An ABM of biting midge dynamics to understand Bluetongue outbreaks
Gladson, S. L.; Stepien, T. L.
Show abstract
AO_SCPLOWBSTRACTC_SCPLOWBluetongue (BT) is a well-known vector-borne disease that infects ruminants such as sheep, cattle, and deer with high mortality rates. Recent outbreaks in Europe highlight the importance of understanding vector-host dynamics and potential courses of action to mitigate the damage that can be done by BT. We present an agent-based model (ABM), entitled MidgePy, that focuses on the movement of individual Culicoides spp. biting midges and their interactions with ruminants to understand their role as vectors in BT outbreaks, especially in regions that do not regularly experience outbreaks. Sensitivity analysis is performed and results indicate that midge survival rate has a significant impact on the probability of a BTV outbreak as well as its severity. Parameter regions where outbreaks are more likely to occur are determined, with an increase in environmental temperature corresponding with an increased probability of outbreak, where midge flight activity is used as a proxy for temperature. This suggests that future methods to control BT spread could combine large-scale vaccination programs with biting midge population control measures such as the use of pesticides. Spatial heterogeneity in the environment is also explored to give insight on optimal farm layouts to reduce the potential for BT outbreaks.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Towards resilient beef cattle production systems: Impact of truck contamination and information sharing on foot-and-mouth disease spreading 95%
- How do host population dynamics impact Lyme disease risk dynamics in theoretical models? 95%
- Assessing the potential of plains zebra to maintain African horse sickness in the Western Cape Province, South Africa 95%
Similar papers in this journal
- Extinction probabilities, times to extinction, basic reproduction number and growth rates for tsetse (Glossina spp) populations as a function of temperature 95%
- Identification of the area sampled by traps: a modelling study with tsetse 95%
- Sensitivity analysis of factors influencing the ecology of mosquitoes involved in the transmission Rift Valley fever virus transmission 93%
Similar papers in this journal
- Modelling the transmission and spread of yellow fever in forest landscapes with different spatial configurations 94%
- An agent-based framework for improving wildlife disease surveillance: A case study of chronic wasting disease in Missouri white-tailed deer 94%
- ecode: An R package to investigate community dynamics in ordinary differential equation systems 93%
Similar papers in this journal
- Estimating a novel stochastic model for within-field disease dynamics of banana bunchy top virus via approximate Bayesian computation 96%
- Optimal Control Prevents Itself from Eradicating Stochastic Disease Epidemics 95%
- Estimation of the force of infection and infectious period of skin sores in remote Australian communities using interval-censored data 94%
Similar papers in this journal
- Modeling the Impact of Seasonality on Mosquito Population Dynamics: Insights for Vector Control Strategies. 94%
- Mathematical assessment of the role of intervention programs for malaria control 94%
- Modeling and Global Sensitivity Analysis of Strategies to Mitigate Covid-19 Transmission on a Structured College Campus 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.