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Journal of Mathematical Biology|September 30, 2019
On models of physiologically structured populations and their reduction to ordinary differential equationsOdo Diekmann, Mats Gyllenberg, Johan A J Metz
Journal of Mathematical Biology|December 23, 2019
Finite dimensional state representation of physiologically structured populationsOdo Diekmann, Mats Gyllenberg, Johan A J Metz
Journal of Mathematical Biology|September 5, 2020
Correction to: Finite dimensional state representation of physiologically structured populationsOdo Diekmann, Mats Gyllenberg, Johan A J Metz
Acta Applicandae Mathematicae|November 1, 2021
One Dimensional Reduction of a Renewal Equation for a Measure-Valued Function of Time Describing Population DynamicsEugenia Franco, Mats Gyllenberg, Odo Diekmann
Theoretical Population Biology|October 26, 2005
Competitive exclusion and limiting similarity: a unified theoryGéza Meszéna, Mats Gyllenberg, Liz Pásztor, et al.
Physical Review Letters|October 4, 2005
Link between population dynamics and dynamics of Darwinian evolutionGéza Meszéna, Mats Gyllenberg, Frans J Jacobs, et al.
Journal of Mathematical Biology|September 23, 2009
Daphnia revisited: local stability and bifurcation theory for physiologically structured population models explained by way of an exampleOdo Diekmann, Mats Gyllenberg, J A J Metz, et al.
Journal of Mathematical Biology|April 29, 2019
The winner takes it all: how semelparous insects can become periodicalOdo Diekmann, Robert Planqué
Journal of Mathematical Biology|October 10, 2007
Superinfections can induce evolutionarily stable coexistence of pathogensBarbara Boldin, Odo Diekmann
Journal of Mathematical Biology|January 13, 2023
A systematic procedure for incorporating separable static heterogeneity into compartmental epidemic modelsOdo Diekmann, Hisashi Inaba
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