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Crossing the Hopf Bifurcation in a Live Predator-Prey System

机译:在实时捕食者—被捕食者系统中穿越霍普夫分歧

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Population biologists have long been interested in the oscillations in population size displayed by many organisms in the field and laboratory. A wide range of deterministic mathematical models predict that these fluctuations can be generated internally by nonlinear interactions among species and, if correct, would provide important insights for understanding and predicting the dynamics of interacting populations. We studied the dynamical behavior of a two-species aquatic laboratory community encompassing the interactions between a demographically structured herbivore population, a primary producer, and a mineral resource, yet still amenable to description and parameterization using a mathematical model. The qualitative dynamical behavior of our experimental system, that is, cycles, equilibria, and extinction, is highly predictable by a simple nonlinear model.
机译:长期以来,种群生物学家一直对田间和实验室中许多生物体显示的种群规模波动感兴趣。各种各样的确定性数学模型预测,这些波动可以通过物种之间的非线性相互作用在内部产生,如果正确,将为理解和预测相互作用种群的动态提供重要见解。我们研究了两个物种的水生实验室群落的动力学行为,包括种群结构上的草食动物种群,主要生产者和矿产资源之间的相互作用,但仍然可以使用数学模型进行描述和参数化。一个简单的非线性模型可以高度预测我们实验系统的定性动力学行为,即循环,平衡和消光。

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