Map of model uncertainty. Standard deviation values for each pixel were calculated across the model ensemble on the logit scale. Areas from lower to higher standard deviation values are shown. (.docx) (DOCX 1008 kb
The 0.025 and 0.975 quantile model predictions, and the top predictors, for each mosquito model. For...
Figure S1. a Covariate analyses between response variable âconfirmed local dengue casesâ and: b ...
Figure S1. Temporal variations in the monthly average Breteau Index for Aedes aegypti (BIagp) each M...
Temporal distribution of Culex tritaeniorhynchus occurrence data. Histogram showing the number of sp...
Figure S1. Empirical variogram (circle) and modelled spherical variogram (line) for the residuals of...
Background Japanese encephalitis (JE) is one of the most significant aetiological agents of viral en...
Spatial distribution of the posterior means of random effects for dengue in Timor-Leste in Model III...
Maxent response curves for the mosquito habitat suitability models. A compilation of figures that sh...
Distributions of the model input data in space and time. The spatial distributions of the species oc...
Observed and fitted by model: a gam (Aaefem ~ offset(lNtraps) + s(Tmin4) + s(hum4), family = nb ())....
Table S1. Environmental layers considered for use in the mosquito species distribution models. A lis...
Proportional land cover in areas with high predicted probability of species occurrence. Plots showin...
Table S4. Influence of risk factors on the probability of local dengue propagation (5 or more dengue...
Figure S1. Histogram of residuals of Model 2. The approximate bell shape of the histogram indicates ...
Profile of the bands amplified with ISSR molecular marker for 20 samples of Aedes aegypti of the pop...
The 0.025 and 0.975 quantile model predictions, and the top predictors, for each mosquito model. For...
Figure S1. a Covariate analyses between response variable âconfirmed local dengue casesâ and: b ...
Figure S1. Temporal variations in the monthly average Breteau Index for Aedes aegypti (BIagp) each M...
Temporal distribution of Culex tritaeniorhynchus occurrence data. Histogram showing the number of sp...
Figure S1. Empirical variogram (circle) and modelled spherical variogram (line) for the residuals of...
Background Japanese encephalitis (JE) is one of the most significant aetiological agents of viral en...
Spatial distribution of the posterior means of random effects for dengue in Timor-Leste in Model III...
Maxent response curves for the mosquito habitat suitability models. A compilation of figures that sh...
Distributions of the model input data in space and time. The spatial distributions of the species oc...
Observed and fitted by model: a gam (Aaefem ~ offset(lNtraps) + s(Tmin4) + s(hum4), family = nb ())....
Table S1. Environmental layers considered for use in the mosquito species distribution models. A lis...
Proportional land cover in areas with high predicted probability of species occurrence. Plots showin...
Table S4. Influence of risk factors on the probability of local dengue propagation (5 or more dengue...
Figure S1. Histogram of residuals of Model 2. The approximate bell shape of the histogram indicates ...
Profile of the bands amplified with ISSR molecular marker for 20 samples of Aedes aegypti of the pop...
The 0.025 and 0.975 quantile model predictions, and the top predictors, for each mosquito model. For...
Figure S1. a Covariate analyses between response variable âconfirmed local dengue casesâ and: b ...
Figure S1. Temporal variations in the monthly average Breteau Index for Aedes aegypti (BIagp) each M...