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Co-operation, competition and crowding: A discrete framework linking allee kinetics, nonlinear diffusion, shocks and sharp-fronted travelling waves.

机译:合作,竞争和拥挤:将Allee动力学,非线性扩散,冲击和锋利的行波连接起来的离散框架。

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摘要

Invasion processes are ubiquitous throughout cell biology and ecology. During invasion, individuals can become isolated from the bulk population and behave differently. We present a discrete, exclusion-based description of the birth, death and movement of individuals. The model distinguishes between individuals that are part of, or are isolated from, the bulk population by imposing different rates of birth, death and movement. This enables the simulation of various co-operative or competitive mechanisms, where there is either a positive or negative benefit associated with being part of the bulk population, respectively. The mean-field approximation of the discrete process gives rise to 22 different classes of partial differential equation, which can include Allee kinetics and nonlinear diffusion. Here we examine the ability of each class of partial differential equation to support travelling wave solutions and interpret the long time behaviour in terms of the individual-level parameters. For the first time we show that the strong Allee effect and nonlinear diffusion can result in shock-fronted travelling waves. We also demonstrate how differences in group and individual motility rates can influence the persistence of a population and provide conditions for the successful invasion of a population.
机译:入侵过程在细胞生物学和生态学中无处不在。在入侵期间,个人可能会与大多数人隔离开来,并且行为有所不同。我们提出了个人的出生,死亡和运动的离散的,基于排斥的描述。该模型通过施加不同的出生,死亡和移动率来区分属于大批人口的个体或与大批人口隔离的个体。这使得能够模拟各种合作或竞争机制,在这些机制中,分别成为大批人口的一部分会带来正面或负面的影响。离散过程的平均场逼近产生了22种不同的偏微分方程,其中包括Allee动力学和非线性扩散。在这里,我们检查了每类偏微分方程支持行波解的能力,并根据各个级别的参数解释了长时间的行为。第一次,我们显示出强大的Allee效应和非线性扩散会导致震荡行波。我们还证明了群体运动速度和个人运动速度的差异如何影响种群的持久性并为成功入侵种群提供条件。

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