A brain-computer interface (BCI) system transforms neural activity into control signals for external devices in real time. A BCI user needs to learn to generate specific cortical activity patterns to control external devices effectively. We call this process BCI learning, and it often requires significant effort and time. Therefore, it is important to study this process and develop novel and efficient approaches to accelerate BCI learning. This article reviews major approaches that have been used for BCI learning, including computer-assisted learning, co-adaptive learning, operant conditioning, and sensory feedback. We focus on BCIs based on electrocorticography and intracortical microelectrode arrays for restoring motor function. This arti...
Brain-computer interfaces (BCIs) can be used to induce neural plasticity in the human nervous system...
Cognitive control including attention and working memory are crucial to human daily life. Whether a ...
Brain-computer interfaces (BCIs) can be used to induce neural plasticity in the human nervous system...
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...
Brain-Computer Interface (BCI) systems establish a direct communication channel from the brain to an...
Learning a new skill requires one to produce new patterns of activity among networks of neurons. Thi...
Learning a new skill requires one to produce new patterns of activity among networks of neurons. Thi...
Brain computer interfaces (BCI) enable humans or animals to communicate or activate external devices...
Brain computer interfaces (BCI) enable humans or animals to communicate or activate external devices...
International audienceBrain-computer Interfaces (BCI) and Functional electrical stimulation (FES) co...
Brain-computer interface (BCI) systems read and infer brain activity directly from the brain through...
Brain-Computer Interfaces (BCIs) allow a user to control a computer application by brain activity as...
Brain-computer interface (BCI) systems allow the user to interact with a computer by merely thinking...
doi: 10.3389/fnint.2015.00040 Brain computer interface learning for systems based on electrocorticog...
Brain-computer interfaces (BCIs) can be used to induce neural plasticity in the human nervous system...
Cognitive control including attention and working memory are crucial to human daily life. Whether a ...
Brain-computer interfaces (BCIs) can be used to induce neural plasticity in the human nervous system...
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...
Brain-Computer Interface (BCI) systems establish a direct communication channel from the brain to an...
Learning a new skill requires one to produce new patterns of activity among networks of neurons. Thi...
Learning a new skill requires one to produce new patterns of activity among networks of neurons. Thi...
Brain computer interfaces (BCI) enable humans or animals to communicate or activate external devices...
Brain computer interfaces (BCI) enable humans or animals to communicate or activate external devices...
International audienceBrain-computer Interfaces (BCI) and Functional electrical stimulation (FES) co...
Brain-computer interface (BCI) systems read and infer brain activity directly from the brain through...
Brain-Computer Interfaces (BCIs) allow a user to control a computer application by brain activity as...
Brain-computer interface (BCI) systems allow the user to interact with a computer by merely thinking...
doi: 10.3389/fnint.2015.00040 Brain computer interface learning for systems based on electrocorticog...
Brain-computer interfaces (BCIs) can be used to induce neural plasticity in the human nervous system...
Cognitive control including attention and working memory are crucial to human daily life. Whether a ...
Brain-computer interfaces (BCIs) can be used to induce neural plasticity in the human nervous system...