Subject-specific four-layer boundary element method (BEM) electrical forward head models for four participants, generated from magnetic resonance (MR) head images using NFT ( www.sccn.ucsd.edu/wiki/NFT ), were used to simulate electroencephalographic (EEG) scalp potentials at 256 recorded electrode positions produced by single current dipoles of a 3-D grid in brain space. Locations of these dipoles were then estimated using gradient descent within five template head models fit to the electrode positions. These were: a spherical model, three-layer and four-layer BEM head models based on the Montreal Neurological Institute (MNI) template head image, and these BEM models warped to the recorded electrode positions. Smallest localization errors ...
In order to reconstruct the underlying active neural sources of epileptic spiking activity measured ...
The accuracy of forward models for electroencephalography (EEG) partly depends on head tissues geome...
The accuracy of forward models for electroencephalography (EEG) partly depends on head tissues geome...
Subject-specific four-layer boundary element method (BEM) electrical forward head models for four pa...
Subject-specific four-layer boundary element method (BEM) electrical forward head models for four pa...
The widespread availability of high-resolution anatomical information has placed a greater emphasis ...
this paper that highlight some of the problems of forward modeling, then discuss the impacts these r...
Abstract Background The structure of the anatomical surfaces, e.g., CSF and gray and white matter, c...
Electrical source imaging (ESI) aims at reconstructing the electrical brain activity from scalp EEG....
Solution of the EEG source localization (inverse) problem utilizing model-based methods typically re...
Inverse solution techniques based on electroencephalographic (EEG) measurements have become a powerf...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
International audienceThe accurate simulation of the electric fields evoked by neural activity is cr...
AbstractElectrical source imaging (ESI) aims at reconstructing the electrical brain activity from sc...
AbstractIn source localization of electroencephalograpic (EEG) signals, as well as in targeted trans...
In order to reconstruct the underlying active neural sources of epileptic spiking activity measured ...
The accuracy of forward models for electroencephalography (EEG) partly depends on head tissues geome...
The accuracy of forward models for electroencephalography (EEG) partly depends on head tissues geome...
Subject-specific four-layer boundary element method (BEM) electrical forward head models for four pa...
Subject-specific four-layer boundary element method (BEM) electrical forward head models for four pa...
The widespread availability of high-resolution anatomical information has placed a greater emphasis ...
this paper that highlight some of the problems of forward modeling, then discuss the impacts these r...
Abstract Background The structure of the anatomical surfaces, e.g., CSF and gray and white matter, c...
Electrical source imaging (ESI) aims at reconstructing the electrical brain activity from scalp EEG....
Solution of the EEG source localization (inverse) problem utilizing model-based methods typically re...
Inverse solution techniques based on electroencephalographic (EEG) measurements have become a powerf...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
International audienceThe accurate simulation of the electric fields evoked by neural activity is cr...
AbstractElectrical source imaging (ESI) aims at reconstructing the electrical brain activity from sc...
AbstractIn source localization of electroencephalograpic (EEG) signals, as well as in targeted trans...
In order to reconstruct the underlying active neural sources of epileptic spiking activity measured ...
The accuracy of forward models for electroencephalography (EEG) partly depends on head tissues geome...
The accuracy of forward models for electroencephalography (EEG) partly depends on head tissues geome...