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苯巴比妥后的高频谱分量:肌肉起源的贡献——一项使用 MEG/EEG 的研究。

High frequency spectral components after secobarbital: the contribution of muscular origin--a study with MEG/EEG.

机构信息

Department of Clinical Neurophysiology, Stichting Epilepsy Instellingen Nederland, Epilepsy Institutes in The Netherlands, SEIN, Heemstede, The Netherlands.

出版信息

Epilepsy Res. 2012 Jun;100(1-2):132-41. doi: 10.1016/j.eplepsyres.2012.02.002. Epub 2012 Apr 3.

Abstract

OBJECTIVES

Previously we found that benzodiazepines not only provoke beta-activity in the EEG, but also higher frequency activity. Knowing the origin of this high frequency activity is crucial if localisation of epileptogenic brain tissue is the query. We attempt to differentiate cerebral from muscular origin of such activity.

METHODS

We postulate that EEG and MEG have similar sensitivity to brain activity, but different sensitivity to muscle activity, and compare co-recorded EEG and MEG signals in a group of five patients who had received short-lasting barbiturates to induce sleep. We performed principal components analysis over time and subtract the results for MEG from the EEG to see where the frequency spectra differ.

RESULTS

The EEG showed activity in the gamma bands up to 270Hz for all patients; the MEG significantly less. We find no differences in the lower frequency bands. Topographically the differences localized over the frontotemporal regions.

CONCLUSIONS

In the EEG benzodiazepines and/or barbiturates are not only associated with frequencies in the beta band, but also with wide range gamma activity. The latter seems to be of muscular origin.

SIGNIFICANCE

Our study suggests that gamma activity in such measurements may not be cerebral in origin. MEG is less susceptible to contamination from muscle activity than the EEG.

摘要

目的

我们先前发现苯二氮䓬类药物不仅会在脑电图中引发β活动,还会引发更高频率的活动。如果癫痫灶脑组织的定位是研究的关键,那么了解这种高频活动的来源至关重要。我们试图区分这种活动是来自大脑还是肌肉。

方法

我们假设 EEG 和 MEG 对大脑活动具有相似的敏感性,但对肌肉活动的敏感性不同,并在一组接受短暂巴比妥类药物诱导睡眠的五名患者中比较记录的 EEG 和 MEG 信号。我们对时间进行主成分分析,并从 EEG 中减去 MEG 的结果,以观察频谱差异的位置。

结果

所有患者的 EEG 显示γ频段高达 270Hz 的活动;MEG 则明显较少。我们在低频带没有发现差异。从拓扑学上看,差异定位于额颞区。

结论

在 EEG 中,苯二氮䓬类药物和/或巴比妥类药物不仅与β频段的频率有关,还与广泛的γ活动有关。后者似乎来自肌肉。

意义

我们的研究表明,此类测量中的γ活动可能不是来自大脑。MEG 比 EEG 受肌肉活动的污染影响更小。

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