2022年4月1日
Adhesionable flexible GaN-based microLED array film to brain surface for in vivo optogenetic stimulation
Applied Physics Express
- 巻
- 15
- 号
- 4
- 開始ページ
- 046501
- 終了ページ
- 046501
- 記述言語
- 掲載種別
- 研究論文(学術雑誌)
- DOI
- 10.35848/1882-0786/ac5ba3
- 出版者・発行元
- IOP Publishing
Abstract
A development of a biocompatible, optical stimulation device capable of adhering to the brain surface and activating spatially separated brain regions is necessary for in vivo optogenetic applications. In this study, a hollow structure for isolating the microLED epitaxial layer was fabricated using the anisotropic KOH wet-etching method. Using a thermal release sheet, a method to transfer microLEDs onto a biocompatible parylene film was established without rotation or misalignment of the microLEDs while retaining their characteristics. Accordingly, a flexible microLED array film was fabricated, which adhered to the surface of the brain of a mouse and exhibited blue emission.
A development of a biocompatible, optical stimulation device capable of adhering to the brain surface and activating spatially separated brain regions is necessary for in vivo optogenetic applications. In this study, a hollow structure for isolating the microLED epitaxial layer was fabricated using the anisotropic KOH wet-etching method. Using a thermal release sheet, a method to transfer microLEDs onto a biocompatible parylene film was established without rotation or misalignment of the microLEDs while retaining their characteristics. Accordingly, a flexible microLED array film was fabricated, which adhered to the surface of the brain of a mouse and exhibited blue emission.
- リンク情報
- ID情報
-
- DOI : 10.35848/1882-0786/ac5ba3
- ISSN : 1882-0778
- eISSN : 1882-0786