Search results for "Movement ecology"

showing 10 items of 13 documents

Tri-axial accelerometry shows differences in energy expenditure and parental effort throughout the breeding season in long-lived raptors

2021

Cutting-edge technologies are extremely useful to develop new workflows in studying ecological data, particularly to understand animal behavior and movement trajectories at the individual level. Although parental care is a well-studied phenomenon, most studies have been focused on direct observational or video recording data, as well as experimental manipulation. Therefore, what happens out of our sight still remains unknown. Using high-frequency GPS/GSM dataloggers and tri-axial accelerometers we monitored 25 Bonelli’s eagles Aquila fasciata during the breeding season to understand parental activities from a broader perspective. We used recursive data, measured as number of visits and resi…

0106 biological sciences010604 marine biology & hydrobiologyBiologgingGPSSpace useODBA010603 evolutionary biology01 natural sciencesValencian communityMovement ecologyGeographyEnergy expenditureZoologiaSpace useSeasonal breederTelemetryAnimal Science and ZoologyOrnitologiaZoologíaSocioeconomics
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Spatial and Temporal Variability in Migration of a Soaring Raptor Across Three Continents

2019

Disentangling individual- and population-level variation in migratory movements is necessary for understanding migration at the species level. However, very few studies have analyzed these patterns across large portions of species' distributions. We compiled a large telemetry dataset on the globally endangered egyptian vulture neophron percnopterus (94 individuals, 188 completed migratory journeys), tracked across similar to 70% of the species' global range, to analyze spatial and temporal variability of migratory movements within and among individuals and populations. We found high migratory connectivity at large spatial scales (i.e., different subpopulations showed little overlap in winte…

0106 biological sciences0301 basic medicineSatellite trackingconservation biologyEnvironmental changeRange (biology)GPSPopulationlcsh:EvolutionEndangered speciesPhenotypic plasticity010603 evolutionary biology01 natural sciencesphenotypic plasticityMovement ecology03 medical and health sciencesmigration connectivitylcsh:QH540-549.5Flywaybiology.animalNeophron percnopteruslcsh:QH359-425ZoologíaeducationEcology Evolution Behavior and SystematicsVulture2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environmenteducation.field_of_studyEcologybiologyConservation biologyEcologysatellite tracking[SDV.BA]Life Sciences [q-bio]/Animal biology15. Life on landMigration connectivity; Neophron percnopterus; Conservation biology; Movement ecology; Satellite tracking; GPS; Phenotypic plasticityBiology; Environmental sciences and ecology030104 developmental biologyGeographymovement ecologyNeophron percnopteruslcsh:EcologyConservation biologyMigration connectivity
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Diurnal timing of nonmigratory movement by birds: the importance of foraging spatial scales

2020

Timing of activity can reveal an organism's efforts to optimize foraging either by minimizing energy loss through passive movement or by maximizing energetic gain through foraging. Here, we assess whether signals of either of these strategies are detectable in the timing of activity of daily, local movements by birds. We compare the similarities of timing of movement activity among species using six temporal variables: start of activity relative to sunrise, end of activity relative to sunset, relative speed at midday, number of movement bouts, bout duration and proportion of active daytime hours. We test for the influence of flight mode and foraging habitat on the timing of movement activit…

0106 biological sciencesDaytimeflight modetemporalForagingZoologyBiologySunsetTemporalnonmigratory01 natural sciences010605 ornithologyforagingMovement ecologyflight mode foraging movement ecology multispecies nonmigratory temporalddc:570SunriseNonmigratoryZoologíaDaylightForagingEcology Evolution Behavior and SystematicsFlight modeMovement (music)MultispeciesPelagic zoneDidáctica de las Ciencias ExperimentalesmultispeciesHabitatmovement ecologyAnimal Science and ZoologyEnvironmental Sciences
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Time at risk: Individual spatial behaviour drives effectiveness of marine protected areas and fitness

2021

11 pages, 6 figures, 1 table.-- Under a Creative Commons license

0106 biological sciencesFully protected areaHome rangeFish species010603 evolutionary biology01 natural sciencesIntraspecific competitionMovement ecologyConservation ecologyTime at riskSpillover effectMarine protected areas14. Life underwaterRepeatabiltyEcology Evolution Behavior and SystematicsSelection (genetic algorithm)Nature and Landscape Conservation010604 marine biology & hydrobiologyFisheryHome rangeGeographyTraitMarine protected areaFish behaviourIndividual behaviourBiological Conservation
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Spatial ecology and habitat use of adult Booted eagles (Aquila pennata) during the breeding season: implications for conservation.

