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From plant root's sloughing and radial expansion mechanisms to a soft probe for soil exploration.

, , and . RoboSoft, page 71-76. IEEE, (2018)

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Octopus-Inspired Soft Arm with Suction Cups for Enhanced Grasping Tasks in Confined Environments., , , , , , , , , and . Adv. Intell. Syst., 1 (6): 1970061 (2019)Artificial System Inspired by Climbing Mechanism of Galium Aparine Fabricated via 3D Laser Lithography., , , , , and . Living Machines, volume 10928 of Lecture Notes in Computer Science, page 168-178. Springer, (2018)The Bio-Engineering Approach for Plant Investigations and Growing Robots. A Mini-Review., , , and . Frontiers Robotics AI, (2020)Octopus-Inspired Innovative Suction Cups., , , , , , and . Living Machines, volume 8064 of Lecture Notes in Computer Science, page 368-370. Springer, (2013)From plant root's sloughing and radial expansion mechanisms to a soft probe for soil exploration., , and . RoboSoft, page 71-76. IEEE, (2018)Design of Adhesion Device Inspired by Octopus Sucker., , and . Living Machines, volume 7375 of Lecture Notes in Computer Science, page 400-401. Springer, (2012)Artificial adhesion mechanisms inspired by octopus suckers., , , , and . ICRA, page 3846-3851. IEEE, (2012)Adhesion Mechanisms Inspired by Octopus Suckers., , , , and . FET, volume 7 of Procedia Computer Science, page 192-193. Elsevier, (2011)A Biomechanical Characterization of Plant Root Tissues by Dynamic Nanoindentation Technique for Biomimetic Technologies., , , , and . Living Machines, volume 10384 of Lecture Notes in Computer Science, page 532-536. Springer, (2017)