Search results for "captivity"

showing 10 items of 29 documents

Breeding Geoffroy's cat in captivity

1975

Geoffroy's catCaptivityZoologyBiologyEcology Evolution Behavior and SystematicsNature and Landscape ConservationInternational Zoo Yearbook
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Effetti della cattività  su alcuni parametri ematologici del grifone (Gyps fulvus)

2017

Haematological analysis is an essential field of veterinary medicine that provides inexpensive and reliable support to determinate animal health. The knowledge of how different factors affect the normal mean values of blood parameters is key to understand and improve animal health. In order to investigate how captivity can affect the haematological profile of birds of prey, the erythrocyte count, haemoglobin concentration, haematocrit, mean corpuscular volume, total leukocytes count of 123 griffon vultures (Gyps fulvus) were analysed. The birds were divided into 4 groups according to their life conditions: a control group of free-living griffons, 2 semi-captive groups held in an aviary for …

Griffon vultureBirds of preyVeterinary (all)WildlifeCell countHaematologyCaptivity
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Indian Slavery, Labor, Evangelization, and Captivity in the Americas: An Annotated Bibliography.

1999

HistoryAnnotated bibliographyHistory and Philosophy of Sciencemedia_common.quotation_subjectCaptivityArtClassicsmedia_commonThe Journal of American History
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When the seasons don't fit: Speedy molt as a routine carry-over cost of reproduction

2013

The failure of animals to fit all life-cycle stages into an annual cycle could reduce the chances of successful breeding. In some cases, non-optimal strategies will be adopted in order to maintain the life-cycle within the scope of one year. We studied trade-offs made by a High Arctic migrant shorebird, the red knot Calidris canutus islandica, between reproduction and wing feather molt carried out in the non-breeding period in the Dutch Wadden Sea. We compared primary molt duration between birds undertaking the full migratory and breeding schedule with birds that forego breeding because they are young or are maintained in captivity. Molt duration was ca. 71 days in breeding adults, which wa…

MaleAnimal sexual behaviourTime FactorsAnatomy and PhysiologyAVIAN PRIMARY MOLTCaptivitylcsh:MedicineBreedingMoltingHABITAT USECharadriiformesOrnithologyWings Animallcsh:SciencePhysiological Ecologyeducation.field_of_studyMultidisciplinaryEcologyEcologyReproductionPLOVERS PLUVIALIS-SQUATAROLACost of reproductionCalidrisFeathervisual_artvisual_art.visual_art_mediumBird flightFemaleSeasonsResearch Articlefood.ingredientEvolutionary ProcessesMIGRATION STRATEGIESPopulationZoologyFEATHER QUALITYBody sizeBiologyfoodAnimalsAnimal PhysiologyAdaptationeducationBiologyAnalysis of VarianceEvolutionary BiologyANNUAL CYCLElcsh:RFeathersRED KNOTSSOUTHWARD MIGRATIONMarine EnvironmentsLIFE-CYCLEKNOTS CALIDRIS-CANUTUSEvolutionary Ecologylcsh:QPhysiological ProcessesZoologyEcological Environments
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Study of adult neurogenesis in the Gallotia galloti lizard during different seasons.

2011

In a previous study we found a seasonal distribution of cell proliferation (the first stage of adult neurogenesis) in the telencephalic ventricular walls of the adult Gallotia galloti lizard. The aim of the present work was to determine the influence of seasonality on the subsequent migration of the resulting immature neurons. We used wild animals injected with bromodeoxyuridine and kept in captivity within 30 days. To confirm the neuronal identity of these cells, we used double immunohistochemical 5-bromo-2'-deoxyuridine (BrdU) and doublecortin (DCX, an early neuronal marker) labeling, as well as autoradiography after the administration of methyl-[³H]thymidine ([³H]T). We found that: (1) t…

MaleTelencephalonCell divisionNeurogenesisCaptivityAndrologychemistry.chemical_compoundNeural Stem CellsCell MovementParenchymamedicineAnimalsMolecular BiologybiologyCerebrumGeneral NeuroscienceNeurogenesisAge FactorsGallotia gallotiCell DifferentiationLizardsAnatomybiology.organism_classificationDoublecortinmedicine.anatomical_structurechemistrybiology.proteinNeurology (clinical)SeasonsBromodeoxyuridineDevelopmental BiologyBrain research
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Seasonal differences in ventricular proliferation of adult Gallotia galloti lizards.

