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.
229
datasets available to search
ShareScore release 0.9.0
Dataset results
229 results for “Metatheria”
FIG. 50. — A, B, left incomplete IMG Femur 1 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 50. — A, B, left incomplete IMG Femur 1; A, anterior view; B, posterior view; C-F, left incomplete IMG Femur 2; C, E, anterior view; D, F, posterior view. For numbered designations of specific characters see text. Scale bar: 2 mm.
FIG. 46. — A in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 46. — A, lateral view of IMG Innominate 1 (DGM 1.145A-M), specimen from the left side; B, lateral view of IMG Innominate 3 (DGM 1.146B-M), specimen from the right side; C, lateral view of IMG Innominate 2 (DGM 1.146A-M), specimen from the left side. Scale bar: 4 mm.
FIG. 42 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 42. — Plots of ulnar parameters. Regression line was drawn for living models only, and the fossil values were plotted subsequently in order to gauge some measure of their relationship to the arboreal-terrestrial dichotomy. The extremes of the living range are represented by the modern species. Abbreviations: CD, Caluromys derbianus; DG, Dromiciops gliroides; MF, Mayulestes ferox; MN, Metachirus nudicaudatus; RR, Rhyncholestes raphanurus; PA, Pucadelphys andinus. Roman numerals stand for Itaboraí Metatherian Group designations of ulnae.
FIG. 66. — A in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 66. — A, details of left IMG Tibia 2, proximal view; B-E, K, L, details of left IMG Tibia 3; B, proximal view; C, distal view; D, anterior view of distal end; E, posterior view; K, lateral view of distal end; L, posterior view of distal end; F, left distal tibia of Pucadelphys, anterior view; G, H, left distal tibia of Caluromys; G, lateral view; H, posterior view; I, J, left distal tibia of Metachirus; I, lateral view; J, posterior view. Abbreviations: ATil, lateral astragalotibial facet; ATim, medial astragalotibial facet; CaFi, calcaneofibular facet; FeTil, lateral femorotibial facet; TiFid, distal tibifibular facet; tmm, tibial medial malleolus. Scale bars: 2 mm.
FIG. 55 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 55. — Details of left IMG Femur 5; A, B, proximal third; A, posterior view; B, anterior view; C, D, distal third; C, medial view; D, lateral view. For numbered designations of specific characters see text. Scale bar: 2 mm.
FIG. 35 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 35. — Same as for Fig. 34, but with a different body weight surrogate that allows the inclusion of more (fragmentary) fossils.
FIG. 57. — Left IMG Femur 7 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 57. — Left IMG Femur 7. Two specimens (A-C et D-G); A, D, anterior view; B, E, posterior view; C, F, proximal view; G, distal view. For numbered designations of specific characters see text. Scale bars: 2 mm.
FIG. 33. — A-C, left IMG Humerus 6 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 33. — A-C, left IMG Humerus 6; A, distal third, anterior view; B, proximal view of the head with the approximate axes of orientation of the head and distal end; C, distal third, posterior view; D-F, left IMG Humerus 7; D, distal third, anterior view; E, proximal view of the head with the approximate axes of orientation of the head and distal end; F, distal third, posterior view. For numbered designations of specific characters see text. Scale bar: 4 mm.
FIG. 32. — A-E, left IMG Humerus 4 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 32. — A-E, left IMG Humerus 4; A, D, anterior view of the distal third; B, proximal view of the head with the approximate axes of orientation of the head and distal end; C, E, posterior view of the distal third; F-H, left IMG Humerus 5; F, anterior view of the distal third; G, proximal view of the head with the approximate axes of orientation of the head and distal end; H, posterior view of the distal third. Scale bars: 2 mm.
FIG. 38. — A-C, left IMG Ulna 1 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 38. — A-C, left IMG Ulna 1; A, anterior view; B, medial view; C, lateral view; D-F, left IMG Ulna 2; D, anterior view; E, medial view; F, lateral view; G-I, left IMG Ulna 3; G, anterior view; H, medial view; I, lateral view; J-L, left IMG Ulna 4; J, anterior view; K, medial view; L, lateral view. For numbered designations of specific characters see text. Scale bars: 2 mm.
FIG. 59. — Left IMG Femur 9 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 59. — Left IMG Femur 9; A-D, F, G, first specimen; A, F, anterior view; B, G, posterior view; C, distal view; D, proximal view; E, H, I, second specimen; E, proximal view; H, anterior view; I, posterior view. For numbered designations of specific characters see text. Scale bars: A, B, 4 mm; C-I, 2 mm.
