1. Artaud, M. (2007). Some conditions for modelling to exist in mathematics classrooms. In W. Blum, P. L. Galbraith, H.-W. Henn, & M. Niss (Eds.), Modelling and applications in mathematics education. The 14th ICMI study (pp. 371–378). New York: Springer.
2. Blum, W., & Niss, M. (1991). Applied mathematical problem solving, modelling, applications, and links to other subjects – State, trends and issues in mathematics instruction. Educational Studies in Mathematics, 22(1), 37–68.
3. Borromeo Ferri, R. (2007). Personal experiences and extra-mathematical knowledge as an influence factor on modelling routes of pupils. In D. Pitta-Pantazi & G. Philippou (Eds.), CERME 5 – Proceedings of the fifth congress of the European Society for research in mathematics education (pp. 2080–2089). Larnaca: University of Cyprus.
4. Bosch, M., García, F. J., Gascón, J., & Ruiz Higueras, L. (2006a). Reformulating “mathematical modelling” in the framework of the anthropological theory of didactics. In J. Novotná, H. Moraová, M. Krátká, & N. Stehlíková (Eds.), Proceedings of the 30th conference of the international group for the psychology of mathematics education (Vol. 2, pp. 209–216). Prague: Charles University.
5. Bosch, M., Chevallard, Y., & Gascón, J. (2006b). Science or magic? The use of models and theories in didactics of mathematics. In M. Bosch (Ed.), Proceedings of the fourth congress of the European Society for research in mathematics education (pp. 1254–1263). Barcelona: Fundemi IQS – Universitat.