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.

1,817

datasets available to search

ShareScore release 0.7.1

Reset

Dataset results

1,817 results for “Late Cretaceous”

Learn how ShareScore rates datasets ↗
zenodo28/100

Figure 10 from: Csiki-Sava Z, Buffetaut E, Ősi A, Pereda-Suberbiola X, Brusatte SL (2015) Island life in the Cretaceous - faunal composition, biogeography, evolution, and extinction of land-living vertebrates on the Late Cretaceous European archipelago. ZooKeys 469: 1-161. https://doi.org/10.3897/zookeys.469.8439

Figure 10 - Representative taxa from the latest Campanian–Maastrichtian faunas from Transylvania, western Romania. A–B Nidophis insularis (Serpentes, Madtsoiidae), articulated vertebrae (LPB (FGGUB) v.547/2) in left lateral (A) and dorsal (B) views (Densuş-Ciula Formation, Tuştea, Haţeg Basin; photo by Ştefan Vasile) C Allodaposuchus precedens (Eusuchia, ?Hylaeochampsidae), skull (PSMUBB V 438) in dorsal view (Sebeş = Şard Formation, Oarda de Jos, southwestern Transylvanian Basin; photo by Vlad Codrea/Massimo Delfino) D Theriosuchus sympiestodon (Mesoeucrocodylia, Atoposauridae), right maxilla (MCDRD 793) in lateral view (Sînpetru Formation, Sînpetru, Haţeg Basin) E–F Indeterminate titanosaur (?Magyarosaurus dacus) (Sauropoda, Titanosauria), isolated osteoderm (LPB (FGGUB) R.1410) in dorsal (E) and lateral (F) views (Sînpetru Formation, Sînpetru, Haţeg Basin) G Indeterminate ornithuran bird (Aves, Ornithurae), incomplete left tibiotarsus (LPB (FGGUB) R.1902) in anterior view (Densuş-Ciula Formation, Vălioara, Haţeg Basin) H Balaur bondoc (Theropoda, Dromaeosauridae), articulated left distal hindlimb (EME PV.313) in lateral view (Sebeş = Şard Formation, Sebeş-Glod, southewestern Transylvanian Basin; photo by Mick Ellison) I Zalmoxes robustus (Ornithopoda, Rhabdodontidae), right dentary (NHMUK R.3407) in medial view (Sînpetru Formation, Sînpetru, Haţeg Basin) J Telmatosaurus transsylvanicus (Hadrosauria), right maxilla (MFGI unnumbered) in lateral view (Sînpetru Formation, Sînpetru, Haţeg Basin) K Indeterminate nodosaurid – Struthiosaurus transylvanicus or new taxon – (Ankylosauria, Nodosauridae), isolated tooth (LPB (FGGUB) R.2182) in medial view (Sînpetru Formation, Sînpetru, Haţeg Basin) L Barbatodon transylvanicus (Multituberculata, Kogaionidae), right maxilla (LPB (FGGUB) M.1635) in medial view (Sînpetru Formation, Pui, Haţeg Basin). Scale bars equal 1 mm in A, B; 5 mm in K; 1 cm in G, L; 2 cm in D; and 5 cm in C, E, F, H, I, J.

opencc-by-4.0Jan 2015View details →
zenodo28/100

Figure 9 from: Csiki-Sava Z, Buffetaut E, Ősi A, Pereda-Suberbiola X, Brusatte SL (2015) Island life in the Cretaceous - faunal composition, biogeography, evolution, and extinction of land-living vertebrates on the Late Cretaceous European archipelago. ZooKeys 469: 1-161. https://doi.org/10.3897/zookeys.469.8439