FIG. 30. — Left IMG Humerus 1 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 30. — Left IMG Humerus 1; A-D, whole humerus; A, anterior view; B, posterior view; C, lateral view; D, medial view; E, F, distal third of humerus; E, anterior view; F, posterior view. For numbered designations of specific characters see text. Scale bars: 2 mm.
FIG. 28. — IMG Humerus 4 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 28. — IMG Humerus 4; A, D, DGM 1.197A-M, right specimen; A, anterior view; D, posterior view; B, E, DGM 1.197D-M, left specimen; B, anterior view; E, posterior view; C, F, DGM 2001M, right specimen; C, anterior view; F, posterior view. Scale bar: 3 mm.
FIG. 49. — A, D, IMG Femur 8 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 49. — A, D, IMG Femur 8 (DGM 1.203XIII-M), specimen from the right side; A, anterior view; D, posterior view; B, E, IMG Femur 9 (DGM 1.203XIIA-M), specimen from the right side; B, anterior view; E, posterior view; C, F, IMG Femur 10 (DGM 2040M), specimen from the left side; C, anterior view; F, posteri- or view. Scale bar: 5 mm.
FIG. 65. — A, IMG Tibia 3 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 65. — A, IMG Tibia 3 (DGM 1731PV), right specimen, anterior view; B, IMG Tibia 2 (DGM 1952M), left specimen, anterior view. Scale bar: 3.5 mm.
FIG. 45 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 45. — Radii of Rhyncholestes (E, F) and Monodelphis (G, H) compared to the IMG specimen (A-D); A, anterior view of complete radius; B, E, G, proximal views of proximal radius; C, F, H, anterior views of proximal radius; D, posterior view of proximal radius. Note the elliptical outline of the head in both the IMG specimen (B) and the caenolestid (E), compared to the rounded head of the terrestrial didelphid (G). Scale bars: 2 mm.
FIG. 27. — A, B, E, F, right IMG Humeri 1 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 27. — A, B, E, F, right IMG Humeri 1; A, E, DGM 1.192C-M; A, anterior view; E, posterior view; B, F, DGM 1.192A-M; B, anteri- or view; F, posterior view; C, D, G, H, right IMG Humeri 3; C, G, DGM 1.194C-M; C, anterior view; G, posterior view; D, H, DGM 1.194D-M; D, anterior view; H, posterior view. Scale bar: 2 mm.
FIG. 53 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 53. — Itaboraí Metatherian Group II, selected specimens; A, F, IMG Ulna 3 (DGM 1.150IIIA-M); A, anterior view; F, posterior view; B, G, IMG Humerus 2 (DGM 1.193B-M); B, anterior view; G, posterior view; C, H, IMG Femur 5 (DGM 1.203VA-M); C, anterior view; H, posterior view; D, I, IMG Femur 5, distal half (DGM 1.203VC-M); D, anterior view; I, posterior view; E, J, IMG Tibia 1 (DGM 1.188C-M); E, anterior view; J, posterior view. Distal femur and proximal tibia are shown in near articular contact as on Fig. 54. Scale bar: 3 mm.
FIG. 23 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 23. — Details of Monodelphis domestica (Wagner, 1842); A-D, left humerus; A, anterior view; B, posterior view; C, proximal view; D, distal view; E-G, ulna; E, anterior view; F, medial view; G, lateral view; H-N, femur; H, medial view; I, distal view; J, anterior view; K, medial view; L, posterior view; M, anterior view; N, posterior view; O-R, tibia; O, proximal view; P, posterior view; Q, anterior view; R, lateral view. For numbered designations, see text. Letters in front of the numbers pertain to the initials of the bones for which numbers are shown: f, femoral; h, humeral; u, ulnar; t, tibial. Scale bars: 2 mm.
FIG. 25 in Model-based analysis of postcranial osteology of marsupials from the Palaeocene of Itaboraí (Brazil) and the phylogenetics and biogeography of Metatheria
FIG. 25. — Details of Pucadelphys (Marshall & Muizon, 1988); A-D, left femur; A, anterior view; B, posterior view; C, proximal view; D, distal view; E-I, crus; E, lateral view; F, anterior view; G, medial view; H, posterior view, fibula is rotated laterally; I, proximal view, fibula is rotated laterally. For numbered designations of specific characters see text. Prefixes before the numbers: f, femoral; t, tibial. Abbreviations: Fi, fibula; TiFip, proximal tibiofibular facet. Scale bars: 2 mm.
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.