Search results for "GUI"

showing 10 items of 12462 documents

The relation between circadian asynchrony, functional redundancy, and trophic performance in tropical ant communities

2016

The diversity-stability relationship has been under intense scrutiny for the past decades, and temporal asynchrony is recognized as an important aspect of ecosystem stability. In contrast to relatively well-studied interannual and seasonal asynchrony, few studies investigate the role of circadian cycles for ecosystem stability. Here, we studied multifunctional redundancy of diurnal and nocturnal ant communities in four tropical rain forest sites. We analyzed how it was influenced by species richness, functional performance, and circadian asynchrony. In two neotropical sites, species richness and functional redundancy were lower at night. In contrast, these parameters did not differ in the t…

0106 biological sciencesEcological stabilityTropical ClimateFood ChainRainforestAntsEcology010604 marine biology & hydrobiologyBiodiversityBiodiversityBiology010603 evolutionary biology01 natural sciencesCircadian RhythmFrench GuianaHabitatBorneoRedundancy (engineering)AnimalsEcosystemCircadian rhythmSpecies richnessEcology Evolution Behavior and SystematicsTrophic levelEcology
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Niche relations among dung-inhabiting beetles.

1976

The whole dung-inhabiting (adult) beetle community living in southern Finland was studied with reference to the seasonal (6 summer months), macrohabitat (open field, half-open pine forest and closed spruce forest) and successional (30 days) gradients. The material comprised 50 coprophagous and 129 carnivorous species, represented by 26,650 and 35,850 individuals, respectively. The most important characteristics of each species are given in an Appendix.In the coprophages the species-abundance relations fitted the lognormal distribution well, but in the carnivores the distribution was strikingly less even. A great number of other differences (see below) apparent between the two trophic groups…

0106 biological sciencesEcology010604 marine biology & hydrobiologyNicheDetritivoreEcological succession15. Life on landBiologyGeneralist and specialist species010603 evolutionary biology01 natural sciencesAbundance (ecology)GuildDominance (ecology)Ecology Evolution Behavior and SystematicsTrophic levelOecologia
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Habitat ecology of the smooth snake Coronella austriaca and its reptilian prey in the degraded bog with implications for artificial refuge surveys

2016

AbstractDiet preferences of the smooth snake (Coronella austriaca) being still controversial, we studied the overlap between its habitat and that of its potential reptilian prey species using the artificial refuge (ATR) method. The discriminant function analysis revealed that part of the smooth snake’s habitat niche is unused by one of its prey species – Zootoca vivipara. The smooth snake was recorded more often in places with high density of individuals of another lizard species – Anguis fragilis. Occasional data on snake diets supported the assumption that the latter species is a very important food item for the smooth snake in the study area. Our study estimated the minimum number of tim…

0106 biological sciencesEcologyEcologyLizardBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesPopulation densityPredation010601 ecologyNatrixCoronella austriacaHabitat destructionHabitatbiology.animalAnimal Science and ZoologyAnguisZoology and Ecology
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Specialist predator in a multi-species prey community: boreal voles and weasels.

2011

Dissimilar vulnerabilities of different prey types and preferences of predators are factors likely to contribute to community dynamics. This may happen via differential individual properties of prey animals (e.g. vigilance, escape) or via habitat effects making hunting by a predator easier and more rewarding in some habitats, or both. Furthermore, community dynamics may be influenced by predator mediated apparent competition, in which an increase in one prey type has negative effects on another prey type indirectly via the shared predator. We summarize the current knowledge from the field in a model predator-prey system consisting of sympatric boreal vole species and their common specialist…

0106 biological sciencesEcologyInterspecific competition15. Life on landBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesPredation010601 ecologyVigilance (behavioural ecology)GuildAnimal Science and ZoologyVolePrey switchingPredatorApex predatorIntegrative zoology
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The roles of temperature, nest predators and information parasites for geographical variation in egg covering behaviour of tits (Paridae)

2020

Abstract Aim: Nest building is widespread among animals. Nests may provide receptacles for eggs, developing offspring and the parents, and protect them from adverse environmental conditions. Nests may also indicate the quality of the territory and its owner and can be considered as an extended phenotype of its builder(s). Nests may, thus, function as a sexual and social signal. Here, we examined ecological and abiotic factors—temperature, nest predation and interspecific information utilization—shaping geographical variation in a specific nest structure—hair and feather cover of eggs—and its function as an extended phenotype before incubation in great (Parus major) and blue tits (Cyanistes …

0106 biological sciencesEconomicsBiology010603 evolutionary biology01 natural sciencesPredation03 medical and health sciencesCyanistes caeruleusNestbird nestParus majorBiologyEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciencesbreeding successEcologyOcellsEcologyextended phenotype15. Life on landBird nestChemistryVariation (linguistics)[SDE]Environmental Sciencesnest structure
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Temperate Fish Detection and Classification: a Deep Learning based Approach

2021

A wide range of applications in marine ecology extensively uses underwater cameras. Still, to efficiently process the vast amount of data generated, we need to develop tools that can automatically detect and recognize species captured on film. Classifying fish species from videos and images in natural environments can be challenging because of noise and variation in illumination and the surrounding habitat. In this paper, we propose a two-step deep learning approach for the detection and classification of temperate fishes without pre-filtering. The first step is to detect each single fish in an image, independent of species and sex. For this purpose, we employ the You Only Look Once (YOLO) …

