Population synchrony in small-world networks
- 5 December 2007
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 275 (1633) , 435-442
- https://doi.org/10.1098/rspb.2007.1546
Abstract
Network topography ranges from regular graphs (linkage between nearest neighbours only) via small-world graphs (some random connections between nodes) to completely random graphs. Small-world linkage is seen as a revolutionary architecture for a wide range of social, physical and biological networks, and has been shown to increase synchrony between oscillating subunits. We study small-world topographies in a novel context: dispersal linkage between spatially structured populations across a range of population models. Regular dispersal between population patches interacting with density-dependent renewal provides one ecological explanation for the large-scale synchrony seen in the temporal fluctuations of many species, for example, lynx populations in North America, voles in Fennoscandia and grouse in the UK. Introducing a small-world dispersal kernel leads to a clear reduction in synchrony with both increasing dispersal rate and small-world dispersal probability across a variety of biological scenarios. Synchrony is also reduced when populations are affected by globally correlated noise. We discuss ecological implications of small-world dispersal in the frame of spatial synchrony in population fluctuations.Keywords
This publication has 43 references indexed in Scilit:
- Synchronization of Coupled Oscillators on Newman–Watts Small-World NetworksChinese Physics Letters, 2006
- Stability via Asynchrony in Drosophila Metapopulations with Low Migration RatesScience, 2006
- Patterns of co-variability among California Current chinook salmon, coho salmon, Dungeness crab, and physical oceanographic conditionsProgress in Oceanography, 2002
- Travelling waves and spatial hierarchies in measles epidemicsNature, 2001
- The impact of stochasticity on the behaviour of nonlinear population models: synchrony and the Moran effectOikos, 2001
- Searching for mechanisms of synchrony in spatially structured gamebird populationsJournal of Animal Ecology, 2000
- ‘Small worlds’ and the evolution of virulence: infection occurs locally and at a distanceProceedings Of The Royal Society B-Biological Sciences, 1999
- Complex dynamics and phase synchronization in spatially extended ecological systemsNature, 1999
- Dynamic complexity in predator-prey models framed in difference equationsNature, 1975
- Periodic Fluctuations in the Numbers of Animals: Their Causes and EffectsJournal of Experimental Biology, 1924