Steriade M, Curró Dossi R, Contreras D
Laboratoire de Neurophysiologie, Faculté de Médecine, Université Laval, Quebec, Canada.
Neuroscience. 1993 Sep;56(1):1-9. doi: 10.1016/0306-4522(93)90556-u.
Thalamocortical neurons located in the large-celled district of the cat intralaminar centrolateral nucleus were found to discharge spike-bursts with unusually high frequencies (800-1000 Hz) during spindle oscillations of the electroencephalogram. In chronically implanted animals, similar spike-bursts were also fired during wakefulness and rapid eye movement sleep, two behavioral states in which other thalamocortical neurons tonically fire single spikes. Such high-frequency spike-bursts recurred with a fast rhythm of 20-40 Hz during waking and rapid eye movement sleep. Intracellular recordings under barbiturate anesthesia showed that, during spindle oscillations, the spike-bursts of intralaminar neurons are generated by brief low-threshold spikes with a much shorter refractory phase than in other thalamocortical cells. Depolarizing pulses from the resting membrane potential triggered fast oscillations (20-80 Hz) crowned by short high-frequency (800-1000 Hz) spike-bursts. During the inter-spindle epochs, the "tonic" firing of these neurons was, in fact, a fast oscillation (30-40 Hz) of the membrane potential leading to single spikes or spike-doublets. Autocorrelograms computed from inter-spindle epochs, at relatively depolarized levels, confirmed the presence of multiple peaks at this fast rhythm. The properties of these neurons make them well suited for the distribution of fast rhythms during arousal and rapid eye movement sleep over the cerebral cortex.
研究发现,位于猫丘脑中央外侧核大细胞区的丘脑皮质神经元,在脑电图的纺锤波振荡期间会以异常高的频率(800 - 1000赫兹)发放峰簇。在长期植入电极的动物中,在清醒和快速眼动睡眠期间也会出现类似的峰簇发放,而在这两种行为状态下,其他丘脑皮质神经元会持续发放单个锋电位。这种高频峰簇在清醒和快速眼动睡眠期间以20 - 40赫兹的快速节律反复出现。巴比妥类麻醉下的细胞内记录显示,在纺锤波振荡期间,层内神经元的峰簇由短暂的低阈值锋电位产生,其不应期比其他丘脑皮质细胞短得多。从静息膜电位开始的去极化脉冲会触发快速振荡(20 - 80赫兹),并伴有短暂的高频(800 - 1000赫兹)峰簇。在纺锤波间歇期,这些神经元的“持续”发放实际上是膜电位的快速振荡(30 - 40赫兹),导致单个锋电位或锋电位 doublets。从纺锤波间歇期相对去极化水平计算的自相关图证实了在这种快速节律下存在多个峰值。这些神经元的特性使其非常适合在觉醒和快速眼动睡眠期间将快速节律分布到大脑皮层。