Yeganegi Hamed, Ondracek Janie M
Technical University of Munich, TUM School of Life Sciences, Chair of Zoology, Freising-Weihenstephan, Germany.
Graduate School of Systemic Neurosciences, Ludwig-Maximilians-University Munich, Planegg, Germany.
J Sleep Res. 2025 Jun;34(3):e14344. doi: 10.1111/jsr.14344. Epub 2024 Oct 19.
Wakefulness and sleep have often been treated as distinct and global brain states. However, an emerging body of evidence on the local regulation of sleep stages challenges this conventional view. Apart from unihemispheric sleep, the current data that support local variations of neural oscillations during sleep are focused on the homeostatic regulation of local sleep, i.e., the role preceding awake activity. Here, to examine local differences in brain activity during natural sleep, we recorded the electroencephalogram and the local field potential across multiple sites within the avian pallium of zebra finches without perturbing the previous awake state. We scored the sleep stages independently in each pallial site and found that the sleep stages are not pallium-wide phenomena but rather deviate widely across electrode sites. Importantly, deeper electrode sites had a dominant role in defining the temporal aspects of sleep state congruence. Altogether, these findings show that local regulation of sleep oscillations also occurs in the avian brain without prior awake recruitment of specific pallial circuits and in the absence of mammalian cortical neural architecture.
清醒和睡眠常常被视为截然不同的整体大脑状态。然而,有关睡眠阶段局部调节的新证据不断涌现,对这一传统观点提出了挑战。除了单侧半球睡眠外,目前支持睡眠期间神经振荡局部变化的数据主要集中在局部睡眠的稳态调节上,即清醒活动之前的作用。在此,为了研究自然睡眠期间大脑活动的局部差异,我们在不干扰之前清醒状态的情况下,记录了斑胸草雀鸟类大脑皮层多个部位的脑电图和局部场电位。我们在每个大脑皮层部位独立划分睡眠阶段,发现睡眠阶段并非全脑皮层现象,而是在不同电极部位差异很大。重要的是,较深的电极部位在定义睡眠状态一致性的时间方面起主导作用。总之,这些发现表明,鸟类大脑中也存在睡眠振荡的局部调节,且无需事先通过特定大脑皮层回路进行清醒募集,也不存在哺乳动物的皮层神经结构。