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Fig. 7 in New information on ornithopod dinosaurs from the Late Jurassic of Portugal
Fig. 7. Comparative dorsal vertebrae table of selected Ankylopollexians from the Late Jurassic and Early Cretaceous. A, B. Ankylopollexia indet. Lourinhã municipality, Portugal, Lourinhã Formation, Kimmeridgian–Tithonian. A. ML 452 in lateral view (A1, A2). B. ML 864 in right lateral view. C. "Uteodon" SHN.LPP 015 in left lateral view; Praia da corva, Torres Vedras Municipality, Portugal, Lourinhã Formation (Kimmeridgian–Tithonian). D. "Uteodon" aphanoecetes CM 11337 in left lateral view; East end of Carnegie Quarry at Dinosaur National Monument, Uintah County, Utah (USA), Morrison Formation (Kimmeridgian–Tithonian). E. Camptosaurus dispar (unnumbered specimen) in left lateral view; Bone Cabin Quarry, Wyoming USA), Morrison Formation (Kimmeridgian–Tithonian). F. "Cumnoria" prestwichii OUM. J.3303 in lateral view; Oxford, UK, Kimmeridge Clay Formation (Kimmeridgian–Tithonian). G. Hippodraco scutodens UMNH VP 20208 in left lateral view; Andrew's Site, Grand County, Utah; Upper Yellow Cat Memberof the Cedar Mountain Formation (upper Barremian–lowermost Aptian). H. Iguanacolossus fortis UMNH VP 20205 in right lateral view; Don's Ridge, Grand County, Utah, Lower Yellow Cat Member, Cedar Mountain Formation (?lower Barremian). I. Mantellisaurus atherfieldensis IRSNB 1551 in left lateral view; Isle of Wight, Wessex Formation (Barremian). J. Barilium dawsoni NHMUK R798 in left lateral view; Shornden, East Sussex, UK, Wadhurst Clay Formation (Valanginian). K. Hypselospinus fittoni NHMUK R604 in lateral view; Shornden Quarry, Hastings, UK, Wadhurst Clay Formation (Valanginian). L. Iguanodon bernissartensis IRSNB "Individu S" in left lateral view; Bernissart, Belgium, Sainte Barbe Clays Formation Barremian). Abbreviations: dia, diapophysis; par, parapophysis. Scale bars 100 mm. Re-drawn from: C, Escaso 2014: fig. 6.5; D, Carpenter and Wilson 2008: fig. 11; E, Carpenter and Galton 2018: fig. 22D; F, Galton and Powell 1980: fig. 4; G, McDonald 2010b: fig. 27; H, McDonald 2010b: fig. 10;, Norman 1980: fig. 37; J, Norman 2011: fig. 4; K, Norman 2015: fig. 22; L, Norman 1980: fig. 31).
Fig. 3 in New information on ornithopod dinosaurs from the Late Jurassic of Portugal
Fig. 3. Axial skeleton elements of Dryosauridae indet. (A, B) from the Lourinhã municipality, Portugal, Lourinhã Formation, Kimmeridgian–Tithonian compared with of Dryosaurus altus (C), Camptosaurus ("Uteodon") aphanoecetes (D), and Mantellisaurus atherfieldensis (E). Dorsal vertebrae: ML 2321a (A) and ML 2321b (B), in dorsal (A1, B1), anterior (A2, B2), lateral (A3, A6, B3, B6), posterior (A4, B4), and ventral (A5, B5) views. Dorsal neural arches: YPM 1876 (C), CM 11337 (D), IRSNB 1551 (E), in dorsal view.
Fig. 2 in New information on ornithopod dinosaurs from the Late Jurassic of Portugal
Fig. 2. Cranial material of Dryosauridae indet. from the Lourinhã municipality, Portugal, Lourinhã Formation, Kimmeridgian–Tithonian. A. ML 1851, parietal in dorsal (A1, A3) and ventral (A2, A4) views. B. ML 768, dentary in lateral (B1), dashed frame indicates area with foramina, dorsal (B2), medial (B3) and ventral (B4) views, detail of dentary tooth (B5).
