With the recent advances in the field of electroencephalography (EEG), researchers have been able to detect and predict cognitive states and patterns based on electromagnetic signals emitted by the brain with greater precision than ever before. EEG has become a viable means of implementing brain-computer-interfaces (BCIs), which translate brain signals into machine commands. We have developed a system with reconfigurable hardware and open architecture component based software to enable multi-sensor physiological signal monitoring. The goal of this research is to study the feasibility of using the system that can facilitate monitoring of visual attention EEG brain signal
Abstract—A real-time wireless electroencephalogram (EEG)-based brain–computer interface (BCI) system...
IEEE Brain-Computer interfaces (BCIs) enhance the capability of human brain activities to interact w...
IEEE Brain-Computer interfaces (BCIs) enhance the capability of human brain activities to interact w...
With the recent advances in the field of electroencephalography (EEG), researchers have been able to...
© 2014 IEEE. using physiological signals to control braincomputer interface (BCI) becomes more popul...
Several types of biological signal, such as Electroencephalogram (EEG), electrooculogram(EOG), elect...
Brain Computer Interface (BCI) has recently gained much popularity due to plethora of its applicatio...
[[abstract]]The traditional brain-computer interface (BCI) system measures the electroencephalograph...
[[abstract]]The traditional brain-computer interface (BCI) system measures the electroencephalograph...
In this paper designing of a battery operated portable single channel electroencephalography (EEG) s...
Abstract — Driver’s distraction has become an important safety concern, due to the use of in vehicle...
The traditional brain-computer interface (BCI) system measures the electroencephalography (EEG) sign...
The human brain functions through a chemically-induced biological process which operates in a manner...
In this paper designing of a battery operated portable single channel electroencephalography (EEG) s...
Brainwave Computer Interface (BCI) application has the potential to improve the quality of life for ...
Abstract—A real-time wireless electroencephalogram (EEG)-based brain–computer interface (BCI) system...
IEEE Brain-Computer interfaces (BCIs) enhance the capability of human brain activities to interact w...
IEEE Brain-Computer interfaces (BCIs) enhance the capability of human brain activities to interact w...
With the recent advances in the field of electroencephalography (EEG), researchers have been able to...
© 2014 IEEE. using physiological signals to control braincomputer interface (BCI) becomes more popul...
Several types of biological signal, such as Electroencephalogram (EEG), electrooculogram(EOG), elect...
Brain Computer Interface (BCI) has recently gained much popularity due to plethora of its applicatio...
[[abstract]]The traditional brain-computer interface (BCI) system measures the electroencephalograph...
[[abstract]]The traditional brain-computer interface (BCI) system measures the electroencephalograph...
In this paper designing of a battery operated portable single channel electroencephalography (EEG) s...
Abstract — Driver’s distraction has become an important safety concern, due to the use of in vehicle...
The traditional brain-computer interface (BCI) system measures the electroencephalography (EEG) sign...
The human brain functions through a chemically-induced biological process which operates in a manner...
In this paper designing of a battery operated portable single channel electroencephalography (EEG) s...
Brainwave Computer Interface (BCI) application has the potential to improve the quality of life for ...
Abstract—A real-time wireless electroencephalogram (EEG)-based brain–computer interface (BCI) system...
IEEE Brain-Computer interfaces (BCIs) enhance the capability of human brain activities to interact w...
IEEE Brain-Computer interfaces (BCIs) enhance the capability of human brain activities to interact w...