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Resonant Population Cycles in Temporally Fluctuating Habitats

机译:暂时波动的生境中的共振种群周期

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Experiments with the flour beetle Tribolium have revealed that animal numbers were larger in cultures grown in a periodically fluctuating volume of medium than in cultures grown in a constant volume of the same average size. In this paper we derive and analyze a discrete stage-structured mathematical model that explains this phenomenon as a kind of resonance effect. Habitat volume is incorporated into the model by the assumption that all rates of cannibalism (larvae on eggs, adults on eggs and pupae) are inversely proportional to the volume of the culture medium. We tested this modeling assumption by conducting and statistically analyzing laboratory experiments. For parameter estimates derived from experimental data, our model indeed predicts, under certain circumstances, a larger (cycle-average) total population abundance when the habitat volume periodically fluctuates than when the habitat volume is held constant at the average volume. The model also correctly predicts certain phase relationships and transient dynamics observed in data. The analyses involve a thorough integration of mathematics, statistical methods, biological details and experimental data.
机译:用面粉甲虫Tribolium进行的实验表明,在周期性波动的培养基中培养的动物,其动物数量要多于在相同平均大小的恒定体积中培养的动物。在本文中,我们导出并分析了离散的阶段结构数学模型,该模型将这种现象解释为一种共振效应。假设所有食人率(卵上的幼虫,卵上的成虫和p)的食人率均与培养基的体积成反比,则将其纳入模型。我们通过进行和统计分析实验室实验来测试此建模假设。对于从实验数据得出的参数估计值,我们的模型确实预测出,在某些情况下,栖息地数量周期性波动时的总种群数量(周期平均)要大于将栖息地数量保持恒定的平均值。该模型还可以正确预测数据中观察到的某些相位关系和瞬态动力学。分析涉及数学,统计方法,生物学细节和实验数据的全面整合。

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