Transparent, metal-free PEDOT:PSS neural interfaces for simultaneous recording of low-noise electrophysiology and artifact-free two-photon imaging

  • Kim, Hyun Woo
  • Kim, Jiwon
  • Kim, Jong Youl
  • Kim, Kyubeen
  • Lee, Ju Young
  • ... Sang, Mingyu
  • 외 11명
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초록

Simultaneous two-photon imaging and electrophysiological recordings offer considerable potential for advancing neurological research and therapies. However, traditional metal-based neural interfaces suffer from photoelectric artifacts, while existing transparent implants rely on opaque interconnect lines to address conductivity limitations. Herein, we developed an optically transparent poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS) neural electrode array with transparent electrodes and interconnect lines. Through a formamide, phosphoric acid, and ethylene glycol treatment, the metal-free PEDOT:PSS array achieved an impedance of 45.8 k Omega (at 1 kHz) even with a 20 x 20 mu m(2) size. This advanced performance surpasses previous metal-free transparent neural interfaces and facilitates precise electrophysiological recordings, including extracellular action potentials and low-noise local field potentials. In vivo experiments demonstrated artifact-free two-photon imaging and reliable neural signal acquisition, while biocompatibility tests confirmed negligible cytotoxicity or immune responses. The developed metal-free PEDOT:PSS array provides a robust platform for neural recording and bioimaging, representing an advancement in transparent neural interface technology and integrated optical modalities.

키워드

CONDUCTIVITY ENHANCEMENTTHIN-FILMSSTIMULATIONRESISTANCEMECHANISMNEURONSSURFACEORIGINARRAY
제목
Transparent, metal-free PEDOT:PSS neural interfaces for simultaneous recording of low-noise electrophysiology and artifact-free two-photon imaging
저자
Kim, Hyun WooKim, JiwonKim, Jong YoulKim, KyubeenLee, Ju YoungKim, TaeminCho, ShinilAn, Jong BinKim, Hyun JaeSun, LuluLee, SunghoonFukuda, KenjiroSomeya, TakaoSang, MingyuCho, Young UkLee, Jong EunYu, Ki Jun
DOI
10.1038/s41467-025-59303-2
발행일
2025-04
유형
Article
저널명
Nature Communications
16
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