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Investigation of Sensitivity of Foot Soles to Vibrational Stimuli: First Results for Developers of Information Interfaces.

, , , , and . HCI (26), volume 9194 of Lecture Notes in Computer Science, page 290-299. Springer, (2015)

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Animal Vibrissae: Modeling and Adaptive Control of Bio-inspired Sensors., , , and . IWANN (2), volume 7903 of Lecture Notes in Computer Science, page 159-170. Springer, (2013)Comparing the effect of different spine and leg designs for a small bounding quadruped robot., , , and . ICRA, page 3128-3133. IEEE, (2015)Biomechatronics is not just biomimetics., , , , , , , and . RoMoCo, page 74-79. IEEE, (2013)Design and Control of a Flapping Wing System Test Bench., and . RAAD, volume 980 of Advances in Intelligent Systems and Computing, page 34-42. Springer, (2019)A Phase-Shifting Double-Wheg-Module for Realization of Wheg-Driven Robots., , , , , , , and . Living Machines, volume 8608 of Lecture Notes in Computer Science, page 97-107. Springer, (2014)Using Different Adhesion Technologies in Modular Robot for Climbing., , , and . ISR/ROBOTIK, page 1-7. VDE Verlag, (2010)Towards rich motion skills with the lightweight quadruped robot Serval., , , , , , and . Adapt. Behav., (2020)Towards Rich Motion Skills with the Lightweight Quadruped Robot Serval - A Design, Control and Experimental Study., , , , , , and . SAB, volume 10994 of Lecture Notes in Computer Science, page 41-55. Springer, (2018)Cheetah-cub-S: Steering of a quadruped robot using trunk motion., , , and . SSRR, page 1-6. IEEE, (2015)Shifting allometry: combination of macroscopic engineering with microscopic biomimetics allows realization of new robot functions in meso dimension., , , , , and . ROBOTIK, VDE-Verlag, (2012)