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427 results for “Owls”
Figure 3 in Diet and reproductive outputs of common barn-owl (Tyto alba) during the common vole (Microtus arvalis) outbreak and crash
Figure 3. Rank abundance curves of the prey composition of the common barn-owl in different outbreak and crash years, and cumulative results of these two periods.
Figure 2 in Diet and reproductive outputs of common barn-owl (Tyto alba) during the common vole (Microtus arvalis) outbreak and crash
Figure 2. Box plots of barn owls' breeding parameters (A: clutch size; B: number of hatchlings; C: number of fledglings). The bottom and top limits of each box are the lower and upper quartiles; error bars equal ±1.5 times the interquartile range; the horizontal black band within each box is the median; and the red triangle is the mean.
Figure 1 in Diet and reproductive outputs of common barn-owl (Tyto alba) during the common vole (Microtus arvalis) outbreak and crash
Figure 1. Study area in Baranya County (Hungary), showing the location of sampled nesting pairs (settlements).
Fig. 1 in Northern Birch Mouse (Sicista Betulina) In Lithuania, Findings In The Diet Of Tawny Owl (Strix Aluco)
Fig. 1. Sites and UTM squares, where S. aluco nestboxes were situated and pellets collected in 1996–2009. Source: BALČIAUSKIENE et al. 2000, 2005a,b, 2006
Fig. 2 in Northern Birch Mouse (Sicista Betulina) In Lithuania, Findings In The Diet Of Tawny Owl (Strix Aluco)
Fig. 2. Proportions of the prey groups in Tawny Owl diet (SB+ – S. betulina present, SB – S. betulina absent, in all districts p <0.001)
Figure 4 in Small mammals in the diet of Barn Owls (Tyto furcata) in an urban area in Rio de Janeiro state, Brazil, with a new record of the dwarf mouse opossum (Cryptonanus)
Figure 4. Labial views of the second lower molars of the didelphid marsupials (A) Cryptonanus sp. (this study, Campos dos Goytacazes, Rio de Janeiro state), (B) Gracilinanus microtarsus (NPM 1682, Macaé, Rio de Janeiro state), and (C) Monodelphis iheringi (NPM 1010, Macaé, Rio de Janeiro state), showing the variation in the entoconid size.
Figure 3 in Small mammals in the diet of Barn Owls (Tyto furcata) in an urban area in Rio de Janeiro state, Brazil, with a new record of the dwarf mouse opossum (Cryptonanus)
Figure 3. Manipulation and identification of the pellets collected below the artificial nest of the Tyto furcata pair. (A) Separation of bone material; (B) Selection of craniums and mandibles for morphological identification.
Figure 1 in Small mammals in the diet of Barn Owls (Tyto furcata) in an urban area in Rio de Janeiro state, Brazil, with a new record of the dwarf mouse opossum (Cryptonanus)
Figure 1. Satellite image showing nesting site of the T. furcata couple and the surrounding area in Campos dos Goytacazes, Rio de Janeiro. Adapted from Google Earth®.
Fig. 2 in Small mammals from barn owl Tyto alba pellets in a Mediterranean agroforestry landscape of central Italy
Fig. 2 - Dendrogram of similarity based on species frequency (algorithm: Paired group - UPGMA, Euclidean similarity index). / Dendro- gramma di similarità basato sulla frequenza di specie (algoritmo: gruppi appaiati - UPGMA, indice di similarità euclidea). Sites: / Siti: A) Roccaccia. B) Riminino. C) Ripagretta. D) San Giorgio. E) Montericcio.
Fig. 1 in Small mammals from barn owl Tyto alba pellets in a Mediterranean agroforestry landscape of central Italy
Fig. 1 - The study area. Circles and letters (A-E) show the five investigated sites. / Area di studio. I cerchi e le lettere (A-E) indicano i cinque siti studiati.
Fig. 3 in Small mammals from barn owl Tyto alba pellets in a Mediterranean agroforestry landscape of central Italy
Fig. 3 - Detrended Correspondence Analysis. / Analisi delle Corrispondenze 'Detrended' Sites: / Siti: A) Roccaccia; B) Riminino; C) Ripagretta; D) San Giorgio; E) Montericcio. Species: / Specie: Sunetr: Suncus etruscus; Sorsam: Sorex samniticus; Crosua: Crocidura suaveolens; Croleu: Crocidura leucodon; Musave: Muscardinus avellanarius; Arvita: Arvicola italicus; Micsav: Microtus savii; Aposyl: Apodemus cfr. sylvaticus; Musdom: Mus domesticus; Ratrat: Rattus rattus; Ratnor: Rattus norvegicus.
