The main objective of the current study was to implement and evaluate a P300 based brain-computer interface (BCI) speller that uses directional cues of auditory stimuli, which are presented over headphones. The interstimulus interval (ISI) was successively reduced to determine the optimal combination of speed and accuracy. The study further aimed at quantifying the differences in subjective workload between the auditory and the visual P300 spelling application. The influence of workload, mood and motivation on BCI performance and P300 amplitude was investigated
The Farwell and Donchin matrix speller is well known as one of the highest performing brain-computer...
Brain-computer interface (BCI) systems aim to enable interaction with other people and the environme...
A Brain–Computer Interface (BCI) provides a novel non-muscular communication method via brain signal...
Currently many brain-computer interface systems require intact gaze control. This excludes all users...
Objective: Brain-computer interface (BCI) technology can provide severely disabled people with non-m...
When using a Brain-Computer Interface (BCI) as a spelling device, the P300-based BCI is mostly commo...
Brain-Computer Interfaces (BCIs) are bidirectional devices that have allowed people to control compu...
This study was designed to develop and test an auditory event-related potential (ERP) based spelling...
This thesis aims to design a real-time EEG-based communication aid using brain-computer interface (B...
This study compared a conventional P300 speller brain-computer interface (BCI) to one used in conjun...
Objectives Brain–computer interface (BCI) technology aims at helping end-users with severe motor par...
International audienceBrain-computer interfaces (BCI) are communication system that use brain activi...
International audienceBrain Computer Interfaces (BCI) provide a way of communicating directly from b...
The objective of this study was to test the usability of a new auditory Brain-Computer Interface (BC...
The present study investigates a Brain-Computer Interface (BCI) spelling procedure based on the P300...
The Farwell and Donchin matrix speller is well known as one of the highest performing brain-computer...
Brain-computer interface (BCI) systems aim to enable interaction with other people and the environme...
A Brain–Computer Interface (BCI) provides a novel non-muscular communication method via brain signal...
Currently many brain-computer interface systems require intact gaze control. This excludes all users...
Objective: Brain-computer interface (BCI) technology can provide severely disabled people with non-m...
When using a Brain-Computer Interface (BCI) as a spelling device, the P300-based BCI is mostly commo...
Brain-Computer Interfaces (BCIs) are bidirectional devices that have allowed people to control compu...
This study was designed to develop and test an auditory event-related potential (ERP) based spelling...
This thesis aims to design a real-time EEG-based communication aid using brain-computer interface (B...
This study compared a conventional P300 speller brain-computer interface (BCI) to one used in conjun...
Objectives Brain–computer interface (BCI) technology aims at helping end-users with severe motor par...
International audienceBrain-computer interfaces (BCI) are communication system that use brain activi...
International audienceBrain Computer Interfaces (BCI) provide a way of communicating directly from b...
The objective of this study was to test the usability of a new auditory Brain-Computer Interface (BC...
The present study investigates a Brain-Computer Interface (BCI) spelling procedure based on the P300...
The Farwell and Donchin matrix speller is well known as one of the highest performing brain-computer...
Brain-computer interface (BCI) systems aim to enable interaction with other people and the environme...
A Brain–Computer Interface (BCI) provides a novel non-muscular communication method via brain signal...