References

Ampatzis, C., Tuci, E., Trianni, V., & Dorigo, M. (2010). Evolution of Signaling in
a Multi-Robot System: Categorization and Communication. In S. Nolfi & M. Mirolli (Eds.), Evolution of communication and language in embodied agents (pp. 223-233). Berlin, Germany: Springer.

Castellano, C., Fortunato, S., & Loreto, V. (2009). Statistical physics of social dynamics. Revues of Modern Physics.

Harari, Y., N. (2014). Sapiens: A brief history of humankind. Toronto, CA: McLelland & Stewart.

Kirby, S. (2001). Spontaneous evolution of linguistic structure: an iterated learning model of the emergence of regularity and irregularity. IEEE Transactions on Evolutionary Computation, 5(2), 102–110.

Kirby, S., Griffiths, T., & Smith, K. (2014). Iterated learning and the evolution of language. Current Opinion in Neurobiology, 28, 108-114.

Kirby, S. (2012) Language is an adaptive system: The role of cultural evolution in the origins of structure. In M. Tallerman & K. R. Gibson (Eds.), The Oxford handbook of language evolution (pp. 589-604). New York, NY: Oxford University Press.

Loreto, V., & Steels, L. (2007). Social dynamics: the emergence of language. Nature Physics, 3, 758–760.

Mirolli, M., & Nolfi, S. (2010). Evolving Communication in Embodied Agents:
Theory, Methods, and Evaluation. In S. Nolfi & M. Mirolli (Eds.), Evolution of communication and language in embodied agents (pp. 13-35). Berlin, Germany: Springer.

Neumann, J. V. (1966). Theory of self-reproducing automata. Champaign: University of Illinois Press.

Parisi, D. (2010). Artificial Organisms with Human Language. In S. Nolfi & M.
Mirolli (Eds.), Evolution of communication and language in embodied agents (pp. 13-35). Berlin, Germany: Springer.

Parmiggiani, A., Randazzo, M., Maggiali, M., Metta, G., Elisei, F., & Bailly, G.
(2015). Design and Validation of a Talking Face for the iCub. International Journal of Humanoid Robots, 12(3), 1-20. Doi: 10.1142/S0219843615500267

Serenko, A., Bontis, N., & Detlor, B. (2007). End-user adoption of animated
interface agents in everyday work applications. Behaviour & Information Technology, 26(2), 119-132.

Sierra-Santibánez, J. (2015). An agent-based model of the emergence and transmission of a language system for the expression of logical combinations. Proceedings of the Twenty-Ninth AAAI Conference on Artificial Intelligence, 492-499.

Steels, L. (2010). Modeling the formation of language: embodied experiments. In S. Nolfi & M. Mirolli (Eds.), Evolution of communication and language in embodied agents (pp. 235-262). Berlin, Germany: Springer.

Sukthankar, G. (2008). Creating physically embodied agents using realistic human
motion models. Simulation & Gaming: An Interdisciplinary Journal of Theory, Practice and Research, 39(1), 64-82. https://doi-org.ezlibproxy1.ntu.edu.sg/10.1177/1046878107309686

Ulam, S. (1960). A collection of mathematical problems. New York: Interscience.

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