[42] | Impact of viral mutation on suppression of infection by cytotoxic T lymphocytes (J. Arino, N. Madras, S. Portet, B. Sahai), In Canadian Applied Math Quarterly, 2014.
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[41] | Using mathematical modelling to integrate disease surveillance and global air transportation data (J. Arino, K. Khan), (D. Chen, B. Moulin, J. Wu, eds.), Wiley, 2014.
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[40] | Entry and exit screening of airline travellers during the A(H1N1) 2009 pandemic: a retrospective evaluation (K. Khan, R. Eckhardt, J.S. Brownstein, R. Naqvi, W. Hu, D. Kossowsky, D. Scales, J. Arino, M. Macdonald, J. Wang, J. Sears, M.S. Cetron), In Bulletin of the World Health Organization, volume 91, 2013.
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[39] | Quelques notions d'épidémiologie mathématique (J. Arino), In Bulletin de l'AMQ, volume 53, 2013.
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[38] | Infectious disease surveillance and modelling across geographic frontiers and scientific specialties (K. Khan, S.J.N. McNabb, Z.A. Memish, R. Eckhardt, W. Hu, D. Kossowsky, J. Sears, J. Arino, A. Johansson, M. Barbeschi, B. McCloskey, B. Henry, M. Cetron, J.S. Brownstein), In The Lancet Infectious Diseases, volume 12, 2012.
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[37] | Mathematical Modelling of Natural Phenomena (Epidemiology), (J. Arino, F. Milner, S. Petrovskii, S. Ruan, N. Stollenwek, E. Venturino, eds.), volume 7, 2012.
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[36] | Some methodological aspects involved in the study by the Bio.Diaspora Project of the spread of infectious diseases along the global air transportation network (J. Arino, W. Hu, K. Khan, D. Kossowsky, L. Sanz), In Canadian Applied Mathematics Quarterly, volume 19, 2012.
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[35] | A metapopulation model for malaria with transmission-blocking partial immunity in hosts (J. Arino, A. Ducrot, P. Zongo), In Journal of Mathematical Biology, volume 64, 2012.
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[34] | Effect of media-induced social distancing on disease transmission in a two patch setting (C. Sun, W. Yang, J. Arino, K. Khan), In Mathematical Biosciences, volume 230, 2011.
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[33] | Competitive interference between influenza viral strains (S.M. Moghadas, C.S. Bowman, J. Arino), In Canadian Applied Mathematics Quarterly, volume 17, 2011.
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[32] | Evaluation of vaccination strategies during pandemic outbreaks (C. Bowman, J. Arino, S.M. Moghadas), In Mathematical Biosciences and Engineering, volume 8, 2011.
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[31] | Pandemic influenza: modelling and public health perspectives (J. Arino, C. Bauch, F. Brauer, S.M. Driedger, A.L. Greer, S.M. Moghadas, N.J. Pizzi, B. Sander, A. Tuite, P. van den Driessche, J. Watmough, J. Wu, P. Yan), In Mathematical Biosciences and Engineering, volume 8, 2011.
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[30] | Global analysis for a general epidemiological model with vaccination and varying population (W. Yang, C. Sun, J. Arino), In Journal of Mathematical Analysis and Applications, volume 372, 2010.
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[29] | Global public health implications of a mass gathering in Mecca, Saudi Arabia during the midst of an influenza pandemic (K. Khan, Z.A. Memish, A. Chabbra, J. Liauw, W. Hu, D.A. Janes, J. Sears, J. Arino, M. Macdonald, F. Calderon, P. Raposo, C. Heidebrecht, J. Wang, A. Chan, J. Brownstein, M. Gardam), In Journal of Travel Medicine, volume 17, 2010.
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[28] | Strategies for use of Oseltamivir and Zanamivir during pandemic outbreaks (E. Hansen, T. Day, J. Arino, J. Wu, S.M. Moghadas), In Canadian Journal of Infectious Diseases & Medical Microbiology, volume 21, 2010.
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[27] | Effect of a sharp change of the incidence function on the dynamics of a simple disease (J. Arino, C.C. McCluskey), In Journal of Biological Dynamics, volume 4, 2010.
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[26] | An *in vivo* intermediate filament assembly model (S. Portet, J. Arino), In Mathematical Biosciences and Engineering, volume 6, 2009.
[bib] [pdf] [doi] |

[25] | Spread of a novel influenza A (H1N1) virus via global airline transportation (K. Khan, J. Arino, W. Hu, P. Raposo, J. Sears, F. Calderon, C. Heidebrecht, M. Macdonald, J. Liauw, A. Chan, M. Gardam), In New England Journal of Medicine, volume 361, 2009.