Adapter sequences used for trimming of genomic sequences in the assembly of the Northern Spotted Owl (<i>Strix occidentalis caurina</i>) genome assembly version 1.0
<p>These files provide the sequences of the adapters used in the construction of the genomic libraries Hanna et al. (2017a) sequenced and used to assemble the Northern Spotted Owl (<em>Strix occidentalis caurina</em>) genome assembly version 1.0 (Hanna et al. 2017b). These files also contain relevant supplemental adapter sequences from the adapter files included with Trimmomatic version 0.36 (Bolger, Lohse & Usadel, 2014).</p> <p><strong>SRR4011595_adapters.fa</strong> : This FASTA format file contains the full length sequences of the adapters Hanna et al. (2017a) used to construct the genomic library they sequenced to produced the data uploaded as NCBI Sequence Read Archive (SRA) run accession SRR4011595. I have also included the partial adapter sequences provided in the "TruSeq3-PE-2.fa" and "NexteraPE-PE.fa" files distributed with Trimmomatic version 0.36 (Bolger, Lohse & Usadel, 2014).</p> <p><strong>SRR4011596_adapters.fa</strong> : This FASTA format file contains the full length sequences of the adapters Hanna et al. (2017a) used to construct the genomic library they sequenced to produced the data uploaded as NCBI Sequence Read Archive (SRA) run accession SRR4011596. I have also included the partial adapter sequences provided in the "TruSeq3-PE-2.fa" and "NexteraPE-PE.fa" files distributed with Trimmomatic version 0.36 (Bolger, Lohse & Usadel, 2014).</p> <p><strong>SRR4011597_adapters.fa</strong> : This FASTA format file contains the full length sequences of the adapters Hanna et al. (2017a) used to construct the genomic library they sequenced to produced the data uploaded as NCBI Sequence Read Archive (SRA) run accession SRR4011597. I have also included the partial adapter sequences provided in the "TruSeq3-PE-2.fa" and "NexteraPE-PE.fa" files distributed with Trimmomatic version 0.36 (Bolger, Lohse & Usadel, 2014).</p> <p><strong>SRR4011614_adapters.fa</strong> : This FASTA format file contains the full length sequences of the adapters Hanna et al. (2017a) used to construct the genomic library they sequenced to produced the data uploaded as NCBI Sequence Read Archive (SRA) run accession SRR4011614. I have also included the partial adapter sequences provided in the "TruSeq3-PE-2.fa" and "NexteraPE-PE.fa" files distributed with Trimmomatic version 0.36 (Bolger, Lohse & Usadel, 2014).</p> <p><strong>SRR4011615_adapters.fa</strong> : This FASTA format file contains the full length sequences of the adapters Hanna et al. (2017a) used to construct the genomic library they sequenced to produced the data uploaded as NCBI Sequence Read Archive (SRA) run accession SRR4011615. I have also included the partial adapter sequences provided in the "TruSeq3-PE-2.fa" file distributed with Trimmomatic version 0.36 (Bolger, Lohse & Usadel, 2014).</p> <p><strong>SRR4011616_adapters.fa</strong> : This FASTA format file contains the full length sequences of the adapters Hanna et al. (2017a) used to construct the genomic library they sequenced to produced the data uploaded as NCBI Sequence Read Archive (SRA) run accession SRR4011616. I have also included the partial adapter sequences provided in the "TruSeq3-PE-2.fa" file distributed with Trimmomatic version 0.36 (Bolger, Lohse & Usadel, 2014).<br> <br> <strong>SRR4011617_adapters.fa</strong> : This FASTA format file contains the full length sequences of the adapters Hanna et al. (2017a) used to construct the genomic library they sequenced to produced the data uploaded as NCBI Sequence Read Archive (SRA) run accession SRR4011617. I have also included the partial adapter sequences provided in the "TruSeq3-PE-2.fa" file distributed with Trimmomatic version 0.36 (Bolger, Lohse & Usadel, 2014).</p>
OWL Reasoner Collection for Evaluation
