Brain-machine interfaces (BMIs) that decode movement intentions should ignore neural modulation sources distinct from the intended command. However, neurophysiology and control theory suggest that motor cortex reflects the motor effector's position, which could be a nuisance variable. We investigated motor cortical correlates of BMI cursor position with or without concurrent arm movement. We show in two monkeys that subtracting away estimated neural correlates of position improves online BMI performance only if the animals were allowed to move their arm. To understand why, we compared the neural variance attributable to cursor position when the same task was performed using arm reaching, versus arms-restrained BMI use. Firing rates correlat...
Brain-machine interface (BMI) systems show great promise for restoring motor function to patients wi...
Brain-machine interfaces (BMI) allows individuals to control an external device by controlling their...
The brain typically uses a rich supply of feedback from multiple sensory modalities to control movem...
During planning and execution of reaching movements, the activity of cortical motor neurons is modul...
During planning and execution of reaching movements, the activity of cortical motor neurons is modul...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
Brain-machine interface (BMI) systems attempt to restore motor function lost due to injury or neurod...
Dexterous control of upper arm movements is integral to activities of daily living. This important a...
Realization of reaching and grasping movements by a paralytic person or an amputee would greatly fac...
<div><p>Realization of reaching and grasping movements by a paralytic person or an amputee would gre...
Brain-machine interface (BMI) systems hold great promise for improving quality of life in patients w...
Recent experiments with brain-machine-interfaces (BMIs) indicate that the extent of neural modulatio...
Brain-computer interfaces (BCIs) are proving to be viable clinical interventions for sufferers of am...
A brain machine interface (BMI) is a technology that makes direct connections between neural systems...
The brain typically uses a rich supply of feedback frommultiple sensorymodalities to controlmovement...
Brain-machine interface (BMI) systems show great promise for restoring motor function to patients wi...
Brain-machine interfaces (BMI) allows individuals to control an external device by controlling their...
The brain typically uses a rich supply of feedback from multiple sensory modalities to control movem...
During planning and execution of reaching movements, the activity of cortical motor neurons is modul...
During planning and execution of reaching movements, the activity of cortical motor neurons is modul...
The motor system routinely generates a multitude of fast, accurate, and elegant movements.In large p...
Brain-machine interface (BMI) systems attempt to restore motor function lost due to injury or neurod...
Dexterous control of upper arm movements is integral to activities of daily living. This important a...
Realization of reaching and grasping movements by a paralytic person or an amputee would greatly fac...
<div><p>Realization of reaching and grasping movements by a paralytic person or an amputee would gre...
Brain-machine interface (BMI) systems hold great promise for improving quality of life in patients w...
Recent experiments with brain-machine-interfaces (BMIs) indicate that the extent of neural modulatio...
Brain-computer interfaces (BCIs) are proving to be viable clinical interventions for sufferers of am...
A brain machine interface (BMI) is a technology that makes direct connections between neural systems...
The brain typically uses a rich supply of feedback frommultiple sensorymodalities to controlmovement...
Brain-machine interface (BMI) systems show great promise for restoring motor function to patients wi...
Brain-machine interfaces (BMI) allows individuals to control an external device by controlling their...
The brain typically uses a rich supply of feedback from multiple sensory modalities to control movem...