Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
61
datasets available to search
ShareScore release 0.7.1
Dataset results
61 results for “Accipitridae”
MH_WATERLAND - Western marsh harriers (Circus aeruginosus, Accipitridae) breeding near the Belgium-Netherlands border
<p><em>MH_WATERLAND - Western marsh harriers (Circus aeruginosus, Accipitridae) breeding near the Belgium-Netherlands border</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_WATERLAND</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 2013 until 2018. In total 7 individuals of western marsh harrier (<em>Circus aeruginosus</em>) have been tagged in their breeding area near the Belgium-Netherlands border (provinces of East Flanders in Belgium and Zeeland in the Netherlands), 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=study604806671">604806671</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/10053583/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_WATERLAND-reference-data.csv</strong>: reference data about the animals, tags and deployments.</li> <li><strong>MH_WATERLAND-gps-yyyy.csv.gz</strong>: GPS 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>
FIGURE 5 in A new look at an old Australian raptor places "Taphaetus" lacertosus de Vis 1905 in the Old World vultures (Accipitridae: Aegypiinae)
FIGURE 5. Parsimony analysis of morphological (ordered) data. Strict consensus of three most parsimonious trees. Tree length = 1792, MPT = 3, CI = 0.2176, HI = 0.7824, RI 0.5755. Bootstrap values are given at each node.
FIGURE 4 in A new look at an old Australian raptor places "Taphaetus" lacertosus de Vis 1905 in the Old World vultures (Accipitridae: Aegypiinae)
FIGURE 4. Comparisons of the elements of Cryptogyps lacertosus to those of six species of Aegypiinae, tarsometatarsus in plantar view to show structure of the hypotarsus (top), tarsometatarsus in dorsal view (middle) and distal humerus in cranial view (bottom): Trigonoceps occipitalis (A); Torgos tracheliotos (B); Sarcogyps calvus (C); Aegypius monachus (D); Necrosyrtes monachus (E); Gyps coprotheres (F); and Cryptogyps lacertosus (G). Numbers reflect the characters given in the tarsometatarsus description. Images are scaled to similar size.
FIGURE 3 in A new look at an old Australian raptor places "Taphaetus" lacertosus de Vis 1905 in the Old World vultures (Accipitridae: Aegypiinae)
FIGURE 3. Tarsometatarsi of Cryptogyps lacertosus (A, B, D, F, G, I) compared to that of Aquila audax FUR 125 (C, E, H, J): left tarsometatarsus AM F.58093 (B, D, I); proximal tarsometatarsus WAM 15.9.73 (A, F, G); in dorsal (A–C), plantar (D–F), proximal (G, H) and distal (I, J) views. Abbreviations: Cl, cotyla lateralis; CLFHL, crista lateralis flexoris hallucis longus; CM, cotyla medialis; CMFDL, crista medialis flexoris digitorum longus; EI, eminentia intercotylaris; FI, fossa infracotylaris; FPL, fossa parahypotarsalis lateralis; FPM, fossa parahypotarsalis medialis; FVPM, foramen vascularia proximalia medialis; IL, impressio ligamentum collateralis lateralis; IRE, impressio retinaculi extensorii; NP, nervus peroneus notch; SE, sulcus extensorius; SF, sulcus flexorius; SH, sulcus hypotarsus; T, tuberositas m. tibialis cranialis; TMII, trochlea metatarsi II; TMIII, trochlea metatarsi III; TMIV, trochlea metatarsi IV. Scale bars 10 mm.
