English

Analysis of Control Measures for Vector-borne Diseases Using a Multistage Vector Model with Multi-Host Sub-populations

Populations and Evolution 2023-06-28 v1

Abstract

We propose and analyze an epidemiological model for vector borne diseases that integrates a multi-stage vector population and several host sub-populations which may be characterized by a variety of compartmental model types: subpopulations all include Susceptible and Infected compartments, but may or may not include Exposed and/or Recovered compartments. The model was originally designed to evaluate the effectiveness of various prophylactic measures in malaria-endemic areas, but can be applied as well to other vector-borne diseases. This model is expressed as a system of several differential equations, where the number of equations depends on the particular assumptions of the model. We compute the basic reproduction number R0\mathcal R_0, and show that if R01\mathcal R_0\leqslant 1, the disease free equilibrium (DFE) is globally asymptotically stable (GAS) on the nonnegative orthant. If R0>1\mathcal R_0>1, the system admits a unique endemic equilibrium (EE) that is GAS. We analyze the sensitivity of R0R_0 and the EE to different system parameters, and based on this analysis we discuss the relative effectiveness of different control measures.

Keywords

Cite

@article{arxiv.2306.14926,
  title  = {Analysis of Control Measures for Vector-borne Diseases Using a Multistage Vector Model with Multi-Host Sub-populations},
  author = {Francis G. T. Kamba and Leonard C. Eze and Jean Claude Kamgang and Christopher P. Thron},
  journal= {arXiv preprint arXiv:2306.14926},
  year   = {2023}
}

Comments

42 pages, 3 figures. arXiv admin note: substantial text overlap with arXiv:1808.07574

R2 v1 2026-06-28T11:14:54.346Z