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1,817 results for “Late Cretaceous”
Data from: Endothermic mosasaurs? Possible thermoregulation of Late Cretaceous mosasaurs (Reptilia, Squamata) indicated by stable oxygen isotopes in fossil bioapatite in comparison with coeval marine fish and pelagic seabirds
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Data from: Environmental and biological controls on the diversity and ecology of Late Cretaceous through early Paleogene marine ecosystems in the U.S. Gulf Coastal Plain
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Data from: Aragonite bias exhibits systematic spatial variation in the late Cretaceous Western Interior Seaway, North America
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Online Supplementary Data: Deep-time biodiversity patterns and the dinosaurian fossil record of the Late Cretaceous Western Interior, USA
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Data from: Different modes of migration among Late Cretaceous ammonoids in northwestern Hokkaido, Japan: evidence from the analyses of shell whorls
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Data from: Polymorphism in Late Cretaceous phylloceratid ammonoids: evidence from ontogenetic trajectories of septal spacing
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Data From: Phylogenomics reveals accelerated late Cretaceous diversification of bee flies (Diptera: Bombyliidae)
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Data from: Therian mammals experience an ecomorphological radiation during the Late Cretaceous and selective extinction at the K-Pg boundary
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Data from: Small crocodyliform from the Lower Cretaceous (late Aptian) of central Texas and its systematic relationship to the evolution of Eusuchia
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Data from: New record of Egertonia (Elopiformes, Phyllodontidae) from the Late Cretaceous of South India
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Data from: Discovery of proteinaceous moieties in Late Cretaceous dinosaur eggshells
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Formation binning: a new method for increased temporal resolution in regional studies, applied to the Late Cretaceous dinosaur fossil record of North America
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Fig. 20. Brembodus ridens Tintori, 1980. Sample CLC J-420 in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 20. Brembodus ridens Tintori, 1980. Sample CLC J-420 from Zogno, Zorzino Formation, Upper Norian (Late Triassic), Lombardy, Italy.
Fig. 3 in Osteology and relationships of Rhinopycnodus gabriellae gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 3. Rhinopycnodus gabriellae gen. et sp. nov. Head and shoulder girdle region of holotype CLC S-725.
Fig. 16 in Rhagasostoma (Bryozoa) from the Late Cretaceous of Eurasia: taxonomic revision, stratigraphy and palaeobiogeography
Fig. 16. Rhagasostoma rowei (Brydone, 1906). A–B. Late Cretaceous, Ulyanovsk Region, Russian Federation. A. PSM PSU 2/187, this specimen, which is the original figured by E. Eichwald (1868: pl. 8, fig. 9) as Eschara volgensis Eichwald, 1865, could not be traced but is represented by this photograph taken by E. Voigt in 1963; overview of part of erect bifoliate colony showing autozooids and avicularia. B. MMI 15/49, the specimen from Yazykov, which is the original figured by I.I. Lahusen (1873: pl. 4, fig. 4) as Eschara volgensis Eichwald, 1865; overview of erect bifoliate stem-like then dichotomously branching colony. C–G. Early Maastrichtian (Ostrea lunata Zone), Trimingham, Norfolk, England, UK. C. Holotype, SM B36113, overview of erect bifoliate stem-like then dichotomously branching colony. D–E. Paratype, SM B36260. D. Overview of fan-like part of bifoliate colony. E. Autozooids and avicularia. F–G. SM B36697, specimen labelled as O. mimosa from the Brydone Collection. F. Overview of erect bifoliate stem-like then dichotomously branching colony. G. Non-ovicellate and two ovicellate (in the left lower corner) autozooids and avicularia. H. 2922/204, from an erratic block of?late Campanian age in a quarry near Hrodna/Grodno (Гродна/Гродно), Grodno Region, Belarus, view of undersides of zooidal frontal walls. Scale bars: A–B without scale bars; C–D, F = 1 mm; E, G = 200 µm; H = 300 µm.
Fig. 14. Rhagasostoma gibbosulum Brydone, 1936. A–D in Rhagasostoma (Bryozoa) from the Late Cretaceous of Eurasia: taxonomic revision, stratigraphy and palaeobiogeography
Fig. 14. Rhagasostoma gibbosulum Brydone, 1936. A–D. Holotype, SM B36887, middle Campanian (Belemnitella mucronata Zone) of Isle of Wight, High Down, England, UK. A. Overview of erect bifoliate colony. B. Non-ovicellate autozooids and avicularia. C. Opesia of autozooid. D. Avicularium. E–F. PIN 2922/242, erratic block of?late Campanian age, quarry near Hrodna/Grodno (Гродна/ Гродно), Grodno Region, Belarus. E. Overview of erect bifoliate colony. F. Non-ovicellate autozooids and avicularia. G–J. Early Maastrichtian, Saturn quarry near Kronsmoor, Schleswig-Holstein, Germany. G. SMF 29908, overview of part of erect bifoliate colony. H. SMF 29909, autozooids, avicularia and kenozooids. I. SMF 29911, non-ovicellate autozooid with long gymnocyst(?), two ovicellate autozooids (with non-damaged ooecium to the right), and avicularium with wedge-like growth. J. SMF 29912, non-ovicellate autozooids and avicularia, one from which with wedge-like growth. Scale bars: A, E, G = 1 mm; B = 100 µm; C–D = 20 µm; F = 500 µm, H–J = 300 µm.
