Objective: State-of-the-art invasive brain-machine interfaces (BMIs) have shown significant promise, but rely on external electronics and wired connections between the brain and these external components. This configuration presents health risks and limits practical use. These limitations can be addressed by designing a fully implantable BMI similar to existing FDA-approved implantable devices. Here, a prototype BMI system whose size and power consumption are comparable to those of fully implantable medical devices was designed and implemented, and its performance was tested at the benchtop and bedside. Approach: A prototype of a fully implantable BMI system was designed and implemented as a miniaturized embedded system. This benchtop analo...
Clinically viable and minimally invasive neural interfaces stand to revolutionize disease care for p...
Neural interfaces promise to radically change medicine. Currently, amputees and persons suffering fr...
Brain-machine interfaces (BMI) are electronic devices that form an interconnection between the users...
Objective: State-of-the-art invasive brain-machine interfaces (BMIs) have shown significant promise,...
OBJECTIVE: State-of-the-art invasive brain-machine interfaces (BMIs) have shown significant promise,...
The recent progresses in the field of medicine and biotechnology have made it possible to implant mi...
A fully implantable brain-computer interface (BCI) can be a practical tool to restore independence t...
Despite tremendous progress over the years, current brain-machine interface (BMI) systems are relati...
A brain-machine interface (BMI) uses signals from the brain to control electronic devices. One appl...
<p>Brain-machine interfaces (BMIs) use recordings from the nervous system to extract volitional and ...
IntroductionBi-directional brain-computer interfaces (BD-BCI) to restore movement and sensation must...
The emergence of miniaturized electronic sensors for recording neural activity is opening up new opp...
Machine collaboration with the biological body/brain by sending electrical information back and fort...
Brain-machine interfaces (BMIs) hold promise for restoring motor functions in severely paralyzed ind...
All neural information systems (NIS) rely on sensing neural activity to supply commands and control ...
Clinically viable and minimally invasive neural interfaces stand to revolutionize disease care for p...
Neural interfaces promise to radically change medicine. Currently, amputees and persons suffering fr...
Brain-machine interfaces (BMI) are electronic devices that form an interconnection between the users...
Objective: State-of-the-art invasive brain-machine interfaces (BMIs) have shown significant promise,...
OBJECTIVE: State-of-the-art invasive brain-machine interfaces (BMIs) have shown significant promise,...
The recent progresses in the field of medicine and biotechnology have made it possible to implant mi...
A fully implantable brain-computer interface (BCI) can be a practical tool to restore independence t...
Despite tremendous progress over the years, current brain-machine interface (BMI) systems are relati...
A brain-machine interface (BMI) uses signals from the brain to control electronic devices. One appl...
<p>Brain-machine interfaces (BMIs) use recordings from the nervous system to extract volitional and ...
IntroductionBi-directional brain-computer interfaces (BD-BCI) to restore movement and sensation must...
The emergence of miniaturized electronic sensors for recording neural activity is opening up new opp...
Machine collaboration with the biological body/brain by sending electrical information back and fort...
Brain-machine interfaces (BMIs) hold promise for restoring motor functions in severely paralyzed ind...
All neural information systems (NIS) rely on sensing neural activity to supply commands and control ...
Clinically viable and minimally invasive neural interfaces stand to revolutionize disease care for p...
Neural interfaces promise to radically change medicine. Currently, amputees and persons suffering fr...
Brain-machine interfaces (BMI) are electronic devices that form an interconnection between the users...