Search results for "Ixodes"

showing 9 items of 59 documents

Predicting and mapping human risk of exposure to

2019

Background Tick-borne diseases have become increasingly common in recent decades and present a health problem in many parts of Europe. Control and prevention of these diseases require a better understanding of vector distribution. Aim Our aim was to create a model able to predict the distribution of Ixodes ricinus nymphs in southern Scandinavia and to assess how this relates to risk of human exposure. Methods We measured the presence of I. ricinus tick nymphs at 159 stratified random lowland forest and meadow sites in Denmark, Norway and Sweden by dragging 400 m transects from August to September 2016, representing a total distance of 63.6 km. Using climate and remote sensing environmental …

Nymphexposure riskClimateDenmarkPopulation DynamicsIxodes ricinustick-borne diseaseboosted regression treesEnvironmentScandinavian and Nordic CountriesModels Biologicalenvironmental satellite dataparasitic diseasesAnimalsHumansSwedenLyme DiseaseGeographyIxodesNorwayResearchhuman population densitypublic healthEnvironmental ExposureTick InfestationsPhylogeographyRemote Sensing TechnologySeasonsEncephalitis Tick-Bornenorthern EuropeEuro surveillance : bulletin Europeen sur les maladies transmissibles = European communicable disease bulletin
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Sialotranscriptomics of the argasid tick ornithodoros moubata along the trophogonic cycle

2021

32 páginas, 8 tablas, 6 figuras

Proteomics0301 basic medicineSwinePhysiologyRC955-962Gene ExpressionDisease VectorsProteomicsBiochemistryTranscriptomeMedical Conditions0302 clinical medicineTicksArctic medicine. Tropical medicineGene expressionMedicine and Health SciencesHuman relapsing feverGeneticsbiologyEukaryotaGenomicsProteasesBody FluidsEnzymesBloodInfectious DiseasesFemaleMetabolic PathwaysAnatomyPublic aspects of medicineRA1-1270Transcriptome analysisVitellogeninsMetabolic Networks and PathwaysResearch ArticleIxodidaeArthropoda030231 tropical medicineTickSalivary glandsArthropod Proteins03 medical and health sciencesExocrine GlandsOrnithodoros moubataArachnidaGeneticsAnimalsXenobiotic MetabolismTick ControlOrnithodorosSalivaIllumina dye sequencingIxodesAsfarviridaeImmunityOrganismsPublic Health Environmental and Occupational HealthBiology and Life SciencesComputational BiologyProteinsGenome Analysisbiology.organism_classificationInvertebratesOrnithodoros moubataPhospholipases A2Species InteractionsMetabolism030104 developmental biologyAfricaEnzymologyMetalloproteasesAfrican swine feverTranscriptomeDigestive SystemZoology
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Spatial data of Ixodes ricinus instar abundance and nymph pathogen prevalence, Scandinavia, 2016-2017.

2020

ticks carry pathogens that can cause disease in both animals and humans, and there is a need to monitor the distribution and abundance of ticks and the pathogens they carry to pinpoint potential high risk areas for tick-borne disease transmission. In a joint Scandinavian study, we measured Ixodes ricinus instar abundance at 159 sites in southern Scandinavia in August-September, 2016, and collected 29,440 tick nymphs at 50 of these sites. We additionally measured abundance at 30 sites in August-September, 2017. We tested the 29,440 tick nymphs in pools of 10 in a Fluidigm real-time PCR chip to screen for 17 different tick-associated pathogens, 2 pathogen groups and 3 tick species. We present…

Statistics and ProbabilityNymphIxodes ricinus030231 tropical medicineZoologyLibrary and Information SciencesTickScandinavian and Nordic CountriesEducation03 medical and health sciences0302 clinical medicineAbundance (ecology)parasitic diseasesAnimalsNymphlcsh:ScienceAuthor CorrectionPathogenEcosystemEcological epidemiology0303 health sciencesEcologybiologyIxodes030306 microbiologybiology.organism_classificationComputer Science ApplicationsHabitatInstarlcsh:QStatistics Probability and UncertaintyBacterial infectionDisease transmissionEntomologyAnimal DistributionInformation SystemsVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480Scientific data
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A comparison of infestation patterns by Ixodes ticks in urban and rural populations of the Common Blackbird Turdus merula