Fig. 15 in Rhagasostoma (Bryozoa) from the Late Cretaceous of Eurasia: taxonomic revision, stratigraphy and palaeobiogeography
Fig. 15. Rhagasostoma tchvanovi (Favorskaya, 1992). A–E. Late Campanian (Cibicidoides voltzianus Zone; LS15), southern Aral Sea Region, Republic of Karakalpakstan, Uzbekistan. A–C. Holotype, TsNIGR Museum 33/12582. A. Overview of erect bifoliate colony. B. Ovicellate autozooids and avicularia. C. Non-ovicellate autozooids and avicularia. D–E. TsNIGR Museum 34/12582. D. Overview erect bifoliate of colony. E. Non-ovicellate autozooids and avicularia. F. TsNIGR Museum 32/12582, middle Campanian (Brotzenella monterelensis Zone; LS14), southern Aral Sea Region, Republic of Karakalpakstan, Uzbekistan; overview of erect bifoliate colony, cryptocyst of autozooids with proximolateral caverns. Scale bars: A = 500 µm; B, E = 200 µm; С = 250 µm; D, F = 1 mm.
Fig. 8 in Rhagasostoma (Bryozoa) from the Late Cretaceous of Eurasia: taxonomic revision, stratigraphy and palaeobiogeography
Fig. 8. Rhagasostoma angliae (Brydone, 1936). A–E. Lectotype, SM B36877, Middle Campanian (Belemnitella mucronata Zone) of Hartford, Norwich, Norfolk, England, UK. A. Overview of encrusting colony. B. Early astogeny, ancestrula arrowed. C. Growing edge, avicularia and some autozooids with peripheral caverns surrounding the cryptocyst. D. Autozooids and avicularia. E. Avicularium with peripheral caverns surrounding the cryptocyst and non-ovicellate autozooids. F–H. Paralectotype, SM B36879, early Maastrichtian (Ostrea lunata Zone) of Trimingham, Norfolk, England, UK. F. Erect bifoliate colony. G. Non-ovicellate autozooids and avicularia. H. Avicularia and non-ovicellate autozooids. Scale bars: A, F = 1 mm; B, E, H = 100 µm; C–D, G = 200 µm.
Fig. 3 in Rhagasostoma (Bryozoa) from the Late Cretaceous of Eurasia: taxonomic revision, stratigraphy and palaeobiogeography
Fig. 3 (opposite page). Rhagasostoma inelegans (Lonsdale, 1850). A–D. Late Senonian, Sussex, England, UK. A–C. Lectotype, NHMUK D2967. A. Overview of erect bifoliate colony. B. Autozooids, avicularia, and endozooidal ovicells with ooecia having proximolateral processes. C. Avicularium. D. Paralectotype NHMUK D2959, overview of sheet-like colony; peripheral caverns arrowed. E–G. SM B36881, late Santonian (Marsupites testudianarius Zone) along the coast of Sussex, England, UK. E. Non-ovicellate autozooids and avicularia; peripheral caverns arrowed. F. Overview of encrusting sheet-like colony; peripheral caverns arrowed. G. Growing edge. H–J. SM B36669, early Campanian (Goniotheutis quadrata Zone), Hensting Farm, Owslebury, Hampshire, England, UK. H. Overview of erect bifoliate colony. I. Autozooids with endozooidal ovicells, avicularia and kenozooids. J. Opesia of non-ovicellate autozooid. Scale bars: A, H = 1 mm; B–C, I = 100 µm; D–G = 200 µm; J = 30 µm.
Fig. 6. Rhagasostoma minuens Brydone, 1936. A–D in Rhagasostoma (Bryozoa) from the Late Cretaceous of Eurasia: taxonomic revision, stratigraphy and palaeobiogeography
Fig. 6. Rhagasostoma minuens Brydone, 1936. A–D. Lectotype, SM B36883, late Santonian (Uintacrinus socialis Zone/lower Marsupites testudinarius Zone), between Brighton and Roedean, East Sussex, England, UK. A. Overview of encrusting colony. B. Growing edge. C. Early astogeny, ancestrula (arrowed), autozooids and avicularia. D. Autozoods with endozooidal ovicells (arrows) and avicularia. E–F. Paralectotype, SM B36882, early Maastrichtian (Ostrea lunata Zone, Porosphaera Beds), Trimingham, Norfolk, England, UK. E. Overview of encrusting colony. F. Autozooids and avicularia. Scale bars: A, E = 1 mm; B = 200 µm; C–D, F = 100 µm.
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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.