The EEG signal is generated by electrical brain cell activity, often described in terms of current dipoles. By applying EEG forward models we can compute the contribution from such dipoles to the electrical potential recorded by EEG electrodes. Forward models are key both for generating understanding and intuition about the neural origin of EEG signals as well as inverse modeling, i.e., the estimation of the underlying dipole sources from recorded EEG signals. Different models of varying complexity and biological detail are used in the field. One such analytical model is the four-sphere model which assumes a four-layered spherical head where the layers represent brain tissue, cerebrospinal fluid (CSF), skull, and scalp, respectively. While ...
The accuracy of forward models for electroencephalography (EEG) partly depends on head tissues geome...
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 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...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
Solution of the EEG source localization (inverse) problem utilizing model-based methods typically re...
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 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...
The accuracy of forward models for electroencephalography (EEG) partly depends on head tissues geome...
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 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...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
Solution of the EEG source localization (inverse) problem utilizing model-based methods typically re...
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 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...
The accuracy of forward models for electroencephalography (EEG) partly depends on head tissues geome...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...