锥体细胞
神经科学
新皮层
背景(考古学)
运动前神经元活动
神经网络
大脑皮层
意识
基础(医学)
全身麻醉药
皮质神经元
生物
心理学
海马体
麻醉剂
内分泌学
古生物学
胰岛素
精神科
作者
Arjun Bharioke,Martin Munz,Alexandra Brignall,Georg Kosche,Max Ferdinand Eizinger,Nicole Ledergerber,Dániel Hillier,Brigitte Gross-Scherf,Karl‐Klaus Conzelmann,Émilie Macé,Botond Roska
出处
期刊:Neuron
[Elsevier]
日期:2022-06-01
卷期号:110 (12): 2024-2040.e10
被引量:63
标识
DOI:10.1016/j.neuron.2022.03.032
摘要
General anesthetics induce loss of consciousness, a global change in behavior. However, a corresponding global change in activity in the context of defined cortical cell types has not been identified. Here, we show that spontaneous activity of mouse layer 5 pyramidal neurons, but of no other cortical cell type, becomes consistently synchronized in vivo by different general anesthetics. This heightened neuronal synchrony is aperiodic, present across large distances, and absent in cortical neurons presynaptic to layer 5 pyramidal neurons. During the transition to and from anesthesia, changes in synchrony in layer 5 coincide with the loss and recovery of consciousness. Activity within both apical and basal dendrites is synchronous, but only basal dendrites' activity is temporally locked to somatic activity. Given that layer 5 is a major cortical output, our results suggest that brain-wide synchrony in layer 5 pyramidal neurons may contribute to the loss of consciousness during general anesthesia.
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