<p>The spherical model results are shown in the left panel, the BEM model results – in the right panel. The localization error, , is plotted along the x-axis. The percentage of sources reconstructed with localization error smaller than a given x-value is plotted along the y-axis. Results for potential-based reconstructions are shown with squares, results for field-based reconstructions are shown with circles. Results for various electric field sensor distances from the scalp are plotted in the left panel using different curve styles. The inset shows the electric field fall-off with distance from the scalp. In the right panel BEM head model results for Harmony (solid curves) and MNE (dashed curves) algorithms are presented. The inset shows H...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
The accuracy of EEG source localization depends on the choice of the inverse method, the resolution ...
Solution of the EEG source localization (inverse) problem utilizing model-based methods typically re...
EEG/MEG source localization based on a ‘‘distributed solution’ ’ is severely underdetermined, becaus...
EEG/MEG source localization based on a "distributed solution" is severely underdetermined, because t...
<p>The localization error is plotted along the x-axis. The percentage of sources reconstructed with ...
this paper that highlight some of the problems of forward modeling, then discuss the impacts these r...
Subject-specific four-layer boundary element method (BEM) electrical forward head models for four pa...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
Summary General formulas are presented for computing a lower bound on localization and moment error ...
<p>Colored spots mark tested locations, spot colors indicate the localization error as given by the ...
Subject-specific four-layer boundary element method (BEM) electrical forward head models for four pa...
<p>Electric field sensor locations on the scalp and their orientations (red for inclination, cyan fo...
The widespread availability of high-resolution anatomical information has placed a greater emphasis ...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
The accuracy of EEG source localization depends on the choice of the inverse method, the resolution ...
Solution of the EEG source localization (inverse) problem utilizing model-based methods typically re...
EEG/MEG source localization based on a ‘‘distributed solution’ ’ is severely underdetermined, becaus...
EEG/MEG source localization based on a "distributed solution" is severely underdetermined, because t...
<p>The localization error is plotted along the x-axis. The percentage of sources reconstructed with ...
this paper that highlight some of the problems of forward modeling, then discuss the impacts these r...
Subject-specific four-layer boundary element method (BEM) electrical forward head models for four pa...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
Summary General formulas are presented for computing a lower bound on localization and moment error ...
<p>Colored spots mark tested locations, spot colors indicate the localization error as given by the ...
Subject-specific four-layer boundary element method (BEM) electrical forward head models for four pa...
<p>Electric field sensor locations on the scalp and their orientations (red for inclination, cyan fo...
The widespread availability of high-resolution anatomical information has placed a greater emphasis ...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
The accuracy of EEG source localization depends on the choice of the inverse method, the resolution ...
Solution of the EEG source localization (inverse) problem utilizing model-based methods typically re...