Test the feasibility of using electrocorticography (ECoG) signals to control complex devices for motor and speech control in adults severely affected by neurological disorders.
ECoG is a type of electrophysiological monitoring that uses electrodes placed directly on the exposed surface of the brain to record electrical activity. With this ECoG-based neural interface, study patients will undergo training and assessment of their ability to control a complex robotic system and to determine if ECoG brain signals can be used to produce speech.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
DEVICE_FEASIBILITY
Masking
NONE
Enrollment
3
PMT Subdural Cortical Electrodes/Blackrock NeuroPort Array and NeuroPort System
University of California San Francisco
San Francisco, California, United States
RECRUITINGIncidence of Treatment-Emergent Adverse Events [Safety and Tolerability]
The primary endpoint of this study is to determine the incidence of treatment-emergent adverse events associated with the ECoG-based interface
Time frame: Up to 6 years post-implant period
NIDCD Primary Objective 1
To enable communication via text decoded from neural signals.
Time frame: Up to 6 years post-implant period
NIDCD Primary Objective 2
To enable communication via synthesized speech decoded from neural signals.
Time frame: Up to 6 years post-implant period
NIDCD Secondary Objective 1
To evaluate communication via text decoded from neural signals.
Time frame: Up to 6 years post-implant period
NIDCD Secondary Objective 2
To evaluate communication via synthesized speech decoded from neural signals.
Time frame: Up to 6 years post-implant period
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