异丙酚
脑电图
彗差(光学)
麻醉
清醒
麻醉剂
医学
神经科学
大脑活动与冥想
发作性
睡眠(系统调用)
无意识
心理学
非周期图
睡眠阶段
七氟醚
非快速眼动睡眠
唤醒
三角波
癫痫
电生理学
光谱分析
皮质电图
慢波睡眠
镇静剂
特征(语言学)
相似性(几何)
丘脑
α-2肾上腺素能受体
大脑定位
认知
睡眠剥夺
作者
Janna D. Helfrich,Jerzy Szaflarski,Marianne C. J. Nævra,Luis Romunstad,Matthew P. Walker,Bryce A. Mander,Robert T. Knight,P G Larsson,Randolph F. Helfrich
标识
DOI:10.1073/pnas.2514098123
摘要
General anesthesia is often compared to sleep but may more closely resemble a medically induced coma. While all three states involve a loss of awareness, the extent of their neural similarity remains unclear. Electrophysiological markers, such as delta activity (< 4 Hz), are present in slow wave sleep, disorders of consciousness (DoC, including coma), and propofol anesthesia but are absent during rapid eye movement (REM) sleep. Frontal alpha oscillations are a key feature of propofol anesthesia and detectable via intraoperative EEG. However, it remains unclear whether alpha and delta activity fully define the brain state. Using whole-head EEG, we analyzed brain activity in individuals under propofol anesthesia, during sleep, or in DoC in the intensive care unit. Our spectral parameterization and similarity analyses revealed that propofol anesthesia exhibits spatiotemporal patterns resembling both coma and sleep. We introduced a spectral orthogonalization approach, identifying unique signatures of propofol anesthesia, including posterior slow waves, frontocentral delta, and reduced aperiodic activity. Critically, the reduction in aperiodic activity partially overlaps with REM sleep and may reflect decreased cortical excitability, contributing to reduced arousal, muscle atonia, and immobility common to both states. These results imply that propofol anesthesia creates a brain state where some features resemble sleep while others are more similar to coma. Embracing its full spatiotemporal complexity could improve titration of sedation, thus minimizing excessive suppression and the risk of postoperative cognitive deficits.
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