International audienceThe reconstruction of brain sources from non-invasive electroencephalography (EEG) or magnetoencephalography (MEG) via source imaging can be distorted by information redundancy in case of high-resolution recordings. Dimensionality reduction approaches such as spatial projection may be used to alleviate this problem. In this proof-of-principle paper we apply spatial projection to solve the problem of information redundancy in case of source reconstruction via spatiotemporal Kalman filtering (STKF), which is based on state-space modeling. We compare two approaches for incorporating spatial projection into the STKF algorithm and select the best approach based on its performance in source localization with respect to accur...
International audienceThe Electroencephalographiy (EEG) and Magnetoencephalography (MEG) are two no...
Thesis (Ph.D.)--Harvard--Massachusetts Institute of Technology Division of Health Sciences and Techn...
Determining the magnitude and location of neural sources within the brain that are responsible for g...
International audienceThe reconstruction of brain sources from non-invasive electroencephalography (...
International audienceThe clinical routine of non-invasive electroencephalography (EEG) is usually p...
Background and objective: The human brain displays rich and complex patterns of interaction within a...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
The high temporal resolution of EEG/MEG data offers a way to improve source reconstruction estimates...
Background: The accuracy of source reconstruction depends on the spatial configuration of the neural...
The estimation of the instant location and strength of sources takes a considerable importance for m...
Spatial filtering, or beamforming, is a commonly used data-driven analysis technique in the field of...
The bioelectromagnetic inverse problem cannot be solved based on EEG/MEG data alone and requires add...
Beamforming is a spatial filtering based source reconstruction method for EEG and MEG that allows th...
We propose a novel approach to solving the electro-/magnetoencephalographic (EEG/MEG) inverse proble...
Beamforming is a spatial filtering based source reconstruction method for EEG and MEG that allows th...
International audienceThe Electroencephalographiy (EEG) and Magnetoencephalography (MEG) are two no...
Thesis (Ph.D.)--Harvard--Massachusetts Institute of Technology Division of Health Sciences and Techn...
Determining the magnitude and location of neural sources within the brain that are responsible for g...
International audienceThe reconstruction of brain sources from non-invasive electroencephalography (...
International audienceThe clinical routine of non-invasive electroencephalography (EEG) is usually p...
Background and objective: The human brain displays rich and complex patterns of interaction within a...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
The high temporal resolution of EEG/MEG data offers a way to improve source reconstruction estimates...
Background: The accuracy of source reconstruction depends on the spatial configuration of the neural...
The estimation of the instant location and strength of sources takes a considerable importance for m...
Spatial filtering, or beamforming, is a commonly used data-driven analysis technique in the field of...
The bioelectromagnetic inverse problem cannot be solved based on EEG/MEG data alone and requires add...
Beamforming is a spatial filtering based source reconstruction method for EEG and MEG that allows th...
We propose a novel approach to solving the electro-/magnetoencephalographic (EEG/MEG) inverse proble...
Beamforming is a spatial filtering based source reconstruction method for EEG and MEG that allows th...
International audienceThe Electroencephalographiy (EEG) and Magnetoencephalography (MEG) are two no...
Thesis (Ph.D.)--Harvard--Massachusetts Institute of Technology Division of Health Sciences and Techn...
Determining the magnitude and location of neural sources within the brain that are responsible for g...