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Transparent, conformable, active multielectrode array using organic electrochemical transistors.


ABSTRACT: Mechanically flexible active multielectrode arrays (MEA) have been developed for local signal amplification and high spatial resolution. However, their opaqueness limited optical observation and light stimulation during use. Here, we show a transparent, ultraflexible, and active MEA, which consists of transparent organic electrochemical transistors (OECTs) and transparent Au grid wirings. The transparent OECT is made of Au grid electrodes and has shown comparable performance with OECTs with nontransparent electrodes/wirings. The transparent active MEA realizes the spatial mapping of electrocorticogram electrical signals from an optogenetic rat with 1-mm spacing and shows lower light artifacts than noise level. Our active MEA would open up the possibility of precise investigation of a neural network system with direct light stimulation.

SUBMITTER: Lee W 

PROVIDER: S-EPMC5635873 | biostudies-other | 2017 Oct

REPOSITORIES: biostudies-other

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Transparent, conformable, active multielectrode array using organic electrochemical transistors.

Lee Wonryung W   Kim Dongmin D   Matsuhisa Naoji N   Nagase Masae M   Sekino Masaki M   Malliaras George G GG   Yokota Tomoyuki T   Someya Takao T  

Proceedings of the National Academy of Sciences of the United States of America 20170918 40


Mechanically flexible active multielectrode arrays (MEA) have been developed for local signal amplification and high spatial resolution. However, their opaqueness limited optical observation and light stimulation during use. Here, we show a transparent, ultraflexible, and active MEA, which consists of transparent organic electrochemical transistors (OECTs) and transparent Au grid wirings. The transparent OECT is made of Au grid electrodes and has shown comparable performance with OECTs with nont  ...[more]

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