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61 results for “Accipitridae”
MH_ANTWERPEN - Western marsh harriers (Circus aeruginosus, Accipitridae) breeding near Antwerp (Belgium)
<p><em>MH_ANTWERPEN - Western marsh harriers (Circus aeruginosus, Accipitridae) breeding near Antwerp (Belgium)</em> is a bird tracking dataset published by the <a href="https://www.inbo.be/en">Research Institute for Nature and Forest (INBO)</a>. It contains animal tracking data collected by the LifeWatch GPS tracking network for large birds (<a href="http://lifewatch.be/en/gps-tracking-network-large-birds">http://lifewatch.be/en/gps-tracking-network-large-birds</a>) for the project/study <strong>MH_ANTWERPEN</strong>, using trackers developed by the University of Amsterdam Bird Tracking System (UvA-BiTS, <a href="http://www.uva-bits.nl">http://www.uva-bits.nl</a>). The study was operational from 2018 until 2022. In total 3 individuals of western marsh harriers (<em>Circus aeruginosus</em>) and 1 common buzzard (<em>Buteo buteo</em>) have been tagged in their breeding area near the city of Antwerp (Belgium), mainly to study their habitat use and migration behaviour. Data are periodically uploaded from the UvA-BiTS database to Movebank and from there archived on Zenodo (see <a href="https://github.com/inbo/bird-tracking">https://github.com/inbo/bird-tracking</a>). No new data are expected.</p> <p>See Milotic et al. (2020, <a href="https://doi.org/10.3897/zookeys.947.52570">https://doi.org/10.3897/zookeys.947.52570</a>) for a more detailed description of this dataset.</p> <h2>Files</h2> <p>Data in this package are exported from Movebank study <a href="https://www.movebank.org/cms/webapp?gwt_fragment=page=studies,path=study938783961">938783961</a>. Fields in the data follow the <a href="http://vocab.nerc.ac.uk/collection/MVB">Movebank Attribute Dictionary</a> and are described in <code>datapackage.json</code>. Files are structured as a <a href="https://specs.frictionlessdata.io/data-package/">Frictionless Data Package</a>. You can access all data in R via <code>https://zenodo.org/records/10054153/files/datapackage.json</code> using <a href="https://frictionlessdata.github.io/frictionless-r/">frictionless</a>.</p> <ul> <li><strong>datapackage.json</strong>: technical description of the data files.</li> <li><strong>MH_ANTWERPEN-reference-data.csv</strong>: reference data about the animals, tags and deployments.</li> <li><strong>MH_ANTWERPEN-gps-yyyy.csv.gz</strong>: GPS data recorded by the tags, grouped by year.</li> <li><strong>MH_ANTWERPEN-acceleration-yyyy.csv.gz</strong>: acceleration data recorded by the tags, grouped by year.</li> </ul> <h2>Acknowledgements</h2> <p>This dataset was collected using infrastructure provided by INBO and funded by Research Foundation - Flanders (FWO) as part of the Belgian contribution to LifeWatch.</p>
H_GRONINGEN - Western marsh harriers (Circus aeruginosus, Accipitridae) breeding in Groningen (the Netherlands)
<p><em>H_GRONINGEN - Western marsh harriers (Circus aeruginosus, Accipitridae) breeding in Groningen (the Netherlands)</em> is a bird tracking dataset collected by the <a href="https://grauwekiekendief.nl/">Grauwe kiekendief - Kenniscentrum Akkervogels (GKA)</a> / Dutch Montagu's Harrier Foundation and published by the <a href="https://www.inbo.be/en">Research Institute for Nature and Forest (INBO)</a>. It contains animal tracking data collected for the project/study <strong>H_GRONINGEN</strong>, using trackers developed by the University of Amsterdam Bird Tracking System (UvA-BiTS, <a href="http://www.uva-bits.nl">http://www.uva-bits.nl</a>). The study was operational from 2012 until 2018. In total 4 individuals of western marsh harriers (<em>Circus aeruginosus</em>) have been tagged in their breeding area in the province Groningen (the Netherlands) close to the Netherlands-Germany border, mainly to study their habitat use and migration behaviour. Data are uploaded from the UvA-BiTS database to Movebank and from there archived on Zenodo (see <a href="https://github.com/inbo/bird-tracking">https://github.com/inbo/bird-tracking</a>). No new data are expected.