Figure 5 in The rarity of gastroliths in sauropod dinosaurs - a case study in the Late Jurassic Morrison Formation, western USA
Figure 5. Cedarosaurus site field sketch, in which the gastrolith cluster is clearly visible. Three isolated gastroliths were dispersed throughout the skeleton. Redrawn and modified from Sanders et al. (2001).
Figure 7 in The rarity of gastroliths in sauropod dinosaurs - a case study in the Late Jurassic Morrison Formation, western USA
Figure 7. Plan-view map of the SI Quarry showing a scavenged juvenile Camarasaurus with vertebrate tracks, abundant theropod teeth, and gastroliths. Redrawn and modified from Jennings and Hasiotis (2006).
Figure 4. Carbonized material with a in The rarity of gastroliths in sauropod dinosaurs - a case study in the Late Jurassic Morrison Formation, western USA
Figure 4. Carbonized material with a single gastrolith from Howe Quarry. The presence of plant matter surrounding the clast is interpreted as evidence of former stomach contents. This is specimen number D18-15 in the Sauriermuseum Aathal.
Figure 3 in The rarity of gastroliths in sauropod dinosaurs - a case study in the Late Jurassic Morrison Formation, western USA
Figure 3. Section of R. T. Bird's Howe Quarry map showing the Barosaurus bones (yellow; A – pubis; B – abdominal rib?) as well as the gastroliths seen in the photograph in Fig. 2. The bones of the Barosaurus individual were partially articulated. Redrawn and modified from Rice and Bierwert (1935) and Michelis (2003).
Figure 6 in The rarity of gastroliths in sauropod dinosaurs - a case study in the Late Jurassic Morrison Formation, western USA
Figure 6. Distribution of bones and stones at the Diplodocus "Seismosaurus" longus locality (a) and cross section of the quarry (b). Note that bone-bearing blocks occurred below the first pebble lag and that there are two concentrations of gastroliths. A defined cluster was found in the pelvic area, whereas the majority of the stones were dispersed in the area north of the bone material. Redrawn and modified from Lucas (2000), and including information from Gillette (1994) (in a) and Schwartz and Manley (1992) (in b).
Figure 1 in The rarity of gastroliths in sauropod dinosaurs - a case study in the Late Jurassic Morrison Formation, western USA
Figure 1. Studied dinosaur localities in the western USA. The surrounding line represents the extension of the Morrison Formation. Abbreviations: BCQ – Bone Cabin Quarry; CLDQ – Cleveland- Lloyd Dinosaur Quarry; DMDQ – Dry Mesa Dinosaur Quarry; DNM (CQ) – Dinosaur National Monument (Carnegie Quarry); Howe Q and HSQ – Howe Quarry and Howe Stephens Quarry; SIQ – "Something Interesting Quarry" (Camarasaurus). The red bones represent sites where gastroliths have been found in association with bones. Redrawn and modified from Dodson et al. (1980b).
Figure 2 in The rarity of gastroliths in sauropod dinosaurs - a case study in the Late Jurassic Morrison Formation, western USA
Figure 2. Photograph of gastroliths found at Howe Quarry. Next to a Barosaurus pubis (a) and an elongated bone (b), probably an abdominal rib, the cluster of 64 stones is visible. Modified from Bird (1985).
FIG. 16 in Osteological revision of the holotype of the Middle Jurassic sauropod dinosaur Patagosaurus fariasi Bonaparte, 1979 (Sauropoda: Cetiosauridae)
FIG. 16. — Dorsal MACN-CH 4170 (14) in lateral (A, B), posterior (C), anterior (D), and dorsal (E) views.Abbreviations: acdl, anterior centrodiapophyseal lamina, cprl, centroprezygapophyseal lamina, dp, diapophysis, hypa, hypapophysis, nc, neural canal, ns, neural spine, pp, parapophysis, po, postzygapophysis, prcdf, prezygapophyseal centrodiapophyseal fossa, pocdf, postzygapophyseal centrodiapophyseal fossa, prdl, prezygapophyseal diapophyseal lamina, pre, prezygapophysis, sdf, spinodiapophysal fossa, spof, spinopostzygapophyseal fossa, spol, spinopostzygapophyseal lamina, sprf, spinoprezygapophyseal fossa, sprl, spinoprezygapophyseal lamina, tprl, intraprezygapophyseal lamina, tpol, intrapostzygapophyseal lamina, lat.spol/med.spol, lateral/medial spinopostzygapophyseal lamina, stpol, single intrapostzygapophyseal lamina, stprl, single intrapostzygapophyseal lamina, vk, ventral keel. Scale bar: 10 cm.