Figure 9 - Representative taxa from the late Maastrichtian faunas from Spain. A Allodaposuchus subjuniperus (Crocodyliformes, Eusuchia), skull (holotype, MPZ 2012/288) in dorsal view (lower Tremp Formation, Beranuy near Arén, Huesca) B Arenysuchus gascabadiolorum (Crocodyliformes, Eusuchia), skull (holotype, MPZ ELI-1) in dorsal view (lower Tremp Formation, Arén, Huesca) C Indeterminate azhdarchid (Pterosauria, Azhdarchidae), cervical vertebra (MGUV 2271) in posterior view (unnamed unit (Margas de los Cuchillos Formation?), La Solana near Tous, Valencia). D–E Arenysaurus ardevoli (Ornithopoda, Lambeosaurinae) D partial skull (holotype, MPZ 2008/1) in dorsal view and E left dentary (paratype, MPS 2008/258) in medial view (basal Tremp Formation, Blasi 3, Arén, Huesca) F 'Koutalisaurus kohlerorum' (Ornithopoda, Lambeosaurinae; indeterminate lambeosaurine sensu Prieto-Márquez et al. 2013), right dentary (IPS 29920 (formerly IPS SRA 27) in medial view ('lower red unit' of the Tremp Formation, Les Llaus near Sant Romà d'Abella, Lleida) F Scale bars equal 10 cm (A–B, D–F), and 5 cm (C). Photographs courtesy by Museo de Ciencias Naturales de la Universidad de Zaragoza (A–B, D), Julio Company (C) and Alberto Prieto-Márquez (E–F).

opencc-by-4.0Jan 2015View details →
zenodo28/100

Figure 2 from: Csiki-Sava Z, Buffetaut E, Ősi A, Pereda-Suberbiola X, Brusatte SL (2015) Island life in the Cretaceous - faunal composition, biogeography, evolution, and extinction of land-living vertebrates on the Late Cretaceous European archipelago. ZooKeys 469: 1-161. https://doi.org/10.3897/zookeys.469.8439

Figure 2 - Paleogeographic distribution of the early Late Cretaceous (Cenomanian–Coniacian) European continental vertebrate assemblages (base map for earliest Cenomanian, ~ 100 Mya, courtesy of R. Blakey). Abbreviations: 1 southeastern England 2 western France 3 southern France 4 western Iberia (Portugal) 5 northern Iberia (northern Spain) 6 east-central Iberia (eastern Spain) 7 Apulia (Sicily, central Italy) 8 Adriatic-Dinaric Carbonate Platform (Croatia, Slovenia) 9 Czech Republic 10 northwestern Romania 11 southern Russia (for details, see also Fig. 1 and text); AA Austroalpine Domain; ARM-FMC Armorica-French Central Massif; BAL Baltic Landmass; BM Bohemian Massif; DAC Dacia Block; GRO Greenland; LAU Laurentian Shield; L-B H London-Brabant High; MOE Moesian Platform; PEL Pelagonian Domain; TAU Taurus Block; TIS Tisia Block; UM Ukrainian Massif; VH Voronezh High.

opencc-by-4.0Jan 2015View details →
zenodo28/100

Figure 8 from: Csiki-Sava Z, Buffetaut E, Ősi A, Pereda-Suberbiola X, Brusatte SL (2015) Island life in the Cretaceous - faunal composition, biogeography, evolution, and extinction of land-living vertebrates on the Late Cretaceous European archipelago. ZooKeys 469: 1-161. https://doi.org/10.3897/zookeys.469.8439

Figure 8 - Representative taxa from the late Campanian–early Maastrichtian faunas from Spain. A Iberoccitanemys convenarum (Pleurodira, Bothremydidae), complete shell (HUE-4913) in ventral view (Villalba de la Sierra Formation, Lo Hueco near Fuentes, Cuenca) B Dortoka vasconica (Pleurodira, Dortokidae), partial shell (holotype, MCNA 6313) in ventral view (unnamed unit, Laño, Condado de Treviño) C Menarana laurasiae (Serpentes, Madtsoiidae), mid-trunk vertebra (holotype, MCNA 5337) in posterior view (unnamed unit, Laño, Condado de Treviño) D Herensugea caristiorum (Serpentes, Madtsoiidae), mid-trunk vertebra (holotype, MCNA 5387) in dorsal view (unnamed unit, Laño, Condado de Treviño) E Rhabdodon sp. (Ornithopoda, Rhabdodontidae), maxillary tooth (MGUV CH-162) in labial view (Sierra Perenchiza Formation, Chera, Valencia) F Struthiosaurus sp. (Ankylosauria, Nodosauridae), synsacrum (MCNA 7420.1) in ventral view (unnamed unit, Laño, Condado de Treviño) G Ampelosaurus sp. (Sauropoda, Titanosauria), braincase (HUE-8741) in dorsal view (Villalba de la Sierra Formation, Lo Hueco near Fuentes, Cuenca) H Doratodon ibericus (Crocodyliformes, Ziphosuchia), left dentary (holotype, MGUV 3201) in lateral view (Sierra Perenchiza Formation, Chera, Valencia) I Musturzabalsuchus buffetauti (Crocodyliformes, Eusuchia), right mandible (paratype, MCNA 7480) in lateral view (unnamed unit, Laño, Condado de Treviño) J Lainodon orueetxebarriai (Eutheria, Zhelestidae), first lower molar (holotype, MCNA L1AT 14) in occlusal and labial views (unnamed unit, Laño, Condado de Treviño). Scale bars equal 10 cm (A, F, I), 5 cm (B, G), 2 cm (H), 1 cm (C, E), 5 mm (D), 1 mm (J). Photographs courtesy by Adán Pérez-García (A), J. Carmelo Corral (B–D), Julio Company (E, H), GBE-UNED/MCCM (G), Francisco Ortega (I) and Emmanuel Gheerbrant (J).

