We present a study on the emergence of spatial variability, or patchiness, in biophysical simulations of plankton ecosystems. Using a standard approach to modelling such ecosystems, we represent a distribution of plankton as a lattice of non-identical interacting oscillatory populations. Spatial variation is imposed in population parameters, such as maximum growth rate, leading to a spread in the natural (uncoupled) population properties. Using the methods of synchronisation theory, the emergent spatial structure of the coupled system is investigated as a function of the strength of interaction between populations. Surprisingly, a range of coupling strength is found to induce a tenfold increase in the spread in frequency of oscillation of p...
The observed filamental nature of plankton populations suggests that stirring plays an important rol...
Dispersal in heterogeneous ecosystems, such as coastal metacommunities, is a major driver of diversi...
The history of modelling plankton dynamics is already quite long and has been initiated by fishery s...
We present a study on the emergence of spatial variability, or patchiness, in biophysical simulation...
We present a study on the emergence of spatial variability, or patchiness, in biophysical simulation...
This study applies a metapopulation dynamics approach to modelling a distribution of plankton by rep...
We present a study on the emergence of spatial structure in plankton dynamics under the influence of...
Modelling studies of upper ocean phenomena, such as that of the spatial and temporal patchiness in p...
The apparent synchronisation of spatially discrete populations is a well documented phenomenon. Howe...
We consider and contrast two mechanisms for the production of spatial pattern in an excitable medium...
Spatiotemporal and interspecies irregularities in planktonic populations have been widely observed. ...
Plankton patchiness in homogeneous physical environments is studied in this paper assuming that all ...
Dynamics of aquatic biological communities in patchy environments is a topic of substantial interest...
Phytoplankton often encounter turbulence in their habitat. As most toxic phytoplankton species are m...
We investigate systematically the effect of small-scale biological and physical processes on the gen...
The observed filamental nature of plankton populations suggests that stirring plays an important rol...
Dispersal in heterogeneous ecosystems, such as coastal metacommunities, is a major driver of diversi...
The history of modelling plankton dynamics is already quite long and has been initiated by fishery s...
We present a study on the emergence of spatial variability, or patchiness, in biophysical simulation...
We present a study on the emergence of spatial variability, or patchiness, in biophysical simulation...
This study applies a metapopulation dynamics approach to modelling a distribution of plankton by rep...
We present a study on the emergence of spatial structure in plankton dynamics under the influence of...
Modelling studies of upper ocean phenomena, such as that of the spatial and temporal patchiness in p...
The apparent synchronisation of spatially discrete populations is a well documented phenomenon. Howe...
We consider and contrast two mechanisms for the production of spatial pattern in an excitable medium...
Spatiotemporal and interspecies irregularities in planktonic populations have been widely observed. ...
Plankton patchiness in homogeneous physical environments is studied in this paper assuming that all ...
Dynamics of aquatic biological communities in patchy environments is a topic of substantial interest...
Phytoplankton often encounter turbulence in their habitat. As most toxic phytoplankton species are m...
We investigate systematically the effect of small-scale biological and physical processes on the gen...
The observed filamental nature of plankton populations suggests that stirring plays an important rol...
Dispersal in heterogeneous ecosystems, such as coastal metacommunities, is a major driver of diversi...
The history of modelling plankton dynamics is already quite long and has been initiated by fishery s...