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Symmetrical Serotonin Release during Asymmetrical Slow-Wave Sleep: Implications for the Neurochemistry of Sleep–Waking States

机译:慢波非对称睡眠中对称性5-羟色胺释放:对睡眠-觉醒状态神经化学的影响

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摘要

On land, fur seals predominately display bilaterally synchronized electroencephalogram (EEG) activity during slow-wave sleep (SWS), similar to that observed in all terrestrial mammals. In water, however, fur seals exhibit asymmetric slow-wave sleep (ASWS), resembling the unihemispheric slow-wave sleep of odontocetes (toothed whales). The unique sleeping pattern of fur seals allows us to distinguish neuronal mechanisms mediating EEG changes from those mediating behavioral quiescence. In a prior study we found that cortical acetylcholine release is lateralized during ASWS in the northern fur seal, with greater release in the hemisphere displaying low-voltage (waking) EEG activity, linking acetylcholine release to hemispheric EEG activation (). In contrast to acetylcholine, we now report that cortical serotonin release is not lateralized during ASWS. Our data demonstrate that bilaterally symmetric levels of serotonin are compatible with interhemispheric EEG asymmetry in the fur seal. We also find greatly elevated levels during eating and hosing the animals with water, suggesting that serotonin is more closely linked to bilateral variables, such as axial motor and autonomic control, than to the lateralized cortical activation manifested in asymmetrical sleep.
机译:在陆地上,海狗在慢波睡眠(SWS)期间主要表现出双边同步脑电图(EEG)活动,与在所有陆生哺乳动物中观察到的相似。然而,在海中,海狗表现出不对称的慢波睡眠(ASWS),类似于齿形鲸(齿鲸)的单半球慢波睡眠。海狗的独特睡眠方式使我们能够区分介导脑电图变化的神经元机制和介导行为静止的神经元机制。在先前的研究中,我们发现在北部海狗的ASWS期间,皮质乙酰胆碱的释放被侧向化,在半球中释放更大,显示出低压(苏醒)EEG活性,这将乙酰胆碱释放与半球EEG激活联系起来。与乙酰胆碱相反,我们现在报道在ASWS期间皮质5-羟色胺释放没有侧向。我们的数据表明,5-羟色胺的双侧对称水平与海狗中的半球性脑电图不对称相容。我们还发现,在进食和饮水动物过程中,血清素水平大大升高,这表明5-羟色胺与双侧变量(例如轴向运动和自主神经控制)的联系更紧密,而不是与不对称睡眠中表现出的侧向皮质激活有关。

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