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Bibliography

Major publications by the team in recent years
  • 1P. Adda, J.-L. Dimi, A. Iggidr, J.-C. Kamgang, G. Sallet, J.-J. Tewa.

    General models of host-parasite systems. Global analysis., in: Discrete Contin. Dyn. Syst., Ser. B, 2007, vol. 8, no 1, p. 1-17.
  • 2P. Auger, E. Kouokam, G. Sallet, M. Tchuente, B. Tsanou.

    The Ross-Macdonald model in a patchy environment, in: Mathematical Biosciences, 2008, vol. 216, no 2, p. 123–131.
  • 3A. A. Fall, A. Iggidr, G. Sallet, J.-J. Tewa.

    Epidemiological models and Lyapunov techniques, in: Mathematical Modelling of Natural Phenomena, 2007, vol. 2, no 1, p. 55-72.
  • 4A. Iggidr, J.-C. Kamgang, G. Sallet, J.-J. Tewa.

    Global analysis of new malaria intrahost models with a competitive exclusion principle., in: SIAM J. Appl. Math., 2006, vol. 67, no 1, p. 260-278.
  • 5A. Iggidr, J. Mbang, G. Sallet.

    Stability analysis of within-host parasite models with delays., in: Math. Biosci., 2007, vol. 209, no 1, p. 51-75.
  • 6A. Iggidr, J. Mbang, G. Sallet, J.-J. Tewa.

    Multi-compartment models, in: Discrete Contin. Dyn. Syst., 2007, no Dynamical Systems and Differential Equations. Proceedings of the 6th AIMS International Conference, suppl., p. 506–519.
  • 7D. Ngom, A. Iggidr, A. Guiro, A. Ouahbi.

    An Observer for a Nonlinear Age-Structured Model of a Harvested Fish Population, in: Mathematical Biosciences and Engineering, 2008, vol. 5, no 2, p. 337 –354.
Publications of the year

Articles in International Peer-Reviewed Journal

  • 8P. Auger, A. Moussaoui, G. Sallet.

    Basic Reproduction Ratio for a Fishery Model in a Patchy Environment., in: Acta Biotheorica, 2012, to appear.

    http://hal.inria.fr/hal-00656184/en
  • 9A. Guiro, A. Iggidr, D. Ngom.

    On the Stock Estimation for a Harvested Fish Population, in: Bulletin of Mathematical Biology, June 2011, vol. Online First. [ DOI : 10.1007/s11538-011-9667-z ]

    http://hal.inria.fr/inria-00523963/en
  • 10A. Iggidr, G. Sallet, B. Tsanou.

    Global stability analysis of a metapopulation SIS epidemic model, in: Mathematical Population Studies, 2012, to appear.

    http://hal.inria.fr/hal-00648041/en
  • 11G. Sallet, G. Riveau, L. Tendeng.

    A Transmission Model of Bilharzia A Mathematical Analysis of an Heterogeneous Model, in: ARIMA, 2011, vol. 14, p. 1-13.

    http://hal.inria.fr/hal-00656181/en
References in notes
  • 12J. Arino, P. van den Driessche.

    A multi-city epidemic model., in: Math. Popul. Stud., 2003, vol. 10, no 3, p. 175-193.
  • 13H. Bogreau, F. Renaud, H. Bouchiba, P. Durand, S.-B. Assi, M.-C. Henry, E. Garnotel, B. Pradines, T. Fusai, B. Wade, E. Adehossi, P. Parola, M. A. Kamil, O. Puijalon, C. Rogier.

    Genetic diversity and structure of African Plasmodium falciparum populations in urban and rural areas., in: Am J Trop Med Hyg, 2006, vol. 74, no 6, p. 953–959.
  • 14J. A. Jacquez, C. P. Simon.

    Qualitative theory of compartmental systems with lags, in: Math. Biosci., 2002, vol. 180, p. 329-362.
  • 15N. MacDonald.

    Time lags in biological models, Lecture Notes in Biomath., Springer-Verlag, 1978, no 27.
  • 16D. Siljak.

    Large-scale dynamic systems. Stability and structure, system science and engineering, Elsevier North-Holland, 1978.
  • 17J. X. Velasco-Hernández, J. A. García, D. E. Kirschner.

    Remarks on modeling host-viral dynamics and treatment., in: Mathematical approaches for emerging and reemerging infectious diseases: An introduction. Proceedings of a tutorial Introduction to epidemiology and immunology, IMA Vol. Math. Appl., Springer, 2002, vol. 125, p. 287-308.