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Jonas Wallin. Photo.

Jonas Wallin

Director of third cycle studies, Department of Statistics, Senior lecturer

Jonas Wallin. Photo.

A climate and population dependent diffusion model forecasts the spread of Aedes Albopictus mosquitoes in Europe

Author

  • Sandra Barman
  • Jan C. Semenza
  • Pratik Singh
  • Henrik Sjödin
  • Joacim Rocklöv
  • Jonas Wallin

Summary, in English

Aedes albopictus, a key vector for Dengue, Chikungunya, Zika, and Yellow Fever, is expanding its range beyond its tropical and subtropical origins, driven by suitable climate, population mobility, trade, and urbanization. Since its introduction to Europe, Ae. albopictus has rapidly spread and triggered recurrent outbreaks. Past model attempts have handled vector suitability and vector introduction as independent drivers. Here we develop a highly predictive spatio-temporal vector diffusion model based on climate suitability and human population predictors, integrated in one simultaneous framework. The model explains how short- and long-range spread of Ae. albopictus interacts with vector suitability, predicting areas of presence or absence with high accuracy (99% and 79%). These results show that the expansion of Ae. albopictus in Europe is predictable and provide a basis for anticipating future outbreaks in situations of dependent interacting co-drivers.

Department/s

  • Department of Statistics

Publishing year

2025

Language

English

Publication/Series

Communications Earth and Environment

Volume

6

Issue

1

Document type

Article

Publisher

Springer Nature

Topic

  • Climate Science

Keywords

  • SDG 3 - Good Health and Well-being
  • SDG 13 - Climate Action

Status

Published

ISBN/ISSN/Other

  • ISSN: 2662-4435