和快速眼动(REM)睡眠状态有关的证据进行了综述。在单胺睡眠理论的总体框架内,对个体睡眠状态的特定化学调节的各种替代解释,包括快速眼动睡眠的阶段性事件进行了评估。几个关键的神经心理药理学研究有关代谢的胺在睡眠-觉醒行为提出。推导了参与睡眠-觉醒活动的化学神经回路模型,并讨论了几个脑干核,特别是拉斐尔复合体和蓝斑核之间的相互作用。这些胺能系统的活动与睡眠-觉醒周期的振荡有关。特别是,评估单细胞活动在特定的化学系统的关系,化学模型的睡眠进行了回顾。总的来说,生物胺,尤其是血清素和去甲肾上腺素,在睡眠状态的产生和维持中起着关键作用。这些神经递质以某种方式参与了触发每个睡眠阶段和调节从睡眠到清醒活动的过渡所必需的“触发”过程。然而,生物胺可能不是“睡眠因素”或睡眠状态的直接诱导剂。相反,它们似乎是大脑中多种相互作用的化学回路的组成部分,这些化学回路的活动维持着大脑不同区域的各种化学平衡。这些平衡的变化似乎与触发和维持构成警惕性连续体的各种状态有关。
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