FIG. 4. — Cervical PVL 4170 in Osteological revision of the holotype of the Middle Jurassic sauropod dinosaur Patagosaurus fariasi Bonaparte, 1979 (Sauropoda: Cetiosauridae)
FIG. 4. — Cervical PVL 4170 (3) in lateral (A, B), posterior, (C) anterior, (D), ventral (E) and dorsal (F) views. Abbreviations: acdl, anterior centrodiapophyseal lamina, cprl, centroprezygapophyseal lamina, cpol, centropostzygapophyseal lamina, dp, diapophysis, hypa, hypapophysis, nc, neural canal, ns, neural spine, pcdl, posterior centrodiapophyseal lamina, pp, parapophysis, po, postzygapophysis, prcdf, prezygapophyseal centrodiapophyseal fossa, pocdf, postzyga- pophyseal centrodiapophyseal fossa, prdl, prezygapophyseal diapophyseal lamina, pre, prezygapophysis, sdf, spinodiapophysal fossa, spof, spinopostzyga- pophyseal fossa, spol, spinopostzygapophyseal lamina, sprf, spinoprezygapophyseal fossa, sprl, spinoprezygapophyseal lamina, tprl, intraprezygapophyseal lamina, vk, ventral keel. Scale bar: 10 cm.
Figure 21 in A new hadrosauriform dinosaur from the Wessex Formation, Wealden Group (Early Cretaceous), of the Isle of Wight, southern England
Figure 21. Brighstoneus simmondsi gen. et sp. nov. (MIWG 6344), possible fragment of anterior pubic process in A, lateral, B, medial, C, anterior and D, posterior views. Views assume that the distal end is to the left. Abbreviation: py, pyrite. Scale bar ¼ 50 mm.
Figure 23 in A new hadrosauriform dinosaur from the Wessex Formation, Wealden Group (Early Cretaceous), of the Isle of Wight, southern England
Figure 23. Three cladograms depicting the phylogenetic relationships of Brighstoneus simmondsi. A, strict consensus tree based on the matrix of Xu et al. (2018) with two additional characters added. Tree length ¼ 338 steps, consistency index ¼ 0.583, rescaled consistency index ¼ 0.510, retention index ¼ 0.874; B, section of strict consensus tree obtained after excluding new nasal character (124) and ilium character (125). Bootstrap values given above line, Bremer support below line; C, section of 50% majority rule consensus of 10 MPTs (for full tree see Supplementary material, Fig. S9).
Figure 18 in A new hadrosauriform dinosaur from the Wessex Formation, Wealden Group (Early Cretaceous), of the Isle of Wight, southern England
Figure 18. Brighstoneus simmondsi gen. et sp. nov. (MIWG 6344), caudal vertebrae. A, 'caudal A' in left lateral view; B, 'caudal A' in posterior view; C, 'caudal B' in right lateral view; D, 'caudal B' in posterior view; E, 'caudal C' in left lateral view; F, 'caudal C' in anterior view; G, 'caudal D' in anterior view; H, 'caudal D' in left lateral view; I, 'caudal D' in posterior view; J, 'caudal D' in dorsal view; K, 'caudal D' in ventral view; L, 'caudal E' in left lateral view; M, 'caudal E' in anterior view; N, 'caudal E' in ventral view; O, 'caudal F' in right lateral view; P, 'caudal F' in posterior view. Abbreviations: ahf, anterior haemapophyseal facet; lr, lateral ridge; ns, neural spine; phf, posterior haemapophyseal facet; plp, pleurapophysis (caudal rib); poz, postzygapophysis; prz, prezygapophysis; sb, small boss. Scale bars ¼ 100 mm.