</p> <p>See Milotic et al. (2020, <a href="https://doi.org/10.3897/zookeys.947.52570">https://doi.org/10.3897/zookeys.947.52570</a>) for a more detailed description of this dataset.</p> <h2>Files</h2> <p>Data in this package are exported from Movebank study <a href="https://www.movebank.org/cms/webapp?gwt_fragment=page=studies,path=study922263102">922263102</a>. Fields in the data follow the <a href="http://vocab.nerc.ac.uk/collection/MVB">Movebank Attribute Dictionary</a> and are described in <code>datapackage.json</code>. Files are structured as a <a href="https://specs.frictionlessdata.io/data-package/">Frictionless Data Package</a>. You can access all data in R via <code>https://zenodo.org/records/10053658/files/datapackage.json</code> using <a href="https://frictionlessdata.github.io/frictionless-r/">frictionless</a>.</p> <ul> <li><strong>datapackage.json</strong>: technical description of the data files.</li> <li><strong>H_GRONINGEN-reference-data.csv</strong>: reference data about the animals, tags and deployments.</li> <li><strong>H_GRONINGEN-gps-yyyy.csv.gz</strong>: GPS data recorded by the tags, grouped by year.</li> <li><strong>H_GRONINGEN-acceleration-yyyy.csv.gz</strong>: acceleration data recorded by the tags, grouped by year.</li> </ul>
Figura 2. O in Uma presa fácil aos olhos do predador: novo registro de predação de uma ave de rapina (Accipitriformes: Accipitridae) sobre Ameiva ameiva (Squamata: Teiidae) no Brasil e o estado do conhecimento atual sobre predadores desta espécie de lagarto
Figura 2. O gavião segurando o lagarto enquanto permanecia alerta. Foto por Luciano de F. Silva. Figure 2. The hawk holding the lizard while staying alert. Photo by Luciano de F. Silva.
Figura 3 in Uma presa fácil aos olhos do predador: novo registro de predação de uma ave de rapina (Accipitriformes: Accipitridae) sobre Ameiva ameiva (Squamata: Teiidae) no Brasil e o estado do conhecimento atual sobre predadores desta espécie de lagarto
Figura 3. Número de registros de predação por grupo de predadores e por método de registro. Grupos de predadores: Decapoda (DEC), Anura (ANR), Serpentes (SPT), Lagartos (LGT), Accipitriformes (ACF), Falconiformes (FCF), Strigiformes (STF), Pelecaniformes (PLF), Cariamiformes (CRF), Carnivora (CNV), Cingulata (CGT), Didelmorphia (DMP). Figure 3. Number of predation records by predator group and by recording method. Predator groups: Decapoda (DEC), Anura (ANR), Serpentes (SPT), Lizards (LGT), Accipitriformes (ACF), Falconiformes (FCF), Strigiformes (STF), Pelecaniformes (PLF), Cariamiformes (CRF), Carnivora (CNV), Cingulata (CGT), Didelmorphia (DMP).
Figura 1 in Uma presa fácil aos olhos do predador: novo registro de predação de uma ave de rapina (Accipitriformes: Accipitridae) sobre Ameiva ameiva (Squamata: Teiidae) no Brasil e o estado do conhecimento atual sobre predadores desta espécie de lagarto
Figura 1. Predação de Heterospizias meridionalis sobre Ameiva ameiva. A. Adulto de H. meridionalis segurando um adulto de A. ameiva no topo de um poste de energia elétrica. B-C. O gavião consumindo partes do lagarto. Foto por Luciano de F. Silva. Figure 1. Predation of Heterospizias meridionalis on Ameiva ameiva. A. Adult H. meridionalis holding an adult A. ameiva on top of an electrical power pole. B-C. The hawk consuming the fleshy parts of the lizard. Photo by Luciano de F. Silva.
