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γ节律并非脑电图纺锤波现象所必需。

Gamma rhythms are not integral to EEG spindle phenomena.

作者信息

Mackenzie L, Pope K J, Willoughby J O

机构信息

Department of Medicine and Centre for Neuroscience, Flinders University, P.O. Box 2100, Adelaide SA 5001, Australia.

出版信息

Clin Neurophysiol. 2005 Apr;116(4):861-70. doi: 10.1016/j.clinph.2004.10.006. Epub 2004 Dec 16.

Abstract

OBJECTIVE

Gamma rhythms (30-100 Hz) have been shown to be associated with spindling activity induced by picrotoxin. To determine if gamma power is unique to picrotoxin spindles or is an integral part of physiological and pathological spindling activity we analysed and compared the strength and brain distribution of gamma EEG power during 4 spindling activities in the rat.

METHODS

The electroencephalogram (EEG) was recorded from rats with chronically implanted electrodes during natural sleep, barbiturate anaesthesia, during naturally occurring absence epilepsy spike and wave discharges and following the systemic application of picrotoxin. Spectral analysis was applied off-line to compare the strength and brain distribution of gamma EEG power during the 4 spindling activities.

RESULTS

Each spindle type contained significantly different levels of gamma power. Gamma power was significantly increased over background levels during picrotoxin spindles, slightly increased during absence spindles, slightly decreased during sleep spindles and significantly suppressed during barbiturate spindles

CONCLUSIONS

Changes in the power of gamma frequencies during spindle types suggest that gamma frequencies are neither the cause of nor an integral part of a spindle. They appear to be correlated with levels of consciousness and may contribute to the process of epileptogenesis.

SIGNIFICANCE

The findings are consistent with high frequency EEG activity being related to seizure-tendency.

摘要

目的

γ节律(30 - 100赫兹)已被证明与印防己毒素诱导的纺锤波活动有关。为了确定γ功率是印防己毒素纺锤波所特有的,还是生理和病理纺锤波活动的一个组成部分,我们分析并比较了大鼠4种纺锤波活动期间γ脑电功率的强度和脑部分布。

方法

在自然睡眠、巴比妥类麻醉、自然发生的失神癫痫棘波和慢波放电期间以及全身应用印防己毒素后,用长期植入电极的大鼠记录脑电图(EEG)。离线应用频谱分析来比较4种纺锤波活动期间γ脑电功率的强度和脑部分布。

结果

每种纺锤波类型所含的γ功率水平显著不同。在印防己毒素纺锤波期间,γ功率比背景水平显著增加,在失神纺锤波期间略有增加,在睡眠纺锤波期间略有下降,在巴比妥类纺锤波期间显著受到抑制。

结论

纺锤波类型期间γ频率功率的变化表明,γ频率既不是纺锤波的原因,也不是其组成部分。它们似乎与意识水平相关,可能有助于癫痫发生过程。

意义

这些发现与高频脑电活动与癫痫易感性相关一致。

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