Skip to main content
Powered by ShareScore

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.

29

datasets available to search

ShareScore release 0.9.0

Reset

Dataset results

29 results for “roosting sites.”

Learn how ShareScore rates datasets ↗
zenodo40/100

Figure 8 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 8. Comparison of fossil and extant acanthizid bones. Left carpometacarpi of (A–B) acanthizid gen. et sp. indet. QM F57928 and (C–D) Gerygone fusca AM O.66008 in (A,C) ventral and (B,D) dorsal aspects. Distal left tibiotarsi of (E) acanthizid gen. et sp. indet. QM F22796 and (F) Gerygone fusca AM O.66008 in cranial aspect. Some distinguishing features of Acanthizidae highlighted: 1, fovea lig. ventralis deep and recessed cranially; 2, ventral fossa on distal end of os metacarpale minus deep; 3, proc. dentiformis prominent and situated at proximo-distal midpoint of os metacarpale majus; 4, fovea carpalis caudalis small and shallow; 5, distal shaft narrow with respect to width of distal end; 6, pons supratendineus long; 7, lateral bony ridge for retinaculum m. fibularis well developed; 8, tuberositas retinaculi extensori lateralis prominent. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 3 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 3. Distal ulnae of (A–C) fossil meliphagid gen. et sp. indet. QM F30855 and (D–F) Meliphaga lewinii AM O.60079 (mirrored). (A,D) cranial, (B,E) caudal and (C,F) dorsal aspects. Some characteristic features of Meliphagidae shown: 1, depressio radialis deep; 2, tub. carpale short and perpendicular to the shaft long axis; 3, condylus dorsalis far greater in proximal extent than condylus ventralis; 4, sulcus intercondylaris deep both caudally and distally; 5, papillae remigales caudales low; 6, condylus dorsalis protrudes well caudally from the shaft. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 4 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 4. Carpometacarpi of fossil Meliphagidae gen. et sp. indet., compared with those of extant meliphagid species in (A,C,E,G,I) ventral and (B,D,F,H,J) dorsal aspects. (A–B) QM F57899, right carpometacarpus. (C–D) Manorina melanocephala AM O.59876. (E–F) QM F22794, proximal left carpometacarpus. (G–H) AR17407, left carpometacarpus. (I–J) Gliciphila melanops AM O.65515. Some characteristic features of Meliphagidae shown: 1, distal edge of facies articularis alularis situated proximally of the level of the fovea lig. ventralis; 2, fovea lig. ventralis large; 3, distal end of os metacarpale majus broad and its cranial extent is greater than that of proc. dentiformis; 4, fossa on ventral surface of distal end of os metacarpale minus; 5, fovea carpalis caudalis deep, its distal margin located distally of the level of proc. cranialis; 6, broad fossa at distal end of sulcus tendinosus. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 12 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 12. Humeri of (A,D–F,I–J) fossil Petroicidae gen. et sp. indet. compared with those of (B,G) Microeca fascinans AM O.65147 and (C,H) Petroica phoenicea AM O.60008. (A,F) QM F 57901 left humerus. (D,I) QM F 50576, right humerus. (E,J) QM F 36366, distal left humerus. (A–E) caudal view, (F–J) cranial view. Some distinguishing features of Petroicidae shown: 1, crista deltopectoralis terminates well distally of crista bicipitalis; 2, proc. supracondylaris dorsalis broad with two apices; 3, fossa pneumotricipitalis II shallow and separate from fossa tricipitails I; 4, sulcus humerotricipitalis shallow; 5, proc. flexorius truncate and only slightly extends distally further than condylus dorsalis; 6, fossa pneumotricipitalis I pneumatic; 7, margo caudalis short and very low; 8, sulcus scapulotricipitalis wide and shallow; 9, distal end well expanded dorsally and 10, ventrally. Arrows indicate tooth punctures. Scale = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 16 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 16. Tarsometatarsi of (B–G) fossil Megalurus sp. compared with the corresponding bones of (A) M. timoriensis AM O.65209 and (H) M. cruralis AM O.59220 in dorsal view. (B) QM F57934, left tarsometatarsus; (C) QM F30360, proximal left; (D) QM F57936, distal left; (E) QM F57937, distal left; (F) QM F30375, distal right; (G) QM F57935, distal left. Some distinguishing features labelled as follows: 1, impressio lig. collateralis medialis at about level with arcus extensorius; 2, lateral foramen vasculare proximale large; 3, tuberositas m. tibialis cranialis located distally adjacent of arcus extensorius and medially of shaft midpoint; 4, foramen vasculare distale situated proximally of incisura intertrochlearis lateralis by distance of ≥ 2× length of tr IV; 5, tr II similar width to tr III; 6, incisura intertrochlearis medialis narrow; 7, medial rim of tr II greater in distal and dorsal extents than lateral rim; 8, distal edge of tr IV at disto-lateral angle to shaft long axis. Arrows indicate different extent of medial protrusion of trochlea metatarsi II. Scale = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 6 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 6. Proximal left tarsometatarsi of (A) fossil meliphagid gen. et sp. indet. QM F36374 and (B) Stomiopera unicolor AM O.70570 in dorsal aspect. Some distinguishing features for Meliphagidae shown: 1, cotyla medialis greater in proximal extent than cotyla lateralis; 2, impressio lig. collateralis medialis situated distally of arcus extensorius; 3, tuberositas m. tibialis cranialis located well distally of arcus extensorius and medially of the shaft midpoint. