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首页> 外文期刊>Ecological Complexity >Application of a computational model for complex fluvial ecosystems: The population dynamics of zebra mussel Dreissena polymorpha as a case study
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Application of a computational model for complex fluvial ecosystems: The population dynamics of zebra mussel Dreissena polymorpha as a case study

机译:计算模型在复杂河流生态系统中的应用:斑马贻贝Dreissena polymorpha种群动态作为案例研究

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摘要

The potential and adaptive flexibility of population dynamic P-systems (PDP) to study population dynamics suggests that they may be suitable for modelling complex fluvial ecosystems, characterized by a composition of dynamic habitats with many variables that interact simultaneously. Using as a model a reservoir occupied by the zebra mussel Dreissena polymorpha, we designed a computational model based on P systems to study the population dynamics of larvae, in order to evaluate management actions to control or eradicate this invasive species. The population dynamics of this species was simulated under different scenarios ranging from the absence of water flow change to a weekly variation with different flow rates, to the actual hydrodynamic situation of an intermediate flow rate. Our results show that PDP models can be very useful tools to model complex, partially desynchronized, processes that work in parallel. This allows the study of complex hydroecological processes such as the one presented, where reproductive cycles, temperature and water dynamics are involved in the desynchronization of the population dynamics both, within areas and among them. The results obtained may be useful in the management of other reservoirs with similar hydrodynamic situations in which the presence of this invasive species has been documented.
机译:种群动态P系统(PDP)研究种群动态的潜力和适应性灵活性表明,它们可能适合于模拟复杂的河流生态系统,其特征是动态生境的组成具有许多同时相互作用的变量。我们以斑马贻贝多形斑马鱼所占据的水库为模型,设计了一个基于P系统的计算模型来研究幼虫的种群动态,以评估控制措施来控制或根除这种入侵物种。该物种的种群动态是在不同的情况下模拟的,范围从无水流量变化到具有不同流量的每周变化,再到中间流量的实际水力状况。我们的结果表明,PDP模型对于建模并行工作的复杂,部分去同步的流程可能是非常有用的工具。这样就可以研究复杂的水生态过程,例如所介绍的过程,其中在区域内和区域内,繁殖周期,温度和水动力学与种群动态的失调有关。获得的结果可能在管理其他类似水动力情况下的水库中很有用,在这些水库中,已经记录了这种入侵物种的存在。

著录项

  • 来源
    《Ecological Complexity》 |2014年第12期|116-126|共11页
  • 作者单位

    Department of Mathematics, Faculty of Life Sciences and Engineering, University of Lleida, Av. Alcalde Rovira Roure, 191, Lleida 25198, Spain;

    Department of Animal Production (Division of Wildlife), Faculty of Life Sciences and Engineering, University of Lleida, Av. Alcalde Rovira Roure 191, Lleida 25198, Spain,Division of Conservation Biology, Institute of Ecology and Evolution. University of Bern. Baltzerstrasse 6, 3012, Bern, Switzerland;

    Research Group on Natural Computing, Department of Computer Science and Artificial Intelligence, University of Sevilla, Avda. Reina Mercedes s, Sevilla 41012, Spain;

    Direccion de Media Ambiente y Desarrollo Sostenible (Endesa) Ctra, Tarragona Km 89300, Magraners (Lleida) 25191, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biological invasions; Hydroecological processes; Invasive species; Management actions; Population dynamic P-systems; Zebra mussel;

    机译:生物入侵;水生态过程;入侵物种;管理措施;人口动态P系统;斑马贻贝;

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