Department of Psychological & Brain Sciences, University of Iowa, Iowa City, IA 52242, USA.
Department of Psychology, Kyungpook National University, Daegu 41566, Republic of Korea.
Curr Biol. 2024 Jun 17;34(12):2570-2579.e5. doi: 10.1016/j.cub.2024.04.064. Epub 2024 May 20.
In early development, active sleep is the predominant sleep state before it is supplanted by quiet sleep. In rats, the developmental increase in quiet sleep is accompanied by the sudden emergence of the cortical delta rhythm (0.5-4 Hz) around postnatal day 12 (P12). We sought to explain the emergence of the cortical delta by assessing developmental changes in the activity of the parafacial zone (PZ), a medullary structure thought to regulate quiet sleep in adults. We recorded from the PZ in P10 and P12 rats and predicted an age-related increase in neural activity during increasing periods of delta-rich cortical activity. Instead, during quiet sleep, we discovered sleep-dependent rhythmic spiking activity-with intervening periods of total silence-phase locked to a local delta rhythm. Moreover, PZ and cortical delta were coherent at P12 but not at P10. PZ delta was also phase locked to respiration, suggesting sleep-dependent modulation of PZ activity by respiratory pacemakers in the ventral medulla. Disconnecting the main olfactory bulbs from the cortex did not diminish cortical delta, indicating that the influence of respiration on delta at this age is not mediated indirectly through nasal breathing. Finally, we observed an increase in parvalbumin-expressing terminals in the PZ across these ages, supporting a role for local GABAergic inhibition in the PZ's rhythmicity. The unexpected discovery of delta-rhythmic neural activity in the medulla-when cortical delta is also emerging-provides a new perspective on the brainstem's role in regulating sleep and promoting long-range functional connectivity in early development.
在早期发育过程中,活跃睡眠是主要的睡眠状态,随后被安静睡眠所取代。在大鼠中,安静睡眠的发育增加伴随着皮质 delta 节律(0.5-4 Hz)在出生后第 12 天(P12)左右的突然出现。我们试图通过评估副基底区(PZ)的活动变化来解释皮质 delta 的出现,副基底区是一种被认为调节成人安静睡眠的延髓结构。我们在 P10 和 P12 大鼠中记录了 PZ 的活动,并预测在 delta 丰富的皮质活动增加期间,神经活动会随着年龄的增长而增加。然而,在安静睡眠期间,我们发现了与睡眠相关的有节奏的尖峰活动——与局部 delta 节律相位锁定的间隔期完全沉默。此外,PZ 和皮质 delta 在 P12 时是相干的,但在 P10 时不是。PZ 的 delta 也与呼吸相位锁定,表明延髓腹侧呼吸起搏器对 PZ 活动的睡眠依赖性调制。将嗅球与大脑皮层分离并没有减弱皮质 delta,这表明在这个年龄,呼吸对 delta 的影响不是通过鼻腔呼吸间接介导的。最后,我们观察到 PZ 中表达 parvalbumin 的终末在这些年龄的增加,支持了局部 GABA 能抑制在 PZ 的节律性中的作用。在延髓中发现皮质 delta 出现时 delta 节律性神经活动的意外发现,为脑干在调节睡眠和促进早期发育中长程功能连接方面的作用提供了新的视角。