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 10 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 10. Tibiotarsi of (A–D) fossil Pomatostomus sp. compared with (E–F) a left tibiotarsus of P. temporalis AM O. 68479. (A–B) QM F36368, distal left tibiotarsus. (C–D) QM F36670, distal right tibiotarsus. (A,C,E) cranial view, (B,D,F) caudal view. Some characteristic features are highlighted: 1, tuberositas retinaculi extensoris lateralis protuberant and at about level with the bony ridges for attachment of retinaculum m. fibularis; 2, lateral bony ridge for retinaculum m. fibularis a moderate flange, whereas medial bony ridge low; 3, trochlea cartilaginis tibialis very wide; 4, cristae near parallel. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 5 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 5. Distal left tibiotarsi of (A) fossil meliphagid gen. et sp. indet. QM F30824 and (B) Ptilotula flavescens AM O.66333 in cranial aspect. Some characteristic features of Meliphagidae shown: 1, pons supratendineus very long; 2, tuberositas retinaculi extensori lateralis low and situated on proximal edge of pons supratendineus; 3, bony ridges for attachment of retinaculum m. fibularis low. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 2 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 2. Humeri of (A,C,D,F) fossil Meliphagidae gen. et sp. indet., compared with the humerus of (B,E) Conopophila albogularis AM O.70096. (A,D) QM F30825, distal right humerus. (C,F) AR21604, distal left humerus. (A–C) caudal and (D–F) cranial aspects. Some characteristic features of Meliphagidae shown: 1, sulcus humerotricipitalis deep; 2, distal profile between sulci humerotricipitalis et scapulotricipitalis highly concave; 3, distal end greatly expanded dorsally and 4, ventrally; 5, proc. supracondylaris dorsalis bifurcated and projects well dorsally; 6, fossa m. brachialis moderately deep. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 7 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 7. Distal tarsometatarsi of (A–B,D–E,G–H) fossil Meliphagidae gen. et sp. indet., compared with that of (C,F,I) Nesoptilotis leucotis AM O.59863. (A,D,G) QM F57929, distal left tarsometatarsus. (B,E,H) QM F36648, distal right tarsometatarsus. (A–C) dorsal and (D–F) plantar aspects, and (G–I) lateral aspect of distal end. Some characteristic features of Meliphagidae shown: 1, tr II medio-laterally compressed, pointed distally and rotated planto-medially from shaft long axis; 2, lateral edge of tr IV situated medially of that of shaft; 3, medial rim of tr III greater in distal extent than lateral rim; 4, incisura intertrochlearis medialis narrow; 5, medial flange at about level with fossa metatarsi I; 6, distal end dorso-plantarly compressed and distinctly bent plantarly. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 14 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 14. Wing bones of (A–B,E–G,I–K) fossil Estrildidae gen. et sp. indet. compared with those of (C–D,H,L) Lonchura oryzivora AM O.66319. (A–B) QM F57940, distal right humerus. (E,I) QM F30821, left carpometacarpus.(F,J) QM F57903, left carpometacarpus. (G,K) QM F57933, right carpometacarpus. (A,C) caudal view, (B,D) cranial view, (E–H) ventral view, (I–L) dorsal view. Some distinguishing features of Estrildidae shown: 1, sulcus humerotricipitalis deep and extends proximally beyond base of proc. supracondylaris dorsalis; 2, sulcus scapulotricipitalis strongly marked; 3, distal profile of condylus dorsalis convex; 4, fossa m. brachialis elongate and very deep; 5, tub. supracondylare ventrale protrudes proximo-cranially; 6, trochlea carpalis ventralis circular; 7, ventral fossa on distal end of os metacarpale minus very shallow; 8, distal end of the os metacarpale minus square and broad; 9, proximal end of os metacarpale minus narrow and becomes wider distally; 10, sulcus interosseus moderately deep. Scale = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 11 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 11. Proximal right tarsometatarsi of (A–F) fossil Pomatostomus sp. compared to the corresponding bone of (G–I) P. ruficeps AM O.60045. (A–C) QM F57900. (D–F) QM F30357. (A,D,G) dorsal view, (B,E,H) plantar view, (C,F,I) lateral view. Some characteristic features of Pomatostomus labelled: 1, arcus extensorius longer than wide; 2, tuberositas m. tibialis cranialis low and located close to arcus extensorius; 3, groove for M. fibularis longus marked; 4, ossified tendinal bridge between hypotarsus and crista plantaris lateralis, enclosing a small foramen in crista. