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Cortical source localization for analysing single-trial motor imagery EEG

机译:用于分析单试电机图像EEG的皮​​质源定位

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Electroencephalography (EEG) is the most widely used Brain-Computer Interface (BCI) modality to record brain signal. Unlike other neuroimaging modalities like fMRI and PET, EEG is not very effective in localizing the brain sources. However, with the advent of inverse modeling techniques for source localization, it is possible to use EEG as an alternative neuroimaging technique. In this paper, source localization using EEG signal is used to analyze single-trial movement imagination (MI) tasks. Wadsworth physiobank dataset of 109 subjects performing right hand vs left hand movement imagination is considered. Forward modeling based on 3 layered head geometry is co-registered with ICBM 152 template anatomy, which is a non-linear average of fMRI scans of 152 subjects. Inverse modeling is done with the help of Standardized Low Resolution Electromagnetic Tomography (sLORETA). The proposed method presents some preliminary results on how source localization could be used to identify the moment (time instant) of brain source activation even within a single trial.
机译:脑电图(EEG)是最广泛使用的大脑接口(BCI)模型,用于记录大脑信号。与像FMRI和PET这样的神经影像码种不同,EEG在本地化大脑来源方面并不是很有效。然而,随着源定位的逆建模技术的出现,可以使用EEG作为替代的神经影像技术。在本文中,使用EEG信号的源定位用于分析单试动机(MI)任务。 Wadsworth Physiobank数据集109个科目执行右手VS左手运动想象。基于3层头几何的前向建模与ICBM 152模板解剖学共同登记,这是152个受试者的FMRI扫描的非线性平均值。在标准化的低分辨率电磁断层扫描(SLORETA)的帮助下进行逆建模。该方法提出了一些初步结果,即使在单一试验中,如何使用源定位如何识别脑源激活的时刻(时刻)。

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