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结合脑磁图和脑电图方法用于无创记录人类皮层的超慢活动。

Combined MEG and EEG methodology for non-invasive recording of infraslow activity in the human cortex.

作者信息

Leistner Stefanie, Sander Tilmann, Burghoff Martin, Curio Gabriel, Trahms Lutz, Mackert Bruno-Marcel

机构信息

Department of Neurology, Campus Benjamin Franklin, Charite-Universitätsmedizin Berlin, Hindenburgdamm 30, D-12200, Berlin, Germany.

出版信息

Clin Neurophysiol. 2007 Dec;118(12):2774-80. doi: 10.1016/j.clinph.2007.08.015. Epub 2007 Oct 1.

Abstract

OBJECTIVE

Periinfarct depolarisation and spreading depression represent key mechanisms of neuronal injury after stroke. Changes in cortical electrical potentials and magnetic fields in the very low frequency range are relevant parameters to characterize these events, which up to now have only been recorded invasively. In this study, we proved whether a non-invasive combined MEG/EEG recording technique is able to quantitatively monitor cortical infraslow activity in humans.

METHODS

We used repetitive very slow and slow right finger movements as a physiological motor activation paradigm to induce cortical infraslow activity. Infraslow fields were recorded over the left hemisphere using a modulation-based MEG technique. EEG was performed using 16 standard Ag-Cl electrodes that covered the left motor cortex.

RESULTS

We recorded stable focal motor-related infraslow magnetic field changes in seven out of seven subjects. We also found correlating infraslow electrical potential changes in three out of seven subjects. Slow finger movements generated significantly stronger field and potential changes than very slow movements.

CONCLUSIONS

This study demonstrates the technical feasibility of combined non-invasive electrical potential and magnetic field measurements to localize and quantitatively monitor physiological, low amplitude, infraslow cortical activity in humans. This specific combination of simultaneous recording techniques allows to benefit from the specific physical advantages of each method.

SIGNIFICANCE

This combined non-invasive MEG-EEG methodology is able to provide important information on infraslow neuronal activity originating from tangentially and radially oriented sources. Moreover, this dual approach has the potential to separate neuronal from non-neuronal DC-sources, e.g., radially to the head orientated DC-currents across the skin/scalp/skull/dura occurring during cerebral hypercapnia or hypoxia.

摘要

目的

梗死周围去极化和扩散性抑制是中风后神经元损伤的关键机制。极低频范围内的皮质电位和磁场变化是表征这些事件的相关参数,迄今为止这些参数仅通过侵入性记录获得。在本研究中,我们验证了一种非侵入性的联合脑磁图/脑电图记录技术是否能够定量监测人类皮质超慢活动。

方法

我们使用重复性的非常缓慢和缓慢的右手手指运动作为一种生理性运动激活范式来诱发皮质超慢活动。使用基于调制的脑磁图技术在左半球记录超慢场。使用覆盖左运动皮质的16个标准银-氯化物电极进行脑电图检查。

结果

我们在7名受试者中的7名记录到了稳定的与运动相关的局灶性超慢磁场变化。我们还在7名受试者中的3名发现了相关的超慢电位变化。缓慢的手指运动比非常缓慢的运动产生的场和电位变化明显更强。

结论

本研究证明了联合非侵入性电位和磁场测量在定位和定量监测人类生理性、低振幅、超慢皮质活动方面的技术可行性。这种同时记录技术的特定组合能够从每种方法的特定物理优势中获益。

意义

这种联合非侵入性脑磁图-脑电图方法能够提供有关源自切向和径向源的超慢神经元活动的重要信息。此外,这种双重方法有可能将神经元与非神经元直流源区分开来,例如,区分在脑高碳酸血症或缺氧期间穿过皮肤/头皮/颅骨/硬脑膜的径向朝向头部的直流电流。

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