Species often show irregular fluctuations in their population abundances. Traditionally, ecologists have thought that external processes (e.g., variability in weather conditions) are the main drivers of these ups and downs. However, recent theoretical work suggests that fluctuations in natural populations may also be driven by internal mechanisms (e.g., the interplay between species). In this thesis I use a combination of time series analysis and modeling to provide more insight into the question to which extent such internally generated chaos might drive the population dynamics of plankton communities under controlled as well as natural conditions. In short, this thesis demonstrates in theory and experiment that species in plankton communi...
The species composition of plankton, insect and annual plant communities may vary markedly from year...
The dynamics of plankton ecosystems have long been of interest to ecologists and mathematicians, wit...
The main aim of this project has been to investigate how turbulence and a patchy environment can aff...
Abstract. Chaotic behaviour can easily be generated from simple deterministic models of a number of ...
Species often show irregular fluctuations in their population abundances. Traditionally, ecologists ...
Mathematical models predict that species interactions such as competition and predation can generate...
Although mathematical models and laboratory experiments have shown that species interactions can gen...
Foodweb interactions, such as competition for limiting resources, are inherently non-linear. Consequ...
In a classical paper, Hutchinson (1961) argued that the large number of species in most plankton com...
The question of whether deterministic chaos occurs in natural populations has been discussed since t...
In a classical paper, Hutchinson (1961) argued that the large number of species in most plankton com...
In a classical paper, Hutchinson (1961) argued that the large number of species in most plankton com...
Dynamics of aquatic biological communities in patchy environments is a topic of substantial interest...
Hutchinson (1961) first posed the paradox of the plankton: Why do so many phytoplankton species coex...
In a classical paper, Hutchinson (1961) argued that the large number of species in most plankton com...
The species composition of plankton, insect and annual plant communities may vary markedly from year...
The dynamics of plankton ecosystems have long been of interest to ecologists and mathematicians, wit...
The main aim of this project has been to investigate how turbulence and a patchy environment can aff...
Abstract. Chaotic behaviour can easily be generated from simple deterministic models of a number of ...
Species often show irregular fluctuations in their population abundances. Traditionally, ecologists ...
Mathematical models predict that species interactions such as competition and predation can generate...
Although mathematical models and laboratory experiments have shown that species interactions can gen...
Foodweb interactions, such as competition for limiting resources, are inherently non-linear. Consequ...
In a classical paper, Hutchinson (1961) argued that the large number of species in most plankton com...
The question of whether deterministic chaos occurs in natural populations has been discussed since t...
In a classical paper, Hutchinson (1961) argued that the large number of species in most plankton com...
In a classical paper, Hutchinson (1961) argued that the large number of species in most plankton com...
Dynamics of aquatic biological communities in patchy environments is a topic of substantial interest...
Hutchinson (1961) first posed the paradox of the plankton: Why do so many phytoplankton species coex...
In a classical paper, Hutchinson (1961) argued that the large number of species in most plankton com...
The species composition of plankton, insect and annual plant communities may vary markedly from year...
The dynamics of plankton ecosystems have long been of interest to ecologists and mathematicians, wit...
The main aim of this project has been to investigate how turbulence and a patchy environment can aff...