0000000000268742

AUTHOR

Rob Van Bemmelen

showing 5 related works from this author

Ecological insights from three decades of animal movement tracking across a changing Arctic

2020

Ecological “big data” Human activities are rapidly altering the natural world. Nowhere is this more evident, perhaps, than in the Arctic, yet this region remains one of the most remote and difficult to study. Researchers have increasingly relied on animal tracking data in these regions to understand individual species' responses, but if we want to understand larger-scale change, we need to integrate our understanding across species. Davidson et al. introduce an open-source data archive that currently hosts more than 15 million location data points across 96 species and use it to show distinct climate change responses across species. Such ecological “big data” can lead to a wider understandi…

0106 biological sciencesEcology (disciplines)Acclimatization[SDV]Life Sciences [q-bio]PopulationPopulationEcological Parameter MonitoringClimate change010603 evolutionary biology01 natural sciences010605 ornithologyOnderz. Form. D.ddc:570Life ScienceAnimals14. Life underwaterNo themeeducationComputingMilieux_MISCELLANEOUSeducation.field_of_studyMultidisciplinaryEcologyPhenologyArchivesArctic RegionsData discoveryEcological Parameter MonitoringPlan_S-Compliant_NO15. Life on landSubarctic climateGeographyArctic13. Climate actioninternational[SDE]Environmental SciencesWIASDierecologieAnimal MigrationAnimal Ecology
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Multispecies tracking reveals a major seabird hotspot in the North Atlantic

2021

The conservation of migratory marine species, including pelagic seabirds, is challenging because their movements span vast distances frequently beyond national jurisdictions. Here, we aim to identify important aggregations of seabirds in the North Atlantic to inform ongoing regional conservation efforts. Using tracking, phenology, and population data, we mapped the abundance and diversity of 21 seabird species. This revealed a major hotspot associated with a discrete area of the subpolar frontal zone, used annually by 2.9–5 million seabirds from ≥56 colonies in the Atlantic: the first time this magnitude of seabird concentrations has been documented in the high seas. The hotspot is temporal…

0106 biological sciencesmarine protected areaSHEARWATERSSTOPOVERMarine protected area01 natural sciencesBiologging conservationAbundance (ecology)HABITATComputingMilieux_MISCELLANEOUSEcologybiologyPhenologyconservationArea beyond national jurisdictionOVERLAPHotspot (Wi-Fi)Geographyarea beyond national jurisdictionInternational waters[SDE]Environmental SciencesPopulation dataSeabirdMIGRATIONCONSERVATIONQH1-199.5010603 evolutionary biologyEcology and EnvironmentFEEDING ECOLOGYbiologgingbiology.animalparasitic diseasesVDP::Mathematics and natural science: 400::Zoology and botany: 480High seas14. Life underwaterPELAGIC SEABIRDEcology Evolution Behavior and Systematicsregional seas conventionNature and Landscape ConservationMOVEMENTS010604 marine biology & hydrobiologyfungiGeneral. Including nature conservation geographical distributionPelagic zoneRegional seas conventionFisheryMarine Scienceshigh seasAtlanticMarine protected areaVDP::Matematikk og Naturvitenskap: 400::Zoologiske og botaniske fag: 480
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Behavioural responses of breeding arctic sandpipers to ground-surface temperature and primary productivity

2021

Most birds incubate their eggs, which requires time and energy at the expense of other activities. Birds generally have two incubation strategies: biparental where both mates cooperate in incubating eggs, and uniparental where a single parent incubates. In harsh and unpredictable environments, incubation is challenging due to high energetic demands and variable resource availability. We studied the relationships between the incubation behaviour of sandpipers (genus Calidris) and two environmental variables: temperature and a proxy of primary productivity (i.e. NDVI). We investigated how these relationships vary between incubation strategies and across species among strategies. We also stud…

Environmental EngineeringAves [Birds]010504 meteorology & atmospheric sciencesSandpiperNDVIZoologyIncubation recesses010501 environmental sciencesBiologyBreeding01 natural sciencesIncubation behaviourNesting BehaviorCharadriiformesincubation recessesEnvironmental ChemistrySmall speciesAnimalsEnvironmental conditionsWaste Management and DisposalIncubationPrimary productivity0105 earth and related environmental sciencesReproductive successArctic Regionsincubation strategyLag effectsGround surface temperatureTemperatureincubation behaviourShorebirdbiology.organism_classificationPollutionlag effectsenvironmental conditionsArcticshorebirdIncubation strategyGenus Calidris[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Seabird migration strategies: Flight budgets, diel activity patterns and lunar influence

2021

Every year, billions of birds undertake extensive migrations between breeding and nonbreeding areas, facing challenges that require behavioural adjustments, particularly to flight timing and duration. Such adjustments in daily activity patterns and the influence of extrinsic factors (e.g., environmental conditions, moonlight) have received much more research attention in terrestrial than marine migrants. Taking advantage of the widespread deployment in recent decades of combined light-level geolocator-immersion loggers, we investigated diel organisation and influence of the moon on flight activities during the non-breeding season of 21 migrant seabird species from a wide taxonomic range (6 …

0106 biological sciencesMoonlightRange (biology)ScienceBird migrationmoon phasesOcean EngineeringAquatic ScienceNocturnalQH1-199.5Oceanography010603 evolutionary biology01 natural sciencestransequatorial migrantsNocturnalitybiology.animalmigratory behaviourDiel vertical migrationWater Science and TechnologyFull moonecological barriersGlobal and Planetary ChangebiologyBusiness Manager projecten Midden-Noord010604 marine biology & hydrobiologynocturnalityQGeneral. Including nature conservation geographical distributionFisheryGeography[SDE]Environmental SciencesSeabirdbird migrationBusiness Manager projects Mid-North
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Flexibility in otherwise consistent non-breeding movements of a long-distance migratory seabird, the long-tailed skua

2017

Quantifying within- and between-individual variation in animal migration strategies is a first step towards our understanding of the ability of migrants to adjust to changes in the en - vironment. We studied consistency (or, conversely, flexibility) in movement patterns at large (>1000 km) to meso-scales (100−1000 km) during the non-breeding season of the long-tailed skua Stercorarius longicaudus, a long-distance migratory Arctic seabird, using light-based geolocation. We obtained 97 annual tracks of 38 individuals and quantified similarity between routes. Overall, tracks of the same individual were generally within about 200 to 300 km of their previous year’s route, and more similar than t…

ATLANTIC0106 biological sciencesEnvironmental changeIndividual consistency · Repeatability · Stercorarius longicaudus · Seabirds · Tracking · Non-breeding movements · Flexibility:Zoology and botany: 480 [VDP]CONSERVATIONMODELSTRANS-EQUATORIAL MIGRATIONAquatic Science010603 evolutionary biology01 natural sciencesSkuaStercorarius longicaudusOnderzoeksformatieOCEANALBATROSSESindividual consistencyDISPERSALbiology.animalRepeatability:Zoologiske og botaniske fag: 480 [VDP]Ecology Evolution Behavior and SystematicsEcologybiologyEcology[SDV.BID.EVO]Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]010604 marine biology & hydrobiologyFlexibility (personality)trackingbiology.organism_classificationTERNS STERNA-PARADISAEASeabirdsGeolocation[ SDV.BID.EVO ] Life Sciences [q-bio]/Biodiversity/Populations and Evolution [q-bio.PE]GeographyArcticWildlife Ecology and ConservationStercorarius longicaudusNAVIGATIONWIASnon-breeding movementsBiological dispersalSeabirdFlexibilityBEHAVIOR
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