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大鼠中与睡眠-觉醒状态及自发行为相关的高频伽马脑电图活动。

High-frequency gamma electroencephalogram activity in association with sleep-wake states and spontaneous behaviors in the rat.

作者信息

Maloney K J, Cape E G, Gotman J, Jones B E

机构信息

Department of Neurology and Neurosurgery, McGill University, Montreal Neurological Institute, Quebec, Canada.

出版信息

Neuroscience. 1997 Jan;76(2):541-55. doi: 10.1016/s0306-4522(96)00298-9.

Abstract

The occurrence of high-frequency gamma activity (30-60 Hz) and its relationship to other frequency band activities were examined by spectral analysis of the electroencephalogram in association with sleep wake states and spontaneous behaviors in the rat. In the electroencephalogram, gamma wave activity was evident in unfiltered and high-frequency filtered recordings, in which it was prominent during attentive or active Wake episodes and during Paradoxical Sleep, when theta-like activity was also apparent. In amplitude spectra from these episodes, multiple peaks were evident within the gamma frequency band, indicating broad-band high-frequency activity, in association with a single low-frequency peak in the theta band. gamma peaks were attenuated during quiet Waking, in association with a low-frequency peak between theta and delta, and during Slow Wave Sleep, in association with a low-frequency peak in the delta band. In coherence spectra from ipsilateral cortical leads, peaks were also present within the gamma range and were significantly higher in Waking moving and Paradoxical Sleep than in Waking quiet and Slow Wave Sleep. In measures of frequency band amplitude, gamma activity (30.5-58.0 Hz) varied significantly across the sleep waking cycle, being similarly high during Wake and Paradoxical Sleep and lowest during Slow Wave Sleep. Across these states, gamma was negatively correlated with delta (1.5-4.0 Hz). In contrast, high beta (19.0-30.0 Hz) was significantly lower in Wake than in Slow Wave Sleep and was positively correlated with delta. gamma differed significantly across specific behaviors, being highest in Paradoxical Sleep with twitches and during Waking eating and moving behaviors, slightly lower in Waking attentive, lower in Waking grooming and as low in Waking quiet as during Slow Wave Sleep. These results indicate that the reciprocal variation of high-frequency gamma activity (and not beta) with low-frequency delta activity reflects the sleep waking cycle of the rat. Moreover, gamma activity reflects the degree of behavioral arousal, since it is high during active Waking, when the electromyogram is high, and low during quiet Waking, when the electromyogram is low. It also reflects cortical arousal, independent of motor activity, since it attains high levels in association with attentive immobility and maximal levels only during particular active behaviors (eating and moving and not grooming), and it also attains maximal levels during Paradoxical Sleep, when the nuchal electromyogram is minimal, but small twitches evidence dreaming. The co-variation of gamma and a slow oscillation in the theta band across states and behaviors suggests that a common system may modulate these fast and slow electroencephalogram rhythms, and that such modulation, potentially emanating from the basal forebrain, could predominate during certain states or behaviors, such as Paradoxical Sleep.

摘要

通过对大鼠脑电图进行频谱分析,结合睡眠-觉醒状态和自发行为,研究了高频伽马活动(30 - 60赫兹)的发生及其与其他频段活动的关系。在脑电图中,伽马波活动在未滤波和高频滤波记录中均很明显,在警觉或活跃觉醒期以及异相睡眠期间尤为突出,此时类似θ波的活动也很明显。在这些时期的幅度谱中,伽马频段内有多个峰值,表明存在宽带高频活动,同时在θ频段有一个低频峰值。伽马峰值在安静觉醒期间减弱,与θ和δ之间的低频峰值相关,在慢波睡眠期间也减弱,与δ频段的低频峰值相关。在同侧皮质导联的相干谱中,伽马范围内也有峰值,在觉醒活动和异相睡眠期间显著高于安静觉醒和慢波睡眠期间。在频段幅度测量中,伽马活动(30.5 - 58.0赫兹)在睡眠-觉醒周期中变化显著,在觉醒和异相睡眠期间同样高,在慢波睡眠期间最低。在这些状态下,伽马与δ(1.5 - 4.0赫兹)呈负相关。相反,高β波(19.0 - 30.0赫兹)在觉醒时显著低于慢波睡眠,且与δ呈正相关。伽马在特定行为中差异显著,在伴有抽搐的异相睡眠期间、觉醒进食和活动行为期间最高,在觉醒警觉时略低,在觉醒梳理时更低,在安静觉醒时与慢波睡眠时一样低。这些结果表明,高频伽马活动(而非β波)与低频δ活动的相互变化反映了大鼠的睡眠-觉醒周期。此外,伽马活动反映了行为唤醒程度,因为在活跃觉醒时(此时肌电图较高)它较高,在安静觉醒时(此时肌电图较低)它较低。它还反映了独立于运动活动的皮质唤醒,因为它在与警觉不动相关时达到高水平,仅在特定的活跃行为(进食和活动而非梳理)期间达到最高水平,并且在异相睡眠期间也达到最高水平,此时颈部肌电图最小,但小抽搐表明正在做梦。伽马与θ频段的慢振荡在不同状态和行为中的共同变化表明,一个共同的系统可能调节这些快速和慢速脑电图节律,并且这种调节可能源自基底前脑,在某些状态或行为(如异相睡眠)期间可能占主导地位。

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