阿尔法昏迷的电生理特征。

IF 2.3 4区 医学 Q3 CLINICAL NEUROLOGY
Giulio Degano, Francesco Misirocchi, Isotta Rigoni, Peter W Kaplan, Hervé Quintard, Serge Vulliémoz, Karl Schaller, Andreas Kleinschmidt, Margitta Seeck, Pia De Stefano
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引用次数: 0

摘要

目的:近年来对昏迷期定量脑电图的研究提出了与意识水平相关的几个指标。然而,昏迷的异质性可以挑战这些措施的普遍性。本研究调查了阿尔法昏迷,这是一种电临床模式,其特征是广泛的、非反应性的阿尔法节律,通常与不良预后有关。目的是量化α -昏迷的电生理特征,并将其与清醒对照的α节律进行比较,以期更清晰地了解昏迷状态下的定量脑电图分析。方法:回顾性选择来自日内瓦大学医院的14例阿尔法昏迷患者,并与来自开源数据集的14例健康对照者年龄匹配。对EEG数据进行预处理和分析,提取功率谱、谱衰减(非周期活动)、样本熵和功能连通性。结果:alpha昏迷患者的alpha功率没有差异,但表现出明显更高的光谱衰减水平(p < 0.001),表明趋同于抑制状态。α -昏迷患者的样本熵显著高于正常人(p = 0.01),表明α -昏迷患者的皮层复杂性较正常人有所增加。结论:尽管阿尔法功率和聚类系数相似,但阿尔法昏迷的非周期活动和脑电图复杂性增加。非周期性活动的增加与其他昏迷患者的发现一致,包括那些镇静或皮质下功能障碍的患者。然而,增加的熵与现有文献相矛盾,表明阿尔法昏迷可能代表了一种广泛的皮层功能障碍状态,可能是由非分层的、动荡的大脑活动引起的。这表明,意识丧失并不能保证整个脑电图模式的皮质测量结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrophysiological Signatures of Alpha Coma.

Purpose: Recent research on quantitative EEG in coma has proposed several metrics correlating with consciousness level. However, the heterogeneous nature of coma can challenge the generalizability of these measures. This study investigates alpha-coma, an electroclinical pattern characterized by a widespread, nonreactive alpha rhythm often linked to poor outcomes. The aim was to quantify the electrophysiological features of alpha-coma and compare them to the alpha rhythm in awake controls, seeking clearer insights into quantitative EEG analysis in comatose states.

Methods: Fourteen alpha-coma patients were retrospectively selected from University Hospitals of Geneva and age-matched with 14 healthy control subjects from an open-source dataset. EEG data were preprocessed and analyzed to extract power spectra, spectral decay (aperiodic activity), sample entropy, and functional connectivity.

Results: Alpha-coma patients did not differ in alpha power but exhibited significantly higher levels of spectral decay ( p < 0.001), suggesting a convergence toward an inhibitory state. Sample entropy was significantly higher in alpha-coma patients ( p = 0.01), indicating an increase in the cortical complexity in alpha-coma compared with healthy subjects.

Conclusions: Alpha-coma shows increased aperiodic activity and EEG complexity, despite similar alpha power and clustering coefficient. The increased aperiodic activity aligns with findings in other comatose patients, including those sedated or with subcortical dysfunction. However, the increased entropy contradicts existing literature, suggesting that alpha-coma may represent a state of widespread cortical dysfunction likely resulting from nonhierarchical, turbulent brain activity. This indicates that the loss of consciousness does not guarantee consistent cortical measures across the whole spectrum of EEG patterns.

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来源期刊
Journal of Clinical Neurophysiology
Journal of Clinical Neurophysiology 医学-临床神经学
CiteScore
4.60
自引率
4.20%
发文量
198
审稿时长
6-12 weeks
期刊介绍: ​The Journal of Clinical Neurophysiology features both topical reviews and original research in both central and peripheral neurophysiology, as related to patient evaluation and treatment. Official Journal of the American Clinical Neurophysiology Society.
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