FIGURE 2 in A new look at an old Australian raptor places "Taphaetus" lacertosus de Vis 1905 in the Old World vultures (Accipitridae: Aegypiinae)
FIGURE 2. Photographs of Cryptogyps lacertosus lectotype QM F.5507 (A–C), right distal humerus AM F.58092 (D–F) and left distal AM F.58092 (G–I) in cranial (A, D, G), caudal (B, E, H) and ventral (C, F, I) views. Abbreviations: CD, condylus dorsalis; CV, condylus ventralis; DEMR, dorsal attachment m. extensor metacarpi radialis; ED, epicondylus dorsalis; EV, epicondylus ventralis; FB, fossa m. brachialis; FO, fossa olecrani; II, incisura intercondylaris; MPPO, origin of m. pronator profundus; MPSO, origin of distal head m. pronator superficialis; PF, processus flexorius; PEMR, palmar attachment m. extensor metacarpi radialis; SHTV, ventral belly of sulcus humerotricipitalis; SHTD, dorsal belly of sulcus humerotricipitalis; SST, sulcus scapulotricipitalis; TSD, tuberculum supracondylare dorsale; TSV, tuberculum supracondylare ventrale. Scale bar 10 mm.
FIGURE 1 in A new look at an old Australian raptor places "Taphaetus" lacertosus de Vis 1905 in the Old World vultures (Accipitridae: Aegypiinae)
FIGURE 1. Comparisons of the distal humeri of Cryptogyps lacertosus QM F5507 (scanned, A, D, G), Aquila audax (B, E, H) and Haliaeetus leucogaster (C, F, I) in cranial (A, B, C), caudal (D, E, F) and ventral (G, H, I) view. Abbreviations: CD, condylus dorsalis; CV, condylus ventralis; DEMR, dorsal attachment m. extensor metacarpi radialis; ED, epicondylus dorsalis; EV, epicondylus ventralis; FB, fossa brachialis; FO, fossa olecrani; II, incisura intercondylaris; MeDCo, m. extensor digitorum communi origin; MPSO, origin of distal head of m. pronator superficialis; MPPO, m. pronator profundus origin; PF, processus flexorius; PEMR, palmar attachment m. extensor metacarpi radialis; SHTD, dorsal sulcus humerotricipitalis; SHTV, ventral sulcus humerotricipitalis; SST, sulcus scapulotricipitalis; TSD, tuberculum supracondylare dorsale; TSV, tuberculum supracondylare ventrale. Scale bar 10 mm.
Figure 4 in Review of the breeding biology of rufous crab hawk Buteogallus aequinoctialis (Aves: Accipitridae) across its distribution
Figure 4. Relative frequencies, per month of the year, of Buteogallus aequinoctialis breeding records. (a), Venezuelan records; (b), records from the Guianas; (c), Brazilian records. Horizontal lines referred to as 'Breeding season' depict literature information on breeding seasonality (either relying on egg dates, or indeterminate); respective sources are – from top to bottom – Hellebrekkers (1942); Snethlage (1928); and Ferguson-Lees and Christie (2001). The right-pointing arrow in the bottom graph represents the uncertain extent of the season ('September onwards').
Figure 3 in Review of the breeding biology of rufous crab hawk Buteogallus aequinoctialis (Aves: Accipitridae) across its distribution
Figure 3. Egg measurements of three Buteogallus species, obtained from multiple sources. aeq = B. aequinoctialis; anth = B. anthracinus; gund = B. gundlachii; ext = extreme egg size within a given sample of eggs, as provided by a reference; lit = individual measurement obtained from a literature source; mean = mean values provided by literature; mus = measurements obtained directly from a museum egg set; quest = questionable species identification.
Figure 2 in Review of the breeding biology of rufous crab hawk Buteogallus aequinoctialis (Aves: Accipitridae) across its distribution
Figure 2. Geographical distribution of original breeding records of Buteogallus aequinoctialis. Numbers in parentheses represent the total number of records attributed to a given locality. Records outside the current range mostly comprise cases of imprecise/dubious georeferencing rather than misidentifications, unless otherwise designated (see, for further details, the Results and Supplemental material 3). Map generated with ArcGIS, and edited with CorelDRAW.
Figure 1 in Review of the breeding biology of rufous crab hawk Buteogallus aequinoctialis (Aves: Accipitridae) across its distribution
Figure 1. Distribution of female body masses of three Buteogallus species, retrieved from multiple sources; further details in the main text. Open circles refer to single body masses, whilst asterisks represent mean values provided by the source; symbols are horizontally spread to improve visualisation.