opencc-by-4.0Jan 2015View details →
zenodo28/100

Figure 1 from: Csiki-Sava Z, Buffetaut E, Ősi A, Pereda-Suberbiola X, Brusatte SL (2015) Island life in the Cretaceous - faunal composition, biogeography, evolution, and extinction of land-living vertebrates on the Late Cretaceous European archipelago. ZooKeys 469: 1-161. https://doi.org/10.3897/zookeys.469.8439

Figure 1 - Late Cretaceous vertebrate localities from Europe (including European part of Russia), plotted and listed by age (see text for details and references; localities italicized are detailed in Fig. 4 and in the text, as indicated). Note that one data-point on the map can represent several fossil localities and sites, especially for the Campanian and Maastrichtian. Cenomanian: 1 Isle of Wight, southeastern UK 2 Cambridgeshire, southeastern UK 3 Kent, southeastern UK 4 Sarthe, western France 5 Maine-et-Loire, western France 6 Vienne, western France 7 Indre-et-Loire, western France 8 Dordogne, western France 9 Vaucluse, southern France 10 Gard, southern France 11 Charente-Maritime, Charente, western France 12 Carenque, southwestern Portugal 13 Asturias, northern Spain 14 Guadalajara, central Spain 15 Teruel, central-eastern Spain 16 Valencia, eastern Spain 17 Sicily, Italy 18 Lazio, central Italy 19 Istria, Croatia 20 Czech Republic 21 Kursk Oblast, Russia 22 Belgorod Oblast, Russia 23 Voronezh Oblast, Russia 24 Tambov Oblast, Russia 25 Saratov Oblast, Russia 26 Volgograd Oblast, Russia. Turonian: 27 East Sussex, southeastern UK 28 Vendée, western France 29 Asturias, northern Spain 30 Czech Republic 31 Istria, Croatia 32 Dalmatia, Croatia. Coniacian: 33 Kent, southeastern UK 34 Gorizia, northeastern Italy 35 Bihor, western Romania (see section F, Fig. 4). Santonian: 36 Valencia, eastern Spain 37 Vendée, western France 38 Lonzée, central Belgium 39 Kras, Slovenia 40 Bari, southern Italy 41 Iharkút, western Hungary (see section B, Fig. 4). Campanian: 42 Scania, southern Sweden 43 Villeveyrac, Languedoc, southern France (see section D, Fig. 4) 44 Muthmannsdorf, eastern Austria (see section C, Fig. 4) 45 northwestern Transylvania, Romania (see section F, Fig. 4) 46 Penza Oblast, Russia 47 Saratov Oblast, Russia 48 Volgograd Oblast, Russia. Late Campanian–Maastrichtian: 49 Aveiro-Coimbra districts, Portugal 50 Condado de Treviño, northern Spain 51 Segovia, central Spain 52 Cuenca, central Spain 53 Valencia, eastern Spain 54 Huesca, northeastern Spain 55 Lleida, northeastern Spain (for 49–55 see section E, Fig. 4) 56 Ariège and Aude, southern France 57 Hérault and Gard, southern France 58 Bouches-du-Rhône, southern France 59 Var, southeastern France (for 56–59 see section D, Fig. 2) 60 Trieste, northeastern Italy. Maastrichtian: 61 Limburg, northeastern Belgium, southeastern Netherlands 62 Burgos, northern Spain 63 Valencia, eastern Spain 64 Huesca, northeastern Spain 65 Lleida, northeastern Spain (for 62–65 see section E, Fig. 4) 66 Haute-Garonne, Aude, southern France 67 Bouches-du-Rhône, southern France (for 66–67 see section D, Fig. 4) 68 Bavaria, southern Germany 69 Kras, Slovenia 70 northwestern Transylvanian Basin, Romania 71 southwestern Transylvania, Romania 72 Hațeg and Rusca Montană Basins, Romania (for 70–72 see section F, Fig. 4) 73 Vratsa Province, northwestern Bulgaria 74 Roztocze, southeastern Poland 75 Krymskaya Oblast, Ukraine 76 Volgograd Oblast, Russia.