0106 biological sciencesFOS: Computer and information sciencesComputer Science - Machine LearningComputer scienceComputer Vision and Pattern Recognition (cs.CV)Computer Science - Computer Vision and Pattern Recognition010603 evolutionary biology01 natural sciencesConvolutional neural networkVDP::Matematikk og Naturvitenskap: 400::Informasjons- og kommunikasjonsvitenskap: 420Machine Learning (cs.LG)Artificial IntelligenceClassifier (linguistics)FOS: Electrical engineering electronic engineering information engineeringbusiness.industry010604 marine biology & hydrobiologyDeep learningImage and Video Processing (eess.IV)Process (computing)Pattern recognitionElectrical Engineering and Systems Science - Image and Video ProcessingObject detectionA priori and a posterioriNoise (video)Artificial intelligenceTransfer of learningbusiness
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Whistle variation in Mediterranean common bottlenose dolphin: The role of geographical, anthropogenic, social, and behavioral factors.

2020

Abstract The studies on the variation of acoustic communication in different species have provided insight that genetics, geographic isolation, and adaptation to ecological and social conditions play important roles in the variability of acoustic signals. The dolphin whistles are communication signals that can vary significantly among and within populations. Although it is known that they are influenced by different environmental and social variables, the factors influencing the variation between populations have received scant attention. In the present study, we investigated the factors associated with the acoustic variability in the whistles of common bottlenose dolphin (Tursiops truncatu…

0106 biological sciencesForagingacoustic behaviorContext (language use)geographic variation010603 evolutionary biology01 natural sciencesSocial group03 medical and health sciencesGeographical distancelcsh:QH540-549.5Mediterranean SeaEcology Evolution Behavior and Systematics030304 developmental biologyNature and Landscape ConservationOriginal Research0303 health sciencesEcologybiologyEcologyBottlenose dolphinbiology.organism_classificationGeographyVariation (linguistics)Tursiops truncatusPrincipal component analysislcsh:EcologyAdaptationEcology and evolution
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A new species and a new synonymy of the plant bug genusiFulvius/ifrom Japan (Hemiptera: Heteroptera: Miridae: Cylapinae).

2017

Fulvius Stål (Cylapinae: Fulviini) is a large plant bug genus, with more than 80 described species distributed throughout the world (Schuh, 1995; 2002–2014). In Japan, five species listed below have been recorded mostly from the subtropical Ryukyu arc (Yasunaga, 2000, 2001; Yasunaga & Miyamoto, 2006; Yasunaga et al., 2012). Our recent closer examinations of these Japanese species suggest that (1) what was previously identified as Fulvius dimidiatus Poppius represents an undescribed species, and (2) F. nakatai Yasunaga & Miyamoto described from Okinawa Island is evidently conspecific with F. subnitens Poppius that was described from New Guinea but is now known from pantropical zones …

0106 biological sciencesInsectaCylapinaeArthropoda010607 zoologyTaiwanPantropical010603 evolutionary biology01 natural sciencesHemipteraHeteropteraJapanGenusAnimaliaAnimalsEcology Evolution Behavior and SystematicsTaxonomyNew GuineabiologyEcologyHeteropteraCylapinaeNew guineaBiodiversitybiology.organism_classificationHemipteraMiridaeEuropeHabitatAnimal Science and ZoologyMiridaeAnimal DistributionZootaxa
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Taxonomic review of the bifenestratus species group of the genus Fulvius Stål with descriptions of two new species (Hemiptera, Heteroptera, Miridae, …

2018

Two new species of the genus Fulvius Stål are described from the Philippines and Papua New Guinea. A taxonomic review of representatives of the F.bifenestratus species group, illustrations of the male genitalia, a color habitus image of each species, and a key to species of the group are provided.

0106 biological sciencesInsectaCylapinaeArthropodadiagnosisMale genitalia010607 zoologyZoology01 natural sciencesAustralian RegionHemipteraHeteropteraOriental RegiontaxonomyFulviuskeySpecies grouplcsh:ZoologyMiroideaAnimalialcsh:QL1-991Ecology Evolution Behavior and Systematicsnew speciesbiologyHeteropteraNew guineaCylapinaebiology.organism_classificationHemipteraMiridae010602 entomologyAnimal Science and ZoologyTaxonomy (biology)Miridae
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Temporal turnover of the soil microbiome composition is guild-specific.

2021

Although spatial and temporal variation are both important components structuring microbial communities, the exact quantification of temporal turnover rates of fungi and bacteria has not been performed to date. In this study, we utilised repeated resampling of bacterial and fungal communities at specific locations across multiple years to describe their patterns and rates of temporal turnover. Our results show that microbial communities undergo temporal change at a rate of 0.010-0.025 per year (in units of Sorensen similarity), and the change in soil is slightly faster in fungi than in bacteria, with bacterial communities changing more rapidly in litter than soil. Importantly, temporal deve…

0106 biological sciencesLITTERBACTERIALSPATIAL VARIABILITYDIVERSITYBiologyFUNGAL COMMUNITIES010603 evolutionary biology01 natural sciences03 medical and health sciencesforestSoilTemporal changeMicrobiomeBacterial phylabacteriaEcology Evolution Behavior and SystematicsSCALESoil Microbiology030304 developmental biology0303 health sciencesNITROGEN DEPOSITIONECTOMYCORRHIZAL FUNGIEcologyMicrobiotaFungi15. Life on landMicrobial population biologyOAKGuild1181 Ecology evolutionary biologyLittertemporal turnovercommunity assemblyRESPONSESMycobiomeEcology lettersREFERENCES
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