Physiopathology of Sleep Networks, Lyon Neuroscience Research Center, INSERM U1028-CNRS UMR5292, Université Claude-Bernard-Lyon 1, 69372 Lyon, France.
Coding in Memory and Olfaction, Lyon Neuroscience Research Center, INSERM U1028-CNRS UMR5292, Université Claude-Bernard-Lyon 1, 69372 Lyon, France.
Cell Rep. 2019 Feb 5;26(6):1443-1457.e5. doi: 10.1016/j.celrep.2019.01.038.
The thalamus plays a central role in sleep rhythms in the mammalian brain and, yet, surprisingly little is known about its function and interaction with local cortical oscillations during NREM sleep (NREM). We investigated the neuronal correlates of cortical barrel activity in the two corresponding thalamic nuclei, the ventral posterior medial (VPM), and the posterior medial (Pom) nuclei during natural NREM in mice. Our data reveal (1) distinct modulations of VPM and Pom activity throughout NREM episodes, (2) a thalamic nucleus-specific phase-locking to cortical slow and spindle waves, (3) cell-specific subthreshold spindle oscillations in VPM neurons that only partially overlap with cortical spindles, and (4) that spindle features evolve throughout NREM episodes and vary according to the post-NREM state. Taken together, our results suggest that, during natural sleep, the barrel cortex exerts a leading role in the generation and transfer of slow rhythms to the somatosensory thalamus and reciprocally for spindle oscillations.
丘脑在哺乳动物大脑的睡眠节律中起着核心作用,但令人惊讶的是,人们对其在非快速眼动 (NREM) 睡眠期间的功能及其与局部皮质振荡的相互作用知之甚少。我们在小鼠的自然 NREM 期间研究了两个相应的丘脑核,即腹后内侧核 (VPM) 和后内侧核 (Pom) 中的皮质桶状活动的神经元相关性。我们的数据揭示了:(1) 在整个 NREM 期间,VPM 和 Pom 活动的明显调节;(2) 丘脑核对皮质慢波和纺锤波的特定相位锁定;(3) VPM 神经元中的细胞特异性亚阈值纺锤波振荡,仅部分与皮质纺锤波重叠;以及 (4) 纺锤波特征在整个 NREM 期间演变,并根据 NREM 后状态而变化。总之,我们的研究结果表明,在自然睡眠期间,桶状皮层在慢节律的产生和向体感丘脑的传递中发挥主导作用,而对于纺锤波振荡则相反。