Effective use of brain–computer interfaces (BCIs) typically requires training. Improved understanding of the neural mechanisms underlying BCI training will facilitate optimisation of BCIs. The current study examined the neural mechanisms related to training for electroencephalography (EEG)‐based communication with an auditory event‐related potential (ERP) BCI. Neural mechanisms of training in 10 healthy volunteers were assessed with functional magnetic resonance imaging (fMRI) during an auditory ERP‐based BCI task before (t1) and after (t5) three ERP‐BCI training sessions outside the fMRI scanner (t2, t3, and t4). Attended stimuli were contrasted with ignored stimuli in the first‐level fMRI data analysis (t1 and t5); the training effect was...
International audienceObjective While promising, ElectroEncephaloGraphy based Brain-Computer Interfa...
International audienceObjective: Brain-computer interfaces (BCIs) constitute a promising tool for co...
Learning a new skill requires one to produce new patterns of activity among networks of neurons. Thi...
Electroencephalography based brain-computer interfaces (BCIs) show promise of providing an alternati...
Brain computer interfaces (BCI) enable humans or animals to communicate or activate external devices...
International audienceBrain-computer interfaces (BCIs) have been largely developed to allow communic...
Electroencephalography based brain-computer interfaces (BCIs) show promise of providing an alternati...
Electroencephalography based brain-computer interfaces (BCIs) show promise of providing an alternati...
Electroencephalography based brain-computer interfaces (BCIs) show promise of providing an alternati...
The development of brain computer interfaces (BCIs) for patient rehabilitation is a growing field of...
Thesis (Ph.D.)--University of Washington, 2015Brain-computer interface (BCI) technologies can potent...
Objective Auditory brain–computer interfaces are an assistive technology that can restore communicat...
Brain-computer interfaces (BCIs) enable humans or animals to communicate or control external devices...
Thesis (Ph.D.)--University of Washington, 2017-03This body of work is focused on brain-computer inte...
International audienceNon-invasive Brain-Computer Interfaces (BCIs) based on motor imagery (MI) task...
International audienceObjective While promising, ElectroEncephaloGraphy based Brain-Computer Interfa...
International audienceObjective: Brain-computer interfaces (BCIs) constitute a promising tool for co...
Learning a new skill requires one to produce new patterns of activity among networks of neurons. Thi...
Electroencephalography based brain-computer interfaces (BCIs) show promise of providing an alternati...
Brain computer interfaces (BCI) enable humans or animals to communicate or activate external devices...
International audienceBrain-computer interfaces (BCIs) have been largely developed to allow communic...
Electroencephalography based brain-computer interfaces (BCIs) show promise of providing an alternati...
Electroencephalography based brain-computer interfaces (BCIs) show promise of providing an alternati...
Electroencephalography based brain-computer interfaces (BCIs) show promise of providing an alternati...
The development of brain computer interfaces (BCIs) for patient rehabilitation is a growing field of...
Thesis (Ph.D.)--University of Washington, 2015Brain-computer interface (BCI) technologies can potent...
Objective Auditory brain–computer interfaces are an assistive technology that can restore communicat...
Brain-computer interfaces (BCIs) enable humans or animals to communicate or control external devices...
Thesis (Ph.D.)--University of Washington, 2017-03This body of work is focused on brain-computer inte...
International audienceNon-invasive Brain-Computer Interfaces (BCIs) based on motor imagery (MI) task...
International audienceObjective While promising, ElectroEncephaloGraphy based Brain-Computer Interfa...
International audienceObjective: Brain-computer interfaces (BCIs) constitute a promising tool for co...
Learning a new skill requires one to produce new patterns of activity among networks of neurons. Thi...