[30] Stollenwerk, N., Skwara, U., Aceto, L., Daudé, E., Marguta, R., Mateus, L., Ghaffari, P., Parisi, A., and Aguiar, M. (2015). Power law jumps and power law waiting times, fractional calculus and human mobility in epidemiological systems. Proceedings of the 15th International Conference on Mathematical Methods in Science and Engineering, CMMSE, pp 1060-1072, ISBN978-84-617-2230-3 edited by Jesus V.A. et al., Costa Ballena, Rota, Cádiz (Spain).

[29] Sommer, P.F., Mateus, L., Kooi, B.W., Aguiar, M., and Stollemwerk, N. (2015). Hopf and torus bifurcations in stochastic systems in mathematical population biology. Proceedings of the 15th International Conference on Mathematical Methods in Science and Engineering, CMMSE, pp 543-555, ISBN978-84-617-2230-3 edited by Jesus V.A. et al., Costa Ballena, Rota, Cádiz (Spain).

[28] Mateus, L., Aguiar, M., and Stollenwerk, N. (2015). Bayesian estimation of vaccine efficacy. (2015). Proceedings of the 15th International Conference on Mathematical Methods in Science and Engineering, CMMSE, pp 794-802, ISBN 978-84-617-2230-3 edited by Jesus V.A. et al., Costa Ballena, Rota, Cádiz (Spain).

[27] Mateus, L., Masoero, D., Rocha, F., Aguiar, M., Skwara, U., Ghaffari, P., Zambrini, J-C., and Stollenwerk, N. (2014). Epidemiological models in semiclassical approximation: an analytically solvable model as test case. Proceedings of the 14th International Conference on Mathematical Methods in Science and Engineering, CMMSE, pp 904-917, ISBN: 978-84-616-9216-3, edited by Jesus V.A. et al., Costa Ballena, Rota, Cádiz (Spain).

[26] Filipe Rocha, Hyun Mo Yang, Luís Mateus, Maíra Aguiar, Carlos Braumann and Nico Stollenwerk. (2014). Modelling a temperature dependent mosquito population. Proceedings of the 14th International Conference on Mathematical Methods in Science and Engineering, CMMSE, pp 1076-1083, ISBN: 978-84-616-9216-3, edited by Jesus V.A. et al., Costa Ballena, Rota, Cádiz (Spain).

[25] Skwara, U., Rocha, F., Aguiar, M., and Stollenwerk, N. (2014). On stochastic models of vector borne diseases. Proceedings of the 14th International Conference on Mathematical Methods in Science and Engineering, CMMSE, pp 1187-1193 ISBN: 978-84-616-9216-3, edited by Jesus V.A. et al., Costa Ballena, Rota, Cádiz (Spain).

[24] Stollenwerk, N., Rocha, F., Mateus, L., Skwara, U., Ghaffari, P., and Aguiar, M. (2014). Chaos and noise in population biology: modelling dengue fever and data analysis, multi-strain dynamics, mosquitos and climate. Proceedings of the 14th International Conference on Mathematical Methods in Science and Engineering, CMMSE, pp 1194-1207 ISBN: 978-84-616-9216-3, edited by Jesus V.A. et al., Costa Ballena, Rota, Cádiz (Spain).

[23] Bezerra, J., Rocha, F., Mateus, L., Stollenwerk, N., Pimenta, P., Pessanha, E., Secundino, N., Arias, J., Norris, D., and Aguiar, M. (2014). On how far mosquitos matter in describing dengue fever epidemiology. Proceedings of the 14th International Conference on Mathematical Methods in Science and Engineering, CMMSE, pp 182-196 ISBN: 978-84-616-9216-3, edited by Jesus V.A. et al., Costa Ballena, Rota, Cádiz (Spain).

[22] Aguiar, M., Rocha, F., and Stollenwerk, N. (2014). If ”football fever could be a dose of dengue”, ”the Simon Hay fever”, should have given a dose of samba. Proceedings of the 14th International Conference on Mathematical Methods in Science and Engineering, CMMSE, pp 20-27 ISBN: 978-84-616-9216-3, edited by Jesus V.A. et al., Costa Ballena, Rota, Cádiz (Spain).

[21] Sollenwerk, N., Masoero, D., Skwara, U., Rocha, F., Ghaffari, P., and Aguiar, M. (2013). Semiclassical approximations of stochastic epidemiological processes towards parameter estimation. Proceedings of the 13th International Conference on Mathematical Methods in Science and Engineering, CMMSE 2013, pp 1278-1289 ISBN: 978-84-616-2723-3, edited by Jesus V.A. et al., Cabo de Gata, Almería, Spain.

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