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.
184
datasets available to search
ShareScore release 0.9.0
Dataset results
184 results for “Pandas”
FIG. 19 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 19. Cranial comparison of Huracan and related taxa. A. Indarctos zdanskyi AMNH F:AM 22345; B. Huracan qiui HMV 2005; C. H. coffeyi AMNH F:AM 49372; and D. Agriotherium sivalense BMNH 39721 (photo courtesy of P. Brewer and H. Taylor).
FIG. 23 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 23. Geographic distribution pattern of Agriotheriini (Ailuropodinae, Ursidae) in the Northern Hemisphere through time (early Late Miocene to late Pleistocene). Artwork by Yu Chen.
FIG. 18 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 18. Dental and mandible plots of Huracan and related taxa, with emphasis on dental length and its with/ length ratio, ratio of length between different teeth, and premolar/molar row length.
FIG. 16 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 16. Calcaneum of Huracan coffeyi: A. UCMP 31837, Coffee Ranch, A1. anterior (dorsal) view; A2. posterior (ventral) view; A3. distal view. B. AMNH F:AM 76097, Quiburis Formation. C. AMNH F:AM 146510, Quiburis Formation.
FIG. 15 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 15. Femur of Huracan coffeyi: A. AMNH F:AM 50086, Quiburis Formation. B. AMNH F:AM 76105, Quiburis Formation. C. AMNH F:AM 146503, Quiburis Formation.
FIG. 13 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 13. Radius of Huracan coffeyi: A. UNSM 76013, Sherman Co. Locality SM-101, A1. anterior view; A2. posterior view; A3. distal view; A4. proximal view. B. AMNH F:AM 76077, Quiburis Formation. C. AMNH F:AM 76078, Quiburis Formation.
FIG. 12 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 12. Humerus of Huracan coffeyi: A. UCMP 31818, Coffee Ranch. B. AMNH F:AM 76070, Quiburis Formation. C. AMNH F:AM 76072, Quiburis Formation.
FIG. 20 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 20. Phylogenetic trees of Agriotheriini: A. strict consensus tree, parsimony with equal weighting, tree length 473, CI = 0.548, RI = 0.834; B. single most parsimonious tree, parsimony with implied weighting (k = 12), tree length 16.16, CI = 0.549, RI = 0.835. Number in the node represents bootstrap value (1000 times).
FIG. 14 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 14. Ulna of Huracan coffeyi: A. AMNH F:AM 50042, Guymon, A1. lateral view; A2. medial view; A3. anterior view. B. AMNH F:AM 76008, Quiburis Formation. C. AMNH F:AM 76082, Quiburis Formation.
FIG. 11 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 11. Comparison of incisors among Huracan, Indarctos, and Agriotherium. A. Huracan coffeyi: A1. left I1/2, AMNH F:AM 76038; A2. left I1/2, AMNH F:AM 146477; A3. right I1/2, AMNH F:AM 146473; A4. right I1/2, AMNH F:AM 146472; A5. right i1/2, AMNH F:AM 146474; A6. right i3, AMNH F:AM 76028A; A7. left I3, AMNH F:AM 146475; A8. left I3, AMNH F:AM 146475. B. Huracan qiui: HMV 2005, left I1–3. C. Indarctos lagrelii: cast of type, left I1–3. D. Agriotherium palaeindicum: Xiaoxian, Anhui Province, China, left I1–2. Note the specialised characters on I1–3, emphasized in the figures of Huracan, which are absent in both Indarctos and Agriotherium.
FIG. 10 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 10. Mandibles of Huracan coffeyi (lateral and dorsal views). A1, 2. AMNH F:AM 76010; B1, 2. AMNH F:AM 144551; C. AMNH F:AM 76005; D1, 2. AMNH F:AM 50032. Note variation of the premasseteric fossa.
FIG. 9 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 9. Skulls (crushed) of Huracan coffeyi. A1–3. AMNH F:AM 76006; B. AMNH F:AM 76015; C. AMNH F:AM 76005; D. AMNH F:AM 30399.
FIG. 7. Lower p4–m2 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 7. Lower p4–m2 or m3 of Huracan and related taxa. A. Huracan schneideri: A1. IGM 6413 (cast), Rancho Viejo Beds; A2. UF 47482, Upper Bone Valley; A3. UF 53977, Upper Bone Valley; A4. UF 21226 (reversed), Upper Bone Valley, not all associated. B. Huracan coffeyi: B1. AMNH F:AM 146483; B2. AMNH F:AM 76013; B3. AMNH F:AM 146493; B4. AMNH F:AM 76023; B5. AMNH F:AM 146571; B6. AMNH F:AM 146488 (reversed); B7. AMNH F:AM 76021 (reversed); B8. AMNH F:AM 146481 (reversed); B9. AMNH F:AM 146490; B10. AMNH F:AM 76033 (reversed); B11. AMNH F:AM 146500; B12. AMNH F:AM 76031, not all associated. C. Indarctos cf. I. atticus: AMNH F:AM 22332, Baode. D. Agriotherium hendeyi: AMNH F:AM 76000, Quiburis Formation. E. Agriotherium africanum, Langebaanweg: E1. AMNH FM 105140 (cast of PQ-L45114, reversed); E2. AMNH FM 105148 (cast of PQ-L 50006); E3. AMNH FM 105149 (cast of PQ-L50007, reversed); E4. PQ-L 50446 (reversed); E5. PQ-L 50004, all not associated. F. Agriotherium palaeindicum: IVPP V 18411 (reversed), Xiaoxian. G. Plithocyon teilhardi: AMNH FM 26594, Tunggur Formation. Each letter represents one species and each number represents one individual.
