The increasing understanding of human brain functions makes it possible to directly interact with the brain for therapeutic purposes. Implantable brain computer interfaces promise to replace or restore motor functions in patients with partial or complete paralysis. We postulate that neuronal states associated with gestures, as they are used in the finger spelling alphabet of sign languages, provide an excellent signal for implantable brain computer interfaces to restore communication. To test this, we evaluated decodability of four gestures using high-density electrocorticography in two participants. The electrode grids were located subdurally on the hand knob area of the sensorimotor cortex covering a surface of 2.5–5.2 cm2. Using a patter...
Brain-Computer Interface (BCI) technology enables users to operate external devices without physical...
We use our hands constantly in our everyday lives. This seemingly simple ability is disrupted in ind...
In brain-based communication, voluntarily modulated brain signals (instead of motor output) are util...
Electrocorticography (ECoG) based Brain-Computer Interfaces (BCIs) have been proposed as a way to re...
Implantable brain computer interfaces (BCIs) promise to re-establish communication for severely para...
While BCIs have a wide range of applications, the majority of research in the field is concentrated ...
Brain-computer interfaces (BCI) have the potential to improve and enhance our lives, enabling us to ...
Brain-computer interface (BCI) is a direct communication pathway between brain and external devices,...
While the mechanism of sign language comprehension in deaf people has been widely investigated, litt...
Objective. Enable neural control of individual prosthetic fingers for participants with upper-limb p...
Electrocorticography (ECoG) has been demonstrated as a promising neural signal source for developing...
The sensorimotor cortex is a frequently targeted brain area for the development of Brain-Computer In...
For people suffering from severe paralysis, communication can be difficult or nearly impossible. Tec...
The sensorimotor cortex is a frequently targeted brain area for the development of Brain-Computer In...
Millions of people worldwide suffer motor or sensory impairment due to stroke, spinal cord injury, m...
Brain-Computer Interface (BCI) technology enables users to operate external devices without physical...
We use our hands constantly in our everyday lives. This seemingly simple ability is disrupted in ind...
In brain-based communication, voluntarily modulated brain signals (instead of motor output) are util...
Electrocorticography (ECoG) based Brain-Computer Interfaces (BCIs) have been proposed as a way to re...
Implantable brain computer interfaces (BCIs) promise to re-establish communication for severely para...
While BCIs have a wide range of applications, the majority of research in the field is concentrated ...
Brain-computer interfaces (BCI) have the potential to improve and enhance our lives, enabling us to ...
Brain-computer interface (BCI) is a direct communication pathway between brain and external devices,...
While the mechanism of sign language comprehension in deaf people has been widely investigated, litt...
Objective. Enable neural control of individual prosthetic fingers for participants with upper-limb p...
Electrocorticography (ECoG) has been demonstrated as a promising neural signal source for developing...
The sensorimotor cortex is a frequently targeted brain area for the development of Brain-Computer In...
For people suffering from severe paralysis, communication can be difficult or nearly impossible. Tec...
The sensorimotor cortex is a frequently targeted brain area for the development of Brain-Computer In...
Millions of people worldwide suffer motor or sensory impairment due to stroke, spinal cord injury, m...
Brain-Computer Interface (BCI) technology enables users to operate external devices without physical...
We use our hands constantly in our everyday lives. This seemingly simple ability is disrupted in ind...
In brain-based communication, voluntarily modulated brain signals (instead of motor output) are util...