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 9 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 9. Comparison of fossil and extant pomatostomid wing bones. (A–B) distal left humerus of Pomatostomus sp. QM F30358 and (C–D) distal right humerus of P. temporalis AM O.65103 (mirrored). Right ulnae of (E–F) Pomatostomus sp. QM F57939 and (G–H) P. ruficeps AM O.60045. (A,C,F,H) caudal aspect; (B,D,E,G) cranial aspect. Some characteristic features of Pomatostomus shown: 1, proc. supracondylaris dorsalis long and bifurcated; 2, sulcus humerotricipitalis very shallow; 3, distal end of humerus well expanded ventrally; 4, distal extent of proc. flexorius much greater than that of condylus ventralis; 5, condylus ventralis long with respect to length of condylus lateralis; 6, olecranon short; 7, distal edge of proc. cotyla dorsalis about level with that of cotyla ventralis; 8, cotyla ventralis shallow; 9, impressio m. brachialis very shallow; 10, shallow depression situated distally of attachment scar for trochlea humeroulnaris. Scale bar = 2mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 13 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 13. Proximal left ulnae of (A–C) a fossil petroicid gen. et sp. indet. and (D–F) Petroica phoenicea AM O.60008. (A,D) cranial view, (B,E) caudal view, (C,F) ventral view. Some characteristic features of Petroicidae highlighted: 1, cotyla ventralis shallow; 2, proc. cotyla dorsalis square and its proximal edge is located distally of that of cotyla ventralis by a distance greater than one-third the length of the latter; 3, depression situated ventrally of the impressio m. scapulotricipitis; 4, protuberance for attachment of the trochlea humeroulnaris projects beyond the caudal edge of the olecranon. Scale = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 17 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 17. Carpometacarpi of (A–D) fossil Acrocephalus sp. compared with the corresponding element of (E–F) A. australis AM O.58015. (A–B) QM F57902, left carpometacarpus. (C–D) QM F30356, right carpometacarpus. Some characteristic features of Acrocephalus shown: 1, depression for origin of M. flexor digiti minoris deep, terminates distally of proc. pisiformis; 2, ventral fossa on distal end of os metacarpale minus large and deep; 3, fovea carpalis caudalis small and deep; 4, proc. intermetacarpalis moderately short and does not protrude beyond caudal edge of os metacarpale minus; 5, proc. dentiformis long, low and situated well distally of midpoint of os metacarpale minus. Scale = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 15 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 15. Comparison of (A–B, D–E, G) fossil bones of Megalurus sp. with those of (C,F,H) extant M. mathewsi AM O.59292. (A,D) QM F30820, right carpometacarpus. (B,E) QM F30852, right carpometacarpus. (G) QM F57941 distal left tibiotarsus. Some distinguishing features of Megalurus labelled: 1, cranial extent of proc. extensorius far greater than that of proc. alularis; 2, depression for attachment of M. flexor digiti minoris terminates distally of proximal edge of proc. pisiformis; 3, proc. dentiformis situated distally of midpoint of os metacarpale majus; 4, proc. cranialis long; 5, sulcus interosseus shallow; 6, distal edge of tuberositas retinaculi extensoris medialis at about level with bony ridges for retinaculum m. fibularis; 7, bony ridges for attachment of the retinaculum m. fibularis long and prominent flanges; 8, tuberositas retinaculi extensori lateralis occupies most of lateral half of pons supratendineus and does not protrude beyond its proximal edge; 9, condylus lateralis wider than condylus medialis; 10, incisura intercondylaris wide and its distal profile asymmetrical. Scale = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Figure 1 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 1. Distal left tibiotarsi of (A) fossil malurid gen. et sp. indet. QM F30361 and (B) Stipiturus malachurus AM O.68207 in cranial aspect. Some characteristic features of Maluridae shown: 1, sulcus extensorius very shallow and displaced laterally of the medio-lateral midpoint of the shaft; 2, tuberositas retinaculi extensori lateralis situated on proximo-lateral part of pons supratendineus; 3, condylus lateralis greater in width and in proximal extent than condylus medialis. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
zenodo40/100

