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eConnectome: A MATLAB toolbox for mapping and imaging of brain functional connectivity

机译:eConnectome:用于映射和成像大脑功能连通性的MATLAB工具箱

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摘要

We have developed a MATLAB-based toolbox, eConnectome (electrophysiological connectome), for mapping and imaging functional connectivity at both the scalp and cortical levels from the electroencephalogram (EEG), as well as from the electrocorticogram (ECoG). Graphical user interfaces were designed for interactive and intuitive use of the toolbox. Major functions of eConnectome include EEG/ECoG preprocessing, scalp spatial mapping, cortical source estimation, connectivity analysis, and visualization. Granger causality measures such as directed transfer function and adaptive directed transfer function were implemented to estimate the directional interactions of brain functional networks, over the scalp and cortical sensor spaces. Cortical current density inverse imaging was implemented using a generic realistic geometry brain-head model from scalp EEGs. Granger causality could be further estimated over the cortical source domain from the inversely reconstructed cortical source signals as derived from the scalp EEG. Users may implement other connectivity estimators in the framework of eConnectome for various applications. The toolbox package is open-source and freely available at http://econnectome.umn.edu under the GNU general public license for noncommercial and academic uses. (C) 2010 Elsevier B.V. All rights reserved.
机译:我们已经开发了基于MATLAB的工具箱eConnectome(电生理连接器),用于从脑电图(EEG)和皮质电图(ECoG)映射和成像头皮和皮质水平的功能连接。图形用户界面设计用于交互式和直观地使用工具箱。 eConnectome的主要功能包括EEG / ECoG预处理,头皮空间映射,皮层源估计,连通性分析和可视化。实施Granger因果措施(例如定向传递函数和自适应定向传递函数)以估计头皮和皮层传感器空间上大脑功能网络的定向交互作用。皮质电流密度逆像成像是使用头皮脑电图的通用现实几何脑-头模型实现的。格兰杰因果关系可以根据从头皮脑电图得到的逆重构皮质源信号在皮质源域上进一步估计。用户可以在eConnectome框架中为各种应用程序实现其他连接估计器。该工具箱包是开源的,可根据GNU通用公共许可证在http://econnectome.umn.edu免费获得,用于非商业和学术用途。 (C)2010 Elsevier B.V.保留所有权利。

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