FIG. 6. Upper P4–M2 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 6. Upper P4–M2 of Huracan and related taxa. A. Huracan qiui, HMV 2005, Wangjiashan. B. Huracan coffeyi, B1. AMNH F:AM 76006 (reversed), Quiburis Formation; B2. AMNH F:AM 145923 (reversed), Quiburis Formation; B3. AMNH F:AM 49372, Big Sandy Formation. C. Huracan roblesi (IVPP uncatalogued cast), Venta del Moro. D. Agriotherium africanum, Langebaanweg, D1. AMNH FM 105141 (cast of PQ-L 47137, reversed); D2. AMNH FM 105141 (cast of PQ-L 41404, reversed). E. Huracan schneideri, E1. IGM 6668 (cast), Rancho Viejo Beds; E2. UF 133944 (reversed); E3. UF 21227 (reversed); E4. UF 203158 (reversed); E5. UF 206887 (reversed), not all associated. F. Indarctos atticus, F1. IVPP FV 2107 (cast), Samos; F2. IVPP V 6893.10–12, Lufeng. G. Plithocyon teilhardi, AMNH FM 26594, Tunggur Formation. Each letter represents one species and each number represents one individual.
FIG. 24 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 24. Reconstructions of Huracan. Left Huracan qiui, and right Huracan coffeyi. Artwork by Qigao Jiangzuo.
FIG. 8 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 8. Cranium of Huracan coffeyi, AMNH F:AM 49372, in A. dorsal; B. ventral; and C. lateral views.
FIG. 5 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 5. Holotype specimen of Huracan schneideri, USNM 8838, in A. lateral; B. medial; and C. dorsal views.
FIG. 3 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 3. Dental measurements of bears: L, length, W, width, AW, anterior width across paracone or trigonid, PW, posterior width across metacone or talonid, IL, inner lobe width, TL, talon/talonid length, TW, talonid width.
FIG. 1 in New Fossil Giant Panda Relatives (Ailuropodinae, Ursidae): A Basal Lineage of Gigantic Mio-Pliocene Cursorial Carnivores
FIG. 1. Map of localities with specimens assignable to species of Huracan. Huracan coffeyi, Hh3, stars: 1. Coso Formation; 2. Hay Ranch Formation; 3. Big Sandy Formation; 4. Quiburis Formation, 5. Ogallala Formation; 6. Snake Creek Formation. Huracan schneideri, Hh4, squares: 7. Eden Formation; 8. Bone Valley Formation; 9. Yepomera; 10. Rinconada; 11. Tehuichila. Huracan cf. H. schneideri, Blancan NALMA, diamonds: 12. Glenns Ferry Formation; 13. Ringold Formation. Huracan qiui, Baodean ALMA, triangle: 14. Wangjiashan. Huracan roblesi, MN13, white circle: 15. Venta del Moro.?"Huracan" punjabiensis, Dhok Pathan, black circle: 16. Hasnot.
Data from: Altitude difference might contribute to the genetic divergence of giant panda' staple food Bamboo (Fargesia spathacea complex) based on 14 SSR markers
<p>The taxonomy in woody bamboo faces a lot of difficulties due to its long blooming intervals and complicated morphological variation. Whether the current taxonomy would reflect the genuine species divergence within woody bamboo is an intriguing question. <i>Fargesia spathacea</i> complex comprises fifteen closely related species with sympatric distribution in China. Their classification has long been controversy because of only a handful of vegetative traits available, thus providing a good opportunity to explore the evolutionary relationship and genetic differentiation in woody bamboo. Here we presented a study with 750 individuals from 39 representative populations in <i>Fargesia spathacea</i> complex using 14 SSR markers. We found varying degrees of genetic diversity across populations of the <i>Fargesia spathacea</i> complex (<i>He</i>=0.07-0.81) and largely negative <i>F</i> values at the population level, implying an excess of heterozygotes in the populations. Phylogenetic analyses revealed that all populations were divided into two major groups (cluster A and B), with the majority of fifteen species representing distinct genetic lineages. Based on the population genetic analysis along with morphological evidence, we confirmed the identity of three species (<i>F. decurvata</i>, <i>F. spathacea</i> and <i>F. murielae</i>) and suggested invalidation of four other species (<i>scabrida</i>, <i>F. robusta</i>, <i>F. denudata</i> and <i>F. nitida</i>). The delimitation of the rest eight species was yet to be explored. The ecological factor and spatial autocorrelation analysis supported that altitude difference might account for the distinct genetic divergence between two major groups.</p>
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.