Directed connectivity between brain sources identified from scalp electroencephalography (EEG) can shed light on the brain’s information flows and provide a biomarker of neurological disorders. However, as volume conductance results in scalp activity being a mix of activities originating from multiple sources, the correct interpretation of their connectivity is a formidable challenge despite source localization being applied with some success. Traditional connectivity approaches rely on statistical assumptions that usually do not hold for EEG, calling for a model-free approach. We investigated several types of Artificial Neural Networks in estimating Directed Connectivity between Reconstructed EEG Sources and assessed their accuracy with re...
Assessment of brain connectivity among different brain areas during cognitive or motor tasks is a cr...
As the EEG inverse problem does not have a unique solution, the sources reconstructed from EEG and t...
Interactions between functionally specialized brain regions are crucial for normal brain function. M...
The recent past years have seen a noticeable increase of interest for electroencephalography (EEG) t...
The recent past years have seen a noticeable increase of interest for electroencephalography (EEG) t...
International audienceAlong with the study of the brain activity evoked by external stimuli, an impo...
Electrical activity recorded on the scalp using electroencephalography (EEG) results from the mixing...
In connectivity studies using EEG data, it is imperative to work on reconstructed sources in order t...
<p>In cognitive neuroscience, electrical brain activity is most commonly recorded at the scalp. In o...
EEG can be used to characterise functional networks using a variety of connectivity (FC) metrics. Un...
Information flow between brain areas from EEG measurements is hard to estimate reliably due to the p...
International audienceEpilepsy is a network disease. Identifying the epileptogenic networks from non...
In the study of brain functional or effective connectivity using electroencephalography (EEG) data, ...
In cognitive neuroscience, electrical brain activity is most commonly recorded at the scalp. In orde...
Electrical activity recorded on the scalp using electroencephalography (EEG) results from the mixing...
Assessment of brain connectivity among different brain areas during cognitive or motor tasks is a cr...
As the EEG inverse problem does not have a unique solution, the sources reconstructed from EEG and t...
Interactions between functionally specialized brain regions are crucial for normal brain function. M...
The recent past years have seen a noticeable increase of interest for electroencephalography (EEG) t...
The recent past years have seen a noticeable increase of interest for electroencephalography (EEG) t...
International audienceAlong with the study of the brain activity evoked by external stimuli, an impo...
Electrical activity recorded on the scalp using electroencephalography (EEG) results from the mixing...
In connectivity studies using EEG data, it is imperative to work on reconstructed sources in order t...
<p>In cognitive neuroscience, electrical brain activity is most commonly recorded at the scalp. In o...
EEG can be used to characterise functional networks using a variety of connectivity (FC) metrics. Un...
Information flow between brain areas from EEG measurements is hard to estimate reliably due to the p...
International audienceEpilepsy is a network disease. Identifying the epileptogenic networks from non...
In the study of brain functional or effective connectivity using electroencephalography (EEG) data, ...
In cognitive neuroscience, electrical brain activity is most commonly recorded at the scalp. In orde...
Electrical activity recorded on the scalp using electroencephalography (EEG) results from the mixing...
Assessment of brain connectivity among different brain areas during cognitive or motor tasks is a cr...
As the EEG inverse problem does not have a unique solution, the sources reconstructed from EEG and t...
Interactions between functionally specialized brain regions are crucial for normal brain function. M...