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视觉刺激期间脑磁图、脑电图和颅内脑电图的同步记录:从可行性到单次试验分析

Simultaneous recording of MEG, EEG and intracerebral EEG during visual stimulation: from feasibility to single-trial analysis.

作者信息

Dubarry Anne-Sophie, Badier Jean-Michel, Trébuchon-Da Fonseca Agnès, Gavaret Martine, Carron Romain, Bartolomei Fabrice, Liégeois-Chauvel Catherine, Régis Jean, Chauvel Patrick, Alario F-Xavier, Bénar Christian-G

机构信息

Aix-Marseille Université, Faculté de Médecine La Timone, 13005 Marseille, France; Aix-Marseille Université, CNRS, LPC UMR 7290, 13331 Marseille, France; INSERM, UMR 1106, Institut de Neurosciences des Systèmes, 13005 Marseille, France.

Aix-Marseille Université, Faculté de Médecine La Timone, 13005 Marseille, France; INSERM, UMR 1106, Institut de Neurosciences des Systèmes, 13005 Marseille, France.

出版信息

Neuroimage. 2014 Oct 1;99:548-58. doi: 10.1016/j.neuroimage.2014.05.055. Epub 2014 May 23.

Abstract

Electroencephalography (EEG), magnetoencephalography (MEG), and intracerebral stereotaxic EEG (SEEG) are the three neurophysiological recording techniques, which are thought to capture the same type of brain activity. Still, the relationships between non-invasive (EEG, MEG) and invasive (SEEG) signals remain to be further investigated. In early attempts at comparing SEEG with either EEG or MEG, the recordings were performed separately for each modality. However such an approach presents substantial limitations in terms of signal analysis. The goal of this technical note is to investigate the feasibility of simultaneously recording these three signal modalities (EEG, MEG and SEEG), and to provide strategies for analyzing this new kind of data. Intracerebral electrodes were implanted in a patient with intractable epilepsy for presurgical evaluation purposes. This patient was presented with a visual stimulation paradigm while the three types of signals were simultaneously recorded. The analysis started with a characterization of the MEG artifact caused by the SEEG equipment. Next, the average evoked activities were computed at the sensor level, and cortical source activations were estimated for both the EEG and MEG recordings; these were shown to be compatible with the spatiotemporal dynamics of the SEEG signals. In the average time-frequency domain, concordant patterns between the MEG/EEG and SEEG recordings were found below the 40 Hz level. Finally, a fine-grained coupling between the amplitudes of the three recording modalities was detected in the time domain, at the level of single evoked responses. Importantly, these correlations have shown a high level of spatial and temporal specificity. These findings provide a case for the ability of trimodal recordings (EEG, MEG, and SEEG) to reach a greater level of specificity in the investigation of brain signals and functions.

摘要

脑电图(EEG)、脑磁图(MEG)和脑内立体定向脑电图(SEEG)是三种神经生理学记录技术,人们认为它们捕捉的是同一类型的脑活动。尽管如此,非侵入性(EEG、MEG)信号与侵入性(SEEG)信号之间的关系仍有待进一步研究。在早期将SEEG与EEG或MEG进行比较的尝试中,每种模式的记录都是单独进行的。然而,这种方法在信号分析方面存在很大局限性。本技术说明的目的是研究同时记录这三种信号模式(EEG、MEG和SEEG)的可行性,并提供分析这种新型数据的策略。为了进行术前评估,在一名难治性癫痫患者体内植入了脑内电极。在同时记录三种类型信号的过程中,让该患者接受视觉刺激范式。分析首先从表征SEEG设备引起的MEG伪迹开始。接下来,在传感器层面计算平均诱发活动,并估计EEG和MEG记录的皮质源激活;结果表明这些与SEEG信号的时空动态是相符的。在平均时频域中,发现MEG/EEG与SEEG记录在40Hz以下水平存在一致模式。最后,在时域的单个诱发反应层面检测到三种记录模式振幅之间的细粒度耦合。重要的是,这些相关性显示出高度的空间和时间特异性。这些发现证明了三模态记录(EEG、MEG和SEEG)在研究脑信号和功能方面能够达到更高特异性水平。

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