Search results for "Tick Infestation"

showing 9 items of 9 documents

Temporal dynamics of the tick Ixodes ricinus in northern Europe : epidemiological implications

2017

Background Tick-borne pathogens pose an increasing threat to human and veterinary health across the northern hemisphere. While the seasonal activity of ticks is largely determined by climatic conditions, host-population dynamics are also likely to affect tick abundance. Consequently, abundance fluctuations of rodents in northern Europe are expected to be translated into tick dynamics, and can hence potentially affect the circulation of tick-borne pathogens. We quantified and explained the temporal dynamics of the tick Ixodes ricinus in the northernmost part of its European geographical range, by estimating (i) abundance in vegetation and (ii) infestation load in the most common rodent speci…

0301 basic medicineMaleNymphIxodes ricinusTime FactorsPopulation dynamics030231 tropical medicineIxodes ricinusTickmedicine.disease_causeModels BiologicalRodent hostlcsh:Infectious and parasitic diseasesrodent host03 medical and health sciences0302 clinical medicinekansanterveysInfestationparasitic diseasesmedicineAnimalslcsh:RC109-216NymphPublic healthbiologyIxodesEcologyArvicolinaeseasonalityResearchRicinusfungiSeasonalitybiology.organism_classificationpopulaatiodynamiikkaTick InfestationsBank vole030104 developmental biologyInfectious DiseasesArvicolinaeLarvaParasitologyIxodesFemaleSeasons
researchProduct

A large-scale screening for the taiga tick, Ixodes persulcatus, and the meadow tick, Dermacentor reticulatus, in southern Scandinavia, 2016

2019

Abstract The taiga tick, Ixodes persulcatus, has previously been limited to eastern Europe and northern Asia, but recently its range has expanded to Finland and northern Sweden. The species is of medical importance, as it, along with a string of other pathogens, may carry the Siberian and Far Eastern subtypes of tick-borne encephalitis virus. These subtypes appear to cause more severe disease, with higher fatality rates than the central European subtype. Until recently, the meadow tick, Dermacentor reticulatus, has been absent from Scandinavia, but has now been detected in Denmark, Norway and Sweden. Dermacentor reticulatus carries, along with other pathogens, Babesia canis and Rickettsia r…

0301 basic medicineNymphmeadow tickDermacentor reticulatus030231 tropical medicineZoologyIxodes persulcatusIxodes persulcatusTickScandinavian and Nordic CountriesSiberian and Far Eastern tick-borne encephalitisTaiga ticklcsh:Infectious and parasitic diseases03 medical and health sciences0302 clinical medicineDogsDermacentor reticulatusBabesiosisparasitic diseasesmedicineAnimalslcsh:RC109-216NymphLetter to the Editorrange expansionDermacentorSwedenTick-borne diseasebiologyIxodesNorwayTick-borne encephalitisArthropod VectorsBabesiosismedicine.diseasebiology.organism_classificationGrasslandTick Infestations030104 developmental biologyInfectious DiseasesTick-Borne DiseasesEpidemiological MonitoringBabesia canissouthern ScandinaviaParasitologyAnimal DistributionEncephalitis Tick-BorneParasites & Vectors
researchProduct

Tick-borne pathogens in Ixodes ricinus ticks collected from migratory birds in southern Norway

2020

Birds are important hosts for the first life stages of the Ixodes ricinus tick and they can transport their parasites over long distances. The aim of this study was to investigate the prevalence of Borrelia burgdorferi sensu lato, Anaplasma phagocytophilum, Neoehrlichia mikurensis and Rickettsia helvetica in ticks collected from migratory birds in Norway. A total of 815 Ixodes ricinus ticks from 216 birds trapped at Lista Bird Observatory in southern Norway during spring and autumn migration in 2008 were analysed by real-time PCR. B. burgdorferi s. l. was the most prevalent pathogen, detected in 6.1% of the ticks. The prevalence of N. mikurensis, A. phagocytophilum and R. helvetica was 1.2%…

Bacterial Diseases0301 basic medicineLife CyclesSocial SciencesDisease VectorsPathology and Laboratory Medicinemedicine.disease_causePolymerase Chain ReactionTicks0302 clinical medicineMedicine and Health SciencesPrevalencePsychologyRickettsiaFlowering PlantsTick-borne diseaseMultidisciplinaryAnimal BehaviorCoinfectionNorwayQREukaryotaPlantsBacterial PathogensSpringAnaplasmataceaeInfectious DiseasesMedical MicrobiologyTick-Borne DiseasesVertebratesMedicineSeasonsPathogensResearch ArticleAnaplasma phagocytophilumDNA BacterialIxodes ricinusBorrelia BurgdorferiArthropodaScience030106 microbiology030231 tropical medicineZoologyBiologyTickMicrobiologyBirds03 medical and health sciencesBorreliaArachnidaparasitic diseasesmedicineVDP::Matematikk og Naturvitenskap: 400::Basale biofag: 470AnimalsBorrelia burgdorferiMicrobial PathogensBehaviorBacteriaIxodesRicinusBird DiseasesBorreliaOrganismsBiology and Life Sciencesbiology.organism_classificationmedicine.diseasebacterial infections and mycosesInvertebratesBorrelia InfectionAnaplasma phagocytophilumNymphsTick InfestationsSpecies InteractionsRickettsia helveticaAmniotesEarth SciencesAnimal MigrationIxodesZoologyDevelopmental Biology
researchProduct

Do bank voles (Myodes glareolus) trapped in live and lethal traps show differences in tick burden?

