Cortical responses elicited by photovoltaic subretinal prostheses exhibit similarities to visually evoked potentials.
basic_science · Level V
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- Record sourced from PubMed, PMID 23778557.
- Also identified by DOI 10.1038/ncomms2980 and PMC identifier 4249937.
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Abstract
We have previously developed a wireless photovoltaic retinal prosthesis, in which camera-captured images are projected onto the retina using pulsed near-IR light. Each pixel in the subretinal implant directly converts pulsed light into local electric current to stimulate the nearby inner retinal neurons. Here we report that implants having pixel sizes of 280, 140 and 70 μm implanted in the subretinal space in rats with normal and degenerate retina elicit robust cortical responses upon stimulation with pulsed near-IR light. Implant-induced eVEP has shorter latency than visible light-induced VEP, its amplitude increases with peak irradiance and pulse duration, and decreases with frequency in the range of 2-20 Hz, similar to the visible light response. Modular design of the arrays allows scalability to a large number of pixels, and combined with the ease of implantation, offers a promising approach to restoration of sight in patients blinded by retinal degenerative diseases.
Medical subject headings
- Evoked Potentials, Visual
- Visual Cortex
- Visual Prosthesis