Modelling evolution of virulence in populations with a distributed parasite load
Author:
Funder
University of Leicester
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Agricultural and Biological Sciences (miscellaneous),Modelling and Simulation
Link
http://link.springer.com/content/pdf/10.1007/s00285-019-01351-6.pdf
Reference56 articles.
1. Abia LM, Angulo O, Lopez-Marcos JC (2005) Age-structured population dynamics models and their numerical solutions. Ecol Model 188:112–136
2. Abrams PA, Matsuda H, Harada Y (1993) Evolutionarily unstable fitness maxima and stable fitness minima of continuous traits. Evol Ecol 7(5):465–487
3. Adler FR, Mosquera Losada J (2002) Super-and coinfection: filling the range. In: Dieckman U, Metz JAJ, Sabelis MW, Sigmund K (eds) Adaptive dynamics of infectious diseases: in pursuit of virulence management. Cambridge University Press, Cambridge, pp 138–149
4. Alizon S, Hurford A, Mideo N, Van Baalen M (2009) Virulence evolution and the trade-off hypothesis: history, current state of affairs and the future. J Evol Biol 22(2):245–259
5. Allen LJ (1994) Some discrete-time SI, SIR, and SIS epidemic models. Math Biosci 124(1):83–105
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