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The science and engineering behind sensitized brain-controlled bionic hands
Advances in our understanding of brain function, along with the development of neural
interfaces that allow for the monitoring and activation of neurons, have paved the way for …
interfaces that allow for the monitoring and activation of neurons, have paved the way for …
A high-performance speech neuroprosthesis
Speech brain–computer interfaces (BCIs) have the potential to restore rapid communication
to people with paralysis by decoding neural activity evoked by attempted speech into text, or …
to people with paralysis by decoding neural activity evoked by attempted speech into text, or …
An accurate and rapidly calibrating speech neuroprosthesis
Background Brain–computer interfaces can enable communication for people with paralysis
by transforming cortical activity associated with attempted speech into text on a computer …
by transforming cortical activity associated with attempted speech into text on a computer …
The state of clinical trials of implantable brain–computer interfaces
Implanted brain–computer interfaces (iBCIs) translate brain activity recorded intracranially
into commands for virtual or physical machines to restore or rehabilitate motor, sensory or …
into commands for virtual or physical machines to restore or rehabilitate motor, sensory or …
Decoding spoken English from intracortical electrode arrays in dorsal precentral gyrus
Objective. To evaluate the potential of intracortical electrode array signals for brain-computer
interfaces (BCIs) to restore lost speech, we measured the performance of decoders trained …
interfaces (BCIs) to restore lost speech, we measured the performance of decoders trained …
Estimating risk for future intracranial, fully implanted, modular neuroprosthetic systems: a systematic review of hardware complications in clinical deep brain …
Objective A new age of neuromodulation is emerging: one of restorative neuroengineering
and neuroprosthetics. As novel device systems move toward regulatory evaluation and …
and neuroprosthetics. As novel device systems move toward regulatory evaluation and …
Why brain-controlled neuroprosthetics matter: mechanisms underlying electrical stimulation of muscles and nerves in rehabilitation
Delivering short trains of electric pulses to the muscles and nerves can elicit action
potentials resulting in muscle contractions. When the stimulations are sequenced to …
potentials resulting in muscle contractions. When the stimulations are sequenced to …
Intensity and dose of neuromuscular electrical stimulation influence sensorimotor cortical excitability
Neuromuscular electrical stimulation (NMES) of the nervous system has been extensively
used in neurorehabilitation due to its capacity to engage the muscle fibers, improving …
used in neurorehabilitation due to its capacity to engage the muscle fibers, improving …
Characterizing the short-latency evoked response to intracortical microstimulation across a multi-electrode array
Objective. Persons with tetraplegia can use brain-machine interfaces to make visually
guided reaches with robotic arms. Without somatosensory feedback, these movements will …
guided reaches with robotic arms. Without somatosensory feedback, these movements will …
Artifact-free recordings in human bidirectional brain–computer interfaces
Objective. Intracortical microstimulation has shown promise as a means of evoking
somatosensory percepts as part of a bidirectional brain–computer interface (BCI). However …
somatosensory percepts as part of a bidirectional brain–computer interface (BCI). However …