International audienceMosquitoes are responsible for the transmission of many diseases such as dengue fever, zika or chigungunya. One way to control the spread of these diseases is to use the sterile insect technique (SIT), which consists in a massive release of sterilized male mosquitoes. This strategy aims at reducing the total population over time, and has the advantage being specific to the targeted species, unlike the use of pesticides.In this article, we study the optimal release strategies in order to maximize the efficiency of this technique.We consider simplified models that describe the dynamics of eggs, males, females and sterile males in order to optimize the release protocol. We determine in a precise way optimal strategies, wh...
This work is aimed at formulating a mathematical model for the control of mosquito population using ...
International audienceThe vector or pest control is essential to reduce the risk of vector-borne dis...
For centuries, humans have attempted to control insect populations. This is in part because of the s...
International audienceMosquitoes are responsible for the transmission of many diseases such as dengu...
This paper develops an optimal control framework to investigate the introduction of sterile type mos...
In this paper, we introduce a control strategy for applying the Sterile Insect Technique (SIT) to el...
We use partial differential equations to describe the dynamics of an Aedes aegypti mosquito populati...
In this paper, we propose a sex-structured entomological model that serves as a basis for design of ...
Reduction of mosquito populations will, at least, reduce substantially the transmission of malaria d...
In this paper, we introduce a control strategy for applying the Sterile Insect Technique (SIT) to el...
International audienceVector control, like sterile insect technique (SIT), is essential to reduce th...
International audienceIn this paper, we propose a sex-structured entomological model that serves as ...
This work is aimed at formulating a mathematical model for the control of mosquito population using ...
International audienceThe vector or pest control is essential to reduce the risk of vector-borne dis...
For centuries, humans have attempted to control insect populations. This is in part because of the s...
International audienceMosquitoes are responsible for the transmission of many diseases such as dengu...
This paper develops an optimal control framework to investigate the introduction of sterile type mos...
In this paper, we introduce a control strategy for applying the Sterile Insect Technique (SIT) to el...
We use partial differential equations to describe the dynamics of an Aedes aegypti mosquito populati...
In this paper, we propose a sex-structured entomological model that serves as a basis for design of ...
Reduction of mosquito populations will, at least, reduce substantially the transmission of malaria d...
In this paper, we introduce a control strategy for applying the Sterile Insect Technique (SIT) to el...
International audienceVector control, like sterile insect technique (SIT), is essential to reduce th...
International audienceIn this paper, we propose a sex-structured entomological model that serves as ...
This work is aimed at formulating a mathematical model for the control of mosquito population using ...
International audienceThe vector or pest control is essential to reduce the risk of vector-borne dis...
For centuries, humans have attempted to control insect populations. This is in part because of the s...