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Global dynamics of a prey-predator model with Allee effect and additional food for the predators

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TLDR
A comprehensive analysis of the considered model that highlights the influence of Allee effect in prey and additional food for the predators on the system dynamics is presented.
Abstract
Provision of additional/alternative food to the predators for controlling predator-prey dynamics has been receiving considerable attention from theoretical as well as experimental biologists. This is due to environment friendly role played by the additional food in controlling and managing the interacting population. Theoretical investigations done on additional food provided predator-prey models reveal that provision of additional food to predators has a significant role to play in enhancement of commercially important predator species and also in reduction of prey population. The quality and quantity of the additional food provided to predators play vital role in shaping the dynamics of the interacting system. So far as our knowledge goes, all theoretical investigations carried out in this direction assume logistic growth for the prey species. In reality, the per capita growth rate of the prey population is often an increasing function at low prey density. Incorporation of this realistic growth rate induces Allee effect into the dynamics of the prey species. In this paper, we consider an additional food provided predator-prey model wherein the prey population is subjected to Allee effect. The model includes both strong and weak Allee effects. This article presents a comprehensive analysis of the considered model that highlights the influence of Allee effect in prey and additional food for the predators on the system dynamics.

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A Holling type commensal symbiosis model involving Allee effect

Runxin Wu, +2 more
TL;DR: In this paper, a two species commensal symbiosis model with Holling type functional response and Allee effect on the second species takes the form $$ \di\frac{dx}{dt}&=&x\Big(a_1-b_1x+\di''frac{c_1y^p}{1+y^ p}\Big),
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Allee effect increasing the final density of the species subject to the Allee effect in a Lotka–Volterra commensal symbiosis model

TL;DR: In this article, a Lotka-Volterra commensal symbiosis model with first species subject to the Allee effect is proposed and studied, and local and global stability property of the equilibria are investigated.
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Qualitative analysis of additional food provided predator–prey system with anti-predator behaviour in prey

TL;DR: Treating the anti-predator behaviour in prey as one of the control parameters, and characterising the additional food supplied to the predators, the strategies for achieving the successful biological control are derived.
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Spatially inhomogeneous bifurcating periodic solutions induced by nonlocal competition in a predator–prey system with additional food

TL;DR: In this article , nonlocal competition in prey is incorporated into a diffusive predator-prey model with additional food in predator and time delay, and the local stability of the coexisting equilibrium is studied by analyzing the eigenvalue spectrum.
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Dynamical study of a chaotic predator-prey model with an omnivore

TL;DR: In this paper, the dynamics and bifurcations of a three-species predator-prey model with an omnivore are further investigated, where the food web considered in this work comprises prey, predator and a third species, which consumes the carcasses of the predator along with predation of the original prey.
References
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Journal ArticleDOI

The components of prédation as revealed by a study of small-mammal prédation of the European pine sawfly.

TL;DR: Predation, one such process that affects numbers, forms the subject of the present paper and is based on the density-dependence concept of Smith ( 1955) and the competition theory of Nicholson (1933).
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The functional response of predators to prey density and its role in mimicry and population regulation.

TL;DR: These are my lecture notes from CS681: Design and Analysis of Algo rithms, a one-semester graduate course I taught at Cornell for three consec utive fall semesters from '88 to.
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Inverse density dependence and the Allee effect

TL;DR: The Allee effect describes a scenario in which populations at low numbers are affected by a positive relationship between population growth rate and density, which increases their likelihood of extinction.
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Consequences of the Allee effect for behaviour, ecology and conservation

TL;DR: The Allee effect can be regarded not only as a suite of problems associated with rarity, but also as the basis of animal sociality.
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