Brain-computer interface (BCI) is a developing, novel mode of communication for individuals with severe motor impairments or those who have no other options for communication aside from their brain signals. However, the majority of current BCI systems are based on visual stimuli or visual feedback, which may not be applicable for severe locked-in patients that have lost their eyesight or the ability to control their eye movements. In the present study, we investigated the feasibility of using auditory steady-state responses (ASSRs), elicited by selective attention to a specific sound source, as an electroencephalography (EEG)-based BCI paradigm. In our experiment, two pure tone burst trains with different beat frequencies (37 and 43 Hz) wer...
Objective: Brain-computer interface (BCI) technology can provide severely disabled people with non-m...
Brain Computer Interface (BCI) enables a new dimension for Human Computer Interface, by allowing pe...
For Brain-Computer Interface (BCI) systems that are designed for users with severe impairments of th...
Motivated by the particular problems involved in communicating with "locked-in" paralysed patients, ...
Motivated by the particular problems involved in communicating with "locked-in" paralysed patients, ...
During the last 20 years several paradigms for Brain Computer Interfaces have been proposed - see [1...
International audienceBrain-computer interface (BCI) systems offer a non-verbal and covert way for h...
We report on the development and online testing of an electroencephalogram-based brain–computer inte...
Brain-computer interfaces (BCIs) can provide a communication pathway for patients with severe neurom...
a b s t r a c t Objective: Brain-computer interfaces (BCIs) provide non-muscular communication for i...
Brain-Computer Interfaces (BCIs) based on auditory selective attention have been receiving much atte...
Non-invasive brain-computer interfaces (BCIs) based on an event-related potential (ERP) component, P...
Recent research has demonstrated how brain-computer interfaces (BCI) based on auditory stimuli can b...
When considering Brain-Computer Interface (BCI) development for patients in the most severely paraly...
Item does not contain fulltextPeople affected by severe neuro-degenerative diseases (e.g., late-stag...
Objective: Brain-computer interface (BCI) technology can provide severely disabled people with non-m...
Brain Computer Interface (BCI) enables a new dimension for Human Computer Interface, by allowing pe...
For Brain-Computer Interface (BCI) systems that are designed for users with severe impairments of th...
Motivated by the particular problems involved in communicating with "locked-in" paralysed patients, ...
Motivated by the particular problems involved in communicating with "locked-in" paralysed patients, ...
During the last 20 years several paradigms for Brain Computer Interfaces have been proposed - see [1...
International audienceBrain-computer interface (BCI) systems offer a non-verbal and covert way for h...
We report on the development and online testing of an electroencephalogram-based brain–computer inte...
Brain-computer interfaces (BCIs) can provide a communication pathway for patients with severe neurom...
a b s t r a c t Objective: Brain-computer interfaces (BCIs) provide non-muscular communication for i...
Brain-Computer Interfaces (BCIs) based on auditory selective attention have been receiving much atte...
Non-invasive brain-computer interfaces (BCIs) based on an event-related potential (ERP) component, P...
Recent research has demonstrated how brain-computer interfaces (BCI) based on auditory stimuli can b...
When considering Brain-Computer Interface (BCI) development for patients in the most severely paraly...
Item does not contain fulltextPeople affected by severe neuro-degenerative diseases (e.g., late-stag...
Objective: Brain-computer interface (BCI) technology can provide severely disabled people with non-m...
Brain Computer Interface (BCI) enables a new dimension for Human Computer Interface, by allowing pe...
For Brain-Computer Interface (BCI) systems that are designed for users with severe impairments of th...