<p>Since the conductivities of the head (gray layer), the outer skull (blue layer) and the inner skull (purple layer) are also known, we can compute the mapping from out 28 electrodes to 258 cortical dipoles.</p
The definitive version may be found at www.wiley.comA realistic subject-specific human head model wa...
<p>The layers are represented separately the brain (A), the skull (B), the scalp (C) followed by all...
<p>Scalp, skull, CSF, and brain shells are shown in different colors from the outmost to the inmost ...
Most of the human head models used in dipole localisation research, which have been reported in the ...
Electroencephalogram (EEG) dipole source localization is a non-invasive technique used in the pre-su...
<p>A) Tissue segmentation of scalp (yellow), skull (brown), cerebral-spinal fluid (green), gray matt...
<p>(a) Whole head model and (b) cross-section of head model for subdural cortical stimulation are sh...
The EEG signal is generated by electrical brain cell activity, often described in terms of current d...
The EEG signal is generated by electrical brain cell activity, often described in terms of current d...
The EEG signal is generated by electrical brain cell activity, often described in terms of current d...
Magnetic resonance imaging (MRI) provides the means for the generation of head models with a high ge...
Solution of the EEG source localization (inverse) problem utilizing model-based methods typically re...
Abstract Background The structure of the anatomical surfaces, e.g., CSF and gray and white matter, c...
Colored field maps for the D-B80 coil (top row) and for the H7 coil (bottom row) showing electric fi...
Abstract Background The magnetoencephalograms (MEGs) are mainly due to the source currents. However,...
The definitive version may be found at www.wiley.comA realistic subject-specific human head model wa...
<p>The layers are represented separately the brain (A), the skull (B), the scalp (C) followed by all...
<p>Scalp, skull, CSF, and brain shells are shown in different colors from the outmost to the inmost ...
Most of the human head models used in dipole localisation research, which have been reported in the ...
Electroencephalogram (EEG) dipole source localization is a non-invasive technique used in the pre-su...
<p>A) Tissue segmentation of scalp (yellow), skull (brown), cerebral-spinal fluid (green), gray matt...
<p>(a) Whole head model and (b) cross-section of head model for subdural cortical stimulation are sh...
The EEG signal is generated by electrical brain cell activity, often described in terms of current d...
The EEG signal is generated by electrical brain cell activity, often described in terms of current d...
The EEG signal is generated by electrical brain cell activity, often described in terms of current d...
Magnetic resonance imaging (MRI) provides the means for the generation of head models with a high ge...
Solution of the EEG source localization (inverse) problem utilizing model-based methods typically re...
Abstract Background The structure of the anatomical surfaces, e.g., CSF and gray and white matter, c...
Colored field maps for the D-B80 coil (top row) and for the H7 coil (bottom row) showing electric fi...
Abstract Background The magnetoencephalograms (MEGs) are mainly due to the source currents. However,...
The definitive version may be found at www.wiley.comA realistic subject-specific human head model wa...
<p>The layers are represented separately the brain (A), the skull (B), the scalp (C) followed by all...
<p>Scalp, skull, CSF, and brain shells are shown in different colors from the outmost to the inmost ...