Title
Lattice-based versus lattice-free individual-based models: impact on coexistence in competitive communities
Abstract
Individual-based modelling is an increasingly popular framework for modelling biological systems. Many of these models represent space as a lattice, thus imposing unrealistic limitations on the movement of the modelled individuals. We adapt an existing model of three competing species by using a lattice-free approach, thereby improving the realism of the spatial dynamics. We retrieve the same qualitative dynamics as the lattice-based approach. However, by facilitating a higher spatial heterogeneity and allowing for small spatial refuges to form and persist, the maintenance of coexistence is promoted, in correspondence with experimental results. We also implement a directed movement mechanism allowing individuals of different species to pursue or flee from each other. Simulations show that the effects on coexistence depend on the level of aggregation in the community: a high level of aggregation is advantageous for maintaining coexistence, whereas a low level of aggregation is disadvantageous. This agrees with experimental results, where pursuing and escaping behaviour has been observed to be advantageous only in certain circumstances.
Year
DOI
Venue
2019
10.1007/s11047-019-09767-1
Natural Computing
Keywords
DocType
Volume
Cyclic competition, Coexistence, Individual-based model, Directed movement
Journal
18
Issue
ISSN
Citations 
4
1572-9796
0
PageRank 
References 
Authors
0.34
0
5
Name
Order
Citations
PageRank
Aisling J. Daly101.01
Ward Quaghebeur200.34
Tim M. A. Depraetere300.34
Jan M. Baetens413.39
Bernard De Baets52994300.39