The increased popularity of brain-computer interfaces (BCIs) has created a new demand for miniaturized and low-cost electroencephalogram (EEG) acquisition devices for entertainment, rehabilitation, and scientific needs. The lack of scientific analysis for such system design, modularity, and unified validation tends to suppress progress in this field and limit supply for new low-cost device availability. To eliminate this problem, this paper presents the design and evaluation of a compact, modular, battery powered, conventional EEG signal acquisition board based on an ADS1298 analog front-end chip. The introduction of this novel, vertically stackable board allows the EEG scaling problem to be solved by effectively reconfiguring hardware for ...
The possibility to develop compact, cost effective Brain-Computer Interface (BCI) solutions could ta...
Modern-day biomedical science and technology have progressed with implantable neural recording syste...
One of the critical steps in the design of Brain-Computer Interface applications based on electroenc...
In this paper designing of a battery operated portable single channel electroencephalography (EEG) s...
[[abstract]]Brain Computer Interface (BCI) provides a novel communication method for patients with n...
This study integrates the hardware circuit design and software development to achieve a 16 channels ...
This study integrates the hardware circuit design and software development to achieve a 16 channels ...
This study integrates the hardware circuit design and software development to achieve a 16 channels ...
[[abstract]]Brain-computer interfaces (BCIs) allow communication between the brain and the external ...
[[abstract]]Brain-computer interfaces (BCIs) allow communication between the brain and the external ...
In this paper designing of a battery operated portable single channel electroencephalography (EEG) s...
In recent years, in-ear electroencephalography (EEG) was demonstrated to record signals of similar q...
Stable and accurate electroencephalogram (EEG) signal acquisition is fundamental in non-invasive bra...
In recent years, in-ear electroencephalography (EEG) was demonstrated to record signals of similar q...
In recent years, in-ear electroencephalography (EEG) was demonstrated to record signals of similar q...
The possibility to develop compact, cost effective Brain-Computer Interface (BCI) solutions could ta...
Modern-day biomedical science and technology have progressed with implantable neural recording syste...
One of the critical steps in the design of Brain-Computer Interface applications based on electroenc...
In this paper designing of a battery operated portable single channel electroencephalography (EEG) s...
[[abstract]]Brain Computer Interface (BCI) provides a novel communication method for patients with n...
This study integrates the hardware circuit design and software development to achieve a 16 channels ...
This study integrates the hardware circuit design and software development to achieve a 16 channels ...
This study integrates the hardware circuit design and software development to achieve a 16 channels ...
[[abstract]]Brain-computer interfaces (BCIs) allow communication between the brain and the external ...
[[abstract]]Brain-computer interfaces (BCIs) allow communication between the brain and the external ...
In this paper designing of a battery operated portable single channel electroencephalography (EEG) s...
In recent years, in-ear electroencephalography (EEG) was demonstrated to record signals of similar q...
Stable and accurate electroencephalogram (EEG) signal acquisition is fundamental in non-invasive bra...
In recent years, in-ear electroencephalography (EEG) was demonstrated to record signals of similar q...
In recent years, in-ear electroencephalography (EEG) was demonstrated to record signals of similar q...
The possibility to develop compact, cost effective Brain-Computer Interface (BCI) solutions could ta...
Modern-day biomedical science and technology have progressed with implantable neural recording syste...
One of the critical steps in the design of Brain-Computer Interface applications based on electroenc...