AbstractA three-species predator-prey model with Beddington-DeAngelis functional response was established with a food chain including two species of zooplanktons and one of phytoplankton. With nonlinear dynamical theory, the influences of competitions between two zooplanktons and semi-saturation constant on the stability of the system were investigated. Results showed that, in a certain range, increasing competition and saturation constant factor ccould stabilize the ecosystem. We also found that the system only appears Hopf and transcritical bifurcation in a certain range of parameters. Furthermore, the ecological significance of the two bifurcations was presented
AbstractConsidering the impact of harvesting on the coexistence and competitive exclusion of competi...
The effect of predator switching on the stability of two- and three-trophic level systems is analyze...
A mathematical model is constructed to study the effect of predation on two competing species in whi...
In recent decades, many researchers have investigated the ecological models with three and more spec...
Based on a qualitative analysis of ODE systems, the dynamic properties of alternative predator-prey ...
Bifurcation analysis is presented for the dynamics of a nutrient-two-prey-predator bi-trophic food w...
Predator interference refers to the competition effect on individuals of the same species through pr...
The ecosystem is the complex system consisting of various biotic and abiotic factors and the factors...
Abstract The structure and dynamics of food webs are largely dependent upon interac-tions among cons...
In this paper, we study an ecological model of a three-space food chain consists of two logically gr...
We investigate biological mechanisms that generate oscillations and chaos in multispecies competitio...
In this paper controlling chaotic dynamics in a three species food chain model with modified Hollin...
The objective of this paper is to study the dynamical behavior of an aquatic food chain system. A ma...
The complex dynamics of a two-trophic chain are investigated. The chain is described by a general pr...
This article considers the impact of competitive response to interfering time and anti-predator beha...
AbstractConsidering the impact of harvesting on the coexistence and competitive exclusion of competi...
The effect of predator switching on the stability of two- and three-trophic level systems is analyze...
A mathematical model is constructed to study the effect of predation on two competing species in whi...
In recent decades, many researchers have investigated the ecological models with three and more spec...
Based on a qualitative analysis of ODE systems, the dynamic properties of alternative predator-prey ...
Bifurcation analysis is presented for the dynamics of a nutrient-two-prey-predator bi-trophic food w...
Predator interference refers to the competition effect on individuals of the same species through pr...
The ecosystem is the complex system consisting of various biotic and abiotic factors and the factors...
Abstract The structure and dynamics of food webs are largely dependent upon interac-tions among cons...
In this paper, we study an ecological model of a three-space food chain consists of two logically gr...
We investigate biological mechanisms that generate oscillations and chaos in multispecies competitio...
In this paper controlling chaotic dynamics in a three species food chain model with modified Hollin...
The objective of this paper is to study the dynamical behavior of an aquatic food chain system. A ma...
The complex dynamics of a two-trophic chain are investigated. The chain is described by a general pr...
This article considers the impact of competitive response to interfering time and anti-predator beha...
AbstractConsidering the impact of harvesting on the coexistence and competitive exclusion of competi...
The effect of predator switching on the stability of two- and three-trophic level systems is analyze...
A mathematical model is constructed to study the effect of predation on two competing species in whi...