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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Locus coeruleus neuronal activity during the sleep-waking cycle in mice.
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Locus coeruleus neuronal activity during the sleep-waking cycle in mice.

机译:小鼠睡眠唤醒循环期间的基因座Coeruleus神经元活动。

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摘要

Using extracellular single-unit recordings in nonanesthetized, head-restrained mice, we examined spontaneous and evoked discharges of noradrenaline-containing locus coeruleus (NA-LC) neurons across the sleep-waking cycle. The neurons were all characterized by triphasic broad action potentials. They discharged as either slow (<6 Hz) tonic, single spikes or phasic clusters of spikes specific to wakefulness (W), the discharge rate being highest during active waking and significantly lower during quiet waking. They remained totally silent during both slow-wave sleep (SWS) and paradoxical (or rapid eye movement (REM)) sleep. The phasic unit activity was related to abrupt activation of electromyographic activity occurring either spontaneously or elicited by alerting sensory stimuli. At the transition from waking to sleep, they ceased firing before the onset of cortical synchronization (deactivation), the first sign of electroencephalographic sleep, a significant decrease in firing rate preceding the onset of unit activity of sleep-specific neurons in the basal forebrain (BFB)/preoptic (POA) hypothalamus, as described previously [Takahashi K, Lin JS, Sakai K (2009) Neuroscience 161:269-292]. At the transition from SWS to waking, they fired before the onset of both cortical activation and a significant decrease in activity of sleep-specific neurons. These findings support the previous view that the NA-LC system is involved in both tonic and phasic processes of arousal, and further support our previous proposals that initiation of sleep is caused by decreased activity of waking-promoting neurons (disfacilitation) and that NA-LC neurons play an important role in the sleep/waking switch, that is from waking to sleep and from sleep to waking [Takahashi K, Lin JS, Sakai K (2009) Neuroscience 161:269-292].
机译:在非体育化的头枕小鼠中使用细胞外单单元录制,我们在睡眠唤醒循环中检查了含去甲肾上腺素的基因座的基因座(NA-LC)神经元的自发性和诱发排放。所有特征在于三足球广泛动作潜力。它们作为特定于觉醒(W)特异的尖刺,单穗或阶段的尖峰级,排出率最高,在安静醒来期间,排放率最高。它们在慢波睡眠(SWS)和矛盾(或快速眼球运动(REM))睡眠中保持完全沉默。序相单元活性与通过警报感官刺激自发或引发的电瓜子活性的突然激活有关。在从醒来睡觉的过渡时,他们在皮质同步(停用)发作前停止射击,脑电图睡眠的第一符号,在基础前脑中睡眠特异性神经元的单位活性开始的射击率显着降低( BFB)/ pooptic(POA)下丘脑,如前所述[Takahashi K,Lin JS,Sakai K(2009)神经科学161:269-292]。在从SWS到醒来的过渡时,它们在皮质激活开始前发射,并且睡眠特异性神经元的活动显着降低。这些发现支持上一个视图,即NA-LC系统参与唤醒的滋补和相位过程,进一步支持我们之前的睡眠启动是由醒来的促进神经元(无匹配)的活性降低引起的睡眠和Na- LC神经元在睡眠/唤醒开关中发挥着重要作用,从醒来睡觉,从睡眠唤醒[Takahashi K,Lin JS,Sakai K(2009)神经科学161:269-292]。

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