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Updated: Mar 13, 2026

Brain Mapping Using a Graphene Electrode Array
Published on: October 20, 2023
Fabrication and utility of a transparent graphene neural electrode array for electrophysiology, in vivo imaging, and
Dong-Wook Park1, Sarah K Brodnick2, Jared P Ness2
1Department of Electrical and Computer Engineering, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Abstract:
Transparent graphene-based neural electrode arrays provide unique opportunities for simultaneous investigation of electrophysiology, various neural imaging modalities, and optogenetics. Graphene electrodes have previously demonstrated greater broad-wavelength transmittance (∼90%) than other transparent materials such as indium tin oxide (∼80%) and ultrathin metals (∼60%). This protocol describes how to fabricate and implant a graphene-based microelectrocorticography (μECoG) electrode array and subsequently use this alongside electrophysiology, fluorescence microscopy, optical coherence tomography (OCT), and optogenetics. Further applications, such as transparent penetrating electrode arrays, multi-electrode electroretinography, and electromyography, are also viable with this technology. The procedures described herein, from the material characterization methods to the optogenetic experiments, can be completed within 3-4 weeks by an experienced graduate student. These protocols should help to expand the boundaries of neurophysiological experimentation, enabling analytical methods that were previously unachievable using opaque metal-based electrode arrays.

