Implantable Micro-Light-Emitting Diode (µLED)-based optogenetic interfaces toward human applications

[Display omitted] Optogenetics has received wide attention in biomedical fields because of itsadvantages in temporal precision and spatial resolution. Beyond contributions to important advances in fundamental research, optogenetics is inspiring a shift towards new methods of improving human well-bei...

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Veröffentlicht in:Advanced drug delivery reviews 2022-08, Vol.187, p.114399-114399, Article 114399
Hauptverfasser: Hee Lee, Jae, Lee, Sinjeong, Kim, Daesoo, Jae Lee, Keon
Format: Artikel
Sprache:eng
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Zusammenfassung:[Display omitted] Optogenetics has received wide attention in biomedical fields because of itsadvantages in temporal precision and spatial resolution. Beyond contributions to important advances in fundamental research, optogenetics is inspiring a shift towards new methods of improving human well-being and treating diseases. Soft, flexible and biocompatible systems using µLEDs as a light source have been introduced to realize brain-compatible optogenetic implants, but there are still many technical challenges to overcome before their human applications. In this review, we address progress in the development of implantable µLED probes and recent achievements in (i) device engineering design, (ii) driving power, (iii) multifunctionality and (iv) closed-loop systems. (v) Expanded optogenetic applications based on remarkable advances in µLED implants will also be discussed.
ISSN:0169-409X
1872-8294
DOI:10.1016/j.addr.2022.114399