International audienceObjective. Motor brain-computer interfaces (BCIs) are a promising technology that may enable motor-impaired people to interact with their environment. BCIs would potentially compensate for arm and hand function loss, which is the top priority for individuals with tetraplegia. Designing real-time and accurate BCI is crucial to make such devices useful, safe, and easy to use by patients in a real-life environment. Electrocorticography (ECoG)-based BCIs emerge as a good compromise between invasiveness of the recording device and good spatial and temporal resolution of the recorded signal. However, most ECoG signal decoders used to predict continuous hand movements are linear models. These models have a limited representat...
Implantable brain computer interfaces (BCIs) promise to re-establish communication for severely para...
Developing useful interfaces between brains and machines is a grand challenge of neuroengineering. A...
Brain-computer interface (BCI) technology enables direct communication between the brain and externa...
Brain-Computer Interface (BCI) offers the opportunity to paralyzed patients to control their movemen...
Brain–computer interfaces (BCIs) facilitate communication between the brain and external devices, pr...
Millions of people worldwide suffer motor or sensory impairment due to stroke, spinal cord injury, m...
Surface electromyography (sEMG) is a non-invasive technique that measures the electrical activity ge...
Upper-limb amputation can significantly affect a person’s capabilities with a dramatic impact on the...
Brain-computer interface (BCI) is a direct communication pathway between brain and external devices,...
Brain-computer interfaces (BCI) have the potential to improve and enhance our lives, enabling us to ...
In this paper, a hybrid-domain deep learning (DL)-based neural system is proposed to decode hand mov...
The Brain Computer Interface (BCI) is a device that captures Electroencephalograms (EEG) from human ...
Abstract — Electrocorticogram (ECoG)-based brain computer interfaces (BCI) can potentially control u...
Several motor related Brain Computer Interfaces (BCIs) have been developed over the years that use a...
In Brain-Computer Interfacing (BCI), brain activity is translated into actions that communicate the ...
Implantable brain computer interfaces (BCIs) promise to re-establish communication for severely para...
Developing useful interfaces between brains and machines is a grand challenge of neuroengineering. A...
Brain-computer interface (BCI) technology enables direct communication between the brain and externa...
Brain-Computer Interface (BCI) offers the opportunity to paralyzed patients to control their movemen...
Brain–computer interfaces (BCIs) facilitate communication between the brain and external devices, pr...
Millions of people worldwide suffer motor or sensory impairment due to stroke, spinal cord injury, m...
Surface electromyography (sEMG) is a non-invasive technique that measures the electrical activity ge...
Upper-limb amputation can significantly affect a person’s capabilities with a dramatic impact on the...
Brain-computer interface (BCI) is a direct communication pathway between brain and external devices,...
Brain-computer interfaces (BCI) have the potential to improve and enhance our lives, enabling us to ...
In this paper, a hybrid-domain deep learning (DL)-based neural system is proposed to decode hand mov...
The Brain Computer Interface (BCI) is a device that captures Electroencephalograms (EEG) from human ...
Abstract — Electrocorticogram (ECoG)-based brain computer interfaces (BCI) can potentially control u...
Several motor related Brain Computer Interfaces (BCIs) have been developed over the years that use a...
In Brain-Computer Interfacing (BCI), brain activity is translated into actions that communicate the ...
Implantable brain computer interfaces (BCIs) promise to re-establish communication for severely para...
Developing useful interfaces between brains and machines is a grand challenge of neuroengineering. A...
Brain-computer interface (BCI) technology enables direct communication between the brain and externa...