Abstract Background The transmission of malaria is highly variable and depends on a range of climatic and anthropogenic factors. In addition, the dispersal of Anopheles mosquitoes is a key determinant that affects the persistence and dynamics of malaria. Simple, lumped-population models of malaria prevalence have been insufficient for predicting the complex responses of malaria to environmental changes. Methods and results A stochastic lattice-based model that couples a mosquito dispersal and a susceptible-exposed-infected-recovered epidemics model was developed for predicting the dynamics of malaria in heterogeneous environments. The It$$\hat{o}$$ o^ approximation of stochastic integrals with respect to Brownian motion was used to derive a...
Various mathematical models have been developed to describe the transmission of malaria disease. The...
(Communicated by Philip Maini) Abstract. A mathematical model for endemic malaria involving variable...
Given the crucial role of climate in malaria transmission, many mechanistic models of malaria repres...
Presented at Biology and Medicine Through Mathematics Conference (BAMM) According to WHO estimates r...
Presented at Biology and Medicine Through Mathematics Conference (BAMM) According to WHO estimates r...
Presented at Biology and Medicine Through Mathematics Conference (BAMM) According to WHO estimates r...
Malaria is one of the three most dangerous infectious diseases worldwide (along with HIV/AIDS and tu...
Malaria is still ranked among one of the world’s top killers. According to WHO report released in De...
We employ the approach of stochastic dynamics to describe the dissemination of vector-borne diseases...
We developed a stochastic lattice model to describe the vector-borne disease (like yellow fever or d...
Various mathematical models have been developed to describe the transmission of malaria disease. The...
Various mathematical models have been developed to describe the transmission of malaria disease. The...
We employ the approach of stochastic dynamics to describe the dissemination of vector-borne diseases...
We present and analyze a stochastic differential equation (SDE) model for the population dynamics of...
We developed a stochastic lattice model to describe the vector-borne disease (like yellow fever or d...
Various mathematical models have been developed to describe the transmission of malaria disease. The...
(Communicated by Philip Maini) Abstract. A mathematical model for endemic malaria involving variable...
Given the crucial role of climate in malaria transmission, many mechanistic models of malaria repres...
Presented at Biology and Medicine Through Mathematics Conference (BAMM) According to WHO estimates r...
Presented at Biology and Medicine Through Mathematics Conference (BAMM) According to WHO estimates r...
Presented at Biology and Medicine Through Mathematics Conference (BAMM) According to WHO estimates r...
Malaria is one of the three most dangerous infectious diseases worldwide (along with HIV/AIDS and tu...
Malaria is still ranked among one of the world’s top killers. According to WHO report released in De...
We employ the approach of stochastic dynamics to describe the dissemination of vector-borne diseases...
We developed a stochastic lattice model to describe the vector-borne disease (like yellow fever or d...
Various mathematical models have been developed to describe the transmission of malaria disease. The...
Various mathematical models have been developed to describe the transmission of malaria disease. The...
We employ the approach of stochastic dynamics to describe the dissemination of vector-borne diseases...
We present and analyze a stochastic differential equation (SDE) model for the population dynamics of...
We developed a stochastic lattice model to describe the vector-borne disease (like yellow fever or d...
Various mathematical models have been developed to describe the transmission of malaria disease. The...
(Communicated by Philip Maini) Abstract. A mathematical model for endemic malaria involving variable...
Given the crucial role of climate in malaria transmission, many mechanistic models of malaria repres...