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眼见不一定为实:入侵物种各种空间分布的比较研究

When seeing is not believing: Comparative study of various spatial distributions of invasive species.

作者信息

Petrovskaya Natalia, Zhang Wenxin

机构信息

School of Mathematics, University of Birmingham, Birmingham, UK.

School of Mathematics, University of Birmingham, Birmingham, UK.

出版信息

J Theor Biol. 2020 Mar 7;488:110141. doi: 10.1016/j.jtbi.2019.110141. Epub 2019 Dec 24.

Abstract

We address the problem of pattern recognition and comparison when spatial patterns of biological invasions are studied. A model of biological invasion is employed to simulate spatio-temporal dynamics of invasive species and generate a variety of spatial patterns including so called 'no front' patchy spatial distributions. We introduce several topological indices to understand whether various spatial distributions of invasive species can be compared to each other based on information about their topology. We also investigate how topological indices used to make conclusions about the spatial pattern are related to controlling parameters in the underlying process of biological invasion. Our analysis reveals that a small increment in the model parameters results in a small increment in topological indices when the topology of continuous front spatial pattern with no patches behind the front is considered. Meanwhile, 'no front' patchy spatial distributions present a different case where a small change in the model parameters results in random fluctuations of topological indices. The 'random' behaviour of patchy patterns is further studied to understand whether a patchy spatial structure can transform itself into a continuous front spatial distribution over time. In the paper it will be argued that apart from the topological quantities used to classify spatial distributions, the transition time required to establish topological properties of the spatial pattern must be taken into account in pattern recognition and analysis. Furthermore, it will be demonstrated that for some parameter values it is impossible to conclude about the topological type of spatial pattern, i.e. continuous front spatial distributions cannot be distinguished from 'no front' patchy distributions of invasive species, no matter what their topological indices are.

摘要

在研究生物入侵的空间模式时,我们探讨了模式识别与比较的问题。采用生物入侵模型来模拟入侵物种的时空动态,并生成各种空间模式,包括所谓的“无前沿”斑块状空间分布。我们引入了几个拓扑指数,以了解基于入侵物种的拓扑信息,其各种空间分布是否能够相互比较。我们还研究了用于对空间模式得出结论的拓扑指数如何与生物入侵潜在过程中的控制参数相关。我们的分析表明,当考虑前沿无斑块的连续前沿空间模式的拓扑时,模型参数的微小增量会导致拓扑指数的微小增量。同时,“无前沿”斑块状空间分布则呈现出不同的情况,模型参数的微小变化会导致拓扑指数的随机波动。我们进一步研究了斑块状模式的“随机”行为,以了解斑块状空间结构是否会随着时间推移转变为连续前沿空间分布。本文将论证,在模式识别与分析中,除了用于对空间分布进行分类的拓扑量之外,还必须考虑建立空间模式拓扑性质所需的过渡时间。此外,还将证明,对于某些参数值,无法对空间模式的拓扑类型得出结论,即无论入侵物种的拓扑指数如何,都无法区分连续前沿空间分布与“无前沿”斑块状分布。

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