opencc-by-4.0Jan 2015View details →
zenodo28/100

Figure 6 from: Csiki-Sava Z, Buffetaut E, Ősi A, Pereda-Suberbiola X, Brusatte SL (2015) Island life in the Cretaceous - faunal composition, biogeography, evolution, and extinction of land-living vertebrates on the Late Cretaceous European archipelago. ZooKeys 469: 1-161. https://doi.org/10.3897/zookeys.469.8439

Figure 6 - Representative taxa from the early Campanian Muthmannsdorf fauna from the Grünbach Formation, eastern Austria. A Doratodon carcharidens (Mesoeucrocodylia) mandible (PIUW 2349/57) in dorsal view (photo by Márton Rabi) B Indeterminate azhdarchid (Pterosauria, Azhdarchidae), left humerus (PIUW 2349/102) in anterior view C 'Megalosaurus pannoniensis' basal tetanuran (Theropoda, Tetanurae), tooth (PIUW uncatalogued) in lateral view D Mochlodon suessi (Ornithopoda, Rhabdodontidae), right dentary (holotype, PIUW 2349/2) in medial view. Scale bars equal 2 cm in A, B and D and 1 cm in C.

opencc-by-4.0Jan 2015View details →
zenodo28/100

Figure 5 from: Csiki-Sava Z, Buffetaut E, Ősi A, Pereda-Suberbiola X, Brusatte SL (2015) Island life in the Cretaceous - faunal composition, biogeography, evolution, and extinction of land-living vertebrates on the Late Cretaceous European archipelago. ZooKeys 469: 1-161. https://doi.org/10.3897/zookeys.469.8439

Figure 5 - Representative taxa from the Santonian Iharkút fauna from the Csehbánya Formation, Bakony Mountains, western Hungary. A Pannoniasaurus inexpectatus (Squamata, Mosasauroidea), dorsal vertebra (MTM uncatalogued) in dorsal view (photo by Réka Kalmár) B Foxemys trabanti (Pleurodira, Bothremydidae), skull (MTM V 2010.215.1.) in dorsal view (photo by Márton Rabi). C Bicuspidon aff. hatzegiensis (Squamata, Borioteiioidea), left dentary (MTM 2006.112.1.) in medial view (photo by László Makádi) D Basal tetanuran (Theropoda, Tetanurae), tooth (MTM V.01.54) in ?lingual view E Indeterminate abelisaurid (Theropoda, Abelisauridae), pedal ungual phalanx (MTM V 2008.43.1.) in lateral view F Pneumatoraptor fodori (Theropoda, Paraves), left scapulocoracoid (holotype, MTM V 2008.38.1.) in lateral view G Mochlodon vorosi (Ornithopoda, Rhabdodontidae), left dentary (holotype, MTM V 2010.105.1) in lateral view H Bakonydraco galaczi (Pterosauria, Azhdarchidae), mandible (holotype, MTM 2007.110.1) in dorsal view I Iharkutosuchus makadii (Eusuchia, Hylaeochampsidae), skull (holotype, MTM 2006.52.1) in dorsal view J Hungarosaurus tormai (Ankylosauria, Nodosauridae), right dentary (MTM 2007.25.2) in lateral view K Bauxitornis mindszentyae (Aves, Enantiornithes), left tarsometatarsus (holotype, MTM V 2009.38.1) in anterior view L Ajkaceratops kozmai (Ceratopsia), fused rostral and premaxillae (holotype, MTM V 2009.192.1) in lateral view. Scale bars: 2 cm in A, V, G, H, I, J; 1 cm in D, E, F, K, L; 1 mm in C.

