A head mounted device stimulator for optogenetic retinal prosthesis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 30156188.
- Also identified by DOI 10.1088/1741-2552/aadd55 and PMC identifier 6372131.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Our main objective is to demonstrate that compact high radiance gallium nitride displays can be used with conventional virtual reality optics to stimulate an optogenetic retina. Hence, we aim to introduce a non-invasive approach to restore vision for people with conditions such as retinitis pigmentosa where there is a remaining viable communication link between the retina and the visual cortex. We design and implement the headset using a high-density µLED matrix, Raspberry Pi, microcontroller from NXP and virtual reality lens. Then, a test platform is developed to evaluate the performance of the headset and the optical system. Furthermore, image simplification algorithms are used to simplify the scene to be sent to the retina. Moreover, in vivo evaluation of the genetically modified retina response at different light intensity is discussed to prove the reliability of the proposed system. We demonstrate that in keeping with regulatory guidance, the headset displays need to limit their luminance to 90 kcd m<sup>-2</sup>. We demonstrate an optical system with 5.75% efficiency which allows for 0.16 mW mm<sup>-2</sup> irradiance on the retina within the regulatory guidance, but which is capable of an average peak irradiance of 1.35 mW mm<sup>-2</sup>. As this is lower than the commonly accepted threshold for channelrhodopsin-2, we demonstrate efficacy through an optical model of an eye onto a biological retina. We demonstrate a fully functional 8100-pixel headset system including software/hardware which can operate on a standard consumer battery for periods exceeding a 24 h recharge cycle. The headset is capable of delivering enough light to stimulate the genetically modified retina cells and also keeping the amount of light below the regulation threshold for safety.
Medical subject headings
- Optogenetics
- Retina
- Visual Prosthesis