Figure 3. Haemoproteus multivacuolatus n in Novel phylogenetic clade of avian Haemoproteus parasites (Haemosporida, Haemoproteidae) from Accipitridae raptors, with description of a new Haemoproteus species
Figure 3. Haemoproteus multivacuolatus n. sp. (lineage hBUBT1) from the blood of the Common buzzard Buteo buteo: a–d – young gametocytes, e–h – macrogametocytes, i–p – microgametocytes. Long simple arrows – nuclei of parasites. Short simple arrows – vacuoles. Simple arrowhead – pigment granules. Triangle arrowheads – volutin granules. Note that due to marked vacuolisation, the cytoplasm of macrogametocytes stains relatively pale and looks similar to microgametocytes based on the intensity of staining. Giemsa-stained thin blood films. Scale bar = 10 µm. All images were from the hapantotype preparation.
Figure 2 in Novel phylogenetic clade of avian Haemoproteus parasites (Haemosporida, Haemoproteidae) from Accipitridae raptors, with description of a new Haemoproteus species
Figure 2. Haemoproteus nisi (lineage hCIAE08) from the blood of Western marsh harrier Circus aeruginosus: a – young gametocytes, b–h – macrogametocytes, i–l – microgametocytes. Long simple arrows – nuclei of parasites. Short simple arrows – vacuoles. Simple arrowhead – pigment granules. Triangle arrowheads – clamps of volutin. Simple wide long arrows – spaces between gametocytes and erythrocyte nuclei. Giemsa-stained thin blood films. Scale bar = 10 µm.
Figure 1 in Novel phylogenetic clade of avian Haemoproteus parasites (Haemosporida, Haemoproteidae) from Accipitridae raptors, with description of a new Haemoproteus species
Figure 1. Haemoproteus nisi (lineage hACCNIS08) from the blood of Eurasian sparrowhawk Accipiter nisus: a–d – macrogametocytes, e–h – microgametocytes. Long simple arrows – nuclei of parasites. Short simple arrows – vacuoles. Simple arrowhead – pigment granules. Triangle arrowheads – volutin granules. Simple wide long arrows – spaces between gametocytes and erythrocyte nuclei. Giemsa-stained thin blood films. Scale bar = 10 µm.
Figure 5. Bayesian Inference tree calculated with complete cox1 in Novel phylogenetic clade of avian Haemoproteus parasites (Haemosporida, Haemoproteidae) from Accipitridae raptors, with description of a new Haemoproteus species
Figure 5. Bayesian Inference tree calculated with complete cox1 (1428 bp), cox3 (753 bp), and cytb (1127 bp) sequences of haemosporidian parasites and Klossiella equi (MH203050) and Klossia razorbacki (MT084562) as the outgroup. Bayesian posterior probabilities and Maximum Likelihood bootstrap values are indicated at most nodes. The scale bar indicates the expected number of substitutions per site according to the model of sequence evolution applied.
Figure 4 in Novel phylogenetic clade of avian Haemoproteus parasites (Haemosporida, Haemoproteidae) from Accipitridae raptors, with description of a new Haemoproteus species
Figure 4. Median-Joining DNA haplotype network showing the host and geographic distribution of six Haemoproteus nisi group lineages (478 bp cytb sequences) found in accipitriform raptors from Austria and France.
Figure 2. A in Estimation of heavy metal residues from the feathers of Falconidae, Accipitridae, and Strigidae in Punjab, Pakistan
Figure 2. A comparison of concentrations (µg/g) of 6 different metals estimated from the feathers of raptors in 3 different regions of Punjab Province. Values expressed as mean ± SE.
