Spatial filtering, or beamforming, is a commonly used data-driven analysis technique in the field of Magnetoencephalography (MEG). Although routinely referred to as a single technique, beamforming in fact encompasses several different methods, both with regard to defining the spatial filters used to reconstruct source-space time series and in terms of the analysis of these time series. This paper evaluates two alternative methods of spatial filter construction and application. It demonstrates how encoding different requirements into the design of these filters has an effect on the results obtained. The analyses presented demonstrate the potential value of implementations which examine the timeseries projections in multiple orientations at a...
A number of beamformers have been introduced to localize neuronal activity using magnetoencephalogra...
We introduce new spatial filtering methods in the spherical harmonics domain for constraining magnet...
In this thesis, two novel spatial filter approaches for artifact correction in continuous recordings...
Abstract—The increase in computer power of the last few decades has allowed the resurgence of the th...
Spatial filtering (SF) constitutes an integral part of building EEG-based braincomputer interfaces ...
Beamforming is a spatial filtering based source reconstruction method for EEG and MEG that allows th...
Beamformer adaptive spatial filters have been used extensively in the field of magnetoencephalograph...
Spatial filtering (SF) constitutes an integral part of building EEG-based braincomputer interfaces ...
Beamforming is a spatial filtering based source reconstruction method for EEG and MEG that allows th...
Abstract—We have developed a method suitable for recon-structing spatio-temporal activities of neura...
(Communicated by the associate editor name) Abstract. We present a comparison of three methods for t...
Recently, several new beamformers have been introduced for reconstruction and localization of neural...
International audienceThe reconstruction of brain sources from non-invasive electroencephalography (...
Beamformer spatial filters are commonly used to explore the active neuronal sources underlying magne...
The dynamics of neural information processing are complicated, and determining the sequence and mode...
A number of beamformers have been introduced to localize neuronal activity using magnetoencephalogra...
We introduce new spatial filtering methods in the spherical harmonics domain for constraining magnet...
In this thesis, two novel spatial filter approaches for artifact correction in continuous recordings...
Abstract—The increase in computer power of the last few decades has allowed the resurgence of the th...
Spatial filtering (SF) constitutes an integral part of building EEG-based braincomputer interfaces ...
Beamforming is a spatial filtering based source reconstruction method for EEG and MEG that allows th...
Beamformer adaptive spatial filters have been used extensively in the field of magnetoencephalograph...
Spatial filtering (SF) constitutes an integral part of building EEG-based braincomputer interfaces ...
Beamforming is a spatial filtering based source reconstruction method for EEG and MEG that allows th...
Abstract—We have developed a method suitable for recon-structing spatio-temporal activities of neura...
(Communicated by the associate editor name) Abstract. We present a comparison of three methods for t...
Recently, several new beamformers have been introduced for reconstruction and localization of neural...
International audienceThe reconstruction of brain sources from non-invasive electroencephalography (...
Beamformer spatial filters are commonly used to explore the active neuronal sources underlying magne...
The dynamics of neural information processing are complicated, and determining the sequence and mode...
A number of beamformers have been introduced to localize neuronal activity using magnetoencephalogra...
We introduce new spatial filtering methods in the spherical harmonics domain for constraining magnet...
In this thesis, two novel spatial filter approaches for artifact correction in continuous recordings...