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首页> 外文期刊>Mathematical modelling of natural phenomena >Biological Invasions in Heterogeneous Environments: The Coupled Map Lattice Framework
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Biological Invasions in Heterogeneous Environments: The Coupled Map Lattice Framework

机译:异构环境中的生物入侵:耦合的图格框架

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Spatial heterogeneity greatly affects the population spread. Although the theory for biological invasion in heterogeneous spatially continuous habitats have received considerable attention, spatially discrete models have remained outside of the mainstream. In this study, we formulate and analyze a Coupled Map Lattice model for a single species population invading a two dimensional heterogeneous environment. The population growth rate and dispersal coefficient depend on the site quality. We first find an analytical criterium for the spread success in terms of the population growth rate and the dispersal coefficient in unfavorable regions. We then implemented our model for two distinct spatial configurations: periodical stripe-like and randomized environments. The spread rate is computed numerically and it shows a decrease with an increase of the fraction of the hostile sites. However, we observed that invasion success does not depend on the fraction of favorable sites but crucially depends on the connectivity of favorable regions.
机译:空间异质性极大地影响了人口扩散。尽管在异质空间连续栖息地中进行生物入侵的理论已受到相当多的关注,但空间离散模型仍处于主流之外。在这项研究中,我们为入侵二维异质环境的单个物种制定并分析了耦合图格子模型。人口增长率和扩散系数取决于场地质量。首先,我们从人口增长率和不利地区的扩散系数方面找到了成功传播的分析标准。然后,我们针对两种不同的空间配置实施了模型:周期性的条纹状环境和随机环境。扩散速率是通过数值计算的,并且显示出随着敌对部位比例的增加而降低。但是,我们观察到入侵成功与否并不取决于有利位置的比例,而关键取决于有利区域的连通性。

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