Among various brain activity patterns, Steady State Visual Evoked Potential (SSVEP) based Brain Computer Inter-face (BCI) requires the least training time while carrying the fastest information transfer rate, making it highly suitable for deploying efficient self-paced BCI systems. In this study, we propose a Spectrum and Phase Adaptive CCA (SPACCA) for subject-and device-specific SSVEP-based BCI. Cross subject heterogeneity of spectrum distribution is taken into consideration to improve the prediction accuracy. We design a library of phase shifting reference signals to accommodate subjective and device-related response time lag. With the flexible reference signal generating approach, the system can be optimized for any specific flickering ...
People which are afflicted with neurological conditions or neurodegenerative diseases can’t control ...
A brain-computer interface (BCI) provides the possibility to translate brain neural activity pattern...
Recently, brain-computer interface (BCI) systems developed based on steady-state visual evoked poten...
Brain-computer interface (BCI) systems translate the human neurophysiological activities into comman...
Abstract — A Brain Computer Interface (BCI) creates a new communication channels for disabled pe...
A brain-computer interface (BCI) is a channel of communication that transforms brain activity into s...
Abstract — The emergence of successful Brain Computer Interfaces (BCI) that can assist the healthy a...
In recent years the application of new technologies in the field of Neuroscienceand Medicine has had...
The main objective of a brain-computer interface (BCI) is to create alternative communication channe...
A brain-computer interface (BCl) establishes a new pathway for control and communication that occurs...
Brain-Computer Interface (BCI) can provide users with an alternative/augmentative interaction path, ...
Steady-State Visual Evoked Potential-based (SSVEP) Brain-Computer Interface (BCI) shows great potent...
Steady-State Visual Evoked Potential-based (SSVEP) Brain-Computer Interface (BCI) shows great potent...
A brain–computer interface (BCI) is a channel of communication that transforms brain activity into s...
Brain-computer interfaces (BCIs) system is a link to generate a communication between disable people...
People which are afflicted with neurological conditions or neurodegenerative diseases can’t control ...
A brain-computer interface (BCI) provides the possibility to translate brain neural activity pattern...
Recently, brain-computer interface (BCI) systems developed based on steady-state visual evoked poten...
Brain-computer interface (BCI) systems translate the human neurophysiological activities into comman...
Abstract — A Brain Computer Interface (BCI) creates a new communication channels for disabled pe...
A brain-computer interface (BCI) is a channel of communication that transforms brain activity into s...
Abstract — The emergence of successful Brain Computer Interfaces (BCI) that can assist the healthy a...
In recent years the application of new technologies in the field of Neuroscienceand Medicine has had...
The main objective of a brain-computer interface (BCI) is to create alternative communication channe...
A brain-computer interface (BCl) establishes a new pathway for control and communication that occurs...
Brain-Computer Interface (BCI) can provide users with an alternative/augmentative interaction path, ...
Steady-State Visual Evoked Potential-based (SSVEP) Brain-Computer Interface (BCI) shows great potent...
Steady-State Visual Evoked Potential-based (SSVEP) Brain-Computer Interface (BCI) shows great potent...
A brain–computer interface (BCI) is a channel of communication that transforms brain activity into s...
Brain-computer interfaces (BCIs) system is a link to generate a communication between disable people...
People which are afflicted with neurological conditions or neurodegenerative diseases can’t control ...
A brain-computer interface (BCI) provides the possibility to translate brain neural activity pattern...
Recently, brain-computer interface (BCI) systems developed based on steady-state visual evoked poten...