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.
38
datasets available to search
ShareScore release 0.9.0
Dataset results
38 results for “Diprotodontidae”
Figure 1 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 1. Right dentary fragment, Diprotodon optatum Owen, 1838 (= D. australis Owen 1844; see Appendix 1), genus and species holotype (BM10796), collected from the Wellington Caves, central eastern New South Wales. A, lateral view. B, internal view.
Figure 2 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 2. Map of Australia indicating localities where Diprotodon fossils have been recorded (modified from Horton, 1984) and specific assemblages mentioned in the text.
Figure 9 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 9. Line drawings of morphological variation in Diprotodon dentary shape (all specimens from the Darling Downs). A, QMF36129, small form. B, QMF1517, small form. C, QMF319, large form. D, QMF6569, large form. E, QMF10311, large form. F, QMF6633, juvenile large form. Numerals on line drawings denote character variations: 1, anterior portion of ramus gently curved in lateral aspect; 2, anterior portion of ramus expanded and angular in lateral aspect; 3, ventral margin of horizontal ramus straight; 4, ventral margin of horizontal ramus slightly concave; 5, posterior portion of dentary gently curved; 6, posterior portion of dentary angular.
Figure 11. Length versus posterior width for Lake Callabonna Diprotodon lower molar teeth. A, M1. B, M2. C, M3. D, M4 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 11. Length versus posterior width for Lake Callabonna Diprotodon lower molar teeth. A, M1. B, M2. C, M3. D, M4.
Figure 10. Length versus posterior width for Darling Downs Diprotodon lower molar teeth. A, M1. B, M2. C, M3. D, M4 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 10. Length versus posterior width for Darling Downs Diprotodon lower molar teeth. A, M1. B, M2. C, M3. D, M4.
Figure 6 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 6. Diprotodon cranium (small form) in lateral view collected from the Darling Downs (note that the maxilla is broken and anteroventrally displaced and angled slightly vertically).
Figure 4. Diprotodon P3 and M1. A–B, QMF6633 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 4. Diprotodon P3 and M1. A–B, QMF6633, occlusal and lingual aspects of P3–M1 (Darling Downs). C–D, SAMP36367, occlusal and lingual aspects of P3–M1 (Strezlecki Creek). E–F, QMF11136, occlusal and lingual aspects of P3–M1 (mirrored; Darling Downs).
Figure 15 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 15. Diprotodon upper molar tooth area from major assemblages examined, arranged from left to right in order of increasing latitude. Horizontal line represents the mean, thick vertical line represents two standard deviations, and thin vertical line represents the range of measurements. A, M1. B, M2. C, M3. D, M4.
Fig. 19. Representative Nimbadon lavarackorum occipital regions. A in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 19. Representative Nimbadon lavarackorum occipital regions. A, QM F31377; B, QM F31541.
Fig. 22 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 22. Variation in the Nimbadon lavarackorum mandible. A–A9, QM F53824; B–B9, QM F40337.
Fig. 12 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 12 (A–H). Bivariate plots of Nimbadon lavarackorum P3 and M1 dimensions (mm) by site.
Fig. 4 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 4. Right basicranium of Nimbadon lavarackorum (QM F53642).
Fig. 6 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 6. Nimbadon lavarackorum occiput (QM F31377).
Fig. 3 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 3. Nimbadon lavarackorum cranium (QM F50470) in: A, dorsal; B, ventral; and C, lateral views.
Fig. 23 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 23. Possible sexual dimorphism in Nimbadon lavarackorum crania: A, lateral and A9, dorsal views of?male (QM F50470); and B, lateral and B9, dorsal views of?female (QM F31377).
Figure 14 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 14. Diprotodon lower molar tooth area from major assemblages examined, arranged from left to right in order of increasing latitude. Horizontal line represents the mean, thick vertical line represents two standard deviations, and thin vertical line represents the range of measurements. A, M1. B, M2. C, M3. D, M4.
Fig. 2 in First Crania and Assessment of Species Boundaries in Nimbadon (Marsupialia: Diprotodontidae) from the Middle Miocene of Australia
Fig. 2. Nimbadon lavarackorum cranium (QM F31541) in: A, dorsal; B, ventral; and C, lateral views.
Figure 7 in Taxonomy and palaeobiology of the largest-ever marsupial, Diprotodon Owen, 1838 (Diprotodontidae, Marsupialia)
Figure 7. Diprotodon upper incisors (QMF2485). A, lateral aspect. B, occlusal aspect.
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.