Two major non-invasive brain mapping techniques, electroencephalography (EEG) and functional magnetic resonance imaging (fMRI), have complementary advantages with regard to their spatial and temporal resolution. We propose an approach based on the integration of EEG and fMRI, enabling the EEG temporal dynamics of information processing to be characterized within spatially well-defined fMRI large-scale networks. First, the fMRI data are decomposed into networks by means of spatial independent component analysis (sICA), and those associated with intrinsic activity and/or responding to task performance are selected using information from the related time-courses. Next, the EEG data over all sensors are averaged with respect to event timing, th...
© EURASIP 2017. Simultaneous recording of electroencephalographic (EEG) signals and functional magne...
In recent years, one of the most important findings in systems neuroscience has been the identificat...
Two major non-invasive techniques in cognitive neuroscience, electroencephalography (EEG) and functi...
Two major non-invasive brain mapping techniques, electroencephalography (EEG) and functional magneti...
Two major non-invasive brain mapping techniques, electroencephalography (EEG) and functional magneti...
Several methods have been applied to EEG or MEG signals to detect functional networks. In recent wor...
Several methods have been applied to EEG or MEG signals to detect functional networks. In recent wor...
Several methods have been applied to EEG or MEG signals to detect functional networks. In recent wor...
Several methods have been applied to EEG or MEG signals to detect functional networks. In recent wor...
EEG and fMRI recordings measure the functional activity of multiple coherent networks distributed in...
EEG and fMRI recordings measure the functional activity of multiple coherent networks distributed in...
Abstract Different imaging modalities are sensitive to different aspects of brain activity, and inte...
EEG and fMRI recordings measure the functional activity of multiple coherent networks distributed in...
The combined use of EEG and fMRI allows the fusion of electrophysiological and hemodynamic informati...
Due to its millisecond-scale temporal resolution, EEG allows to assess neural correlates with precis...
© EURASIP 2017. Simultaneous recording of electroencephalographic (EEG) signals and functional magne...
In recent years, one of the most important findings in systems neuroscience has been the identificat...
Two major non-invasive techniques in cognitive neuroscience, electroencephalography (EEG) and functi...
Two major non-invasive brain mapping techniques, electroencephalography (EEG) and functional magneti...
Two major non-invasive brain mapping techniques, electroencephalography (EEG) and functional magneti...
Several methods have been applied to EEG or MEG signals to detect functional networks. In recent wor...
Several methods have been applied to EEG or MEG signals to detect functional networks. In recent wor...
Several methods have been applied to EEG or MEG signals to detect functional networks. In recent wor...
Several methods have been applied to EEG or MEG signals to detect functional networks. In recent wor...
EEG and fMRI recordings measure the functional activity of multiple coherent networks distributed in...
EEG and fMRI recordings measure the functional activity of multiple coherent networks distributed in...
Abstract Different imaging modalities are sensitive to different aspects of brain activity, and inte...
EEG and fMRI recordings measure the functional activity of multiple coherent networks distributed in...
The combined use of EEG and fMRI allows the fusion of electrophysiological and hemodynamic informati...
Due to its millisecond-scale temporal resolution, EEG allows to assess neural correlates with precis...
© EURASIP 2017. Simultaneous recording of electroencephalographic (EEG) signals and functional magne...
In recent years, one of the most important findings in systems neuroscience has been the identificat...
Two major non-invasive techniques in cognitive neuroscience, electroencephalography (EEG) and functi...