International Institute for Integrative Sleep Medicine (WPI-IIIS), University of Tsukuba, Tsukuba, Japan.
School of Integrative and Global Majors, University of Tsukuba, Tsukuba, Japan.
Sci Rep. 2020 Feb 10;10(1):2278. doi: 10.1038/s41598-020-59151-8.
Cortical networks exhibit large shifts in spontaneous dynamics depending on the vigilance state. Waking and rapid eye movement (REM) sleep are characterized by ongoing irregular activity of cortical neurons while during slow wave sleep (SWS) these neurons show synchronous alterations between silent (OFF) and active (ON) periods. The network dynamics underlying these phenomena are not fully understood. Additional information about the state of cortical networks can be obtained by evaluating evoked cortical responses during the sleep-wake cycle. We measured local field potentials (LFP) and multi-unit activity (MUA) in the cortex in response to repeated brief optogenetic stimulation of thalamocortical afferents. Both LFP and MUA responses were considerably increased in sleep compared to waking, with larger responses during SWS than during REM sleep. The strongly increased cortical response in SWS is discussed within the context of SWS-associated neuro-modulatory tone that may reduce feedforward inhibition. Responses to stimuli were larger during SWS-OFF periods than during SWS-ON periods. SWS responses showed clear daily fluctuation correlated to light-dark cycle, but no reaction to increased sleep need following sleep deprivation. Potential homeostatic synaptic plasticity was either absent or masked by large vigilance-state effects.
皮质网络的自发动力学表现出很大的转变,这取决于警觉状态。清醒和快速眼动 (REM) 睡眠的特征是皮质神经元持续的不规则活动,而在慢波睡眠 (SWS) 期间,这些神经元在静默 (OFF) 和活动 (ON) 期之间表现出同步变化。这些现象背后的网络动力学尚不完全清楚。通过评估睡眠-觉醒周期中的诱发性皮质反应,可以获得关于皮质网络状态的更多信息。我们测量了皮质中的局部场电位 (LFP) 和多单位活动 (MUA),以响应反复短暂的光遗传学刺激丘脑皮质传入。与清醒相比,睡眠时 LFP 和 MUA 反应明显增加,SWS 时的反应大于 REM 睡眠时的反应。在 SWS 中强烈增加的皮质反应是在 SWS 相关的神经调节音范围内讨论的,这可能会降低前馈抑制。与 SWS-ON 期相比,SWS-OFF 期的刺激反应更大。SWS 反应表现出与光暗周期明显相关的每日波动,但在睡眠剥夺后没有对增加的睡眠需求做出反应。潜在的稳态突触可塑性要么不存在,要么被大的警觉状态效应所掩盖。