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Microelectrode array measurements of fungal mycelium reveal growth-associated electrical activity

Mark Ablonczy, Sourav Patranabish, Sarah Schyck, Saurav Sharma, Hande Aydoğmus-Sasse, Vasso Giagka, Clementine Boutry, Kunal Masania iD

DOI10.1557/s43579-026-01041-7
PublisherSpringer Science and Business Media LLC
Journal / SourceMRS Communications
Published2026-09-28
Metadata Deposited2026-09-28 (updated: 2026-09-29)
Subject—
Languageen
ISSN2159-6859, 2159-6867
Typejournal-article
Volume / Issue / Pages— / — / —
Citations0
References deposited30
Access / license metadataOpen license identified License 1 ↗A reuse license does not by itself establish whether the full text is freely readable.

Abstract

Abstract Fungal bioelectricity has promising potential for biosensing in engineered living materials, but its nature remains unclear. We use a custom microelectrode array to record the extracellular electrical activity of mycelium, along with optical tracking and impedance measurements. Measurements across three mycelial growth experiments, along with a sterile control and biocide treatment, show that spontaneous signals coincide with mycelial growth. The signals contained transient spikes with rate and amplitude distributions dependent on growth. The measurements revealed distinct rise-and-fall patterns of electrical activity as mycelium overgrew the electrodes. These results establish an initial basis for future studies and living-material applications.