Modelling the impact of larviciding as a supplementary malaria vector control intervention in rural south-eastern Tanzania: A district-level simulation study
Shirima, G.; Fairbanks, E. L.; Tegemeo, G.; Kiwelu, G.; Nambunga, I.; Mlacha, Y. P.; Mirau, S.; Chaki, P.; Chitnis, N.; Kiware, S.
Show abstract
Combining larviciding with insecticide treated nets (ITNs) can reduce malaria transmission, but most modelling analyses use generalized scenarios rather than local contexts. In Tanzania and other countries, larviciding is increasingly being prioritized in national strategies, with growing advocacy for its broader implementation, to achieving sustained malaria reduction. District-specific modelling is therefore essential to capture variation in transmission ecology, seasonality, and varying coverage levels, providing evidence that is both rigorous and actionable for malaria control programs. The Vector Control Optimization Model (VCOM) was adapted and extended to incorporate local seasonality, simulating the impact of larviciding across a range of coverage levels combined with ITNs. The model was parameterized using district-level field-data on mosquito mortality collected before (2016-2017) and after (2019-2021) larviciding implementation. Mosquito mortality rates were estimated using Bayesian inference. Outcomes were evaluated specifically for Anopheles gambiae s.l. including annual entomological inoculation rates (EIR) and mosquito density. Sensitivity analysis explored the influence of key parameters driving transmission in this scenario study. The immature mosquito mortality rate due to larviciding is estimated to be 61% based on field data. VCOM simulation showed that, at 80%, ITNs coverage, larviciding substantially reduced mosquito densities and EIR. Specifically, combining ITNs at 80% and larviciding coverage [≥] 60% lowered EIR below 1, the threshold required to interrupt malaria transmission. Sensitivity analyses highlighted the high impact of targeting immature mosquitoes, suggesting larviciding can effectively complement ITNs to control vectors, including invasive species like An. stephensi, regardless of feeding preference, resting, and biting behaviors, which hinder the effectiveness of most vector control tools. This study provides local evidence that larviciding is an effective complement to ITNs for interrupting malaria transmission. Implementation should leverage innovative approaches, such as drones for precise mapping and targeted application of biological larvicides, to maximize coverage, and scalability for district-level malaria control and elimination.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Can dual active ingredient Interceptor G2 insecticide treated net (ITN) replace indoor residual spraying (IRS) efficiently; A case study in Sakassou, Cote d'Ivoire 96%
- Household-Level Risk Factors for Aedes aegypti Pupal Density in Guayaquil, Ecuador 96%
- A systematic review assessing the potential for release of vector species from competition following insecticide-based population suppression of Anopheles species in Africa 96%
Similar papers in this journal
- Shifting transmission risk for malaria in Africa with climate change: a framework for planning and intervention 96%
- On multifactorial drivers for malaria rebound in Brazil: a spatio-temporal analysis 96%
- Addressing child health inequity through case management of under-five malaria in Nigeria: A model-based extended cost-effectiveness analysis 96%
Similar papers in this journal
- Assessment of Culicidae collection methods for xenomonitoring lymphatic filariasis in malaria co-infection context in Burkina Faso 96%
- Diel activity patterns of vector mosquito species in the urban environment: Implications for vector control strategies 96%
- Bionomics of Aedes aegypti during the 2016-2017 dengue outbreaks in Ouagadougou, Burkina Faso 96%
Similar papers in this journal
- Impact of four years of annually repeated indoor residual spraying (IRS) with Actellic 300CS on routinely reported malaria cases in an agricultural setting in Malawi 96%
- Advancing Early Warning Systems for Malaria: Progress, Challenges, and Future Directions - A Scoping Review 96%
- Bio-efficacy of field aged novel class of long-lasting insecticidal nets, against pyrethroid-resistant malaria vectors in Tanzania: A series of experimental hut trials 95%
"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.