Devices interfacing with the brain through implantation in cortical or subcortical structures have great potential for restoration and rehabilitation in patients with sensory or motor dysfunction. Typical implantation surgeries are planned based on maps of brain activity generated from intact function. However, mapping brain activity for planning implantation surgeries is challenging in the target population due to abnormal residual function and, increasingly often, existing MRI-incompatible implanted hardware. Here, we present methods and results for mapping impaired somatosensory and motor function in an individual with paralysis and an existing brain-computer interface (BCI) device. Magnetoencephalography (MEG) was used to directly map t...
A neuroprosthesis using a brain-machine interface (BMI) is a promising therapeutic option for severe...
IEEE Objective: Paralysis resulting from spinal cord injury (SCI) can have a devastating effect on m...
Functional electrical stimulation (FES), the coordinated electrical activation of multiple muscles, ...
Devices interfacing with the brain through implantation in cortical or subcortical structures have g...
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...
OBJECTIVE: Brain-computer interface (BCI) technology aims to provide individuals with paralysis a me...
OBJECTIVE: The maintenance of a motor cortical program in the temporal domain is relevant to current...
Individuals with tetraplegia identify restoration of hand function as a critical, unmet need to rega...
<p>Individuals with tetraplegia identify restoration of hand function as a critical, unmet need to r...
<p>Individuals with tetraplegia identify restoration of hand function as a critical, unmet need to r...
<p>Individuals with tetraplegia identify restoration of hand function as a critical, unmet need to r...
Brain-machine interface (BMI) technology aims to provide individuals with movement paralysis a natur...
Electrophysiological signals in the human motor system may change in different ways after deafferent...
Background: Implantable brain-computer interfaces (BCIs), functioning as motor neuroprostheses, have...
A neuroprosthesis using a brain-machine interface (BMI) is a promising therapeutic option for severe...
IEEE Objective: Paralysis resulting from spinal cord injury (SCI) can have a devastating effect on m...
Functional electrical stimulation (FES), the coordinated electrical activation of multiple muscles, ...
Devices interfacing with the brain through implantation in cortical or subcortical structures have g...
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...
OBJECTIVE: Brain-computer interface (BCI) technology aims to provide individuals with paralysis a me...
OBJECTIVE: The maintenance of a motor cortical program in the temporal domain is relevant to current...
Individuals with tetraplegia identify restoration of hand function as a critical, unmet need to rega...
<p>Individuals with tetraplegia identify restoration of hand function as a critical, unmet need to r...
<p>Individuals with tetraplegia identify restoration of hand function as a critical, unmet need to r...
<p>Individuals with tetraplegia identify restoration of hand function as a critical, unmet need to r...
Brain-machine interface (BMI) technology aims to provide individuals with movement paralysis a natur...
Electrophysiological signals in the human motor system may change in different ways after deafferent...
Background: Implantable brain-computer interfaces (BCIs), functioning as motor neuroprostheses, have...
A neuroprosthesis using a brain-machine interface (BMI) is a promising therapeutic option for severe...
IEEE Objective: Paralysis resulting from spinal cord injury (SCI) can have a devastating effect on m...
Functional electrical stimulation (FES), the coordinated electrical activation of multiple muscles, ...