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P. Krčah, Solving Deceptive Tasks in Robot Body-Brain Co-evolution by Searching for Behavioral Novelty , Advances in Robotics and Virtual Reality, vol. 26, pp. 167-186, 2012.
V. Kopman and Porfiri, M., Design, Modeling, and Characterization of a Miniature Robotic Fish for Research and Education in Biomimetics and Bioinspiration , IEEE/ASME TRANSACTIONS ON MECHATRONICS, vol. 18, no. 2, 2013.
V. Kopman, Laut, J., Polverino, G., and Porfir, M., Closed-loop control of zebrafish response using a bioinspired robotic-fish in a preference test, J. R. Soc. Interface, vol. 10, no. 78, 2012.
J. Knüsel, Bicanski, A., Ryczko, D., Cabelguen, J. M., and Ijspeert, A., A Salamander’s Flexible Spinal Network for Locomotion, Modeled at Two Levels of Abstraction, Integrative and Comparative Biology, 2013.
R. S. King, State of the Art in Robotics and Robotic Actuation, in ‘BiLBIQ: A biologically inspired Robot with walking and rolling locomotion, 2012th ed., vol. 2, 2012.
Kim KJ and Cho SB, A comprehensive overview of the applications of artificial life., Artif Life. , vol. 12, no. 1, 2006.
M. Khoramshahi, Bidgoly, H. J., Shafiee, S., Asaei, A., and Ijspeert, A. J., Piecewise linear spine for speed-energy efficiency trade-off in quadruped robots, Robotics And Autonomous Systems, vol. 61, no. 12, 2013.
Kevin Gurney, Prescott, T. J., Jeffery R. Wickens,, and Peter Redgrave, Computational models of the basal ganglia: from robots to membranes , Trends in Neurosciences , vol. 27, no. 8, 2004.
A. Kettler, Szymanski, M., and Wörn, H., The Wanda Robot and Its Development System for Swarm Algorithms, Advances in Autonomous Mini Robots, pp. 133-146, 2012.
R. K. Katzschmann, Marchese, A. D., and Rus, D. &, Hydraulic autonomous soft robotic fish for 3D swimming., in In Experimental Robotics , International Publishing: Springer , 2015, pp. pp. 405-420 .