Entropy · 2014 · 13 citations · 15 references
Natural SciencesComplex Biological SystemEvolutionary BiologyEvolutionary DynamicPopulation DynamicNetwork DynamicBiostatisticsComplex Dynamic SystemAssociated DynamicsBiological ModelSame Network DiagramSystems BiologyStable OscillationsCoarse DynamicsMultiscale Modeling
Networks have become a popular way to concisely represent complex nonlinear systems where the interactions and parameters are imprecisely known. One challenge is how best to describe the associated dynamics, which can exhibit complicated behavior sensitive to small changes in parameters. A recently developed computational approach that we refer to as a database for dynamics provides a robust and mathematically rigorous description of global dynamics over large ranges of parameter space. To demonstrate the potential of this approach we consider two classical age-structured population models that share the same network diagram and have a similar nonlinear overcompensatory term, but nevertheless yield different patterns of qualitative behavior as a function of parameters. Using a generalization of these models we relate the different structure of the dynamics that are observed in the context of biologically relevant questions such as stable oscillations in populations, bistability, and permanence.
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W. E. Ricker · Journal of the Fisheries Research Board of Canada · 1954 · 3.1K citations
ON THE USE OF MATRICES IN CERTAIN POPULATION MATHEMATICS
Paula Leslie · Biometrika · 1945 · 2.7K citations
Chaotic Dynamics in an Insect Population
R. F. Costantino, Robert A. Desharnais, J. M. Cushing et al. · Science · 1997 · 436 citations
Biology, Pattern Formation, Deterministic Dynamical System +12