On the definition and the computation of the basic reproduction ratio R 0 in models for infectious diseases in heterogeneous populations O Diekmann, JAP Heesterbeek, JAJ Metz Journal of mathematical biology 28, 365-382, 1990 | 5867 | 1990 |
Mathematical epidemiology of infectious diseases: model building, analysis and interpretation O Diekmann, JAP Heesterbeek John Wiley & Sons, 2000 | 4299 | 2000 |
The construction of next-generation matrices for compartmental epidemic models O Diekmann, JAP Heesterbeek, MG Roberts Journal of the royal society interface 7 (47), 873-885, 2010 | 2138 | 2010 |
Delay equations: functional-, complex-, and nonlinear analysis O Diekmann, SA Van Gils, SMV Lunel, HO Walther Springer Science & Business Media, 2012 | 1907 | 2012 |
The dynamics of physiologically structured populations JA Metz, O Diekmann Springer, 2014 | 1725 | 2014 |
Mathematical tools for understanding infectious disease dynamics O Diekmann, H Heesterbeek, T Britton Princeton University Press, 2013 | 996 | 2013 |
Thresholds and travelling waves for the geographical spread of infection O Diekmann Journal of Mathematical Biology 6 (2), 109-130, 1978 | 579 | 1978 |
On evolutionarily stable life histories, optimization and the need to be specific about density dependence SD Mylius, O Diekmann Oikos, 218-224, 1995 | 489 | 1995 |
How does transmission of infection depend on population size MCM De Jong, O Diekmann, H Heesterbeek Epidemic models: their structure and relation to data 84, 1995 | 439 | 1995 |
A beginner's guide to adaptive dynamics O Diekmann Banach Center Publications 63, 47-86, 2004 | 385 | 2004 |
Controlling methicillin-resistant Staphylococcus aureus: quantifying the effects of interventions and rapid diagnostic testing MCJ Bootsma, O Diekmann, MJM Bonten Proceedings of the National Academy of Sciences 103 (14), 5620-5625, 2006 | 349 | 2006 |
The velocity of spatial population expansion F Van den Bosch, JAJ Metz, O Diekmann Journal of Mathematical Biology 28, 529-565, 1990 | 323 | 1990 |
Run for your life. A note on the asymptotic speed of propagation of an epidemic O Diekmann Journal of Differential Equations 33 (1), 58-73, 1979 | 321 | 1979 |
The dynamics of adaptation: an illuminating example and a Hamilton–Jacobi approach O Diekmann, PE Jabin, S Mischler, B Perthame Theoretical population biology 67 (4), 257-271, 2005 | 283 | 2005 |
On the stability of the cell size distribution O Diekmann, HJAM Heijmans, HR Thieme Journal of Mathematical Biology 19, 227-248, 1984 | 278 | 1984 |
On the formulation and analysis of general deterministic structured population models II. Nonlinear theory: II. Nonlinear theory O Diekmann, M Gyllenberg, H Huang, M Kirkilionis, JAJ Metz, HR Thieme Journal of mathematical biology 43, 157-189, 2001 | 247 | 2001 |
Can a species keep pace with a shifting climate? H Berestycki, O Diekmann, CJ Nagelkerke, PA Zegeling Bulletin of mathematical biology 71, 399-429, 2009 | 245 | 2009 |
When does evolution optimise? JAJ Metz, SD Mylius, O Diekmann IR-08-013, 2008 | 223 | 2008 |
On the formulation and analysis of general deterministic structured population models I. Linear Theory: I. Linear Theory O Diekmann, M Gyllenberg, JAJ Metz, HR Thieme Journal of Mathematical Biology 36, 349-388, 1998 | 215 | 1998 |
Studying the dynamics of structured population models: a versatile technique and its application to Daphnia AM De Roos, O Diekmann, JAJ Metz The American Naturalist 139 (1), 123-147, 1992 | 214 | 1992 |