4.6 Article

Transmission dynamics of monkeypox virus with treatment and vaccination controls: a fractional order mathematical approach

Journal

PHYSICA SCRIPTA
Volume 98, Issue 2, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.1088/1402-4896/acae64

Keywords

monkeypox virus; fractional order model; transcritical bifurcation; basic reproduction number; fractional order optimal control; sensitivity analysis

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A recent outbreak of monkeypox virus infection that originated in the United Kingdom has now spread globally. In order to study the transmission dynamics of this virus, a seven-compartmental fractional-order mathematical model is formulated, including five compartments for the human population and two compartments for animals or rodents. The existence and uniqueness of the solution for this fractional order model are examined. The basic reproduction number for humans (R0h) is...
Presently, monkeypox virus infection has spread worldwide in the ongoing outbreak that began in the UK. To study the transmission dynamics of monkeypox, we formulate here a seven-compartmental (five compartments for the human population and two compartments for animals or rodents) fractional-order mathematical model. The existence and uniqueness of the solution of the proposed fractional order model are examined here. The basic reproduction number for humans ( R0h

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