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Linking climate and infectious disease trends in the Northern/Arctic Region

Yan Ma, Georgia Destouni, Zahra Kalantari, Anna Omazic, Birgitta Evengård, Camilla Berggren, Tomas Thierfelder

2021Scientific Reports44 citationsDOIOpen Access PDF

Abstract

Recognition of climate-sensitive infectious diseases is crucial for mitigating health threats from climate change. Recent studies have reasoned about potential climate sensitivity of diseases in the Northern/Arctic Region, where climate change is particularly pronounced. By linking disease and climate data for this region, we here comprehensively quantify empirical climate-disease relationships. Results show significant relationships of borreliosis, leptospirosis, tick-borne encephalitis (TBE), Puumala virus infection, cryptosporidiosis, and Q fever with climate variables related to temperature and freshwater conditions. These data-driven results are consistent with previous reasoning-based propositions of climate-sensitive infections as increasing threats for humans, with notable exceptions for TBE and leptospirosis. For the latter, the data imply decrease with increasing temperature and precipitation experienced in, and projected for, the Northern/Arctic Region. This study provides significant data-based underpinning for simplified empirical assessments of the risks of several infectious diseases under future climate change.

Topics & Concepts

Climate changeTick-borne encephalitisLeptospirosisArcticInfectious disease (medical specialty)DiseaseThe arcticClimatologyGeographyEcologyEncephalitisVirologyBiologyMedicineVirusGeologyOceanographyPathologyViral Infections and VectorsLeptospirosis research and findingsZoonotic diseases and public health
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