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38 results for “Corvidae”
Fig. 2 in Reduction Of The Breeding Population Of The Rook, Corvus Frugilegus (Aves, Corvidae), In Ukraine: The Example Of The Eastern Part Of The Kyiv Region
Fig. 2. The location of Rook colonies and their number in the research area in 1983–1985 (A), and in 2021 (B).
Fig. 4 in Reduction Of The Breeding Population Of The Rook, Corvus Frugilegus (Aves, Corvidae), In Ukraine: The Example Of The Eastern Part Of The Kyiv Region
Fig. 4. Standard Deviational Ellipses for the location of rook colonies and their number in the research area in 1983–1985 and 2021.
Fig. 1 in Reduction Of The Breeding Population Of The Rook, Corvus Frugilegus (Aves, Corvidae), In Ukraine: The Example Of The Eastern Part Of The Kyiv Region
Fig. 1. Geographical location of the study area. The circle is a research territory with an area of 1850 km².
Aphelocoma coerulescens (Corvidae) - whole organism
Image of Aphelocoma coerulescens (Corvidae) - whole organism
Deep ecomorphological and genetic divergence in Steller’s Jays (Cyanocitta stelleri, Aves: Corvidae)
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FIGURE 4 in Species limits in Pteruthius (Aves: Corvida) shrike-babblers: a comparison between the Biological and Phylogenetic Species Concepts
FIGURE 4. Sonogram excerpts of ten recordings from three localities across the range of the P. xanthochlorus complex, accompanied by sampling locality and name of recordist; x-axis depicts time in seconds, y-axis depicts frequency in kHz; Roman numerals refer to homologous song types; XC numbers refer to catalogue numbers in the xeno-canto sound collection and are given where applicable.
FIGURE 1 in Species limits in Pteruthius (Aves: Corvida) shrike-babblers: a comparison between the Biological and Phylogenetic Species Concepts
FIGURE 1. Sonogram excerpts of the vocalizations of 19 out of 30 sampled individuals of the P. flaviscapis complex accompanied by sampling locality and name of recordist or source; x-axis depicts time in seconds, y-axis depicts frequency in kHz; XC numbers refer to catalogue numbers in the xeno-canto sound collection and are given where applicable.
FIGURE 2 in Species limits in Pteruthius (Aves: Corvida) shrike-babblers: a comparison between the Biological and Phylogenetic Species Concepts
FIGURE 2. Sonogram excerpts of song type A (shared between Java and mainland) and song type B (Java only) of the P. aenobarbus complex, accompanied by sampling locality and name of recordist; x-axis depicts time in seconds, y-axis depicts frequency in kHz; XC number refers to catalogue number in the xeno-canto sound collection and is given where applicable.
FIGURE 3 in Species limits in Pteruthius (Aves: Corvida) shrike-babblers: a comparison between the Biological and Phylogenetic Species Concepts
FIGURE 3. Sonogram excerpts of the vocalizations of four individuals of the P. melanotis complex from across its range, accompanied by sampling locality and name of recordist or source; x-axis depicts time in seconds, y-axis depicts frequency in kHz; XC numbers refer to catalogue numbers in the xeno-canto sound collection and are given where applicable.
FIGURES 1–3. Morishitium urocissae n in Key to the species of Morishitium Wienberg, 1928 (Cyclocoelidae), with the description of a new species from the red-billed blue magpie, Urocissa erythrorhyncha (Boddaert) (Corvidae) from Guizhou Province, People's Republic of China
FIGURES 1–3. Morishitium urocissae n. sp. from the red-billed blue magpie, Urocissa erythrorhyncha. 1. Ventral view of fully mature adult. 2. Composite drawing of cirrus sac and seminal vesicle showing and cirrus and location of the genital pore, ventral view. 3. Composite drawing of female genital complex, ventral view.
Corvid Corroboree LifeDesk (corvidae): Corvid Corroboree LifeDesk (104) DwCA
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Supplementary material 1 from: Apolinario C, Silveira LF (2019) Hybridism between Cyanocorax chrysops and Cyanocorax cyanopogon (Aves: Corvidae) in Brazil. Zoologia 36: 1-7. https://doi.org/10.3897/zoologia.36.e32138
Specimens examined
Fig. 10 in Introgression at the emerging secondary contact zone of magpie Pica pica subspecies (Aves: Corvidae): integrating data on nuclear and mitochondrial markers, vocalizations, and field observations
Fig. 10 Spectrograms of chatter calls of pure P. p. leucoptera, pure P. p. jankowskii, and hybrids. a leucoptera, pair #4, Choibalsan, eastern Mongolia. b jankowskii, pair #6, Vladivostok, Russian Far East. c, d Bilingual hybrid, the same bird from the pair #24, Kerulen, eastern Mongolia. e Hybrid with mixed call, pair #39, Kerulen. f Presumably hybrid with mixed call, pair #5, Kerulen. X-axis—time in s; Y-axis—frequency in kHz
Fig. 8 in Introgression at the emerging secondary contact zone of magpie Pica pica subspecies (Aves: Corvidae): integrating data on nuclear and mitochondrial markers, vocalizations, and field observations
Fig. 8 Genetic structure of the contact zone and its vicinities by mtDNA and SNPs. Above—distribution of haplotypes of mitochondrial CR along conditional population numbers I–VI depicted in Fig. 3. Green—western haplotype; red—eastern haplotype. Below— graphical representation of individual contributions from nuclear
Fig. 3 in Introgression at the emerging secondary contact zone of magpie Pica pica subspecies (Aves: Corvidae): integrating data on nuclear and mitochondrial markers, vocalizations, and field observations
Fig. 3 Map of sampling localities for nuclear SNP analysis. Distribution of genotypes of nuclear SNPs revealed by ddRAD analysis are shown with blue circles for Pica pica leucoptera and red circles for Pica pica jankowskii. Bi-colored circles mean mixed (hybrid) genotype: portion of blue/red corresponds to probability of it belonging to one of the groups, as revealed in the Structure analysis. Numbers
Fig. 1 in Introgression at the emerging secondary contact zone of magpie Pica pica subspecies (Aves: Corvidae): integrating data on nuclear and mitochondrial markers, vocalizations, and field observations
Fig. 1 Map of Pica pica s.l. subspecies. The study area in the contact zone is indicated by a rectangle. Question marks indicate regions of unclear subspecies distribution. The white star indicates the terra typica for Pica pica anderssoni in eastern China
Figure 4 from: Apolinario C, Silveira LF (2019) Hybridism between Cyanocorax chrysops and Cyanocorax cyanopogon (Aves: Corvidae) in Brazil. Zoologia 36: 1-7. https://doi.org/10.3897/zoologia.36.e32138
Figure 4 Distribution of C. chrysops and C. cyanopogon based on specimens analyzed and WikiAves' photographic records. Triangles represent the specimens and circles the photos analyzed.
Figures 1-3 from: Apolinario C, Silveira LF (2019) Hybridism between Cyanocorax chrysops and Cyanocorax cyanopogon (Aves: Corvidae) in Brazil. Zoologia 36: 1-7. https://doi.org/10.3897/zoologia.36.e32138
Figures 1-3 Hybrid MZUSP 64191 (2) between C. c. chrysops MZUSP 26041 (1) and C. cyanopogon MZUSP 27910 (3). Back and wings are brownish, resembling C. cyanopogon. The crest feathers have the typical C. c. chrysops shape, but nape coloration is lighter, almost completely white like C. cyanopogon.
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.