Home /Research /EEG-based brain-computer interface for alpha speed control of a small robot using the MUSE headband
OTHER

EEG-based brain-computer interface for alpha speed control of a small robot using the MUSE headband

Cédric Simar, Mathieu Petieau, Anita Cebolla, Axelle Leroy, Gianluca Bontempi, Guy Chéron

Year
2020
Citations
7

Abstract

Non-invasive BMI applications are increasingly used in different contexts ranging from industrial, clinical and gaming. After having tested the difference between a classical EEG recorder with electroconductive gel (ANT system) and the MUSE EEG headband, we studied the BCI performances of the later during the control of a small robot. We demonstrated that the participants were able to successfully control the robot using an online brain-computer interface based on the signal power in different frequency bands (delta, theta and alpha) characterizing the eyes-opened and relaxed eyes-closed states. Additionally, we performed a correlation analysis which demonstrated that the BCI commands were more related to a delta or theta power decrease for the determination of the classifier output probability and to the alpha power increase for the speed control of the robot.

Keywords

ElectroencephalographyBrain–computer interfaceAlpha (finance)Computer scienceInterface (matter)RobotHuman–computer interactionArtificial intelligenceNeurosciencePsychology

Related papers

Browse all OTHER papers