Mitarbeiter*innen
Prof. Dr. Linnea Hesse
Responsible Investigator
Fachbereich Biologie | Institut für Holzwissenschaften | Biomimetik
Universität Hamburg
Tel.: +49 40 73962 645
E-Mail: linnea.hesse@uni-hamburg.de
Areas 0f Expertise
Botanik | Funktionsmorphologie | Biomimetik | Biomechanik | 3D-Imaging | Holzphysik
Publikationen in livMatS
- Beyond the bilayer: multilayered hygroscopic actuation in pine cone scales*
Ulrich, K., Mylo, M., Masselter, T., Scheckenbach, F., Fischerbauer, S., Nopens, M., Flenner, S., Greving, I., Hesse, L., & Speck, T. (2025). Beyond the bilayer: multilayered hygroscopic actuation in pine cone scales. Beilstein J. Nanotechnol, 2025, 16, 1695–1710. doi:10.3762/bjnano.16.119 - Quantifying hygroscopic deformation in lignocellulosic tissues: a digital volume correlation tool comparison*
Ulrich, K., Scheckenbach, F., Wong, T. M., Masselter, T., Flenner, S., Visconti, A., Nopens, M., Krause, A., Kaschuro, S., Mietner, B., Speck, T., Greving, I., Zeller-Plumhoff, B. & Hesse, L. (2025). Quantifying hygroscopic deformation in lignocellulosic tissues: a digital volume correlation tool comparison. Frontiers in Plant Science, 16, 1572745. doi: 10.3389/fpls.2025.1572745 - Morphology and Anatomy of Branch–Branch Junctions in Opuntia ficus-indica and Cylindropuntia bigelovii: A Comparative Study Supported by Mechanical Tissue Quantification*
Mylo, M. D., Hesse, L., Masselter, T., Leupold, J., Drozella, K., Speck, T., & Speck, O. (2021). Morphology and Anatomy of Branch–Branch Junctions in Opuntia ficus-indica and Cylindropuntia bigelovii: A Comparative Study Supported by Mechanical Tissue Quantification. Plants, 10(11), 2313. doi: 10.3390/plants10112313
* Funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) under Germany's Excellence Strategy – EXC-2193/1 – 390951807