Biomechanical Characterization of Hook-Climber Stems for Soft Robotic Applications
103
10. Niklas, K.: Plant biomechanics University of Chicago Press Chicago. London (1992)
11. Fiorello, I., Tricinci, O., Mishra, A.K., Tramacere, F., Filippeschi, C., Mazzolai, B.: Artificial
system inspired by climbing mechanism of galium aparine fabricated via 3D laser lithography.
In: Conference on Biomimetic and Biohybrid Systems, pp. 168–178 (2018)
12. Andrews, H.G., Badyal, J.P.S.: Bioinspired hook surfaces based upon a ubiquitous weed
(Galium aparine) for dry adhesion. J. Adhes. Sci. Technol. 28, 1243–1255 (2014)
13. Fiorello, I., et al.: Climbing plant-inspired micropatterned devices for reversible attachment.
Adv. Funct. Mater. 30(38), 2003380 (2020)
103
10. Niklas, K.: Plant biomechanics University of Chicago Press Chicago. London (1992)
11. Fiorello, I., Tricinci, O., Mishra, A.K., Tramacere, F., Filippeschi, C., Mazzolai, B.: Artificial
system inspired by climbing mechanism of galium aparine fabricated via 3D laser lithography.
In: Conference on Biomimetic and Biohybrid Systems, pp. 168–178 (2018)
12. Andrews, H.G., Badyal, J.P.S.: Bioinspired hook surfaces based upon a ubiquitous weed
(Galium aparine) for dry adhesion. J. Adhes. Sci. Technol. 28, 1243–1255 (2014)
13. Fiorello, I., et al.: Climbing plant-inspired micropatterned devices for reversible attachment.
Adv. Funct. Mater. 30(38), 2003380 (2020)
