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一个使用延迟微分方程的鳄鱼种群数学模型。

A mathematical model of a crocodilian population using delay-differential equations.

作者信息

Gallegos Angela, Plummer Tenecia, Uminsky David, Vega Cinthia, Wickman Clare, Zawoiski Michael

机构信息

Department of Mathematics, Occidental College, Los Angeles, CA, USA.

出版信息

J Math Biol. 2008 Nov;57(5):737-54. doi: 10.1007/s00285-008-0187-x. Epub 2008 Jun 3.

Abstract

The crocodilia have multiple interesting characteristics that affect their population dynamics. They are among several reptile species which exhibit temperature-dependent sex determination (TSD) in which the temperature of egg incubation determines the sex of the hatchlings. Their life parameters, specifically birth and death rates, exhibit strong age-dependence. We develop delay-differential equation (DDE) models describing the evolution of a crocodilian population. In using the delay formulation, we are able to account for both the TSD and the age-dependence of the life parameters while maintaining some analytical tractability. In our single-delay model we also find an equilibrium point and prove its local asymptotic stability. We numerically solve the different models and investigate the effects of multiple delays on the age structure of the population as well as the sex ratio of the population. For all models we obtain very strong agreement with the age structure of crocodilian population data as reported in Smith and Webb (Aust. Wild. Res. 12, 541-554, 1985). We also obtain reasonable values for the sex ratio of the simulated population.

摘要

鳄目动物具有多个影响其种群动态的有趣特征。它们是几种表现出温度依赖型性别决定(TSD)的爬行动物物种之一,在这种性别决定方式中,卵孵化的温度决定了幼体的性别。它们的生命参数,特别是出生率和死亡率,表现出强烈的年龄依赖性。我们开发了延迟微分方程(DDE)模型来描述鳄目动物种群的演变。在使用延迟公式时,我们能够在保持一定分析易处理性的同时,兼顾TSD和生命参数的年龄依赖性。在我们的单延迟模型中,我们还找到了一个平衡点并证明了其局部渐近稳定性。我们对不同模型进行数值求解,并研究多个延迟对种群年龄结构以及种群性别比的影响。对于所有模型,我们都得到了与史密斯和韦伯(《澳大利亚野生动物研究》12卷,541 - 554页,1985年)所报道的鳄目动物种群年龄结构非常吻合的结果。我们还得到了模拟种群性别比的合理值。

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