2002

Although spatial variation in the patterns of parasite infestations among host populations may have important ecological and epidemiological consequences, the causes underlying such variation are poorly known. In the context of a long-term study on the population biology of Common Blackbirds Turdus merula , we examined the prevalence and intensity of infestation by Ixodes ticks between birds living in rural vs. urban habitats. The overall prevalence of tick infestations was significantly higher in the rural habitat where 74% of individuals ( n = 130) were infested. This result contrasted markedly with the situation in the urban habitat where less than 2% of individuals ( n = 360) carried ti…

biologyEcologyContext (language use)Population biologyTickbacterial infections and mycosesbiology.organism_classificationmedicine.disease_causePopulation densityparasitic diseasesInfestationmedicineAnimal Science and ZoologyIxodesAcariEcology Evolution Behavior and SystematicsIxodidaeIbis
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Comparing the Climatic and Landscape Risk Factors for Lyme Disease Cases in the Upper Midwest and Northeast United States

2020

Lyme disease, recognized as one of the most important vector-borne diseases worldwide, has been increasing in incidence and spatial extend in United States. In the Northeast and Upper Midwest, Lyme disease is transmitted by Ixodes scapularis. Currently, many studies have been conducted to identify factors influencing Lyme disease risk in the Northeast, however, relatively few studies focused on the Upper Midwest. In this study, we explored and compared the climatic and landscape factors that shape the spatial patterns of human Lyme cases in these two regions, using the generalized linear mixed models. Our results showed that climatic variables generally had opposite correlations with Lyme d…

esiintyvyysympäristötekijätHealth Toxicology and MutagenesisClimate030231 tropical medicinelcsh:MedicineEnvironmentForestsmaisemaArticleMidwestern United Statesmetsätyypit03 medical and health sciences0302 clinical medicineLyme diseaseNew EnglandRisk FactorsLymen borrelioosimedicineLyme diseaseAnimalsHumans030212 general & internal medicineBorrelia burgdorfericlimateforest fragmentationLyme DiseasebiologyIxodespaikallisilmastoIncidence (epidemiology)lcsh:RPublic Health Environmental and Occupational HealthClimatic variablesmedicine.diseasebiology.organism_classificationbacterial infections and mycosesLYMEBorrelia-bakteerit<i>Borrelia burgdorferi</i>DeciduousGeographyborrelioosiIxodes scapularisBorrelia burgdorferiSpatial ecologyLinear ModelsDemographyInternational Journal of Environmental Research and Public Health
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The role of maternal effects in host-parasite interactions: examination of the development of the immune defense in a colonial seabird, the black-leg…

2004

One of the main aims of evolutionary biology is to understand the mechanisms responsible for the phenotypic variation on which natural selection can act. Maternal effects occur when a mother's phenotype or her environment influence her offspring's phenotype. Despite the importance of such effects for the ecology of host-parasite interactions, their role has been relatively neglected to date. In this thesis, we examined how mothers influence the immune defense of their young in an environment that varies in space and time. This work has primarily focused on a colonial seabird, the black-legged kittiwake (Rissa tridactyla). Using this model, we have first shown that specific maternal antibodi…

immunité passive[SDE.MCG]Environmental Sciences/Global Changesdéfenses immunitairesinduced responseimmunoglobulins[ SDV.IMM.IA ] Life Sciences [q-bio]/Immunology/Adaptive immunologyIxodes uriae[ SDV.EE.SANT ] Life Sciences [q-bio]/Ecology environment/Healthticksindividual qualitymaladie de Lymetiques[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis[SDV.BID.EVO] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE][SDV.EE.SANT] Life Sciences [q-bio]/Ecology environment/HealthLyme diseaseimmunoglobulinesBorrelia burgdorferi s.l.[SDV.EE.SANT]Life Sciences [q-bio]/Ecology environment/Health[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology[SDV.BA.MVSA]Life Sciences [q-bio]/Animal biology/Veterinary medicine and animal Health[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE][SDV.BA.MVSA] Life Sciences [q-bio]/Animal biology/Veterinary medicine and animal Health[SDV.EE.IEO] Life Sciences [q-bio]/Ecology environment/Symbiosisimmune defense[SDE.BE] Environmental Sciences/Biodiversity and Ecologyinteractions hôte-parasiteeffets maternels[ SDE.MCG ] Environmental Sciences/Global Changes[SDE.MCG] Environmental Sciences/Global Changeshost-parasite interactions[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]passive immunity[SDV.IMM.IA]Life Sciences [q-bio]/Immunology/Adaptive immunology[SDV.IMM.IA] Life Sciences [q-bio]/Immunology/Adaptive immunologyqualité individuelle.maternal effectsoiseaux de mer[ SDV.BA.MVSA ] Life Sciences [q-bio]/Animal biology/Veterinary medicine and animal Healthectoparasitesréponse induite[SDE.BE]Environmental Sciences/Biodiversity and Ecologyseabirds[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Rodent host population dynamics drive zoonotic Lyme Borreliosis and Orthohantavirus infections in humans in Northern Europe

