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Imported infections’ importance : global change driving Dengue dynamics

Quam, Mikkel B., 1986- (författare)
Umeå universitet,Epidemiologi och global hälsa
Rocklöv, Joacim, Assistant Professor (preses)
Umeå universitet,Epidemiologi och global hälsa
Wilder-Smith, Annelies, Professor (preses)
Umeå universitet,Epidemiologi och global hälsa,Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore
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Massad, Eduardo, Professor (preses)
School of Medicine, University of Sao Paulo, Brazil
Chadee, Dave D., Professor (opponent)
Department of Life Sciences, The University of The West Indies, Trinidad and Tobago
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 (creator_code:org_t)
ISBN 9789176014431
Umeå : Umeå University, 2016
Engelska 99 s.
  • Doktorsavhandling (övrigt vetenskapligt/konstnärligt)
Abstract Ämnesord
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  • Background Dengue is a significant problem of international health concern. According to the World Health Organization in 2012, globally, dengue is “the most important mosquito borne viral disease” with incidence 30 higher than it had been 50 years ago. While most of the burden of disease associated with dengue is located in areas with a tropical and sub-tropical climate, increasing evidence suggests temperate areas are also at risk. Considering the recent introduction of relevant mosquito vectors into Southern Europe, and increasing numbers of imported dengue via travelers, Europe and other temperate areas may be increasingly at risk for dengue emergence, establishment and local transmission in the foreseeable future.Methods Recent dengue emergence in Madeira and reemergence in Tokyo underline the hypothesis that passenger air-travel can be an important conduit for the importation of vector-borne disease leading to emergence in naïve areas climatically suitable for dengue transmission, including parts of Europe. Combining information on travel with virus genetic similarity was useful in discerning likely pathways of for the importation of infections. Generalizing information learned from outbreaks in Tokyo and Madeira with global epidemic intelligence, global travel networks, and climate change projections, leads to more refined understanding of the magnitude of dengue infectious imported into temperate areas and these virus introduction events’ potential implications for seeding epidemics in the 21st century.Results While compared to total travel, imported dengue events and epidemics of dengue outside the tropics are rare, our combined evidence and modeled estimations suggest strongly that epidemic dengue emergence in temperate areas is possible and will continue to increase. We found that global change dynamics including warming temperatures in the much of the northern hemisphere and increasing passenger interconnectivity between areas endemic for dengue and dengue free areas are key mechanisms partly explaining these unprecedented epidemiological transitions.Conclusion While we calibrated our models on information known about dengue, many elements of the methods and conclusions may increase understanding of the potentially global implications for imported infections of other climate-sensitive infectious diseases’ that may have similar parameters. During 2016 and the years to come, techniques developed in this doctoral research will contribute to models used in risk analysis for vector-borne diseases of interest, including the increasing important potential for imported Chikungunya and Zika viruses into a variety of unexposed areas. 

Ämnesord

MEDICIN OCH HÄLSOVETENSKAP  -- Hälsovetenskap -- Folkhälsovetenskap, global hälsa och socialmedicin (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Health Sciences -- Public Health, Global Health and Social Medicine (hsv//eng)

Nyckelord

Dengue
Zika
Vector-borne Disease
Aedes
Global Change
Climate Change
Viral Evolution
Phylogenetics
Travel
Interconnectivity
Disease Modeling
Madeira
Italy
Japan
Europe

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vet (ämneskategori)
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