Virtual Neuroprosthesis: Restoring a Sense of Touch to Amputees
Completed · Not applicable
Conditions studied: Amputation
In brief
The overall goal of this project is to develop a virtual neuroprosthesis in which a facsimile of a neural implant is externalized and housed in a well-controlled microfluidic chamber, thereby abating the intrinsic limitations of highly invasive studies with neural implants. Able-bodied and upper limb amputee subjects will be recruited to control a dexterous artificial hand and arm with electromyogram signals while electroencephalogram (EEG) signals are simultaneously measured. Robotic grip force measurements will be biomimetically converted into electrical pulses similar to those found in the peripheral nervous system to catalyze in vitro nerve regeneration after neurotrauma. The synergistic contributions of this multidisciplinary project will lead to a transformative understanding of the symbiotic interaction of neural plasticity within human-robotic systems. Currently, there is no systematic understanding of how tactile feedback signals can contribute to the neural regeneration of afferent neural pathways to restore somatosensation and improve motor function in amputees fitted with neuroprosthetic limbs. Tackling this problem will be a significant breakthrough for the important field of neuroprosthetics.
Key facts
- Study ID
- NCT03581448
- Run by
- Florida Atlantic University
- People needed
- 21
- Starts
- 2017-10-15
- Expected to finish
- 2021-10-26
- Last updated by the study team
- 2023-09-18
Who can join
Age: 18 and older, up to 65. Sex: any. Healthy volunteers: accepted.
You may qualify if…
- No neurological impairment of tactile sensation.
You may not qualify if…
- Younger than 18 or older than 65
Where it is running
- Florida Atlantic University — Boca Raton, Florida, United States
Full record on ClinicalTrials.gov
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