Mathematical model for the control of lymphatic filariasis transmission dynamics

dc.contributor.authorFestus Abiodun Oguntolu
dc.contributor.authorGbolahan Bolarin
dc.contributor.authorOlumuyiwa James Peter
dc.contributor.authorAbdullah Idris Enagi
dc.contributor.authorKayode Oshinubi
dc.date.accessioned2025-05-04T16:39:16Z
dc.date.issued2021-02-23
dc.description.abstractIn this paper, a mathematical model for the transmission dynamics of lymphatic filariasis is presented by incorporating the infected without symptom, the infected with symptom and treatment compartments. The model is shown to have two equilibrium states: the disease-free equilibrium (DFE) and the endemic equilibrium states. An explicit formula for the effective reproduction number was obtained in terms of the demographic and epidemiological parameters of the model. Using the method of linearization, the disease-free equilibrium state was found to be locally asymptotically stable if the basic reproduction number is less than unity. By constructing a suitable Lyapunov function, the disease-free equilibrium state was found to be globally asymptotically stable. This means that lymphatic filariasis could be put under control in a population when the effective reproduction number is less than one. The endemic equilibrium state was found to be locally asymptotically stable. By constructing yet another Lyapunov function, the endemic equilibrium state was found to be globally asymptotically stable under certain conditions. Sensitivity analysis was carried out on the effective reproduction number, the most sensitive parameters were the treatment rate of human population and the infected rate of human population. Results from the simulation carried out showed that treatment level coverage of human population should target a success rate of 75% for LF to be under control in the population.
dc.identifier.citationF. A. Oguntolu, G. Bolarin, O. J. Peter, A. I. Enagi & K. Oshinubi. (2021). Mathematical model for the control of lymphatic filariasis transmission dynamics. Commun. Math. Biol. Neurosci., 2021, Article-ID.17. https://doi.org/10.28919/cmbn/5307
dc.identifier.doi10.28919/cmbn/5307
dc.identifier.issn2052-2541
dc.identifier.urihttp://repository.futminna.edu.ng:4000/handle/123456789/1798
dc.language.isoen
dc.publisherSCIK Publishing Corporation
dc.relation.ispartofCommunications in Mathematical Biology and Neuroscience
dc.subjectLymphatic filariasis
dc.subjectReproduction number
dc.subjectStability
dc.subjectSensitivity analysis
dc.titleMathematical model for the control of lymphatic filariasis transmission dynamics
dc.typejournal-article

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