Transmission dynamics of Monkeypox virus: a mathematical modelling approach

dc.contributor.authorOlumuyiwa James Peter
dc.contributor.authorSumit Kumar
dc.contributor.authorNitu Kumari
dc.contributor.authorFestus Abiodun Oguntolu
dc.contributor.authorKayode Oshinubi
dc.contributor.authorRabiu Musa
dc.date.accessioned2025-05-04T16:08:57Z
dc.date.issued2021-10-15
dc.description.abstractMonkeypox (MPX), similar to both smallpox and cowpox, is caused by the monkeypox virus (MPXV). It occurs mostly in remote Central and West African communities, close to tropical rain forests. It is caused by the monkeypox virus in the Poxviridae family, which belongs to the genus Orthopoxvirus. We develop and analyse a deterministic mathematical model for the monkeypox virus. Both local and global asymptotic stability conditions for disease-free and endemic equilibria are determined. It is shown that the model undergo backward bifurcation, where the locally stable disease-free equilibrium co-exists with an endemic equilibrium. Furthermore, we determine conditions under which the disease-free equilibrium of the model is globally asymptotically stable. Finally, numerical simulations to demonstrate our findings and brief discussions are provided. The findings indicate that isolation of infected individuals in the human population helps to reduce disease transmission.
dc.identifier.citationO. J. Peter, S. Kumar, N. Kumari, F. A. Oguntolu, K. Oshinubi, & R. Musa. (2021). Transmission dynamics of Monkeypox virus: a mathematical modelling approach. Modeling Earth Systems and Environment, 8(3), 3423-3434. https://doi.org/10.1007/s40808-021-01313-2
dc.identifier.issn2363-6211
dc.identifier.issn2363-6203
dc.identifier.urihttp://repository.futminna.edu.ng:4000/handle/123456789/1787
dc.language.isoen
dc.publisherSpringer Science and Business Media LLC
dc.subjectBackward bifurcation
dc.subjectMathematical model
dc.subjectMonkeypox virus
dc.subjectStability
dc.titleTransmission dynamics of Monkeypox virus: a mathematical modelling approach
dc.typeArticle

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