2016

Fast-moving technological advances, such as satellite tracking technologies, are providing in-depth information of aspects of avian ecology hitherto unknown. In fact, detailed information about movement ecology and ranging behaviour of birds is important not only from the perspective of the basic ecology, but also from the conservation point of view. This is particularly important in European countries where agricultural intensification, land abandonment and the withdrawal of traditional management agro-forestry practices pose a threat to biodiversity. The Booted Eagle, likewise other forest raptors, is an adequate bioindicator of human-dominated agro-forestry Mediterranean landscapes in wh…

0106 biological sciencesHome rangeEcology (disciplines)GPSForagingBiodiversityEcologia animal010603 evolutionary biology01 natural sciences010605 ornithologyMovement ecologyZoologiaNatura 2000ZoologíaBooted eaglebiologyEcologybiology.organism_classificationHome rangeGeographyHabitatSpatial ecologySatellite telemetryNatura 2000Buffer areas
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Moving in the Anthropocene: Global reductions in terrestrial mammalian movements

2018

Made available in DSpace on 2018-11-26T17:44:52Z (GMT). No. of bitstreams: 0 Previous issue date: 2018-01-26 Robert Bosch Foundation Animal movement is fundamental for ecosystem functioning and species survival, yet the effects of the anthropogenic footprint on animal movements have not been estimated across species. Using a unique GPS-tracking database of 803 individuals across 57 species, we found that movements of mammals in areas with a comparatively high human footprint were on average one-half to one-third the extent of their movements in areas with a low human footprint. We attribute this reduction to behavioral changes of individual animals and to the exclusion of species with long-…

0106 biological sciencesNutrient cycleAnimal Ecology and PhysiologyEcology (disciplines):Zoology and botany: 480 [VDP]PopulationGPS telemetry010603 evolutionary biology01 natural sciencesMovement ecologyFootprintAnthropoceneSettore BIO/07 - ECOLOGIAddc:570AnimalsHumansHuman Activitiesvertebrats fòssilsEcosystem14. Life underwatereducation:Zoologiske og botaniske fag: 480 [VDP]ComputingMilieux_MISCELLANEOUSMammals2. Zero hungereducation.field_of_studyMultidisciplinaryEcology010604 marine biology & hydrobiology15. Life on land13. Climate actionGeographic Information SystemsTraitAnimal MigrationTerrestrial ecosystem[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Hydrogen isotopes reveal evidence of migration of Miniopterus schreibersii in Europe

2020

Abstract Background The Schreiber’s bat, Miniopterus schreibersii, is adapted to long-distance flight, yet long distance movements have only been recorded sporadically using capture-mark-recapture. In this study, we used the hydrogen isotopic composition of 208 wing and 335 fur specimens from across the species' European range to test the hypothesis that the species migrates over long distances. Results After obtaining the hydrogen isotopic composition (δ2H) of each sample, we performed geographic assignment tests by comparing the δ2H of samples with the δ2H of sampling sites. We found that 95 bats out of 325 showed evidence of long-distance movement, based on the analysis of either fur or …

0106 biological sciencesRange (biology)Species distributionChiroptera; Climate change; Long-distance migration; Movement ecology; Schreiber's bat; Stable isotope; Wildlife conservation; Animals; Europe; Hydrogen; Isotopes; ChiropteraSchreiber’s bat010603 evolutionary biology01 natural sciencesMovement ecologyIsotopesChiropteraClimate changeAnimalsQH540-549.5Ecology Evolution Behavior and SystematicsGeneral Environmental ScienceWildlife conservationSchreiber's batEcologyAnimalIsotopeEcology010401 analytical chemistryLong-distance migrationStable isotopeIsotopic composition0104 chemical sciencesEuropeEastern europeanMiniopterus schreibersiiGeographyWildlife conservationResearch ArticleHydrogenBMC Ecology
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Differential survival throughout the full annual cycle of a migratory bird presents a life‐history trade‐off

