The brain typically uses a rich supply of feedback from multiple sensory modalities to control movement in healthy individuals. In many individuals, these afferent pathways, as well as their efferent counterparts, are compromised by disease or injury resulting in significant impairments and reduced quality of life. Brain–machine interfaces (BMIs) offer the promise of recovered functionality to these individuals by allowing them to control a device using their thoughts. Most current BMI implementations use visual feedback for closed-loop control; however, it has been suggested that the inclusion of additional feedback modalities may lead to improvements in control. We demonstrate for the first time that kinesthetic feedback can be used toget...
Real-time brain-machine interfaces (BMI) have focused on either estimating the continuous movement t...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...
The brain typically uses a rich supply of feedback from multiple sensory modalities to control movem...
The brain typically uses a rich supply of feedback frommultiple sensorymodalities to controlmovement...
Recent improvements in cortically-controlled brain-machine interfaces (BMIs) have raised hopes that ...
Present day cortical brain–machine interfaces (BMIs) have made impressive advances using decoded bra...
Present day cortical brain–machine interfaces (BMIs) have made impressive advances using decoded bra...
A brain-machine interface (BMI) is about transforming neural activity into action and sensation into...
When controlling a motor prosthetic device or computer cursor using a brain-machine interface (BMI),...
<p>Brain-machine interfaces (BMIs) use neuronal activity to control external actuators. As such, the...
The feasibility of a brain-machine interface (BMI) system that links the brain to an external device...
Brain-machine interfaces (BMI) based on motor imagery (MI) have emerged as a promising approach to e...
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...
Real-time brain-machine interfaces (BMI) have focused on either estimating the continuous movement t...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...
The brain typically uses a rich supply of feedback from multiple sensory modalities to control movem...
The brain typically uses a rich supply of feedback frommultiple sensorymodalities to controlmovement...
Recent improvements in cortically-controlled brain-machine interfaces (BMIs) have raised hopes that ...
Present day cortical brain–machine interfaces (BMIs) have made impressive advances using decoded bra...
Present day cortical brain–machine interfaces (BMIs) have made impressive advances using decoded bra...
A brain-machine interface (BMI) is about transforming neural activity into action and sensation into...
When controlling a motor prosthetic device or computer cursor using a brain-machine interface (BMI),...
<p>Brain-machine interfaces (BMIs) use neuronal activity to control external actuators. As such, the...
The feasibility of a brain-machine interface (BMI) system that links the brain to an external device...
Brain-machine interfaces (BMI) based on motor imagery (MI) have emerged as a promising approach to e...
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...
Real-time brain-machine interfaces (BMI) have focused on either estimating the continuous movement t...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...
Brain-machine interfaces (BMIs) re-establish communication channels between the nervous system and a...