journal article Open Access May 01, 2025

Impact of climate and Aedes albopictus establishment on dengue and chikungunya outbreaks in Europe: a time-to-event analysis

The Lancet Planetary Health Vol. 9 No. 5 pp. e374-e383 · Elsevier BV
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References
30
[1]
(2024)
[2]
Aedes albopictus, an arbovirus vector: From the darkness to the light

C. Paupy, H. Delatte, L. Bagny et al.

Microbes and Infection 2009 10.1016/j.micinf.2009.05.005
[3]
Kraemer "Past and future spread of the arbovirus vectors Aedes aegypti and Aedes albopictus" Nat Microbiol (2019) 10.1038/s41564-019-0376-y
[4]
Bonizzoni "The invasive mosquito species Aedes albopictus: current knowledge and future perspectives" Trends Parasitol (2013) 10.1016/j.pt.2013.07.003
[5]
(2024)
[6]
Semenza "International dispersal of dengue through air travel: importation risk for Europe" PLoS Negl Trop Dis (2014) 10.1371/journal.pntd.0003278
[7]
Infection with chikungunya virus in Italy: an outbreak in a temperate region

G Rezza, L Nicoletti, R Angelini et al.

The Lancet 2007 10.1016/s0140-6736(07)61779-6
[8]
Schmidt-Chanasit "Dengue virus infection in a traveller returning from Croatia to Germany" Euro Surveill (2010) 10.2807/ese.15.40.19677-en
[9]
Lillepold "More arboviral disease outbreaks in continental Europe due to the warming climate?" J Travel Med (2019) 10.1093/jtm/taz017
[10]
Mercier "Impact of temperature on dengue and chikungunya transmission by the mosquito Aedes albopictus" Sci Rep (2022) 10.1038/s41598-022-10977-4
[11]
Climate change and the rising infectiousness of dengue

Joacim Rocklöv, Yesim Tozan

Emerging Topics in Life Sciences 2019 10.1042/etls20180123
[12]
Semenza "Climate change and infectious disease in Europe: impact, projection and adaptation" Lancet Reg Health Eur (2021)
[13]
van Daalen "The 2024 Europe report of the Lancet Countdown on health and climate change: unprecedented warming demands unprecedented action" Lancet Public Health (2024) 10.1016/s2468-2667(24)00055-0
[14]
Cox's Regression Model for Counting Processes: A Large Sample Study

P. K. Andersen, R. D. Gill

The Annals of Statistics 1982 10.1214/aos/1176345976
[15]
The shared socio-economic pathway (SSP) greenhouse gas concentrations and their extensions to 2500

Malte Meinshausen, Zebedee R. J. Nicholls, Jared Lewis et al.

Geoscientific Model Development 2020 10.5194/gmd-13-3571-2020
[16]
Overview of the Coupled Model Intercomparison Project Phase 6 (CMIP6) experimental design and organization

Veronika Eyring, Sandrine Bony, Gerald A. Meehl et al.

Geoscientific Model Development 2016 10.5194/gmd-9-1937-2016
[17]
Trend-preserving bias adjustment and statistical downscaling with ISIMIP3BASD (v1.0)

Stefan Lange

Geoscientific Model Development 2019 10.5194/gmd-12-3055-2019
[18]
Misslin "Urban climate versus global climate change—what makes the difference for dengue?" Ann N Y Acad Sci (2016) 10.1111/nyas.13084
[19]
Rocklöv "Using big data to monitor the introduction and spread of chikungunya, Europe, 2017" Emerg Infect Dis (2019) 10.3201/eid2506.180138
[20]
Fuller "Behavioral, climatic, and environmental risk factors for Zika and chikungunya virus infections in Rio de Janeiro, Brazil, 2015–16" PLoS One (2017) 10.1371/journal.pone.0188002
[21]
Shil "Rainfall and chikungunya incidences in India during 2010–2014" Virusdisease (2018) 10.1007/s13337-018-0428-6
[22]
Li "Rainfall, abundance of Aedes aegypti and dengue infection in Selangor, Malaysia" Southeast Asian J Trop Med Public Health (1985)
[23]
Jourdain "From importation to autochthonous transmission: drivers of chikungunya and dengue emergence in a temperate area" PLoS Negl Trop Dis (2020) 10.1371/journal.pntd.0008320
[24]
Paploski "Storm drains as larval development and adult resting sites for Aedes aegypti and Aedes albopictus in Salvador, Brazil" Parasit Vectors (2016) 10.1186/s13071-016-1705-0
[25]
Gubler "Dengue, urbanization and globalization: the unholy trinity of the 21st century" Trop Med Health (2011) 10.2149/tmh.2011-s05
[26]
Longbottom "Aedes albopictus invasion across Africa: the time is now for cross-country collaboration and control" Lancet Glob Health (2023) 10.1016/s2214-109x(23)00046-3
[27]
The role of urbanisation in the spread of Aedes mosquitoes and the diseases they transmit—A systematic review

Antonios Kolimenakis, Sabine Heinz, Michael Lowery Wilson et al.

PLoS Neglected Tropical Diseases 2021 10.1371/journal.pntd.0009631
[28]
Brady "Refining the global spatial limits of dengue virus transmission by evidence-based consensus" PLoS Negl Trop Dis (2012) 10.1371/journal.pntd.0001760
[29]
Cochet "Autochthonous dengue in mainland France, 2022: geographical extension and incidence increase" Euro Surveill (2022) 10.2807/1560-7917.es.2022.27.44.2200818
[30]
Rocklöv "Decision-support tools to build climate resilience against emerging infectious diseases in Europe and beyond" Lancet Reg Health Eur (2023)
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Published
May 01, 2025
Vol/Issue
9(5)
Pages
e374-e383
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Zia Farooq, Leo Segelmark, Joacim Rocklöv, et al. (2025). Impact of climate and Aedes albopictus establishment on dengue and chikungunya outbreaks in Europe: a time-to-event analysis. The Lancet Planetary Health, 9(5), e374-e383. https://doi.org/10.1016/s2542-5196(25)00059-2