A Process-Based Model with Temperature, Water, and Lab-derived Data Improves Predictions of Daily Mosquito Density
Shutt, D. P.; Goodsman, D. W.; Hemez, Z. J. L.; Conrad, J. R.; Xu, C.; Osthus, D.; Russell, C.; Hyman, J. M.; Manore, C. A.
Show abstract
While the number of human cases of mosquito-borne diseases has increased in North America in the last decade, accurate modeling of mosquito population density has remained a challenge. Longitudinal mosquito trap data over the many years needed for model calibration is relatively rare. In particular, capturing the relative changes in mosquito abundance across seasons is necessary for predicting the risk of disease spread as it varies from year to year. We developed a process-based mosquito population model that captures life-cycle egg, larva, pupa, adult stages, and diapause for Culex pipiens and Culex restuans mosquito populations. Mosquito development through these stages is a function of time, temperature, daylight hours, and aquatic habitat availability. The time-dependent parameters are informed by both laboratory studies and mosquito trap data from the Greater Toronto Area. The model incorporates city-wide water-body gauge and precipitation data as a proxy for aquatic habitat. This approach accounts for the nonlinear interaction of temperature and aquatic habitat variability on the mosquito life stages. We demonstrate that the full model predicts the yearly variations in mosquito populations better than a statistical model using the same data sources. This improvement in modeling mosquito abundance can help guide interventions for reducing mosquito abundance in mitigating mosquito-borne diseases like the West Nile virus.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Behavioral response of insecticide-resistant mosquitoes against spatial repellent: a modified self-propelled particle model simulation 96%
- Assessing mosquito dynamics and dengue transmission in Foz do Iguaçu, Brazil through an enhanced temperature-dependent mathematical model 96%
- How do host population dynamics impact Lyme disease risk dynamics in theoretical models? 95%
Similar papers in this journal
- Fusing an agent-based model of mosquito population dynamics with a statistical reconstruction of spatio-temporal abundance patterns 97%
- Vector bionomics and vectorial capacity as emergent properties of mosquito behaviors and ecology 96%
- Modeling the effects of Aedes aegypti's larval environment on adult body mass at emergence 96%
Similar papers in this journal
- Diel activity patterns of vector mosquito species in the urban environment: Implications for vector control strategies 95%
- Identification of the area sampled by traps: a modelling study with tsetse 94%
- Sensitivity analysis of factors influencing the ecology of mosquitoes involved in the transmission Rift Valley fever virus transmission 94%
Similar papers in this journal
- Forecasting invasive mosquito abundance in the Basque Country, Spain using machine learning techniques 95%
- Field-validation of multiple species distribution models shows variation in performance for predicting Aedes albopictus distributions at the invasion edge 94%
- Prediction of mosquito vector abundance for three species in the Anopheles gambiae complex 94%
Similar papers in this journal
- A minimal 3D model of mosquito flight behavior around the human baited bed net 94%
- Quantifying malaria acquired during travel and its role in malaria elimination on Bioko Island 93%
- Population replacement gene drive characteristics for malaria elimination in a range of seasonal transmission settings: a modeling study 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.