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@article{MM_2007_19_5_a9, author = {V. D. Perminov and M. A. Kornilina}, title = {Individual-based model for simulation of urban epidemic}, journal = {Matemati\v{c}eskoe modelirovanie}, pages = {116--127}, publisher = {mathdoc}, volume = {19}, number = {5}, year = {2007}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/MM_2007_19_5_a9/} }
V. D. Perminov; M. A. Kornilina. Individual-based model for simulation of urban epidemic. Matematičeskoe modelirovanie, Tome 19 (2007) no. 5, pp. 116-127. http://geodesic.mathdoc.fr/item/MM_2007_19_5_a9/
[1] Diekmann and Heesterbeek, Mathematical Epidemiology of Infectious Diseases, Wiley, Chichester, 2000 | MR
[2] Anderson R., Mei R., Infektsionnye bolezni cheloveka. Dinamika i kontrol, Mir, 2004
[3] Grimm V., Railsback S. F., Individual-based Modeling and Ecology, Princeton University Press, Princeton and Oxford, 2005 | MR | Zbl
[4] Longini I. M., Halloran M. E., Nizam A., Yang Y., “Containing pandemic influenza with antiviral agents”, American Journal of Epidemiology, 159 (2004), 623–633 | DOI | MR
[5] Longini I. M. Jr., Nizam A., Xu S., Ungchusak K., Hanshaoworakul W., Cummings D. A. T., Halloran M. E., “Containing pandemic influenza at the source”, Science, 309 (2005), 1083–1087 | DOI
[6] Ferguson N. M., Cummings D. A. T., Cauchemez S., Fraser C., Riley S., Meeyai A., Iamsirithaworn S., Burke D. S., “Strategies for containing an emerging influenza pandemic in Southeast Asia”, Nature, 2005, 6 | Zbl
[7] Drynov I. D., Malyshev N. A., Sergeev V. P., Osnovy optimalnoi tekhnologii profilaktiki massovogo rasprostraneniya ostrykh respiratornykh zabolevanii, M., 1999