A motor imagery (MI)-based brain–computer interface (BCI) is a system that enables humans to interact with their environment by translating their brain signals into control commands for a target device. In particular, synchronous BCI systems make use of cues to trigger the motor activity of interest. So far, it has been shown that electroencephalographic (EEG) patterns before and after cue onset can reveal the user cognitive state and enhance the discrimination of MI-related control tasks. However, there has been no detailed investigation of the nature of those EEG patterns. We, therefore, propose to study the cue effects on MI-related control tasks by selecting EEG patterns that best discriminate such control tasks, and analyzing where tho...
Background Brain-computer interface (BCI) systems in neuro-rehabilitation use brain signals to contr...
Phase synchronisation between different neural groups is considered an important source of informati...
Brain-Computer Interfaces (BCI) constitute an alternative channel of communication between humans an...
Brain-computer interfaces (BCIs) are promising systems that attempt to replace the function of the b...
© 2017 Grissmann, Zander, Faller, Brönstrup, Kelava, Gramann and Gerjets. Most brain-computer interf...
International audienceNon-invasive Brain-Computer Interfaces (BCIs) based on motor imagery (MI) task...
Brain–computer interface (BCI) technology relies on the ability of individuals to voluntarily and re...
Brain–computer interface (BCI) technology relies on the ability of individuals to voluntarily and re...
Thesis (Ph.D.)--University of Washington, 2015Brain-computer interface (BCI) technologies can potent...
AbstractBrain Computer Interfaces, abbreviated as BCI, is a technology which allows users to take ac...
Scalp recorded electroencephalogram signals (EEG) reflect the combined synaptic and axonal activity ...
Electroencephalography (EEG)-based brain-computer interfaces (BCIs), particularly those using motor-...
Abstract. Brain-computer interfaces (BCIs) aim at providing a non-muscular channel for sending comma...
A new control paradigm for Brain Computer Interfaces (BCIs) is proposed. BCIs provide a means of co...
Mental-Imagery based Brain-Computer Interfaces (MI-BCIs) allow their users to send commands to a co...
Background Brain-computer interface (BCI) systems in neuro-rehabilitation use brain signals to contr...
Phase synchronisation between different neural groups is considered an important source of informati...
Brain-Computer Interfaces (BCI) constitute an alternative channel of communication between humans an...
Brain-computer interfaces (BCIs) are promising systems that attempt to replace the function of the b...
© 2017 Grissmann, Zander, Faller, Brönstrup, Kelava, Gramann and Gerjets. Most brain-computer interf...
International audienceNon-invasive Brain-Computer Interfaces (BCIs) based on motor imagery (MI) task...
Brain–computer interface (BCI) technology relies on the ability of individuals to voluntarily and re...
Brain–computer interface (BCI) technology relies on the ability of individuals to voluntarily and re...
Thesis (Ph.D.)--University of Washington, 2015Brain-computer interface (BCI) technologies can potent...
AbstractBrain Computer Interfaces, abbreviated as BCI, is a technology which allows users to take ac...
Scalp recorded electroencephalogram signals (EEG) reflect the combined synaptic and axonal activity ...
Electroencephalography (EEG)-based brain-computer interfaces (BCIs), particularly those using motor-...
Abstract. Brain-computer interfaces (BCIs) aim at providing a non-muscular channel for sending comma...
A new control paradigm for Brain Computer Interfaces (BCIs) is proposed. BCIs provide a means of co...
Mental-Imagery based Brain-Computer Interfaces (MI-BCIs) allow their users to send commands to a co...
Background Brain-computer interface (BCI) systems in neuro-rehabilitation use brain signals to contr...
Phase synchronisation between different neural groups is considered an important source of informati...
Brain-Computer Interfaces (BCI) constitute an alternative channel of communication between humans an...