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首页> 外文期刊>Frontiers in neuroendocrinology >Avian circadian organization: A chorus of clocks
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Avian circadian organization: A chorus of clocks

机译:Avian Circadian组织:时钟合唱

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In birds, biological clock function pervades all aspects of biology, controlling daily changes in sleep: wake, visual function, song, migratory patterns and orientation, as well as seasonal patterns of reproduction, song and migration. The molecular bases for circadian clocks are highly conserved, and it is likely the avian molecular mechanisms are similar to those expressed in mammals, including humans. The central pacemakers in the avian pineal gland, retinae and SCN dynamically interact to maintain stable phase relationships and then influence downstream rhythms through entrainment of peripheral oscillators in the brain controlling behavior and peripheral tissues. Birds represent an excellent model for the role played by biological clocks in human neurobiology; unlike most rodent models, they are diurnal, they exhibit cognitively complex social interactions, and their circadian clocks are more sensitive to the hormone melatonin than are those of nocturnal rodents.
机译:在鸟类中,生物时钟功能遍及生物学的各个方面,控制睡眠日常变化:唤醒,视觉功能,歌曲,迁徙模式和方向,以及季节性模式的再现,歌曲和迁移。 昼夜节奏的分子碱是高度保守的,很可能是禽的分子机制与哺乳动物(包括人)表达的那些。 禽出骨囊中的中性心脏起搏器,Retinae和SCN动态相互作用,以保持稳定的相位关系,然后通过脑控制行为和外周组织的外围振荡器夹带外围振荡器来影响下游节律。 鸟类代表了人类神经生物学中生物钟的作用的优秀模型; 与大多数啮齿动物模型不同,它们是昼夜,他们表现出认知性的社交互动,他们的昼夜节奏对激素褪黑素更敏感而不是夜间啮齿动物。

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