Fig. 7 in Breeding biology and conservation of hawk-eagles (Spizaetus spp.) Aves, Accipitridae) in southern Atlantic Forest, Brazil
Fig. 7. Nesting phenology of Ornate Hawk-Eagle (nest C). Chronological sequence from upper left to bottom right: nest with an egg (27 Sep 2008); egg; (27 Sep 2008); nestling – few days old (08 Nov 2008); adult on nest (16 Nov 2008); nestling about 10 days old (19 Nov 2008); nestling about 20 days old (28 Nov 2008); nestling about 40 days old (Dec 2008); Fledging (Apr 2009); Nest without chamber or traces of use (Apr 2009).
Fig. 6 in Breeding biology and conservation of hawk-eagles (Spizaetus spp.) Aves, Accipitridae) in southern Atlantic Forest, Brazil
Fig. 6. Nest of an Ornate Hawk-Eagle located 31 m in an Araucaria tree (DBH = 132 cm). Lateral view (upper right) and view from above (bottom right) with details of the chamber (with green leaves and sticks).
Fig. 4 in Breeding biology and conservation of hawk-eagles (Spizaetus spp.) Aves, Accipitridae) in southern Atlantic Forest, Brazil
Fig. 4. Nest of an Ornate Hawk-Eagle built 20 m in a Myrtaceae tree (DBH = 78.94 cm) (red circle). Lateral view (upper right) and view from above (bottom right) of the nest.
Fig. 2 in Breeding biology and conservation of hawk-eagles (Spizaetus spp.) Aves, Accipitridae) in southern Atlantic Forest, Brazil
Fig. 2. Extent of occurrence of the Ornate Hawk-Eagle in the southern Atlantic Forest, Brazil based on historical (before 2000s; red triangles and red dashed line) and current records (after 2000s; black dots and line). Atlantic Forest remnants are showed in light green.
Fig. 1 in Breeding biology and conservation of hawk-eagles (Spizaetus spp.) Aves, Accipitridae) in southern Atlantic Forest, Brazil
Fig. 1. Extent of occurrence of the Black-and-white Hawk-Eagle in the southern Atlantic Forest, Brazil based on historical (before 2000s; red triangles and red dashed line) and current records (after 2000s; black dots and line). Atlantic Forest remnants are showed in light green.
Fig. 3 in Breeding biology and conservation of hawk-eagles (Spizaetus spp.) Aves, Accipitridae) in southern Atlantic Forest, Brazil
Fig. 3. Extent of occurrence of the Black Hawk-Eagle in the southern Atlantic Forest, Brazil based on historical (before 2000s; red triangles and red dashed line) and current records (after 2000s; black dots and line). Atlantic Forest remnants are showed in light green.
Figure 2 in A New Eagle (Aves: Accipitridae) from the Mid Miocene Bullock Creek Fauna of Northern Australia
Figure 2. Distal humeri of extant Australian eagles; upper, caudal view; lower, cranial view. (A), Haliaeetus leucogaster. (B), Aquila audax. (C), Hieraaetus morphnoides. Bar equals 10 mm. Numbers refer to characters used to separate Haliaeetus from Aquila-Hieraaetus (see text). Character 7 show the points at which the shaft width measurement was taken proximal of the epicondylus dorsalis.
Figure 4 in A New Eagle (Aves: Accipitridae) from the Mid Miocene Bullock Creek Fauna of Northern Australia
Figure 4. Distal right humerus of Aquila bullockensis (holotype QVM:2000:GFV:154). Left, caudal view; right,
Figure 3 in A New Eagle (Aves: Accipitridae) from the Mid Miocene Bullock Creek Fauna of Northern Australia
Figure 3. Shaft and distal widths (mm) of Bullock Creek humerus compared to those of extant eagles. Squares, Aquila: crossed, A. bullockensis; black, A. audax; grey, A. chrysaetos; open, A. fasciata. Diamonds, Hieraaetus: black, H. morphnoides; open, H. pennatus. Circles, Haliaeetus: black, H. albicilla; grey, H.
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