Literature DB >> 33719356

A fractional order epidemic model for the simulation of outbreaks of Ebola.

Weiqiu Pan1, Tianzeng Li1,2, Safdar Ali1.   

Abstract

The Ebola outbreak in 2014 caused many infections and deaths. Some literature works have proposed some models to study Ebola virus, such as SIR, SIS, SEIR, etc. It is proved that the fractional order model can describe epidemic dynamics better than the integer order model. In this paper, we propose a fractional order Ebola system and analyze the nonnegative solution, the basic reproduction number R 0 , and the stabilities of equilibrium points for the system firstly. In many studies, the numerical solutions of some models cannot fit very well with the real data. Thus, to show the dynamics of the Ebola epidemic, the Gorenflo-Mainardi-Moretti-Paradisi scheme (GMMP) is taken to get the numerical solution of the SEIR fractional order Ebola system and the modified grid approximation method (MGAM) is used to acquire the parameters of the SEIR fractional order Ebola system. We consider that the GMMP method may lead to absurd numerical solutions, so its stability and convergence are given. Then, the new fractional orders, parameters, and the root-mean-square relative error g ( U ∗ ) = 0.4146 are obtained. With the new fractional orders and parameters, the numerical solution of the SEIR fractional order Ebola system is closer to the real data than those models in other literature works. Meanwhile, we find that most of the fractional order Ebola systems have the same order. Hence, the fractional order Ebola system with different orders using the Caputo derivatives is also studied. We also adopt the MGAM algorithm to obtain the new orders, parameters, and the root-mean-square relative error which is g ( U ∗ ) = 0.2744 . With the new parameters and orders, the fractional order Ebola systems with different orders fit very well with the real data.
© The Author(s) 2021.

Entities:  

Keywords:  Ebola; Epidemic models; Fractional order model; Modified grid approximation method

Year:  2021        PMID: 33719356      PMCID: PMC7943714          DOI: 10.1186/s13662-021-03272-5

Source DB:  PubMed          Journal:  Adv Differ Equ        ISSN: 1687-1839


  7 in total

1.  Reproduction numbers and sub-threshold endemic equilibria for compartmental models of disease transmission.

Authors:  P van den Driessche; James Watmough
Journal:  Math Biosci       Date:  2002 Nov-Dec       Impact factor: 2.144

2.  Estimating the Reproduction Number of Ebola Virus (EBOV) During the 2014 Outbreak in West Africa.

Authors:  Christian L Althaus
Journal:  PLoS Curr       Date:  2014-09-02

3.  New investigation of bats-hosts-reservoir-people coronavirus model and application to 2019-nCoV system.

Authors:  Wei Gao; Haci Mehmet Baskonus; Li Shi
Journal:  Adv Differ Equ       Date:  2020-08-03

4.  A previously unknown reovirus of bat origin is associated with an acute respiratory disease in humans.

Authors:  Kaw Bing Chua; Gary Crameri; Alex Hyatt; Meng Yu; Mohd Rosli Tompang; Juliana Rosli; Jennifer McEachern; Sandra Crameri; Verasingam Kumarasamy; Bryan T Eaton; Lin-Fa Wang
Journal:  Proc Natl Acad Sci U S A       Date:  2007-06-25       Impact factor: 11.205

5.  Novel Dynamic Structures of 2019-nCoV with Nonlocal Operator via Powerful Computational Technique.

Authors:  Wei Gao; P Veeresha; D G Prakasha; Haci Mehmet Baskonus
Journal:  Biology (Basel)       Date:  2020-05-21

6.  A new study of unreported cases of 2019-nCOV epidemic outbreaks.

Authors:  Wei Gao; P Veeresha; Haci Mehmet Baskonus; D G Prakasha; Pushpendra Kumar
Journal:  Chaos Solitons Fractals       Date:  2020-06-08       Impact factor: 5.944

7.  A mathematical model for COVID-19 transmission by using the Caputo fractional derivative.

Authors:  Nguyen Huy Tuan; Hakimeh Mohammadi; Shahram Rezapour
Journal:  Chaos Solitons Fractals       Date:  2020-07-11       Impact factor: 5.944

  7 in total
  1 in total

1.  On nonlinear dynamics of a fractional order monkeypox virus model.

Authors:  A El-Mesady; Amr Elsonbaty; Waleed Adel
Journal:  Chaos Solitons Fractals       Date:  2022-09-28       Impact factor: 9.922

  1 in total

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