4.7 Article

On the use of the sterile insect release technique to reduce or eliminate mosquito populations

Journal

APPLIED MATHEMATICAL MODELLING
Volume 68, Issue -, Pages 443-470

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.apm.2018.11.026

Keywords

Vector control; Sterile insect technique; Monotone dynamical system; Basin of attraction; Numerical simulation; Aedes spp

Funding

  1. French Ministry of Health [3800/TIS]
  2. European Regional Development Fund (ERDF) [2012-32122, GURDTI 2017-0583-0001899]
  3. DST/NRF SARChI Chair M3B2 grant [82770]
  4. STIC AmSud MOSTICAW Project [99999.007551/2015-00]

Ask authors/readers for more resources

Vector control is critical to limit the circulation of vector-borne diseases, like chikungunya, dengue or zika, which have become important issues around the world. Among them, the Sterile Insect Technique (SIT) and the Incompatible Insect Technique (IIT) have recently aroused a renewed interest. In this paper we derive and study a minimalistic mathematical model designed for Aedes mosquito population elimination by SIT/IIT. Contrary to most of the previous models, it is bistable in general, allowing simultaneously for elimination of the population and for its survival. We consider different types of releases (constant, periodic or impulsive) and show necessary conditions to reach elimination in each case. We also estimate both sufficient and minimal treatment times. Biological parameters are estimated from a case study of an Aedes polynesiensis population, for which extensive numerical investigations illustrate the analytical results. The applications of this work are two-fold: to help identifying some key parameters that may need further field investigations, and to help designing release protocols. (C) 2018 Elsevier Inc. All rights reserved.

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