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Article

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Title

Computational investigation of stochastic Zika virus optimal control model using Legendre spectral method

Authors

[ 1 ] Instytut Analizy Konstrukcji, Wydział Inżynierii Lądowej i Transportu, Politechnika Poznańska | [ P ] employee

Scientific discipline (Law 2.0)

[2.7] Civil engineering, geodesy and transport

Year of publication

2024

Published in

Scientific Reports

Journal year: 2024 | Journal volume: vol. 14

Article type

scientific article

Publication language

english

Keywords
EN
  • Legendre spectral collocation method
  • Zika virus model
  • Control variables
  • Stochastic asymptotic stability
  • Brownian motion
  • Legendre polynomials
  • Reproduction number
Abstract

EN This study presents a computational investigation of a stochastic Zika virus along with optimal control model using the Legendre spectral collocation method (LSCM). By accumulation of stochasticity into the model through the proposed stochastic differential equations, we appropriating the random fluctuations essential in the progression and disease transmission. The stability, convergence and accuracy properties of the LSCM are conscientiously analyzed and also demonstrating its strength for solving the complex epidemiological models. Moreover, the study evaluates the various control strategies, such as treatment, prevention and treatment pesticide control, and identifies optimal combinations that the intervention costs and also minimize the proposed infection rates. The basic properties of the given model, such as the reproduction number, were determined with and without the presence of the control strategies. For R0 < 0, the model satisfies the disease-free equilibrium, in this case the disease die out after some time, while for R0 > 1, then endemic equilibrium is satisfied, in this case the disease spread in the population at higher scale. The fundamental findings acknowledge the significant impact of stochastic phonemes on the robustness and effectiveness of control strategies that accelerating the need for cost-effective and multi-faceted approaches. In last the results provide the valuable insights for public health department to enabling more impressive mitigation of Zika virus outbreaks and management in real-world scenarios.

Date of online publication

05.08.2024

Pages (from - to)

18112-1 - 18112-16

DOI

10.1038/s41598-024-69096-x

URL

https://www.nature.com/articles/s41598-024-69096-x

Comments

Article Number: 18112

License type

CC BY (attribution alone)

Open Access Mode

open journal

Open Access Text Version

final published version

Date of Open Access to the publication

at the time of publication

Ministry points / journal

140

Impact Factor

3,8 [List 2023]

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