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[24] | An analysis of Canada's vulnerability to emerging infectious disease threats via the global airline transportation network (K. Khan, J. Arino, F. Calderon, A. Chan, M. Gardam, C. Heidebrecht, W. Hu, D.A. Janes, M. Macdonald, J. Sears, P. Raposo, S. Wang), Technical report, Bio.Diaspora Project, St Michael's Hospital, Toronto, Ontario, Canada, 2009.
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[23] | Editorial (J. Arino, S. Portet), In Proceedings of the Second International Conference of the French-speaking Society for Theoretical Biology (Winnipeg, Manitoba, Canada, 4-6 June, 2007). Acta Biotheoretica, volume 57, 2009.
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[22] | Proceedings of the Second International Conference of the French-speaking Society for Theoretical Biology (Winnipeg, Manitoba, Canada, 4-6 June, 2007), (J. Arino, S. Portet, eds.), volume 57, 2009.
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[21] | Antiviral resistance during pandemic influenza: implications for stockpiling and drug use (J. Arino, C.S. Bowman, S.M. Moghadas), In BMC Infectious Diseases, volume 9, 2009.
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[20] | Diseases in metapopulations (J. Arino), In Modeling and Dynamics of Infectious Diseases (Z. Ma, Y. Zhou, J. Wu, eds.), World Scientific, volume 11, 2009.
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[19] | A model for influenza with vaccination and antiviral treatment (J. Arino, F. Brauer, P. van den Driessche, J. Watmough, J. Wu), In Journal of Theoretical Biology, volume 253, 2008.
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[18] | Quarantine in a multi-species epidemic model with spatial dynamics (J. Arino, R. Jordan, P. van den Driessche), In Mathematical Biosciences, volume 206, 2007.
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[17] | Effect of pathogen-resistant vectors on the transmission dynamics of a vector-borne disease (J. Arino, C.S. Bowman, A. Gumel, S. Portet), In Journal of Biological Dynamics, volume 1, 2007.
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[16] | A final size relation for epidemic models (J. Arino, F. Brauer, P. van den Driessche, J. Watmough, J. Wu), In Mathematical Biosciences and Engineering, volume 4, 2007.
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[15] | An alternative formulation for a delayed logistic equation. (J. Arino, L. Wang, G.S.K. Wolkowicz), In Journal of Theoretical Biology, volume 241, 2006.
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[14] | Time delays in epidemic models: modeling and numerical considerations (J. Arino, P. van den Driessche), In Delay Differential Equations and Applications, Springer Verlag, 2006.
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[13] | Metapopulations epidemic models. A survey (J. Arino, P. van den Driessche), In Fields Institute Communications, volume 48, 2006.
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[12] | Simple models for containment of a pandemic (J. Arino, F. Brauer, P. van den Driessche, J. Watmough, J. Wu), In Journal of the Royal Society Interface, volume 3, 2006.
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[11] | A multi-species epidemic model with spatial migration (J. Arino, J.R. Davis, D. Hartley, R. Jordan, J. Miller, P. van den Driessche), In Mathematical Medicine and Biology, volume 22, 2005.
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[10] | Considerations on yield, nutrient uptake, cellular growth, and competition in chemostat models (J. Arino, S.Y. Pilyugin, G.S.K. Wolkowicz), In Canadian Applied Mathematics Quarterly, volume 11, 2005.
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[9] | Intermediate filament network organization: in vitro and in vivo kinetic models (S. Portet, J. Vassy, C. Hogue, J. Arino, O. Arino), In Comptes Rendus: Biologies, volume 327, 2004.
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[8] | An epidemiology model that includes a leaky vaccine with a general waning function (J. Arino, K.L. Cooke, P. van den Driessche, J. Velasco-Hernández), In DCDS-B, volume 4, 2004.
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[7] | The basic reproduction number in a multi-city compartmental epidemic model (J. Arino, P. van den Driessche), In Lecture Notes in Control and Information Science, volume 294, 2003.
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[6] | A multi-city epidemic model (J. Arino, P. van den Driessche), In Mathematical Population Studies, volume 10, 2003.
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[5] | Global results for an epidemic model with vaccination that exhibits backward bifurcation (J. Arino, C.C. McCluskey, P. van den Driessche), In SIAM J. Appl. Math., volume 64, 2003.
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[4] | A discrete, size-structured model of phytoplankton growth in the chemostat. Introduction of inhomogeneous cell division size (J. Arino, J.-L. Gouzé, A. Sciandra), In Journal of Mathematical Biology, volume 45, 2002.
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[3] | A size-structured, non conservative ODE model of the chemostat (J. Arino, J.-L. Gouzé), In Mathematical Biosciences, volume 177&178, 2002.
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[2] | Modélisation structurée de la croissance du phytoplancton en chemostat (J. Arino), PhD thesis, Université Grenoble 1, 2001.
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[1] | A discrete, size-structured model of phytoplankton growth in the chemostat. Introduction of non constant cell division (J. Arino, J.-L. Gouzé, A. Sciandra), Technical report, INRIA, 2000.
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