2025
Exploring the link between grandmaternal air pollution exposure and Grandchild’s ASD risk: A multigenerational population-based study in California
O'Sharkey K, Chow T, Mitra S, Thompson L, Su J, Cockburn M, Liew Z, Ritz B. Exploring the link between grandmaternal air pollution exposure and Grandchild’s ASD risk: A multigenerational population-based study in California. Environment International 2025, 200: 109526. PMID: 40378475, DOI: 10.1016/j.envint.2025.109526.Peer-Reviewed Original ResearchConceptsAir pollutionLand-use regression modelsExposure to air pollutionAP exposureAir pollution exposureMaternal pregnancy exposuresPopulation-based cohortPopulation-based studyMultigenerational exposurePollution exposureLand-useIncreased ASD riskPregnancy exposurePollutionASD riskInfluence ASD riskMaternal pregnancyExposure levelsInfant exposureLogistic regressionMaternal exposureRisk factorsRegression modelsIncreased prevalenceEnvironmental factorsPathogens and planetary change
Carlson C, Brookson C, Becker D, Cummings C, Gibb R, Halliday F, Heckley A, Huang Z, Lavelle T, Robertson H, Vicente-Santos A, Weets C, Poisot T. Pathogens and planetary change. Nature Reviews Biodiversity 2025, 1: 32-49. DOI: 10.1038/s44358-024-00005-w.Peer-Reviewed Original ResearchBiodiversity lossAnthropogenic environmental changesLand-use changeBiodiversity conservationWildlife healthLand-useEcological costsDie-offGlobal changeBiodiversityEnvironmental changesEcological interventionsLive animal marketsInfectious disease riskPathogen surveillanceHuman-animal contactPathogensVector-borne diseasesSpeciesEvolutionary principlesWildlifeHigh-risk virusesEcosystemGlobal gapConservation
2024
Impacts of land-use and land-cover changes on temperature-related mortality
Orlov A, De Hertog S, Havermann F, Guo S, Manola I, Lejeune Q, Schleussner C, Thiery W, Pongratz J, Humpenöder F, Popp A, Aunan K, Armstrong B, Royé D, Cvijanovic I, Lavigne E, Achilleos S, Bell M, Masselot P, Sera F, Vicedo-Cabrera A, Gasparrini A, Mistry M, Network M, Abrutzky R, Guo Y, Tong S, de Sousa Zanotti Stagliorio Coelho M, Saldiva P, Correa P, Orteg N, Kan H, Osorio S, Kyselý J, Urban A, Orru H, Indermitte E, Jaakkola J, Ryti N, Pascal M, Schneider A, Huber V, Katsouyanni K, Analitis A, Carlsen H, Mayvaneh F, Roradeh H, Goodman P, Zeka A, Raz R, Michelozzi P, de’Donato F, Hashizume M, Kim Y, Alahmad B, Diaz M, Arellano E, Overcenco A, Houthuijs D, Ameling C, Rao S, Carrasco G, Seposo X, Chua P, da Silva S, Madureira J, Holobaca I, Scovronick N, Acquaotta F, Kim H, Lee W, Tobias A, Íñiguez C, Forsberg B, Ragettli M, Guo Y, Pan S, Li S, Colistro V, Zanobetti A, Schwartz J, Dang T, Van Dung, Cauchi J. Impacts of land-use and land-cover changes on temperature-related mortality. Environmental Epidemiology 2024, 8: e337. PMID: 39439814, PMCID: PMC11495778, DOI: 10.1097/ee9.0000000000000337.Peer-Reviewed Original ResearchEarth System ModelExposure-response functionsLand-cover changeLULCC scenariosLand useMax Planck Institute Earth System ModelEuropean Consortium Earth System ModelCommunity Earth System ModelCoupled Earth system modelEarth system model simulationsMultimodel mean changesLand-useGreenhouse gas concentrationsImpact of land-useClimate change scenariosUnsustainable land useSystem modelBiogeophysical effectsBackground climateHeat-related mortalitySocioeconomic developmentChange scenariosLULCCGas concentrationMortality rangeContribution of climate change to the spatial expansion of West Nile virus in Europe
Erazo D, Grant L, Ghisbain G, Marini G, Colón-González F, Wint W, Rizzoli A, Van Bortel W, Vogels C, Grubaugh N, Mengel M, Frieler K, Thiery W, Dellicour S. Contribution of climate change to the spatial expansion of West Nile virus in Europe. Nature Communications 2024, 15: 1196. PMID: 38331945, PMCID: PMC10853512, DOI: 10.1038/s41467-024-45290-3.Peer-Reviewed Original ResearchConceptsWest Nile virusEcological niche modelsExpansion of West Nile virusClimate changeWNV circulationNiche modelsNile virusMosquito-borne pathogensEffects of climate changeHuman population changeSpatial expansionContributions of climate changeWest Nile virus circulationEnvironmental changesPublic health threatHuman populationLand-useHuman influencePotential driversRisk of exposureLong-term trendsPopulation densityPopulation changeHealth threatClimate
