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C
X. D. Arsiwalla and Verschure, P. &, Computing Information Integration in Brain Networks. , Advances in Network Science (pp. 136-146). , vol. 9564 of Springer International Publishing., pp. 136-146, 2016.
Schaal S and Schweighofer N, Computational motor control in humans and robots. , Curr. Opin. Neurobiol., vol. 15, 2005.
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.
Kim KJ and Cho SB, A comprehensive overview of the applications of artificial life., Artif Life. , vol. 12, no. 1, 2006.
C. Moulin-Frier and Verschure, P. F. &, Comment on" Towards a Computational Comparative Neuroprimatology: Framing the language-ready brain" by Michael A. Arbib., Physics of life reviews, vol. 16, pp. 88-90, 2016.
P. DeLellis and et, al., Collective behaviour across animal species., Scientific Reports, vol. 4, no. 3723, 2014.
L. Ogiela and Ogiela, M. R., Cognitive Systems and Artificial Brains, in Advances in Cognitive Information Systems, vol. 17, 2012.
Pfeifer, R., Iida, F., and Lungarella, M., Cognition from the bottom up: on biological inspiration, body morphology, and soft materials, Trend in Cognitve Sciences, vol. 18, no. 8, 2014.
Stefano Nolfi, Co-evolving predator and prey robots, Adaptive Behavior, vol. 20, no. 1, pp. 10-15 , 2011.
L. L. Bologna, Pinoteau, J., Passot, J. B., Garrido, J. A., Vogel, J., Vidal, E. R., and Arleo, A., A closed-loop neurobotic system for fine touch sensing, Journal of Neural Engineering, vol. 10, no. 4, 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.
R. D. Pinzon-Morales and Hirata, Y., Cerebellar-inspired bi-hemispheric neural network for adaptive control of an unstable robot, Biosignals and Biorobotics Conference (BRC), vol. ISSN: 2326-7771. pp. 1-4, 2013.
B
Mikhail A. Lebedev and Miguel A.L. Nicolelis, Brain–machine interfaces: past, present and future, Trends in Neurosciences , vol. 29, no. 9, 2006.
ALAIN BERTHOZ, The brain's sense of movement , Editions Odile Jacob 1997th ed. Copyright © 2000 by the President and Fellows of Harvard College, 2000, p. 328.
S. B. Olsson, Challiss, R. A. J., Cole, M., Gardeniers, J. G. E., Gardner, J. W., Guerrero, A., and Pearce, T. C. &, Biosynthetic infochemical communication., Bioinspiration & biomimetics, vol. 10, no. 4, 2015.
A. J. Ijspeert, Biorobotics: Using robots to emulate and investigate agile locomotion, Science , vol. 346, no. 6206, pp. 196-203 , 2014.
Bar-Cohen, Y., Biomimetics--using nature to inspire human innovation., Bioinspir Biomim., vol. 1, no. 1, 2006.
Julian F.V Vincent, Olga A Bogatyreva,, Nikolaj R Bogatyrev,, Adrian Bowyer,, and Pahl., A. - K., Biomimetics: its practice and theory, J R Soc Interface , vol. 3, no. 9, 2006.
Yoseph Bar-Cohen, Biomimetics: biologically inspired technologies. Boston: CR press, Taylor & Fran Group, 2006.
W. Jon. P. Barnes, Biomimetic Solutions to Sticky Problems, Science, vol. 318 , no. 5848, 2007.
Witte H, Hoffmann H,, Hackert R,, Schilling C, Fischer MS,, and Preuschoft H, Biomimetic robotics should be based on functional morphology., J Anat. , vol. 204, no. 5, 2004.
A. Villanueva, Smith, C., and Priya, S., A biomimetic robotic jellyfish (Robojelly) actuated by shape memory alloy composite actuators, Bioinspiration & Biomimetics, vol. 6, no. 3, 2011.
S. - W. Yeom and Oh, I. - K., A biomimetic jellyfish robot based on ionic polymer metal composite actuators , Smart Materials and Structures, vol. 18, no. 9, 2009.
J. D. Talasek, Biomimetic buildings, Proc Natl Acad Sci USA, vol. 110, no. 7, 2013.
Andrew H. Fagg, Nicholas G. Hatsopoulos,, Victor de Lafuente6,, Karen A. Moxon,, Nemati, S., James M. Rebesco,, Ranulfo Romo,, Sara A. Solla,, Jake Reimer,, Dennis Tkach,, Eric A. Pohlmeyer,, and Miller, L. E., Biomimetic Brain Machine Interfaces for the Control of Movement, The Journal of Neuroscience, vol. 27, no. 44, 2007.

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