Figure 22 in A new hadrosauriform dinosaur from the Wessex Formation, Wealden Group (Early Cretaceous), of the Isle of Wight, southern England
Figure 22. Brighstoneus simmondsi gen. et sp. nov. (MIWG 6344), right femur in A, anterior, B, medial, C, posterior, D, lateral, E, dorsal and F, ventral views. Reconstruction of distal femur shown in Ais based on Mantellisaurus atherfieldensis (Norman 1986). Abbreviations: 4t, fourth trochanter; at, anterior trochanter; dr, diagonal ridge; eig, extensor intercondylar groove; es, eroded surface; fh, femoral head; fig, flexor intercondylar groove; gt, greater trochanter; mc, medial condyle. Scale bar ¼ 100 mm.
Figure 15 in A new hadrosauriform dinosaur from the Wessex Formation, Wealden Group (Early Cretaceous), of the Isle of Wight, southern England
Figure 15. Brighstoneus simmondsi gen. et sp. nov. (MIWG 6344), dorsal vertebrae. A–E, 'dorsal C' in A, right lateral, B, dorsal (of neural spine), C, anterior, D, ventral and E, posterior views. F, close-up of fracture site on neural spine of 'dorsal E'. G, fragment of pathological dorsal neural spine. H, section of neural spine with bite marks. Abbreviations: afc, anterior surface of centrum; ca, callus; ch, channel; gr, groove; nc, neural canal; ns, neural spine; os, ostosis; ot, ossified tendons; pa, parapophysis; pfc, posterior surface of centrum; poz, postzygapophysis; prz, prezygapophysis; tm, tooth marks; tp, transverse process; vk, ventral keel. Scale bars ¼ 100 mm (A–E) and 50 mm (F–H).
Figure 13 in A new hadrosauriform dinosaur from the Wessex Formation, Wealden Group (Early Cretaceous), of the Isle of Wight, southern England
Figure 13. Brighstoneus simmondsi gen. et sp. nov. (MIWG 6344), dorsal vertebrae series arranged in probable anterior to posterior order. A–H, left lateral views of dorsals A–H; A0, dorsal A anterior view; B0, dorsal B anterior view; C0 dorsal C anterior view; D0, dorsal Dposterior view; E0, dorsal E anterior, view; F0, dorsal Fanterior view; G0, dorsal Ganterior view; H0, dorsal Hposterior view. Scale bar ¼ 100 mm.
Figure 12 in A new hadrosauriform dinosaur from the Wessex Formation, Wealden Group (Early Cretaceous), of the Isle of Wight, southern England
Figure 12. Brighstoneus simmondsi gen. et sp. nov. (MIWG 6344), crowns from right dentary (posterior is to the right). A, dentary crown in lingual view; B, close-up of Ashowing denticles; C, dentary crown in lingual view; D, close-up of denticle from A showing mammillae. Abbreviations: ar, accessory ridge; d, marginal denticle; ma, mammilla; pr, primary ridge; sr, secondary ridge. Scale bars ¼ 10 mm (A), 5 mm (B, C) and 1 mm (D).
Figure 14 in A new hadrosauriform dinosaur from the Wessex Formation, Wealden Group (Early Cretaceous), of the Isle of Wight, southern England
Figure 14. Brighstoneus simmondsi gen. et sp. nov. (MIWG 6344), anterior dorsal vertebrae. A–C, 'dorsal A', probably D1 in A, right lateral, B, anterior and C, posterior views. D–F, 'dorsal B', probably D2 in D, right lateral, E, posterior and F, anterior views. Abbreviations: bf, extraneous bone fragment; nc, neural canal; ns, neural spine; pa, parapophysis; poz, postzygapophysis; prz, prezygapophysis; tp, transverse process. Scale bar ¼ 50 mm.
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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.