斑马鱼
唤醒
睡眠神经科学
突触发生
突触可塑性
睡眠(系统调用)
记忆巩固
神经科学
眼球运动
医学
清醒
生物
心理学
神经可塑性
脉冲前抑制
慢波睡眠
认知
睡眠纺锤
单胺类
非快速眼动睡眠
昼夜节律
运动前神经元活动
神经传递
快速眼动睡眠
增食欲素
稳态可塑性
警惕(心理学)
睡眠障碍
光遗传学
作者
Carla Denise Bonan,Stefani Altenhofen
标识
DOI:10.2174/1570159x19666210712141041
摘要
Sleep is an evolutionarily conserved phenomenon, being an important biological necessity for the learning process and memory consolidation. The brain displays two types of electrical activity during sleep: slow-wave activity or Non-Rapid Eye Movement (NREM) sleep, and desynchronized brain wave activity or Rapid Eye Movement (REM) sleep. There are many theories regarding "Why we need to sleep?"; one of them is the synaptic homeostasis. This theory suggests the role of sleep in the restoration of synaptic homeostasis, which is destabilized by synaptic strengthening triggered by learning during waking and by synaptogenesis during development. Sleep diminishes the plasticity load on neurons and other cells to normalize synaptic strength whereas it reestablishes neuronal selectivity and the ability to learn, leading to the consolidation and integration of memories. The use of zebrafish as a tool to assess sleep and its disorders is growing, although sleep in this animal is not yet divided, for example, into REM and NREM states. However, zebrafish are known to have a regulated daytime circadian rhythm, and their sleep state is characterized by periods of inactivity accompanied by an increase in arousal threshold, preference for resting place, and the "rebound sleep effect" phenomenon, which causes an increased slow-wave activity after a forced waking period. In addition, drugs known to modulate sleep, such as melatonin, nootropics, and nicotine have been tested in zebrafish. In this review, we discuss the use of zebrafish as a model to investigate sleep mechanisms and their regulation, demonstrating this species as a promising model for sleep research.
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