opencc-by-4.0Jan 2015View details →
zenodo28/100

Figure 4 from: Csiki-Sava Z, Buffetaut E, Ősi A, Pereda-Suberbiola X, Brusatte SL (2015) Island life in the Cretaceous - faunal composition, biogeography, evolution, and extinction of land-living vertebrates on the Late Cretaceous European archipelago. ZooKeys 469: 1-161. https://doi.org/10.3897/zookeys.469.8439

Figure 4 - The most important latest Cretaceous (Santonian–Maastrichtian) continental vertebrate localities in Europe. France: 1 Lestaillats, Haute-Garonne (Laurent et al. 2002a) 2 Campagne-sur-Aude, Aude Valley (Buffetaut et al. 1989; Le Loeuff 2005) 3 Villeveyrac, Cruzy (Buffetaut et al. 1996, 1999; Buffetaut and Le Loeuff 1991b) 4 Serviers, Champ-Garimond (Buffetaut et al. 1997a; Sigé et al. 1997) 5 Roques-Hautes (Le Loeuff et al. 1992; Allain and Taquet 2000) 6 Beausset Syncline (Le Loeuff and Buffetaut 1991) 7 Fox Amphoux (Le Loeuff et al. 1992) 8 Fontjoncouse (Le Loeuff et al. 1994) 9 Vitrolles-la-Plaine (Valentin et al. 2012) 10 Jas Neuf Sud (Tortosa et al. 2014). Spain: 1 Laño (Astibia et al. 1999; Pereda-Suberbiola et al. 2000) 2 Arén (Torices et al. 2004; Weishampel et al. 2004) 3 Tremp (López-Martínez et al. 2001) 4 Lo Hueco, Fuentes (Barroso-Barcenilla et al. 2009; Pérez-García et al. 2012b) 5 Chera (Company et al. 2009b) 6 La Solana (Company et al. 1998, 1999, 2013) 7 Armuña (Buscalioni and Martínez-Salanova 1990; Corral Hernández et al. 2007). Portugal: 1–2 Viso, Aveiro, Taveiro (Antunes and Sigogneau-Russell 1991; Antunes and Mateus 2003). Austria: 1 Muthmannsdorf (Seeley 1881). Hungary: 1 Iharkút and Ajka (Ősi et al. 2012b). Romania: 1 Rusca Montană Basin (Vasile and Csiki 2011; Codrea et al. 2012) 2 Haţeg Basin (Grigorescu 2005, 2010; Weishampel et al. 2010) 3 Alba Iulia-Sebeș (southwestern Transylvanian Basin; Codrea et al. 2010a,c; Vremir 2010) 4 Borod Basin (Nopcsa 1902b) 5 Jibou (northwestern Transylvanian Basin; Codrea and Godefroit 2008; Codrea et al. 2010c).

opencc-by-4.0Jan 2015View details →
zenodo28/100

Figure 13 from: Csiki-Sava Z, Buffetaut E, Ősi A, Pereda-Suberbiola X, Brusatte SL (2015) Island life in the Cretaceous - faunal composition, biogeography, evolution, and extinction of land-living vertebrates on the Late Cretaceous European archipelago. ZooKeys 469: 1-161. https://doi.org/10.3897/zookeys.469.8439

Figure 13 - Body-size disparity in Late Cretaceous European titanosaurs, as illustrated by their appendicular elements (specimens figured at scale). A, E Ampelosaurus atacis (late Campanian–early Maastrichtian, Bellevue, Aude, southern France): A Left humerus (MDE C3-86), anterior view E Right femur (MDE C3-87; reversed), posterior view B, C Magyarosaurus dacus (early Maastrichtian, Ciula Mare, Haţeg Basin, Romania) B Left humerus (LPB (FGGUB) R.1047), anterior view C Left femur (LPB (FGGUB) R.1046), posterior view D Lirainosaurus astibiai (late Campanian–early Maastrichtian, Laño, Basque Country, northern Spain), left femur (MCNA 7468), posterior view. Scale bar equals 10 cm. Photograph D courtesy by Verónica Díez Díaz.

opencc-by-4.0Jan 2015View details →
zenodo28/100

Figure 21 in New specimens of Baurutitan britoi and a taxonomic reassessment of the titanosaur dinosaur fauna (Sauropoda) from the Serra da Galga Formation (Late Cretaceous) of Brazil

