JOURNAL ARTICLE
Dynamical analysis of a modified Leslie–Gower predator–prey model with disease in prey incorporating a prey refuge and treatment.
Published In: International Journal of Biomathematics, 2026, v. 19, n. 1. P. 1 1 of 3
Database: Academic Search Ultimate 2 of 3
Authored By: Belew, Basaznew; Yiblet, Yalew 3 of 3
Abstract
In this paper, we present and assess a predator–prey Leslie–Gower model including disease, refuge and treatment in prey population. There are two groups of prey: those who are susceptible and infected. It is hypothesized that prey population is affected by diseases and refuge, and grows logistically in the absence of predators. Infected prey population receives treatment. The predators' growth rate is governed by the modified Leslie–Gower dynamics. The dynamical attributes of the resulting system are boundedness, positivity of solutions, extinction criteria, existence and (local and global) stability. Biology uses mathematical analysis to identify the possible attributes of equilibrium points. The focus of this study is to assess how treatment and refuge affect the populations of ill prey, susceptible prey, predators and treated prey. The numerical simulation indicates that the influence of treatment, and refuge change the dynamics of the system (2.1). Extensive numerical simulations were performed to validate our analytical findings by using the Mathematica and MATLAB software. [ABSTRACT FROM AUTHOR]
Additional Information
- Source:International Journal of Biomathematics. 2026/01, Vol. 19, Issue 1, p1
- Document Type:Article
- Subject Area:Zoology
- Publication Date:2026
- ISSN:1793-5245
- DOI:10.1142/S1793524524500517
- Accession Number:191010045
- Copyright Statement:Copyright of International Journal of Biomathematics is the property of World Scientific Publishing Company and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
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