The closed-loop operation of brain-machine interfaces (BMI) provides a context to discover foundational principles behind human-computer interaction, with emerging clinical applications to stroke, neuromuscular diseases, and trauma. In the canonical BMI, a user controls a prosthetic limb through neural signals that are recorded by electrodes and processed by a decoder into limb movements. In laboratory demonstrations with able-bodied test subjects, parameters of the decoder are commonly tuned using training data that include neural signals and corresponding overt arm movements. In the application of BMI to paralysis or amputation, arm movements are not feasible, and imagined movements create weaker, partially unrelated patterns of neural ac...
Brain-machine interfaces (BMIs) aim to help people with paralysis by decoding movement-related neura...
Intracortical brain-machine interfaces (BMIs) aim to provide motor functions via high-performance ne...
Dexterous control of upper arm movements is integral to activities of daily living. This important a...
The closed-loop operation of brain-machine interfaces (BMI) provides a context to discover foundatio...
The closed-loop operation of brain-machine interfaces (BMI) provides a context to discover foundatio...
Brain-machine interfaces (BMIs) aim to assist patients suffering from neurological injuries and dise...
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...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
A brain-machine interface (BMI) is about transforming neural activity into action and sensation into...
Abstract. Great potential exists for future Brain Machine Interfaces (BMIs) to help paralyzed patien...
Brain-machine interfaces (BMIs) are an emerging field of research that seeks to interface the brain ...
The brain has an incredible capacity to learn how to control various effectors, ranging from those e...
The brain has an incredible capacity to learn how to control various effectors, ranging from those e...
Brain-machine interfaces (BMIs) aim to help people with paralysis by decoding movement-related neura...
Intracortical brain-machine interfaces (BMIs) aim to provide motor functions via high-performance ne...
Dexterous control of upper arm movements is integral to activities of daily living. This important a...
The closed-loop operation of brain-machine interfaces (BMI) provides a context to discover foundatio...
The closed-loop operation of brain-machine interfaces (BMI) provides a context to discover foundatio...
Brain-machine interfaces (BMIs) aim to assist patients suffering from neurological injuries and dise...
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...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
A brain-machine interface (BMI) is about transforming neural activity into action and sensation into...
Abstract. Great potential exists for future Brain Machine Interfaces (BMIs) to help paralyzed patien...
Brain-machine interfaces (BMIs) are an emerging field of research that seeks to interface the brain ...
The brain has an incredible capacity to learn how to control various effectors, ranging from those e...
The brain has an incredible capacity to learn how to control various effectors, ranging from those e...
Brain-machine interfaces (BMIs) aim to help people with paralysis by decoding movement-related neura...
Intracortical brain-machine interfaces (BMIs) aim to provide motor functions via high-performance ne...
Dexterous control of upper arm movements is integral to activities of daily living. This important a...