For many people suffering from motor disabilities, assistive devices controlled with only brain activity are the only way to interact with their environment [1]. Natural tasks often require different kinds of interactions, involving different controllers the user should be able to select in a self-paced way. We developed a Brain-Computer Interface (BCI) allowing users to switch between four control modes in a self-paced way in real-time. Since the system is devised to be used in domestic environments in a user-friendly way, we selected non-invasive electroencephalographic (EEG) signals and convolutional neural networks (CNNs), known for their ability to find the optimal features in classification tasks. We tested our system using the Cybath...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
International audienceRecent works have explored the use of brain signals to directly control virtua...
This paper describes our work on a portable non-invasive brain-computer interface (BCI), called Adap...
Brain Computer Interface (BCI) may be the only way to communicate and control for disabled people. S...
In this paper we give an overview of our work on an asynchronous BCI (where the subject makes self-p...
Brain-Computer Interfaces (BCIs) are systems that can translate brain activity patterns of a user in...
In recent years, the control of devices “by the power of the mind” has become a very controversial t...
Brain-Computer Interfaces (BCIs) are systems that can translate brain activity patterns of a user in...
Brain–Computer Interfaces (BCIs) are become increasingly more available at reduced costs and are bei...
For the patient with extensive paralysis, developments in the emerging area of Brain Computer Interf...
For the patient with extensive paralysis, developments in the emerging area of Brain Computer Interf...
Brain-Computer Interface (BCI) systems establish a direct communication channel from the brain to an...
Brain-computer interfaces (BCI) provide severely disabled people with the means to control assistive...
The promise of Brain-Computer Interfaces (BCI) technology is to augment human capabilities by enabli...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
International audienceRecent works have explored the use of brain signals to directly control virtua...
This paper describes our work on a portable non-invasive brain-computer interface (BCI), called Adap...
Brain Computer Interface (BCI) may be the only way to communicate and control for disabled people. S...
In this paper we give an overview of our work on an asynchronous BCI (where the subject makes self-p...
Brain-Computer Interfaces (BCIs) are systems that can translate brain activity patterns of a user in...
In recent years, the control of devices “by the power of the mind” has become a very controversial t...
Brain-Computer Interfaces (BCIs) are systems that can translate brain activity patterns of a user in...
Brain–Computer Interfaces (BCIs) are become increasingly more available at reduced costs and are bei...
For the patient with extensive paralysis, developments in the emerging area of Brain Computer Interf...
For the patient with extensive paralysis, developments in the emerging area of Brain Computer Interf...
Brain-Computer Interface (BCI) systems establish a direct communication channel from the brain to an...
Brain-computer interfaces (BCI) provide severely disabled people with the means to control assistive...
The promise of Brain-Computer Interfaces (BCI) technology is to augment human capabilities by enabli...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
International audienceRecent works have explored the use of brain signals to directly control virtua...