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首页> 外文期刊>British journal of anaesthesia >Cross-frequency coupling during isoflurane anaesthesia as revealed by electroencephalographic harmonic wavelet bicoherence
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Cross-frequency coupling during isoflurane anaesthesia as revealed by electroencephalographic harmonic wavelet bicoherence

机译:脑电波谐波小波双相干显示异氟烷麻醉期间的跨频耦合

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BackgroundFourier bicoherence has previously been applied to investigate phase coupling in the EEG in anaesthesia. However, there are significant theoretical limitations regarding its sensitivity in detecting transient episodes of inter-frequency coupling. Therefore, we used a recently developed wavelet bicoherence method to investigate the cross-frequency coupling in the EEG of patients under isoflurane anaesthesia; examining the relationship between the patterns of wavelet bicoherence and the isoflurane concentrations.MethodsWe analysed a set of previously published EEG data, obtained from 29 patients who underwent elective abdominal surgery under isoflurane anaesthesia. Artifact-free, 1 min EEG segments at different isoflurane concentrations were extracted from each subject and the wavelet bicoherence calculated for all pairs of frequencies from 0.5 to 20 Hz.ResultsIsoflurane caused two peaks in the ?? (6-13 Hz) and slow ?? (<1 Hz) regions of the bicoherence matrix diagonal. Higher concentrations of isoflurane shifted the ?? peak to lower frequencies [11.3 (0.9) Hz at 0.3% to 7.1 (1.2) Hz at 1.5%], as has been previously observed in the power spectra. Outside the diagonal, we also found a significant ?? peak that was phase-coupled to the slow ?? waves; higher concentrations of isoflurane shifted this peak to lower frequencies [10.8 (1.2) to 7.7 (0.7) Hz].ConclusionsIsoflurane caused cross-frequency coupling between ?? and slow ?? waves. Increasing isoflurane concentration slowed the ?? frequencies where the coupling had occurred. This phenomenon of ??-?? coupling suggests that slow cortical oscillations organize the higher ?? band activity, which is consistent with other studies in natural sleep. ? The Author [2012].
机译:背景傅立叶双相干先前已用于研究麻醉性EEG中的相位耦合。但是,关于其在检测频率间耦合的瞬态事件中的敏感性,存在重大的理论限制。因此,我们使用一种最新开发的小波双相干方法来研究异氟烷麻醉下患者脑电图的交叉频率耦合。方法我们分析了一组先前发表的脑电图数据,该数据是从29名在异氟烷麻醉下进行择期腹部手术的患者中获得的。从每名受试者中提取不同异氟烷浓度的无伪像的1分钟EEG片段,并针对0.5至20 Hz的所有成对频率计算小波双相干性。结果异氟烷在Δε中引起两个峰(6-13 Hz)和慢??双相干矩阵对角线的(<1 Hz)区域。较高浓度的异氟烷使??变化。如先前在功率谱中所观察到的那样,可以降低至最高频率[0.3%时为11.3(0.9)Hz,1.5%时为7.1(1.2)Hz]。在对角线之外,我们还发现了一个重要的??与慢速相位耦合的峰值?波浪;较高浓度的异氟烷使该峰移至较低的频率[10.8(1.2)至7.7(0.7)Hz]。结论异氟烷引起Δε之间的跨频耦合。和慢??波浪。异氟醚浓度的增加减慢了??发生耦合的频率。 ??-??的现象耦合表明,缓慢的皮层振荡会组织较高的Δε。带活动,这与自然睡眠中的其他研究一致。 ?作者[2012]。

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