2021

Zoonotic diseases, caused by pathogens transmitted between other vertebrate animals and humans, pose a major risk to human health. Rodents are important reservoir hosts for many zoonotic pathogens, and rodent population dynamics affect the infection dynamics of rodent-borne diseases, such as diseases caused by hantaviruses. However, the role of rodent population dynamics in determining the infection dynamics of rodent-associated tick-borne diseases, such as Lyme borreliosis (LB), caused by Borrelia burgdorferi sensu lato bacteria, have gained limited attention in Northern Europe, despite the multiannual abundance fluctuations, the so-called vole cycles, that characterise rodent population d…

jyrsijätSciencePopulation DynamicsDiseaseszoonoositinfektiotModels BiologicalPuumala virusArticlePuumala-virusZoonosesLymen borrelioosiisäntäeläimetAnimalsHumansFinlandDisease ReservoirsLyme DiseaseEcologyHost Microbial InteractionsIxodesArvicolinaeIncidenceQRpopulaatiodynamiikkaBorrelia-bakteerittaudinaiheuttajatborrelioosiHemorrhagic Fever with Renal SyndromeLinear ModelsMedicineArachnid VectorsScientific Reports
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Patogēnu prevalence migrējošo putnu ērcēs 2018. gadā Papē

2022

Šajā pētījumā ir analizēta Borrelia spp., Babesia spp., Rickettsia spp., Anaplasma phagocytophilum un Ca. N. mikurensis prevalence 2018. gadā Papē ievāktās migrējošo putnu ērcēs. Izmantojot PCR metodes tika analizētas 788 Ixodes ricinus ērces, kas nolasītas no 369 putniem. Kur nepieciešams, patogēnus noteica līdz sugas līmenim, izmantojot sekvencēšanu. Tika konstatēts, ka minētie patogeni ir sastopami ar šādu prevelenci: Borrelia sp. – 7,86 %, Babesia sp. – 0,63 %, Rickettsia spp. – 11,41 %, A. phagocytophilum – 0,76 %, un Ca. N. mikurensis – 4,06 %. Proporcionāli visvairāk ērču bija Turdus ģints, Erithacus rubecula un Acrocephalus ģints putniem, kuru ligzdošanas un barošanās uzvedība veici…

migrējošie putniērču pārnēsātie patogēniIxodes ricinusBioloģijaLatvija
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Questing abundance of adult taiga ticks Ixodes persulcatus and their Borrelia prevalence at the north-western part of their distribution

2020

Background Because ixodid ticks are vectors of zoonotic pathogens, including Borrelia, information of their abundance, seasonal variation in questing behaviour and pathogen prevalence is important for human health. As ticks are invading new areas northwards, information from these new areas are needed. Taiga tick (Ixodes persulcatus) populations have been recently found at Bothnian Bay, Finland. We assessed seasonal variation in questing abundance of ticks and their pathogen prevalence in coastal deciduous forests near the city of Oulu (latitudes 64–65°) in 2019. Methods We sampled ticks from May until September by cloth dragging 100 meters once a month at eight study sites. We calculated a…

rannikkoalueetTemporal tick dynamicsIxodes persulcatuslcsh:Infectious and parasitic diseasesEncephalitis Viruses Tick-BorneCoastal forestco-infectionparasitic diseasesPrevalenceAnimalsHumanslcsh:RC109-216Finlandtemporal tick dynamicsLyme DiseaseIxodesResearchBorreliaixodes persulcatuscoastal forestpunkitbacterial infections and mycosesmetsätCo-infectionTick InfestationsLarvaSeasonsEncephalitis Tick-BorneParasites & Vectors
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