FIGURES 3–7 in Craspedorrhynchus linardii, a new species of chewing louse (Phthiraptera: Ischnocera: Philopteridae) from the Gray-headed Kite (Aves: Falconiformes: Accipitridae)
FIGURES 3–7. Craspedorrhynchus linardii sp.n.: 3, dorsoventral views of head of male. 4, male tergites. 5, dorsoventral views of the head of the female. 6, female tergites 7, female vulvar area (setae on the edge of the vulvar opening not drawn) (Bar = 0.4mm).
Figure 1 in Nesting territory characteristics of a migratory South American forest hawk, the White-throated Hawk (Buteo albigula) (Aves: Accipitridae), in temperate rainforest remnants of Araucanía, southern Chile
Figure 1. white-throated hawk (Buteo albigula) egg (A) and 31-day-old nestling (B) found on one nesting platform in Llancahue, Valdivia, southern Chile.
Figure 1 in Distribution, threats and conservation of the White-collared Kite (Leptodon forbesi, Accipitridae), the most threatened raptor in the Neotropics
Figure 1. Adult of White-collared Kite (Leptodon forbesi). Photo: Yuri Raia.
FIGURE 3 in Taxonomy and distribution of the Pygmy Eagle Aquila (Hieraaetus) weiskei (Accipitriformes: Accipitridae)
FIGURE 3. Underside pattern of pale morph Aquila pennata (upper), A. morphnoides (middle) and A. weiskei (lower). Drawn from photos and field sketches.
FIGURE 2 in Taxonomy and distribution of the Pygmy Eagle Aquila (Hieraaetus) weiskei (Accipitriformes: Accipitridae)
FIGURE 2. BMNH specimens in dorsal and ventral view. From left to right, pale-morph male and dark-morph female Aquila pennata, dark-morph male and light-morph female A. morphnoides, and dark-morph and pale-morph female A. weiskei.
FIGURE 1 in Taxonomy and distribution of the Pygmy Eagle Aquila (Hieraaetus) weiskei (Accipitriformes: Accipitridae)
FIGURE 1. Results of a Principal Component Analysis (PCA) of biometrics. 1 = Aquila weiskei, 2 = A. morphnoides, 3 = A. pennata. Filled symbols indicate females; open symbols indicate males.
Data from:A large eagle (Aves, Accipitridae) from the early Miocene of Panama
Open the record for dataset details and reuse information.
Figure 1 from: Muñoz-Pedreros A, Norambuena HV, Gil C, Rau J (2020) Selective consumption of rodents by the Variable hawk Geranoaetus polyosoma (Accipitriformes: Accipitridae) in the Atacama Desert, northern Chile. Zoologia 37: 1-6. https://doi.org/10.3897/zoologia.37.e55615
Figure 1 Map showing the location of Ojo Apache at Antofagasta region, Chile; and the type of habitat present in the area. Satellite view of the Ojo Apache (top left); broad view of the valley, showing the topography and main phytophysiognomy (in the centre); and detailed view of the local vegetation (bottom left).
Enigmas no longer: using Ultraconserved Elements to place several unusual hawk taxa and address the non-monophyly of the genus Accipiter (Accipitriformes: Accipitridae)
<p>Alignment and tree data associated with the paper:<strong> </strong><span>Enigmas no longer: using Ultraconserved Elements to place several unusual hawk taxa and address the non-monophyly of the genus <em>Accipiter </em>(Accipitriformes: Accipitridae)</span></p>
FIGURES 8–10 in Craspedorrhynchus linardii, a new species of chewing louse (Phthiraptera: Ischnocera: Philopteridae) from the Gray-headed Kite (Aves: Falconiformes: Accipitridae)
FIGURES 8–10. Craspedorrhynchus linardii sp.n.: 8, female IX tergite. 9, male subgenital plate
ScienceDex guides
Understand access before you commit
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.