2020

In studies assessing tick abundance, the use of live traps to capture and euthanize rodent hosts is a commonly used method to determine their burden. However, captive animals can experience debilitating or fatal capture stress as a result prior to collection. An alternative method is the use of lethal traps, but this can potentially lead to tick drop-off between the time of capture and collection. In this study, in order to determine whether subjecting animals to capture stress is inevitable, we tested the difference in sheep tick (Ixodes ricinus) larval burdens between bank voles (Myodes glareolus) captured alive and euthanized, and lethally trapped bank voles. During 2017 and 2018, 1318 b…

Male0106 biological sciencesLife CyclesRodentMyodes glareolusDisease Vectors01 natural sciencesLarvaeMedical ConditionsTicks0302 clinical medicineMedicine and Health SciencesFlowering PlantsMammalsAlternative methodsLarvaMultidisciplinaryArvicolinaeNorwayQREukaryotaRuminantsPlantsSpringInfectious DiseasesLarvaEpidemiological MonitoringVertebratesMedicineFemaleSeasonsSex ratioResearch ArticleIxodes ricinusArthropodaScience030231 tropical medicineZoologyBiologyTickRodents010603 evolutionary biology03 medical and health sciencesbiology.animalArachnidaAnimalsCollection methodsIxodesEuthanasiaRicinusDeerVolesOrganismsBiology and Life Sciencesbiology.organism_classificationInvertebratesTick InfestationsSpecies InteractionsAmniotesEarth SciencesZoologyDevelopmental BiologyVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480
researchProduct

High-elevational occurrence of two tick species, Ixodes ricinus and I. trianguliceps, at their northern distribution range

2021

Abstract Background During the last decades a northward and upward range shift has been observed among many organisms across different taxa. In the northern hemisphere, ticks have been observed to have increased their latitudinal and altitudinal range limit. However, the elevational expansion at its northern distribution range remains largely unstudied. In this study we investigated the altitudinal distribution of the exophilic Ixodes ricinus and endophilic I. trianguliceps on two mountain slopes in Norway by assessing larval infestation rates on bank voles (Myodes glareolus). Methods During 2017 and 2018, 1325 bank voles were captured during the spring, summer and autumn at ten trapping st…

Male0301 basic medicineIxodes ricinusRange (biology)Ixodes ricinus030231 tropical medicineIxodes triangulicepsDistributionTickmedicine.disease_causelcsh:Infectious and parasitic diseases03 medical and health sciencesTicks0302 clinical medicineAltitudeRange shiftIxodes triangulicepsparasitic diseasesMyodes glareolusInfestationmedicineAnimalsVDP::Medisinske Fag: 700lcsh:RC109-216IxodesbiologyArvicolinaeNorwayEcologyResearchAltitudeBank voleRicinusbiology.organism_classificationTick InfestationsBank vole030104 developmental biologyInfectious DiseasesTick-Borne DiseasesFemaleParasitologySeasonsAnimal DistributionParasites & Vectors
researchProduct

Ticks infesting humans in Italy and associated pathogens

2014

Background: Ticks may transmit a large variety of pathogens, which cause illnesses in animals and humans, commonly referred to as to tick-borne diseases (TBDs). The incidence of human TBDs in Italy is underestimated because of poor surveillance and the scant amount of studies available. Methods. Samples (n = 561) were collected from humans in four main geographical areas of Italy (i.e., northwestern, northeastern, southern Italy, and Sicily), which represent a variety of environments. After being morphologically identified, ticks were molecularly tested with selected protocols for the presence of pathogens of the genera Rickettsia, Babesia, Theileria, Candidatus Neoehrlichia mikurensis, Bor…

MaleVeterinary medicineBorrelia valaisianaSettore MED/17 - Malattie InfettiveRhipicephalus sanguineusInfectious DiseaseDistributionBorrelia afzeliimedicine.disease_causeTicksparasitic diseasesmedicineTick-borne diseasesHumansAnimalsTick-borne diseasebiologyPathogenAnimalMedicine (all)ResearchTick-borne diseasebiology.organism_classificationmedicine.diseaseHaemaphysalisbacterial infections and mycosesTick InfestationTick InfestationsRhipicephalusInfectious DiseasesItalyIxodesParasitologyFemaleDistribution; Humans; Italy; Pathogens; Tick-borne diseases; Ticks; Animals; Female; Humans; Italy; Male; Tick Infestations; Ticks; Parasitology; Infectious Diseases; Medicine (all)PathogensDermacentorHumanTick
researchProduct

Vectors of tick-borne diseases and epidemiological situation in Latvia in 1993-2002.

2004

During the period of 1993-2002 an increase and the remarkable changes in the incidence of tick-borne encephalitis (TBE) and Lyme borreliosis (LB) as well as annual activities of vector species were noticed. The highest increase of TBE morbidity in Latvia has been observed in 1994 and 1995, and less expressed also in 1998 which was followed by a significant decrease during subsequent years. Whereas the highest peak of LB morbidity has been noticed in 1998 with only a minor decrease during subsequent years. Two epidemiologically significant Ixodes tick species are common in Latvia. Ixodes ricinus L. spread in the western and central part of Latvia; but rarely and in small numbers also in the …

Microbiology (medical)DNA BacterialVeterinary medicineIxodes ricinusEhrlichiaIxodes persulcatusTickDisease VectorsMicrobiologyPolymerase Chain ReactionEncephalitis Viruses Tick-BorneLyme diseaseparasitic diseasesmedicineAnimalsHumansRetrospective StudiesTick-borne diseaseLyme DiseasebiologyIxodesEhrlichiaIncidenceRicinusEhrlichiosisbacterial infections and mycosesbiology.organism_classificationmedicine.diseaseVirologyLatviaTick InfestationsTick-Borne DiseasesBorrelia burgdorferiIxodesSeasonsEncephalitis Tick-BornePolymorphism Restriction Fragment LengthInternational journal of medical microbiology : IJMM
researchProduct

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
researchProduct

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
researchProduct