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相关论文: Optimal releases for population replacement strate…

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In this article, we are interested in the analysis and simulation of solutions to an optimal control problem motivated by population dynamics issues. In order to control the spread of mosquito-borne arboviruses, the population replacement…

偏微分方程分析 · 数学 2021-06-25 Michel Duprez , Romane Hélie , Yannick Privat , Nicolas Vauchelet

This work is devoted to the mathematical study of an optimization problem regarding control strategies of mosquito population in a heterogeneous environment. Mosquitoes are well-known vectors of diseases. For some diseases, such as dengue,…

最优化与控制 · 数学 2025-03-11 Luis Almeida , Jesús Bellver Arnau , Gwenaël Peltier , Nicolas Vauchelet

This work addresses an optimal control problem on a dynamics governed by a nonlinear differential equation with a bistable time-periodic nonlinearity. This problem, relevant in population dynamics, models the strategy of replacing a…

最优化与控制 · 数学 2026-01-14 Grégoire Nadin , David Nahmani , Nicolas Vauchelet

Arboviral diseases remain a major public health concern, particularly in tropical and subtropical regions where mosquito populations thrive. One promising strategy to curb transmission is the release of Aedes aegypti mosquitoes infected…

种群与进化 · 定量生物学 2025-03-18 Daniela Florez , Ricardo Cortez , James M. Hyman , Zhuolin Qu

In the fight against vector-borne arboviruses, an important strategy of control of epidemic consists in controlling the population of vector, \textit{Aedes} mosquitoes in this case. Among possible actions, two techniques consist in…

偏微分方程分析 · 数学 2019-01-18 Luís Almeida , Michel Duprez , Yannick Privat , Nicolas Vauchelet

The release of Wolbachia-infected mosquitoes is a promising strategy for controlling Aedes aegypti populations, but exposure to high temperatures can induce temporary infection loss and compromise long-term persistence. In this work, we…

种群与进化 · 定量生物学 2026-02-10 Jéssica C. S. Alves , Christian E. Schaerer , Cláudia P. Ferreira

An ordinary differential model is proposed to understand the role of egg quiescence on the efficacy of releasing Wolbachia-infected mosquitoes to control arbovirus transmission. The model admits up to five equilibrium points and four…

种群与进化 · 定量生物学 2025-07-17 Luís E. S. Lopes , Cláudia P. Ferreira

We develop and analyze an ordinary differential equation model to assess the potential effectiveness of infecting mosquitoes with the Wolbachia bacteria to control the ongoing mosquito-borne epidemics, such as dengue fever, chikungunya, and…

种群与进化 · 定量生物学 2020-08-14 Zhuolin Qu , Ling Xue , James M. Hyman

This paper proposes two realistic and biologically viable methods for Wolbachia-based biocontrol of Aedes aegypti mosquitoes, assuming imperfect maternal transmission of the Wolbachia bacterium, incomplete cytoplasmic incompatibility, and…

Wolbachia is a genus of endosymbiotic bacteria that can infect mosquitoes and reduce their ability to transmit dengue virus. Although the bacterium is transmitted vertically from infected mothers to their offspring, it can be difficult to…

种群与进化 · 定量生物学 2015-10-06 Ling Xue , Carrie A. Manore , Panpim Thongsripong , James M. Hyman

Wolbachia is a naturally occurring bacterium that can infect Aedes mosquitoes and reduce the transmission of mosquito-borne diseases, including dengue fever, Zika, and chikungunya. Field trials have been conducted worldwide to suppress…

种群与进化 · 定量生物学 2024-12-02 Zhuolin Qu , Tong Wu

Mosquitoes are vectors of viral diseases with epidemic potential in many regions of the world, and in absence of vaccines or therapies, their control is the main alternative. Chemical control through insecticides has been one of the…

种群与进化 · 定量生物学 2021-04-07 Pastor Pérez Estigarribia , Pierre-Alexandre Bliman , Christian Schaerer

Controlling diseases such as dengue fever, chikungunya and zika fever by introduction of the intracellular parasitic bacterium Wolbachia in mosquito populations which are their vectors, is presently quite a promising tool to reduce their…

最优化与控制 · 数学 2019-03-05 Pierre-Alexandre Bliman

The release of Wolbachia-infected mosquitoes into Aedes aegypti infested areas is a promising strategy for localised eradication of dengue infection. Ae aegypti mosquitoes favour urban environments as breeding habitats, so are often found…

种群与进化 · 定量生物学 2025-08-01 Abby Barlow , Ben Adams

Wolbachia is a natural bacterium that can infect mosquitoes and reduce their ability to transmit mosquito-borne diseases, such as dengue fever, Zika, and chikungunya. Field trials and modeling studies have shown that the fraction of…

种群与进化 · 定量生物学 2021-08-25 Zhuolin Qu , Tong Wu , James Mac Hyman

Artificial releases of Wolbachia-infected Aedes mosquitoes have been under study in the past years for fighting vector-borne diseases such as dengue, chikungunya and zika. Several strains of this bacterium cause cytoplasmic incompatibility…

偏微分方程分析 · 数学 2017-07-31 Martin Strugarek , Nicolas Vauchelet , Jorge Zubelli

Vector control plays a central role in the fight against vector-borne diseases and, in particular, arboviruses. The use of the endosymbiotic bacterium Wolbachia has proven effective in preventing the transmission of some of these viruses…

偏微分方程分析 · 数学 2020-04-07 Luis Almeida , Jesús Bellver , Michel Duprez , Yannick Privat

The introduction of Wolbachia-carrying mosquitoes into the population has recently been proposed as an alternative strategy against dengue. Although laboratory experiments have shown that the Wolbachia bacterium can reduce the levels of…

种群与进化 · 定量生物学 2017-11-13 Meksianis Z. Ndii

The control of the spread of dengue fever by introduction of the intracellular parasitic bacterium Wolbachia in populations of the vector Aedes aegypti, is presently one of the most promising tools for eliminating dengue, in the absence of…

Arboviral infections, especially dengue, continue to cause significant health burden in their endemic regions. One of the strategies to tackle these infections is to replace the main vector agent, Ae. aegypti, with the ones incapable of…

种群与进化 · 定量生物学 2019-10-22 Adeshina I. Adekunle , Michael T. Meehan , Emma S. McBryde
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