The magnitude of regional malaria risk is dependent primarily on the dynamics and distribution of the vector species, which are determined mainly by climate conditions. A coupled model with ecophysiological and climatological factors was developed to estimate the spatiotemporal distribution of the five species of dominant malaria vectors in monsoon Asia. Here, we examined how the potential distribution obtained from the model could explain trends in malaria incidence observed in India, which has the highest number of confirmed cases of malaria in Asia. Most notably, there was a significant positive correlation between annual malaria incidences and the maximum generation number of vectors for each state (p < 0.001). Malaria incidence tend...
Background & objectives: Mosquito-borne diseases particularly malaria and Japanese encephalitis ...
Malaria is a geographically widespread infectious disease that is well known to be affected by clima...
The focus in this paper is to understand the likely influence of climate change on vector production...
Malarial incidence, severity, dynamics and distribution of malaria are strongly determined by climat...
Malarial incidence, severity, dynamics and distribution of malaria are strongly determined by climat...
Quantitative relations between weather variables and malaria vector can enable pro-active control th...
Quantitative relations between weather variables and malaria vector can enable pro-active control th...
Pro-active and effective control as well as quantitative assessment of impact of climate change on m...
Malaria is a climate-sensitive disease and different climatic conditions affect the propagation of m...
Pro-active and effective control as well as quantitative assessment of impact of climate change on m...
Background: Pro-active and effective control as well as quantitative assessment of impact of climate...
Methods derived from ecological niche modeling allow to define species distribution based on presenc...
Methods derived from ecological niche modeling allow to define species distribution based on presenc...
<div><p>Methods derived from ecological niche modeling allow to define species distribution based on...
Methods derived from ecological niche modeling allow to define species distribution based on presenc...
Background & objectives: Mosquito-borne diseases particularly malaria and Japanese encephalitis ...
Malaria is a geographically widespread infectious disease that is well known to be affected by clima...
The focus in this paper is to understand the likely influence of climate change on vector production...
Malarial incidence, severity, dynamics and distribution of malaria are strongly determined by climat...
Malarial incidence, severity, dynamics and distribution of malaria are strongly determined by climat...
Quantitative relations between weather variables and malaria vector can enable pro-active control th...
Quantitative relations between weather variables and malaria vector can enable pro-active control th...
Pro-active and effective control as well as quantitative assessment of impact of climate change on m...
Malaria is a climate-sensitive disease and different climatic conditions affect the propagation of m...
Pro-active and effective control as well as quantitative assessment of impact of climate change on m...
Background: Pro-active and effective control as well as quantitative assessment of impact of climate...
Methods derived from ecological niche modeling allow to define species distribution based on presenc...
Methods derived from ecological niche modeling allow to define species distribution based on presenc...
<div><p>Methods derived from ecological niche modeling allow to define species distribution based on...
Methods derived from ecological niche modeling allow to define species distribution based on presenc...
Background & objectives: Mosquito-borne diseases particularly malaria and Japanese encephalitis ...
Malaria is a geographically widespread infectious disease that is well known to be affected by clima...
The focus in this paper is to understand the likely influence of climate change on vector production...