Fig. 2 in Home range, habitat use and roost-site selection by lowland female Siamese fireback Lophura diardi in northeastern Thailand

Fig. 2. The variation in home ranges and core areas of the eight female Siamese fireback in 2011 during different reproductive periods, estimated using 95% MCP and CHP Hot Spot methods. Locations shown were the food supplement sites (1 and 2) and nesting sites during the breeding season.

opencc-by-4.0Oct 2019View details →
zenodo40/100

Fig. 3 in Home range, habitat use and roost-site selection by lowland female Siamese fireback Lophura diardi in northeastern Thailand

Fig. 3. The occurrence probability of Siamese fireback in relation to habitat variables. Shown are predicted values and 95% confidence limits for breeding (black solid lines) and non-breeding (gray dashed lines) periods.

opencc-by-4.0Oct 2019View details →
zenodo40/100

Fig. 1 in Home range, habitat use and roost-site selection by lowland female Siamese fireback Lophura diardi in northeastern Thailand

Fig. 1. Location of Sakaerat Environmental Research Station (SERS), northeastern Thailand, including the locations of 60 available sites, two food supplementary sites, 14 nesting sites, and 52 roosting sites. Polygons shown are the home range boundaries of the eight radiotagged Siamese firebacks (group A–H).

opencc-by-4.0Oct 2019View details →

ScienceDex guides

Understand access before you commit

These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

Compare curated 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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record