OBJECTIVE: A reliable reconstruction of neural activity using high-density electroencephalography (EEG) requires an accurate spatial localization of EEG electrodes aligned to the structural magnetic resonance (MR) image of an individual's head. Current technologies for electrode positioning, such as electromagnetic digitization, are yet characterized by non-negligible localization and co-registration errors. In this study, we propose an automated method for spatial localization of EEG electrodes using 3D scanning, a non-invasive and easy-to-use technology with potential applications in clinical settings. APPROACH: Our method consists of three main steps: (1) the 3D scan is ambient light-corrected and spatially aligned to the head surface ex...
International audienceSimultaneous EEG/fMRI acquisition allows to measure brain activity at high spa...
International audienceSpatial localization of scalp EEG electrodes is a major step for dipole source...
The localization of intracranial electrodes is a fundamental step in the analysis of invasive electr...
International audienceAIM OF THE STUDY: An important goal for EEG-based functional brain studies is ...
OBJECTIVE Accurate knowledge about the positions of electrodes in electroencephalography (EEG) is v...
In this study, we evaluated the use of a structured-light 3D scanner for EEG electrode digitization....
Electroencephalography (EEG) is often used in source analysis studies, in which the locations of cor...
The performance of EEG source reconstruction has benefited from the increasing use of advanced head ...
A crucial link of electroencephalograph (EEG) technology is the accurate estimation of EEG electrode...
The location of the international 10-20 system electrode positions and 14 fiducial landmarks are des...
The objective of this thesis is to design an algorithm used for localization of scalp electrodes in ...
International audienceThe coupling of EEG/fMRI allows measuring brain activity at high spatio-tempor...
International audienceThe simultaneous acquisition of electroencephalographic (EEG) signals and func...
The localization of intracranial electrodes is a fundamental step in the analysis of invasive electr...
International audienceSimultaneous EEG/fMRI acquisition allows to measure brain activity at high spa...
International audienceSpatial localization of scalp EEG electrodes is a major step for dipole source...
The localization of intracranial electrodes is a fundamental step in the analysis of invasive electr...
International audienceAIM OF THE STUDY: An important goal for EEG-based functional brain studies is ...
OBJECTIVE Accurate knowledge about the positions of electrodes in electroencephalography (EEG) is v...
In this study, we evaluated the use of a structured-light 3D scanner for EEG electrode digitization....
Electroencephalography (EEG) is often used in source analysis studies, in which the locations of cor...
The performance of EEG source reconstruction has benefited from the increasing use of advanced head ...
A crucial link of electroencephalograph (EEG) technology is the accurate estimation of EEG electrode...
The location of the international 10-20 system electrode positions and 14 fiducial landmarks are des...
The objective of this thesis is to design an algorithm used for localization of scalp electrodes in ...
International audienceThe coupling of EEG/fMRI allows measuring brain activity at high spatio-tempor...
International audienceThe simultaneous acquisition of electroencephalographic (EEG) signals and func...
The localization of intracranial electrodes is a fundamental step in the analysis of invasive electr...
International audienceSimultaneous EEG/fMRI acquisition allows to measure brain activity at high spa...
International audienceSpatial localization of scalp EEG electrodes is a major step for dipole source...
The localization of intracranial electrodes is a fundamental step in the analysis of invasive electr...