2007

Lizards present neuronal production throughout the telencephalon in their adult state, both naturally and after experimentally induced brain lesions. As in birds, lizards present seasonal behavioural variations. In birds, such variations have been shown to alter neuronal production. In birds and mammals, lack of stimuli or exposure to stress interferes with adult neurogenetic capacity. The effect of this type of study has not been performed with lizards. In the present study we used bromodeoxyuridine to label dividing cells in the ventricular walls of Gallotia galloti lizards during all four seasons and we investigated the effect of captivity on such proliferation. We found that G. galloti …

MaleTelencephalonLightPhotoperiodCentral nervous systemCaptivityZoologyCell CountStatistics NonparametricLateral Ventriclesparasitic diseasesmedicineAnimalsSauriaMolecular BiologyCell ProliferationphotoperiodismNeuronsAnalysis of VariancebiologyCerebrumEcologyGeneral NeuroscienceStem CellsGallotia gallotiLizardsbiology.organism_classificationmedicine.anatomical_structureBrain lesionsVentricular zonesense organsNeurology (clinical)SeasonsDevelopmental BiologyBrain research
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Changes in behavioural response of Mediterranean Seabass (Dicenthratus labrax L.) under different feeding distributions

2009

Captive-induced behavioural deviations may involve many aspects of fish behaviour such as swimming activity and enhancement of individual aggressiveness. We studied seabass (Dicentrarchus labrax) behaviour as a function of manual and automatic feeding distribution modes. Under manual mode, the food is distributed over an extended area for a longer period, and its precise location is not always predictable, while with pneumatic automatic feeders, fish receive the same amount of resource, which is concentrated in the same surface area over a shorter period. We compared seabass behaviour under automatic and manual conditions collecting video image recordings before, during, and after feeding d…

Mediterranean climatebiology040301 veterinary sciencesEcologyCaptivity Dicentrarchus labrax Behaviour Welfare Mediterranean Sea0402 animal and dairy scienceZoologyCaptivityAquatic animal04 agricultural and veterinary sciencesCaptivity Dicentrarchus labrax Behaviour Welfare Mediterranean Sea.biology.organism_classification040201 dairy & animal science0403 veterinary scienceWater columnSwimming behaviourAgonistic behaviourAnimal Science and ZoologyDicentrarchuslcsh:Animal cultureMorninglcsh:SF1-1100
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Captivity and infection by the fungal pathogen batrachochytrium salamandrivorans perturb the amphibian skin microbiome

2019

The emerging fungal pathogen, Batrachochytrium salamandrivorans (Bsal) is responsible for the catastrophic decline of European salamanders and poses a threat to amphibians globally. The amphibian skin microbiome can influence disease outcome for several host-pathogen systems, yet little is known of its role in Bsal infection. In addition, many experimental in-vivo amphibian disease studies to date have relied on specimens that have been kept in captivity for long periods without considering the influence of environment on the microbiome and how this may impact the host response to pathogen exposure. We characterized the impact of captivity and exposure to Bsal on the skin bacterial and fung…

Microbiology (medical)Amphibiananimal structureslcsh:QR1-502Batrachochytrium salamandrivoransmicrobiomeZoologyCaptivityBiologymicrobial ecologyMicrobiologylcsh:Microbiology03 medical and health sciencesbiology.animalmedicineMicrobiomeChytridiomycosisPathogenOriginal Research030304 developmental biology0303 health sciencesLissotriton030306 microbiologybiology.organism_classificationBatrachochytrium salamandrivoransTrituruschytridiomycosismedicine.drug_formulation_ingredientembryonic structuresamphibian
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Attraction of kestrels to vole scent marks visible in ultraviolet light

1995

IN northern Europe, broad four-year oscillations in small rodent and raptor populations are synchronous over hundreds of square kilometers1–6. Crashes in vole populations can induce wide emigration (> 1,000 km) of their predators7 –9, but almost nothing is known about how predators rapidly detect areas of vole abundance. Here we report on laboratory and field experiments on voles (Microtus agrestis) and kestrels (Falco tinnunculus). Voles mark their runaways with urine and faeces, which are visible in ultraviolet light. Wild kestrels brought into captivity were able to detect vole scent marks in ultraviolet light but not in visible light. In the field, kestrels hunted preferentially near ex…

MultidisciplinarybiologyRodentEcologybiology.animalUltraviolet lightCaptivityVolebiology.organism_classificationMicrotusAttractionFalco tinnunculusPredationNature
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Rapid growth of Atlantic salmon juveniles in captivity may indicate poor performance in nature

2011

Abstract The hatchery environment often favours completely different traits than natural selection in the wild. Consequently, hatchery-reared fish are usually larger and more aggressive than their wild counterparts. Increased growth rate and aggression are predicted to be beneficial in feeding competition in hatcheries, but not necessarily in nature, where food resources are spatially and temporally more variable. We compared the growth, condition and mortality of landlocked Atlantic salmon (Salmo salar L.) juveniles in a common hatchery environment and when feeding on natural prey in semi-natural channels. We found that the growth and survival probability of the fish in the hatchery was ne…

Natural selectionbiologyDirectional selectionmedia_common.quotation_subjectCaptivitybiology.organism_classificationCompetition (biology)HatcheryPredationFisherySalmoEcology Evolution Behavior and SystematicsSelection (genetic algorithm)Nature and Landscape Conservationmedia_commonBiological Conservation
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