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Sterile Insect Technique in a n-patch system with Allee effect and mass trapping: modeling, analysis and simulations

arXiv Math
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Abstract

The sterile insect technique (SIT) is a biological control method aimed at reducing or eliminating populations of pests and disease vectors.

This technique involves releasing sterilised insects which, by mating with wild individuals, will reduce the target population.

In this study, spatial aspects are incorporated through an explicit metapopulation model, in which both wild and sterile insects disperse across multiple patches.

We derive a general sufficient condition ensuring elimination of the wild population in all patches through SIT.

When a strong Allee effect is naturally present in each patch, the release programme can be terminated after a finite time, and an upper bound on the required release duration is provided.

We then study an optimisation problem aimed at minimising the daily number of sterile insects released to ensure population elimination, under the constraint that the releases occur only in a prescribed subset of patches.

For illustrative purposes, we explore through numerical simulations different dispersal network configurations.

We also consider additional control by mass trapping (MT), which can affect the sterile insects entering trapped areas.

The main contribution of this work is to enable the identification of the best spatial strategies for releasing sterile insects under practical constraints, in order to achieve population elimination.

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