Abstract By noting the fact that the intrinsic growth rate are not positive everywhere, we revisit Lotka-Volterra competitive system with the effect of toxic substances and feedback controls. The corresponding results about permanence and extinction for the species given in (Chen and Chen in Int. J. Biomath. 8(1):1550012, 2015) are extended. Furthermore, a very important fact is found in our results, that is, the feedback controls and toxic substances have no effect on the permanence and extinction of species. Moreover, we also derive sufficient conditions for the global stability of positive solutions. Finally, some numerical simulations show the feasibility of our main results
AbstractWe generalise and unify some recent results about extinction in nth-order nonautonomous comp...
AbstractA nonautonomous N-species discrete Lotka–Volterra competitive system of difference equations...
This paper is concerned with a nonautonomous discrete Lotka-Volterra competitive system with time de...
We firstly propose a nonautonomous impulsive Lotka-Volterra competitive system with the effect of to...
AbstractIn this paper, we consider a periodic competitive stage-structured Lotka–Volterra model with...
Abstract. In this paper, we investigate the effects of impulsive toxicant input with constant rate o...
AbstractIn this paper, a two-species competitive model with stage structure is presented and studied...
We investigate a nonautonomous two-species competitive system with stage structure and double time d...
The global dynamics of discrete competitive model of Lotka-Volterra type with two species is conside...
We propose a nonlinear discrete system of two species with the effect of toxic substances. By constr...
AbstractIn this paper, we first consider a general N-species nonautonomous Lotka–Volterra system. We...
We generalise and unify some recent results about extinction in nth-order nonautonomous competitive ...
In this paper we have considered a two-species competitive system which is also affected by toxic su...
A nonautonomous discrete two-species competition system with infinite delays and single feedback con...
AbstractThe main purpose of this article is considering whether or not the feedback controls have an...
AbstractWe generalise and unify some recent results about extinction in nth-order nonautonomous comp...
AbstractA nonautonomous N-species discrete Lotka–Volterra competitive system of difference equations...
This paper is concerned with a nonautonomous discrete Lotka-Volterra competitive system with time de...
We firstly propose a nonautonomous impulsive Lotka-Volterra competitive system with the effect of to...
AbstractIn this paper, we consider a periodic competitive stage-structured Lotka–Volterra model with...
Abstract. In this paper, we investigate the effects of impulsive toxicant input with constant rate o...
AbstractIn this paper, a two-species competitive model with stage structure is presented and studied...
We investigate a nonautonomous two-species competitive system with stage structure and double time d...
The global dynamics of discrete competitive model of Lotka-Volterra type with two species is conside...
We propose a nonlinear discrete system of two species with the effect of toxic substances. By constr...
AbstractIn this paper, we first consider a general N-species nonautonomous Lotka–Volterra system. We...
We generalise and unify some recent results about extinction in nth-order nonautonomous competitive ...
In this paper we have considered a two-species competitive system which is also affected by toxic su...
A nonautonomous discrete two-species competition system with infinite delays and single feedback con...
AbstractThe main purpose of this article is considering whether or not the feedback controls have an...
AbstractWe generalise and unify some recent results about extinction in nth-order nonautonomous comp...
AbstractA nonautonomous N-species discrete Lotka–Volterra competitive system of difference equations...
This paper is concerned with a nonautonomous discrete Lotka-Volterra competitive system with time de...