Brain–machine interfaces have great potential for the development of neuroprosthetic applications to assist patients suffering from brain injury or neurodegenerative disease. One type of brain–machine interface is a cortical motor prosthetic, which is used to assist paralyzed subjects. Motor prosthetics to date have typically used the motor cortex as a source of neural signals for controlling external devices. The review will focus on several new topics in the arena of cortical prosthetics. These include using: recordings from cortical areas outside motor cortex; local field potentials as a source of recorded signals; somatosensory feedback for more dexterous control of robotics; and new decoding methods that work in concert to form an ecol...
Systems neuroscience has recently emerged as an applied field in the form of neural prosthetic devel...
<p>Brain-machine interfaces (BMIs) use neuronal activity to control external actuators. As such, the...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
Brain–machine interfaces have great potential for the development of neuroprosthetic applications to...
Brain–machine interfaces have great potential for the development of neuroprosthetic applications to...
Brain–machine interfaces have great potential for the development of neuroprosthetic applications to...
Brain–machine interfaces have great potential for the development of neuroprosthetic applications to...
Brain–machine interfaces are being developed to assist paralyzed patients by enabling them to operat...
In the last decade, research efforts into directly interfacing with the neurons of individuals with ...
In the last decade, research efforts into directly interfacing with the neurons of individuals with ...
In the last decade, research efforts into directly interfacing with the neurons of individuals with ...
Summary: The development of brain-machine interface tech-nology is a logical next step in the overal...
Since the original demonstration that electrical activity generated by ensembles of cortical neurons...
Though there have been many developments in sensory/motor prosthetics, they have not yet reached the...
Increasingly, neuroscientists, computer scientists and engineers are beginning to envision and devel...
Systems neuroscience has recently emerged as an applied field in the form of neural prosthetic devel...
<p>Brain-machine interfaces (BMIs) use neuronal activity to control external actuators. As such, the...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
Brain–machine interfaces have great potential for the development of neuroprosthetic applications to...
Brain–machine interfaces have great potential for the development of neuroprosthetic applications to...
Brain–machine interfaces have great potential for the development of neuroprosthetic applications to...
Brain–machine interfaces have great potential for the development of neuroprosthetic applications to...
Brain–machine interfaces are being developed to assist paralyzed patients by enabling them to operat...
In the last decade, research efforts into directly interfacing with the neurons of individuals with ...
In the last decade, research efforts into directly interfacing with the neurons of individuals with ...
In the last decade, research efforts into directly interfacing with the neurons of individuals with ...
Summary: The development of brain-machine interface tech-nology is a logical next step in the overal...
Since the original demonstration that electrical activity generated by ensembles of cortical neurons...
Though there have been many developments in sensory/motor prosthetics, they have not yet reached the...
Increasingly, neuroscientists, computer scientists and engineers are beginning to envision and devel...
Systems neuroscience has recently emerged as an applied field in the form of neural prosthetic devel...
<p>Brain-machine interfaces (BMIs) use neuronal activity to control external actuators. As such, the...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...