Publications

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How to get the most out of fungal biotechnology?
Nygård Y and Meyer V. How to get the most out of fungal biotechnology? Fungal Biol Biotechnol 13, 1 (2026). DOI: 10.1186/s40694-025-00207-7
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Impact of Fomes fomentarius growth on the mechanical properties of material extrusion additively manufactured PLA and PLA/Hemp biopolymers.
Panjalipoursangari N, Ou Y, Schmidt B, Müller WH and Völlmecke C. Impact of Fomes fomentarius growth on the mechanical properties of material extrusion additively manufactured PLA and PLA/Hemp biopolymers. Fungal Biol Biotechnol. (2025); 8, 2(1):14. DOI: 10.1186/s40694-025-00205-9
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Structural, mechanical, and genetic insights into heat-pressed fomes fomentarius mycelium from solid-state and liquid cultivations.
Chen H, Klemm S, Scoppola E, Schmidt B, Wu Y, Fleck C, Gurlo A, Meyer V, Freidank-Pohl C and Simon U. Structural, mechanical, and genetic insights into heat-pressed fomes fomentarius mycelium from solid-state and liquid cultivations. Adv. Sustainable Syst. (2025); e00484. DOI: 10.1002/adsu.202500484
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Back to the Roots! In The Divide Between Humanities and Science: Why it Matters and How it can be Repaired.
Meyer V. Back to the Roots! In The Divide Between Humanities and Science: Why it Matters and How it can be Repaired. Edited by Brusca C. Ethics International Press Ltd, UK (2025); Print Book ISBN: 978-1-83711-013-1, eBook ISBN: 978-1-83711-014-8
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Uncovering the transcriptional landscape of Fomes fomentarius during fungal-based material production through gene co-expression network analysis.
Cairns T, Freidank-Pohl C, Birke AS, Regner C, Jung S and Meyer V. Uncovering the transcriptional landscape of Fomes fomentarius during fungal-based material production through gene co-expression network analysis. Fungal Biol Biotechnol 12, 1 (2025). DOI: 10.1186/s40694-024-00192-3
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Extrusion-based additive manufacturing of complex three-dimensional ultra-lightweight materials using the basidiomycete Fomes fomentarius.
Chen H, Schmidt B, Gennett A, Kamm PH, Gurlo A, Meyer V and Simon U. Extrusion-based additive manufacturing of complex three-dimensional ultra-lightweight materials using the basidiomycete Fomes fomentarius. Materials Advances (2025). DOI: 10.1039/D5MA00320B.
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Operate with Fungi.
Meyer V, Schäffner W, Schmidt B, Hoberg F, Stelzer L, Freidank-Pohl C, Miodragovic N, Almpani-Lekka D, Weinhold M, Goehler A, Philippi N, Ross P, Göngrich E, Wilhelm N, Garcia Pérez M, Ficht J, Bredekamp H, Meyer V (Editor), Schäffner W (Editor). Operate with Fungi. Universitätsverlag der TU Berlin (2024); ISBN 978-3-98781-004-6 (print), DOI: 10.14279/depositonce-21528
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Tailoring the Mechanical Properties of Fungal Mycelium Mats with Material Extrusion Additive Manufacturing of PHBH and PLA Biopolymers.
Chen H, Klemm S, Dönitz A, Ou Y, Schmidt B, Fleck C, Simon U, Völlmecke C. Tailoring the Mechanical Properties of Fungal Mycelium Mats with Material Extrusion Additive Manufacturing of PHBH and PLA Biopolymers. ACS Omega Article ASAP (2024). DOI: 10.1021/acsomega.4c07661
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Border crossings and connections.
Weinhold, M. Border crossings and connections. Fungal Biol Biotechnol (2024); 11(12). DOI: 10.1186/s40694-024-00182-5
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Patent landscape analysis for materials based on fungal mycelium: a guidance report on how to interpret the current patent situation.
Meyer V, Mengel S. Patent landscape analysis for materials based on fungal mycelium: a guidance report on how to interpret the current patent situation. Fungal Biol Biotechnol (2024); 11(11). DOI: 10.1186/s40694-024-00177-2