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同步脑电图/脑磁图可产生伤害性诱发反应的互补信息。

Simultaneous EEG/MEG yields complementary information of nociceptive evoked responses.

作者信息

Ahmed Mahmutoglu Mustafa, Rupp André, Baumgärtner Ulf

机构信息

Department of Neuroradiology, Heidelberg University Hospital, Heidelberg, Germany.

Section of Biomagnetism, Department of Neurology, Heidelberg University Hospital, Heidelberg, Germany.

出版信息

Clin Neurophysiol. 2022 Nov;143:21-35. doi: 10.1016/j.clinph.2022.08.005. Epub 2022 Aug 24.

Abstract

OBJECTIVE

Nociceptive stimuli have been studied either by dipolar modelling using electroencephalography (EEG) or magnetoencephalography (MEG), but rarely using both techniques simultaneously. This study aims to investigate the spatiotemporal representation of cortical activity in response to non-nociceptive (tactile) and nociceptive (laser) stimuli using parallel EEG-MEG recordings.

METHODS

We performed simultaneous EEG and MEG recordings in 12 healthy subjects by applying pneumatic tactile and nociceptive laser stimuli on the right- and left-hand dorsum. We analyzed brain responses for both modalities and methods by means of global field power (GFP), and dipole source locations, strengths and orientations calculated in the depth to identify similarities and differences.

RESULTS

Prominent GFP peaks were similar in EEG and MEG for tactile responses but different for nociceptive responses.

CONCLUSIONS

Methodically, MEG was superior to EEG in detecting the earliest nociceptive laser-evoked components with earlier latency in primary- and secondary somatosensory cortices, whereas EEG was superior to MEG in detecting late nociceptive components due to radially oriented deeper cortical activity.

SIGNIFICANCE

EEG and MEG revealed in part differential nociceptive waveform patterns, peak latencies, and source orientations, making combined recordings favorable to examine pain-related activity as a whole in high temporal-spatial resolution.

摘要

目的

伤害性刺激的研究要么采用脑电图(EEG)或脑磁图(MEG)的偶极子建模方法,要么采用这两种技术同时进行研究的情况却很少见。本研究旨在使用同步的脑电图 - 脑磁图记录,研究对非伤害性(触觉)和伤害性(激光)刺激作出反应时皮层活动的时空表征。

方法

我们对12名健康受试者进行了同步脑电图和脑磁图记录,通过对右手背和左手背施加气动触觉和伤害性激光刺激。我们通过全局场功率(GFP)以及在深度计算的偶极子源位置、强度和方向,分析了两种刺激方式和两种方法的脑反应,以确定异同。

结果

触觉反应中脑电图和脑磁图的显著全局场功率峰值相似,但伤害性反应的峰值不同。

结论

在方法上,脑磁图在检测初级和次级体感皮层中潜伏期更早的最早伤害性激光诱发成分方面优于脑电图,而脑电图在检测由于径向取向的更深层皮层活动导致的晚期伤害性成分方面优于脑磁图。

意义

脑电图和脑磁图部分揭示了不同的伤害性波形模式、峰值潜伏期和源方向,使得联合记录有利于以高时空分辨率整体检查与疼痛相关的活动。

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