JMR_2026v15n1

Journal of Mosquito Research, 2026, Vol.16, No.1, 40-53 http://emtoscipublisher.com/index.php/jmr 52 Ferraguti M., Magallanes S., Mora-Rubio C., Bravo-Barriga D., Lope F., and Marzal A., 2024, Landscape and climatic factors shaping mosquito abundance and species composition in southern Spain: A machine learning approach to the study of vector ecology, Ecological Informatics, 84: 102860. https://doi.org/10.1016/j.ecoinf.2024.102860 García-Súarez O., Tolsá-García M., Arana-Guardía R., Rodríguez-Valencia V., Talaga S., Pontifes P., Machain-Williams C., Suzán G., and Roiz D., 2024, Seasonal mosquito (Diptera: Culicidae) dynamics and the influence of environmental variables in a land use gradient from Yucatan, Mexico, Acta Tropica, 257: 107275. https://doi.org/10.1016/j.actatropica.2024.107275 Hinne I., Attah S., Mensah B., Forson A., and Afrane Y., 2021, Larval habitat diversity and Anopheles mosquito species distribution in different ecological zones in Ghana, Parasites and Vectors, 14: 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https://doi.org/10.1038/s41598-025-20413-y Rakotoarison H., Nepomichene T., Guis H., Girod R., Rakotoniaina S., Rakotomanana F., and Tran A., 2025, Spatial modeling of the population dynamics of Anopheles mosquitoes in Madagascar, International Journal of Health Geographics, 24: 24. https://doi.org/10.1186/s12942-025-00424-8 Reimer L., and Pryce J., 2023, The impact of mosquito sampling strategies on molecular xenomonitoring prevalence for filariasis: a systematic review, Bulletin of the World Health Organization, 102(3): 204-215. https://doi.org/10.2471/blt.23.290424 Stanley C., Dudash M., Ryder T., Shriver W., Serno K., Adalsteinsson S., and Marra P., 2021, Seasonal variation in habitat selection for a Neotropical migratory songbird using high‐resolution GPS tracking, Ecosphere, 12: e3421. https://doi.org/10.1002/ecs2.3421 Van De Straat B., Russell T., Staunton K., Sinka M., and Burkot T., 2021, A global assessment of surveillance methods for dominant malaria vectors, Scientific 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