Brain-machine interface (BMI) systems attempt to restore motor function lost due to injury or neurodegenerative disease by bypassing natural motor pathways and allowing direct neural control of a movement actuator. Such systems also hold promise for investigating questions about learning and motor control in a highly controlled and observable system. Here we utilize a BMI paradigm in which single unit neural spiking activity recorded from motor cortical areas in non-human primates is used to control the movement of a virtual on-screen movement actuator. A Kalman filter is used to decode intended movements from neural signals.This work presents a newly designed set of hardware and software components for running BMI and other real-time contr...
Abstract-We present a novel brain machine interface (BMI) control algorithm, the recalibrated feedba...
<p>Brain-machine interfaces (BMIs) use neuronal activity to control external actuators. As such, the...
A brain-machine interface (BMI) is about transforming neural activity into action and sensation into...
Brain-machine interface (BMI) systems show great promise for restoring motor function to patients wi...
Brain-machine interface (BMI) systems show great promise for restoring motor function to patients wi...
As a result of improved understanding of brain mechanisms as well as unprecedented technical advance...
Dexterous control of upper arm movements is integral to activities of daily living. This important a...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
Brain-machine interface (BMI) systems give users direct neural control of robotic, communication, or...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
Brain-machine interfaces (BMIs) are an emerging field of research that seeks to interface the brain ...
Brain-machine interface (BMI) systems give users direct neural control of robotic, communication, or...
During planning and execution of reaching movements, the activity of cortical motor neurons is modul...
Brain-machine interface (BMI) systems hold great promise for improving quality of life in patients w...
During planning and execution of reaching movements, the activity of cortical motor neurons is modul...
Abstract-We present a novel brain machine interface (BMI) control algorithm, the recalibrated feedba...
<p>Brain-machine interfaces (BMIs) use neuronal activity to control external actuators. As such, the...
A brain-machine interface (BMI) is about transforming neural activity into action and sensation into...
Brain-machine interface (BMI) systems show great promise for restoring motor function to patients wi...
Brain-machine interface (BMI) systems show great promise for restoring motor function to patients wi...
As a result of improved understanding of brain mechanisms as well as unprecedented technical advance...
Dexterous control of upper arm movements is integral to activities of daily living. This important a...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
Brain-machine interface (BMI) systems give users direct neural control of robotic, communication, or...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
Brain-machine interfaces (BMIs) are an emerging field of research that seeks to interface the brain ...
Brain-machine interface (BMI) systems give users direct neural control of robotic, communication, or...
During planning and execution of reaching movements, the activity of cortical motor neurons is modul...
Brain-machine interface (BMI) systems hold great promise for improving quality of life in patients w...
During planning and execution of reaching movements, the activity of cortical motor neurons is modul...
Abstract-We present a novel brain machine interface (BMI) control algorithm, the recalibrated feedba...
<p>Brain-machine interfaces (BMIs) use neuronal activity to control external actuators. As such, the...
A brain-machine interface (BMI) is about transforming neural activity into action and sensation into...