<p>Set of reasoners and auxiliary scripts for use with the evaluation benchmarking framework at <a href="https://github.com/sisinflab-swot/owl-reasoner-test-framework">https://github.com/sisinflab-swot/owl-reasoner-test-framework</a>. It includes:</p> <ul> <li> <p><a href="https://bitbucket.org/dtsarkov/factplusplus">Fact++</a> (version 1.6.5);</p> </li> <li> <p><a href="http://www.hermit-reasoner.com/">HermiT</a> (version 1.3.8);</p> </li> <li> <p><a href="http://derivo.de/en/products/konclude/">Konclude</a> (version 0.6.2-544);</p> </li> <li> <p><a href="http://trowl.org/">TrOWL</a> (version 1.5);</p> </li> <li> <p><a href="http://sisinflab.poliba.it/swottools/minime/">Mini-ME Java</a> (version 2.0);</p> </li> <li> <p><a href="http://sisinflab.poliba.it/swottools/minime-swift/">Mini-ME Swift</a> (version 1.0).</p> </li> </ul>
Fig. 1 in Quantitative And Qualitative Composition Of Diet Of The Ural Owl, Strix Uralensi (Strigidae, Strigiformes), In The Central Part Of European Russia (The Example Of The Republic Of Mordovia)
Fig. 1. The maximum number of different elements of the skeleton of rodents in pellets Ural Owl in Mordovia (n = 146 pellets)
Figure 1 in Selective predation on common voles by Tawny Owls and Long-eared Owls in winter and spring
Figure 1. Distribution of the body mass of Microtus arvalis individuals, trapped in October–April and preyed upon by both Strix aluco and Asio otus in winter and spring, as estimated from mandibles.
Fig. 4 in Molecular prevalence and phylogenetic relationship of Haemoproteus and Plasmodium parasites of owls in Thailand: Data from a rehabilitation centre
Fig. 4. Colour heatmap of pairwise genetic distances estimated from nucleotide sequences of the cytochrome b gene (479 bp) of Haemoproteus spp. based on the Jukes-Canter model. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 3 in Molecular prevalence and phylogenetic relationship of Haemoproteus and Plasmodium parasites of owls in Thailand: Data from a rehabilitation centre
Fig. 3. Bayesian phylogeny based on partial cytochrome b gene (479 base pairs) of Haemoproteus species lineages. The lineages reported in this study are given in bold. MalAvi lineage codes and GenBank accession numbers are given after species names. Node values (in percentages) indicate posterior clade probabilities. Vertical bars indicate clades of Haemoproteus subgenus (A), Parahaemoproteus (B). Almost all of the Parahaemoproteus lineages recovered from owls were grouped together (clade B-1, grey box). * indicates lineages infecting Strigiformes.
Figure 2 in Seasonal changes in Tawny Owl (Strix aluco) diet in an oak forest in Eastern Ukraine
Figure 2. Proportion of prey groups in Tawny Owl pellets in different seasons. Note break of y axis between 10% and 50%. Abbreviations for seasons: WS – Winter–spring, ES – Early summer, LS – Late summer and early autumn, LA – Late autumn.
Fig. 4 in Two new late Pleistocene miniature owls from Rancho La Brea, California
Fig. 4. Stereopairs of specimens from late Pleistocene, Rancho La Brea, California, USA referred to miniature owls Asphaltoglaux cecileae sp. nov. (A, C, D) and Glaucidium kurochkini sp. nov. (B). A. Left humerus (RLB K9441) in anterior (A1) and posterior (A2) views. B. Right carpometacarpus (RLB K9404) in dorsal (B1) and ventral (B2) views. C. Right femur (RLB K9349) in anterior (C1) and posterior (C2) views. D. Right coracoid (RLB E9533) in ventral (D1) and dorsal (D2) views. See Fig. 3 for additional labeled osteological features. Abbreviations: artic., articularis; Fac., Facies.
Fig. 5 in Two new late Pleistocene miniature owls from Rancho La Brea, California
Fig. 5. Scatter plots illustrating the disproportionately large size of the Crista medialis hypotarsi of Asphaltoglaux cecileae sp. nov. A. Length versus width of Fac. plantaris of Crista medialis hypotarsi. B. Width of Crista medialis hypotarsi stem versus tarsometatarsus total length. All measurements in mm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.