The end goal of source localization problem is to find the parameters of the brain source. The source number is also the case of these parameters. In this paper we consider two system identification methods (e.g., the information criterion method and the F-test method) to determine the dipole number only with one EEG or MEG topography. Then compare the results from these two methods and find the better one. The following investigations are presented to show that the information criterion method used in this paper is an advanced approach for determining the dipole number just with one EEG ore MEG topography
Summary General formulas are presented for computing a lower bound on localization and moment error ...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoenceph...
An important question arousing in the framework of electroencephalography (EEG) is the possibility t...
Source localization from EEG surface measurements is an im-portant problem in neuro-imaging. We prop...
We deal with estimation of multiple dipoles from combined MEG and EEG time-series. We use a sequenti...
Abstract—Source signals that have strong temporal correlation can pose a challenge for high-resoluti...
In this study a novel deflation based beamforming (BF) method for multiple dipole source localizatio...
The paper considers an electromagnetic inverse problem of localizing dipolar neural current sources ...
Since the discovery of electroencephalography (EEG), when it was hoped that EEG would offer "a windo...
Theoretically, the information we can obtain about the functional localization of a source of brain ...
We have developed a novel algorithm for integrating source localization and noise suppression based ...
The problem of precise estimation of the position and orientation of multiple dipoles using syntheti...
Electroencephalography (EEG) and magnetoencephalography (MEG) are the only two methods to study the ...
Summarization: An electroencephalogram (EEG) plots the scalp potentials, recorded non-invasively fro...
The inverse problem in EEG-based source localizationis to determine the location of the brain source...
Summary General formulas are presented for computing a lower bound on localization and moment error ...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoenceph...
An important question arousing in the framework of electroencephalography (EEG) is the possibility t...
Source localization from EEG surface measurements is an im-portant problem in neuro-imaging. We prop...
We deal with estimation of multiple dipoles from combined MEG and EEG time-series. We use a sequenti...
Abstract—Source signals that have strong temporal correlation can pose a challenge for high-resoluti...
In this study a novel deflation based beamforming (BF) method for multiple dipole source localizatio...
The paper considers an electromagnetic inverse problem of localizing dipolar neural current sources ...
Since the discovery of electroencephalography (EEG), when it was hoped that EEG would offer "a windo...
Theoretically, the information we can obtain about the functional localization of a source of brain ...
We have developed a novel algorithm for integrating source localization and noise suppression based ...
The problem of precise estimation of the position and orientation of multiple dipoles using syntheti...
Electroencephalography (EEG) and magnetoencephalography (MEG) are the only two methods to study the ...
Summarization: An electroencephalogram (EEG) plots the scalp potentials, recorded non-invasively fro...
The inverse problem in EEG-based source localizationis to determine the location of the brain source...
Summary General formulas are presented for computing a lower bound on localization and moment error ...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoenceph...
An important question arousing in the framework of electroencephalography (EEG) is the possibility t...