神经科学
丘脑
清醒
非快速眼动睡眠
警惕(心理学)
爆裂
新皮层
节奏
脑电图
心理学
物理
声学
作者
Vincenzo Crunelli,Magor L. Lőrincz,William M. Connelly,François David,Stuart W. Hughes,Régis C. Lambert,Nathalie Leresche,Adam C. Errington
摘要
During low-vigilance states, thalamic neurons exhibit diverse rhythmic activities that contribute to specific parts of the electroencephalogram rhythm. In this perspective, Crunelli and colleagues propose that thalamic oscillations of these low-vigilance states also have a plasticity function that modifies the strength of excitatory and inhibitory synapses in local neuronal assemblies. During inattentive wakefulness and non-rapid eye movement (NREM) sleep, the neocortex and thalamus cooperatively engage in rhythmic activities that are exquisitely reflected in the electroencephalogram as distinctive rhythms spanning a range of frequencies from <1 Hz slow waves to 13 Hz alpha waves. In the thalamus, these diverse activities emerge through the interaction of cell-intrinsic mechanisms and local and long-range synaptic inputs. One crucial feature, however, unifies thalamic oscillations of different frequencies: repetitive burst firing driven by voltage-dependent Ca2+ spikes. Recent evidence reveals that thalamic Ca2+ spikes are inextricably linked to global somatodendritic Ca2+ transients and are essential for several forms of thalamic plasticity. Thus, we propose herein that alongside their rhythm-regulation function, thalamic oscillations of low-vigilance states have a plasticity function that, through modifications of synaptic strength and cellular excitability in local neuronal assemblies, can shape ongoing oscillations during inattention and NREM sleep and may potentially reconfigure thalamic networks for faithful information processing during attentive wakefulness.
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