A Discrete Model for HIV Infection with Distributed Delay

We give a consistent discretization of a continuous model of HIV infection, with distributed time delays to express the lag between the times when the virus enters a cell and when the cell becomes infected. The global stability of the steady states of the model is determined and numerical simulation...

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Main Authors: Brahim EL Boukari, Khalid Hattaf, Noura Yousfi
Format: Article
Language:English
Published: Wiley 2014-01-01
Series:International Journal of Differential Equations
Online Access:http://dx.doi.org/10.1155/2014/138094
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author Brahim EL Boukari
Khalid Hattaf
Noura Yousfi
author_facet Brahim EL Boukari
Khalid Hattaf
Noura Yousfi
author_sort Brahim EL Boukari
collection DOAJ
description We give a consistent discretization of a continuous model of HIV infection, with distributed time delays to express the lag between the times when the virus enters a cell and when the cell becomes infected. The global stability of the steady states of the model is determined and numerical simulations are presented to illustrate our theoretical results.
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institution OA Journals
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language English
publishDate 2014-01-01
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series International Journal of Differential Equations
spelling doaj-art-02a6f027fcf84b6f9ef2af987cef47ff2025-08-20T02:03:27ZengWileyInternational Journal of Differential Equations1687-96431687-96512014-01-01201410.1155/2014/138094138094A Discrete Model for HIV Infection with Distributed DelayBrahim EL Boukari0Khalid Hattaf1Noura Yousfi2Department of Mathematics and Computer Science, Faculty of Sciences Ben M’sik, Hassan II University, P.O. Box 7955 Sidi Othman, Casablanca, MoroccoDepartment of Mathematics and Computer Science, Faculty of Sciences Ben M’sik, Hassan II University, P.O. Box 7955 Sidi Othman, Casablanca, MoroccoDepartment of Mathematics and Computer Science, Faculty of Sciences Ben M’sik, Hassan II University, P.O. Box 7955 Sidi Othman, Casablanca, MoroccoWe give a consistent discretization of a continuous model of HIV infection, with distributed time delays to express the lag between the times when the virus enters a cell and when the cell becomes infected. The global stability of the steady states of the model is determined and numerical simulations are presented to illustrate our theoretical results.http://dx.doi.org/10.1155/2014/138094
spellingShingle Brahim EL Boukari
Khalid Hattaf
Noura Yousfi
A Discrete Model for HIV Infection with Distributed Delay
International Journal of Differential Equations
title A Discrete Model for HIV Infection with Distributed Delay
title_full A Discrete Model for HIV Infection with Distributed Delay
title_fullStr A Discrete Model for HIV Infection with Distributed Delay
title_full_unstemmed A Discrete Model for HIV Infection with Distributed Delay
title_short A Discrete Model for HIV Infection with Distributed Delay
title_sort discrete model for hiv infection with distributed delay
url http://dx.doi.org/10.1155/2014/138094
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