The ongoing pilot clinical trial of the BrainGate neural interface system aims in part to assess the feasibility of using neural activity obtained from a small-scale, chronically implanted, intracortical microelectrode array to provide control signals for a neural prosthesis system. Critical questions include how long implanted microelectrodes will record useful neural signals, how reliably those signals can be acquired and decoded, and how effectively they can be used to control various assistive technologies such as computers and robotic assistive devices, or to enable functional electrical stimulation of paralyzed muscles. Here we examined these questions by assessing neural cursor control and BrainGate system characteristics on five con...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
The connection between our brain and our muscles via the peripheral nerves enables us to communicate...
Brain-machine interface (BMI) technology aims to provide individuals with movement paralysis a natur...
We present a point-and-click intracortical neural interface system (NIS) that enables humans with te...
Computer-mediated connections between human motor cortical neurons and assistive devices promise to ...
Brain-computer interface (BCI) technology aims to help individuals with disability to control assist...
Brain-computer interface (BCI) technology aims to help individuals with disability to control assist...
<div><p>Brain-computer interface (BCI) technology aims to help individuals with disability to contro...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
Brain-computer interface (BCI) technology aims to help individuals with disability to control assist...
Brain-computer interface (BCI) technology aims to help individuals with disability to control assist...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
A brain-machine interface (BMI) uses signals from the brain to control electronic devices. One appl...
A brain-machine interface (BMI) uses signals from the brain to control electronic devices. One appl...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
The connection between our brain and our muscles via the peripheral nerves enables us to communicate...
Brain-machine interface (BMI) technology aims to provide individuals with movement paralysis a natur...
We present a point-and-click intracortical neural interface system (NIS) that enables humans with te...
Computer-mediated connections between human motor cortical neurons and assistive devices promise to ...
Brain-computer interface (BCI) technology aims to help individuals with disability to control assist...
Brain-computer interface (BCI) technology aims to help individuals with disability to control assist...
<div><p>Brain-computer interface (BCI) technology aims to help individuals with disability to contro...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
Brain-computer interface (BCI) technology aims to help individuals with disability to control assist...
Brain-computer interface (BCI) technology aims to help individuals with disability to control assist...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
A brain-machine interface (BMI) uses signals from the brain to control electronic devices. One appl...
A brain-machine interface (BMI) uses signals from the brain to control electronic devices. One appl...
Prior studies have demonstrated that the firing rate of cortical neurons can be volitionally modulat...
The connection between our brain and our muscles via the peripheral nerves enables us to communicate...
Brain-machine interface (BMI) technology aims to provide individuals with movement paralysis a natur...