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From the Lotka-Volterra model to a spatialised population-driven individual-based model

机译:从Lotka-Volterra模型到空间化人口驱动的基于个体的模型

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The modelling of predator prey dynamics is of great importance in ecology. Models based on differential equations aim to understand the interactions between populations of prey and predators at population scale, but they are unable to handle spatial and individual behaviour heterogeneities (individual scale). In this study, a population-driven individual-based model is proposed that has been developed from the archetypical Lotka-Volterra model. The population scale was retained for processes with slower dynamics, such as reproduction for both species and the natural death of predators. The individual scale was only used for the predation process, defining local rules for individual movements of prey and predators (related to a perception distance of predators and the presence of shelters for prey in the spatial environment) and to locate births and deaths. This model was compared with the Lotka-Volterra model. Simulations were able to exhibit the overall classic periodic evolution of population sizes with local variations. The effects of spatial heterogeneity were then explored through a range of prey refuge densities. The model was implemented on the Netlogo platform. This work illustrates how both individual and population scales may be linked through methodological choices in order to focus on the impacts of spatialisation and take into account the effects of spatial and individual heterogeneities. (C) 2014 Elsevier B.V. All rights reserved.
机译:捕食者动力学模型的建立在生态学中具有重要意义。基于微分方程的模型旨在了解种群规模上的猎物种群与捕食者之间的相互作用,但是它们无法处理空间和个体行为异质性(个体规模)。在这项研究中,提出了从原型Lotka-Volterra模型发展而来的基于人口驱动的基于个体的模型。保留了种群规模,以适应动力学较慢的过程,例如两种物种的繁殖以及天敌的自然死亡。个体规模仅用于捕食过程,为猎物和掠食者的个体移动定义本地规则(与捕食者的感知距离以及空间环境中存在的猎物庇护所有关),并确定出生和死亡的位置。将该模型与Lotka-Volterra模型进行了比较。模拟能够显示总体上具有局部变化的人口规模的经典周期性演变。然后通过一系列的避难所密度来探索空间异质性的影响。该模型是在Netlogo平台上实现的。这项工作说明了如何通过方法选择将个人和人口规模联系起来,以便集中于空间化的影响并考虑空间和个体异质性的影响。 (C)2014 Elsevier B.V.保留所有权利。

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