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Design and Control of a Tunable Compliance Actuator., , , , и . Living Machines, том 8608 из Lecture Notes in Computer Science, стр. 344-355. Springer, (2014)A sensor platform capable of aerial and terrestrial locomotion., , , , , , и . IROS, стр. 3959-3964. IEEE, (2005)Drive train design enabling locomotion transition of a small hybrid air-land vehicle., , и . IROS, стр. 5647-5652. IEEE, (2009)Biomimicry of the Manduca Sexta Forewing Using SRT Protein Complex for FWMAV Development., , , , , , , и . Living Machines, том 9222 из Lecture Notes in Computer Science, стр. 86-91. Springer, (2015)A rapidly reconfigurable robot for assistance in urban search and rescue., , , и . IROS, стр. 209-214. IEEE, (2011)Abstracted biological principles applied with reduced actuation improve mobility of legged vehicles., , , и . IROS, стр. 1370-1375. IEEE, (2003)Design and simulation of a cockroach-like hexapod robot., , , , , и . ICRA, стр. 1106-1111. IEEE, (1997)Mechanical Improvements to TCERA, a Tunable Compliant Energy Return Actuator., , , и . Living Machines, том 9222 из Lecture Notes in Computer Science, стр. 410-414. Springer, (2015)Tetraspine: Robust terrain handling on a tensegrity robot using central pattern generators., , , , и . AIM, стр. 261-267. IEEE, (2013)Parallel Complementary Strategies For Implementing Biological Principles Into Mobile Robots., , , , , , и . Int. J. Robotics Res., 22 (3-4): 169-186 (2003)