Figure 21 Anterior caudal vertebrae of Caieiria allocaudata (MCT 1719-R). In (1) left lateral; (2) anterior; (3) dorsal; (4) right lateral; (5) posterior and (6) ventral views. Abbreviations: ns, neural spine; pocdf, postzygapophyseal centrodiapophyseal fossa prz, prezygapophyses; sprl, spinoprezygapophyseal lamina; tp, transverse process. Full-size DOI: 10.7717/peerj.14333/fig-21

opencc-by-4.0Nov 2022View details →
zenodo28/100

Figure 12 in New specimens of Baurutitan britoi and a taxonomic reassessment of the titanosaur dinosaur fauna (Sauropoda) from the Serra da Galga Formation (Late Cretaceous) of Brazil

Figure 12 Middle and posterior caudal vertebrae of the BR-262 specimens. (A) CPPLIP-096 in left lateral; anterior; dorsal; right lateral; posterior and ventral views. (B) CPPLIP-091 in left lateral; anterior; dorsal; right lateral; posterior and ventral views. (C) CPPLIP-095 in left lateral; anterior; dorsal; right lateral; posterior and ventral views. (D) CPPLIP-094 in left lateral; anterior; dorsal; right lateral; posterior and ventral views. (E) CPPLIP-093 in left lateral; anterior; dorsal; right lateral; posterior and ventral views. (F) CPPLIP-045 in left lateral; anterior; dorsal; right lateral; posterior and ventral views. Abbreviations: cpol, centropostzygapophyseal lamina; cprl, centroprezygapophyseal lamina; spof, spinopostzygapophyseal fossa; spol, spinopostzygapophyseal lamina; sprf, spinoprezygapophyseal fossa; sprl, spinoprezygapophyseal lamina. Full-size DOI: 10.7717/peerj.14333/fig-12

opencc-by-4.0Nov 2022View details →
zenodo28/100

Figure 10 in New specimens of Baurutitan britoi and a taxonomic reassessment of the titanosaur dinosaur fauna (Sauropoda) from the Serra da Galga Formation (Late Cretaceous) of Brazil

Figure 10 Most anterior caudal vertebra of the BR-262 specimens. CPPLIP-102 in (A) anterior; (B) left lateral; (C) dorsal; (D) posterior; (E) right lateraland (F) ventral views. Abbreviations: posl, postspinal lamina; poz, postzygapophyses; prdl, prezygodiapophyseal lamina; prsdf, prezygapophyseal spinodiapophyseal fossa; prsl, prespinal lamina; prz, prezygapophyses; spof, spinopostzygapophyseal fossa; spol, spinopostzygapophyseal lamina; sprl, spinoprezygapophyseal lamina; tp, transverse process. Full-size DOI: 10.7717/peerj.14333/fig-10

opencc-by-4.0Nov 2022View details →
zenodo28/100

Figure 2 in New specimens of Baurutitan britoi and a taxonomic reassessment of the titanosaur dinosaur fauna (Sauropoda) from the Serra da Galga Formation (Late Cretaceous) of Brazil

Figure 2 (A) Map of the Bauru Basin detailing the Uberaba region. (B) Map of "Ponto 1" quarry made by Price, detailing positions of Series B (Purple) and C (Yellow). Itisnoteworthythat MCT 1719-Rcannotbelocatedonthemap (Fromthearchivesof CPPLIP). Full-size DOI: 10.7717/peerj.14333/fig-2

opencc-by-4.0Nov 2022View details →
zenodo28/100

Figure 4 in Histology of ganoid scales from the early Late Cretaceous of the Kem Kem beds , SE Morocco : systematic and evolutionary implications