2021

1. Long‐distance migrations are among the most physically demanding feats animals perform. Understanding the potential costs and benefits of such behaviour is a fundamental question in ecology and evolution. A hypothetical cost of migration should be outweighed by higher productivity and/or higher annual survival, but few studies on migratory species have been able to directly quantify patterns of survival throughout the full annual cycle and across the majority of a species’ range. 2. Here, we use telemetry data from 220 migratory Egyptian vultures Neophron percnopterus, tracked for 3,186 bird months and across approximately 70% of the species’ global distribution, to test for differences …

0106 biological sciencesSurvivalRange (biology)Migration costTrade-offEvolutionary ecology010603 evolutionary biology01 natural sciencesLife history theoryLatitudeBirdsMovement ecologyMediterranean seaAfrica NorthernZoologiaNeophron percnopterusMediterranean SeaEgyptian vultureAnimalsZoologíaEcology Evolution Behavior and SystematicsEcology010604 marine biology & hydrobiologyLife-history theoryBayes TheoremAnnual cycleEuropeGeographyProductivity (ecology)Satellite telemetryOrnitologiaAnimal Science and ZoologyEvolutionary ecologyAnimal MigrationSeasons
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Large birds travel farther in homogeneous environments

2019

Aim: Animal movement is an important determinant of individual survival, population dynamics and ecosystem structure and function. Nonetheless, it is still unclear how local movements are related to resource availability and the spatial arrangement of resources. Using resident bird species and migratory bird species outside the migratory period, we examined how the distribution of resources affects the movement patterns of both large terrestrial birds (e.g., raptors, bustards and hornbills) and waterbirds (e.g., cranes, storks, ducks, geese and flamingos). Location: Global. Time period: 2003–2015. Major taxa studied: Birds. Methods: We compiled GPS tracking data for 386 individuals across 3…

0106 biological sciencesproductivityEnhanced vegetation indexPopulationForagingenhanced vegetation index landscape complementation movement ecology productivity spatial behaviour terrestrial birds waterbirdsspatial behaviour010603 evolutionary biology01 natural sciencesMovement ecologyddc:570landscape complementationWaterbirdsZoologíaeducationSpatial analysisEcology Evolution Behavior and SystematicsProductivityterrestrial birds2. Zero hungerGlobal and Planetary Changeeducation.field_of_studyEcologyEcology010604 marine biology & hydrobiologywaterbirdsEnhanced vegetation index15. Life on landLandscape complementationSpatial behaviourenhanced vegetation indexTaxonGeographyHabitat13. Climate actionHomogeneousTerrestrial birdsComplementarity (molecular biology)[SDE]Environmental Sciencesmovement ecology
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Data from: Moving in the Anthropocene: global reductions in terrestrial mammalian movements

2019

Animal movement is fundamental for ecosystem functioning and species survival, yet the effects of the anthropogenic footprint on animal movements have not been estimated across species. Using a unique GPS-tracking database of 803 individuals across 57 species, we found that movements of mammals in areas with a comparatively high human footprint were on average one-half to one-third the extent of their movements in areas with a low human footprint. We attribute this reduction to behavioral changes of individual animals and to the exclusion of species with long-range movements from areas with higher human impact. Global loss of vagility alters a key ecological trait of animals that affects no…

Alces alcesPapio cynocephalusOdocoileus hemionusSus scrofaSaiga tataricaMartes pennantimedicine and health careAnthropocenePuma concolorConnochaetes taurinusDasypus novemcinctusChrysocyon brachyurusOvibos moschatusPanthera pardusEquus hemionusTrichosurus vulpeculaLife SciencesLynx lynxPapio anubisUrsus arctosNDVI; diet; movement ecologyTolypeutes matacusmovement ecologyMedicineCapreolus capreolusEquus quaggaCanis latransPropithecus verreauxiBeatragus hunteriOdocoileus virginianusTamandua mexicanaSyncerus cafferLepus europaeusNDVICervus elaphusEquus grevyiEuphractus sexcinctusLoxodonta africanaOdocoileus hemionus columbianusProcyon lotorAntilocapra americanaMyrmecophaga tridactylaMadoqua guentheriGulo guloTapirus terrestrisPanthera oncaCerdocyon thousFelis silvestrisCanis aureusEulemur rufifronsSaguinus geoffroyiHuman FootprintRangifer tarandusCanis lupusCercocebus galeritusAepyceros melampusChlorocebus pygerythrusProcapra gutturosaLoxodonta africana cyclotisGiraffa camelopardalisdiet
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