2023
Long-term exposure to ambient air pollution and inflammatory response in the KORA study
Vogli M, Peters A, Wolf K, Thorand B, Herder C, Koenig W, Cyrys J, Maestri E, Marmiroli N, Karrasch S, Zhang S, Pickford R. Long-term exposure to ambient air pollution and inflammatory response in the KORA study. The Science Of The Total Environment 2023, 912: 169416. PMID: 38123091, DOI: 10.1016/j.scitotenv.2023.169416.Peer-Reviewed Original ResearchConceptsLong-term exposure to ambient air pollutionLong-term exposure to air pollutionExposure to ambient air pollutionExposure to air pollutionAmbient air pollutionAir pollutionUltrafine particlesParticulate matterIncrease of PM<sLand-use regression modelsAnnual mean concentrationsAtmospheric particulate matterAssociated with increased IL-6Adverse health effectsAssociated with higher concentrationsLand-useMean concentrationsParticipant's home addressPollutionLong-term studiesHealth effectsHigher concentrationsNitrogen oxidesMultiple linear regressionHome address
2022
Longitudinal associations between metabolites and long-term exposure to ambient air pollution: Results from the KORA cohort study
Yao Y, Schneider A, Wolf K, Zhang S, Wang-Sattler R, Peters A, Breitner S. Longitudinal associations between metabolites and long-term exposure to ambient air pollution: Results from the KORA cohort study. Environment International 2022, 170: 107632. PMID: 36402035, DOI: 10.1016/j.envint.2022.107632.Peer-Reviewed Original ResearchConceptsLong-term exposure to air pollutionExposure to air pollutionLand-use regressionAir pollutionPhosphatidylcholine acyl-alkylParticulate matterLong-term exposure to ambient air pollutionAverage concentrations of ultrafine particlesExposure to ambient air pollutionEstimate annual average concentrationsAssociated with cardiopulmonary diseasesAmbient air pollutionConcentrations of ultrafine particlesPopulation-based Cooperative Health ResearchAmbient pollutantsLand-useAerodynamic diameterCooperative Health ResearchPollutionS4 surveyCoarse particlesFine particlesMixed-effects regression modelsUltrafine particlesNitrogen oxidesClimate change increases cross-species viral transmission risk
Carlson C, Albery G, Merow C, Trisos C, Zipfel C, Eskew E, Olival K, Ross N, Bansal S. Climate change increases cross-species viral transmission risk. Nature 2022, 607: 555-562. PMID: 35483403, DOI: 10.1038/s41586-022-04788-w.Peer-Reviewed Original ResearchConceptsViral sharingRange shiftsRange shifts of speciesHuman population densityGeographic range shiftsUnique dispersal abilityLand-use scenariosShifts of speciesGlobal environmental changeGeographically isolated speciesBiodiversity surveysBiodiversity hotspotHolding warmingMammal speciesDispersal abilityLand-useLand usePotential hotspotsClimate-changePopulation densityCross-species transmissionPhylogeographic modelsEnvironmental changesEcological transitionVirus species
2018
Long-term effects of air pollution on ankle-brachial index
Zhang S, Wolf K, Breitner S, Kronenberg F, Stafoggia M, Peters A, Schneider A. Long-term effects of air pollution on ankle-brachial index. Environment International 2018, 118: 17-25. PMID: 29787898, DOI: 10.1016/j.envint.2018.05.025.Peer-Reviewed Original ResearchConceptsEffects of air pollutionLong-term exposure to PMExposure to PMAir pollutionParticulate matterLong-term exposure to air pollutionAdverse effects of air pollutionLand-use regression modelsLong-term effects of air pollutionExposure to air pollutionAnnual mean concentrationsHigh ankle-brachial indexAnkle-brachial indexAbnormal ankle-brachial indexLand-useMean concentrationsAerodynamic diameterPollutionNitrogen dioxideGeographic information systemPercentile incrementOdds ratioPrevalence of low ankle-brachial indexRegression modelsRegion of Augsburg
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