Figure 4. - Scales of Obaichthys africanus (MRS 45). A-B: Cross section of two scales (transmitted natural light), showing the three superimposed layers: pluristratified ganoine (g), dentine (d) and bony basal plate (bp); A: MNHN-Histos 1960. The arrowheads point to five ridges of ganoine. The basal plate (bp) is avascular; B: MNHN-Histos 1963. The arrowheads point to three ridges of ganoine. A vascular canal (vc) crosses the whole scale; C-H: Cross sections of scales (transmitted natural light); C: MNHN-Histos 1960. Detail of A showing the two median ridges (arrowheads) constituted of pluristratified ganoine (g), each one above a dentine unit (d). The two ridges lie on an avascular bony basal plate crossed by numerous canaliculi of Williamson. Two sections of vascular canals just below the right dentine unit are visible (arrows). Notice the growth marks (gm) in the basal plate (bp); D: MNHN-Histos 1964. Detail of the ganoine layer (g) showing two odontode bases (arrows) and a resorbed area (asterisk) characterized by its irregular alveolate walls. Two minor remodelling areas (arrowheads) are seen in the ganoine layer; E: MNHN-Histos 1964. Detail of an odontode base (arrow) in the ganoine layer. One can also show two canaliculi of Williamson crossing the ganoine strata (arrowheads); F: MNHN-Histos 1964. Detail of a dentine unit (d) organized above a vascular loop coming from the basal plate (bp), with numerous odontoblastic canalicles (black asterisks). (g = ganoine); G: MNHN-Histos 1964. Detail of a dentine bulk (d) subtending a ganoine ridge (g). The odontoblastic canalicles radiating from the vascular ramification are visible. A canaliculus of Williamson (arrowhead), and some osteocytes in the bony basal plate (white asterisk) are visible; H: MNHN-Histos 1963). Detail of the bony basal plate showing a dichotomized canaliculus of Williamson (arrow). Scale bars: A, B = 1 mm; C = 250 µm; D, F = 100 µm; E = 100 µm).

opencc-by-4.0Apr 2016View details →
zenodo28/100

Figure 2 in Histology of ganoid scales from the early Late Cretaceous of the Kem Kem beds , SE Morocco : systematic and evolutionary implications

Figure 2. - Scales of Bawitius (SEM). Upper surface. A: A ridged scale. The circles and the arrowheads localize respectively the areas of the observation of ganoine microreliefs and vascular apertures; B: Detail of the posterior extremity of a ganoine ridge. The contact between the ganoine and the dentine looks regular. Vascular apertures on the ganoine surface are visible (arrowheads); C: Detail of a ganoine ridge showing its contact with dentine (black arrowheads). The white arrowheads and arrows point to holes indicating vascular canal apertures respectively at the surface of ganoine and at the surface of dentine; D: Detail of ganoine near the dentine layer showing some microtubercles on the right and elongate hollows on the left; E: Detail of ganoine at the surface of a ridge showing the thin elongate hollows. (d = dentine; g = ganoine). Scale bars: A = 500 µm; B = 25 µm; C = 100 µm; D, E = 10 µm.

opencc-by-4.0Apr 2016View details →
zenodo28/100

Figure 1 in Histology of ganoid scales from the early Late Cretaceous of the Kem Kem beds , SE Morocco : systematic and evolutionary implications

Figure 1. - Isolated scales of the Kem Kem beds. A, C-H: Scales studied by Tabaste (1963). A: Adrianaichthys sp. (fig. 9, Pl X); B: Adrianaichthys sp., scale sampled by one of us D.D.; C-E: Obaichthys sp. (figs 6, 7, 9, Pl XI); F,H: Bawitius sp. (figs 4, 5, Pl XI); G, I: Palaeonisciformes (figs 1, 2, Pl XI). Scale bars: A, B, F-I = 1 cm; C-E = 5 mm.

opencc-by-4.0Apr 2016View details →
zenodo28/100

Fig. 1 in Late Cretaceous sharks Cretoxyrhina and Cardabiodon from Montana, USA

Fig. 1. Map showing the location of studied area in Montana (A) and location of Mosby (B). All selachian remains were collected on private land. Precise locality data is on file at the Department of Earth and Planetary Sciences, Western Australian Museum, Perth.

opencc-by-4.0Dec 2005View details →
zenodo28/100

Fig. 4 in Late Cretaceous sharks Cretoxyrhina and Cardabiodon from Montana, USA

Fig. 4. Comparison of Cardabiodon venator sp. nov. from the Fairport Member, Carlile Shale, Mosby, Montana, USA (A) and Cardabiodon ricki Siverson, 1999 from the uppermost Gearle Siltstone, Giralia Anticline, Western Australia (B).

opencc-by-4.0Dec 2005View details →
dryad28/100

Data from: Diversification of the genus Anopheles and a Neotropical clade from the Late Cretaceous

Open the record for dataset details and reuse information.

publicJul 2016View details →
dryad28/100

Data from: Phylotranscriptomics resolves phylogeny of the Heliozelidae (Adeloidea: Lepidoptera) and suggests a Late Cretaceous origin in Australia

Open the record for dataset details and reuse information.

publicSep 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