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Fig. 2. Abelisaurid dinoasaur Carnotaurus sastrei Bonaparte, 1985 in The cervical vertebrae of the Late Cretaceous abelisaurid dinosaur Carnotaurus sastrei
Fig. 2. Abelisaurid dinoasaur Carnotaurus sastrei Bonaparte, 1985 (MACN-CH 894, Argentina, La Colonia Formation, Maastrichtian, Upper Cretaceous). Atlas in anterior (A), posterior (B), dorsal (C), left lateral (D), and ventral (E), views.
Fig. 3. Abelisaurid dinoasaur Carnotaurus sastrei Bonaparte, 1985 in The cervical vertebrae of the Late Cretaceous abelisaurid dinosaur Carnotaurus sastrei
Fig. 3. Abelisaurid dinoasaur Carnotaurus sastrei Bonaparte, 1985 (MACN-CH 894), Argentina, La Colonia Formation, Maastrichtian, Upper Cretaceous. Axis in anterior (A), posterior (B), left lateral (C), dorsal (D), and ventral (E) views.
Fig. 1 in The cervical vertebrae of the Late Cretaceous abelisaurid dinosaur Carnotaurus sastrei
Fig. 1. Comparison of cervical series and skull of two abelisaurid dinoasaurs. A. Carnotaurus sastrei Bonaparte, 1985 (MACN-CH 894), Argentina, La Colonia Formation, Maastrichtian, Upper Cretaceous. B. Majungasaurus crenatissimus Sampson, Witmer, Forster, Krause, O'Connor, Dodson, and Ravoavy, 1998 (UA 8678), Madagascar, Maevarano Formation, Maastrichtian, Upper Cretaceous. Dorsal (A1, B1) and lateral (A2, B2) views. Skull of C. sastrei was modified from Bonaparte et al. 1990, and skull of M. crenatissimus from Sampson et al. 1998. Not to scale (for measurements see Table 2).
Fig. 2. Nycteroleter parareptile vertebrae. A. Rhipaeosaurus tricuspidens Efremov, 1940 in Amphibia, Anura, Hylidae, Hyloscirtus tigrinus: Distribution extension, first department record, Cauca and Huila, Colombia [with erratum]
Fig. 2. Nycteroleter parareptile vertebrae. A. Rhipaeosaurus tricuspidens Efremov, 1940; PIN 164/2, presacral vertebrae in dorsal view. B. Macroleter poezicus Tverdokhlebova and Ivakhnenko, 1984; PIN 4543/3, presacral vertebrae in ventral (B1) and ventrolateral (B2) views.
Fig. 2. Measurement system for cervical vertebrae. A in The first discovery of pterosaurs from the Upper Cretaceous of Mongolia
Fig. 2. Measurement system for cervical vertebrae. A. Atlas−axis complex in anterior (A), right lateral (A), ventral (A), and posterior (A) views. B. 3rd 1 2 3 4 cervical in anterior (B1), posterior (B2), right lateral (B3), dorsal (B4), and ventral (B5) views. C. Posterior part of a middle cervical in dorsal (C1), ventral (C2), and posterior (C3) views. Specific measurements are as follows: 1, total length; 2, length of centrum; 3, width of anterior part; 4, width of middle point of centrum; 5, width of posterior part with postzygapophyses; 6, width of posterior part of centrum; 7, width including postexapophyses; 8, height of neural arch on posterior part.
Fig. 13. Axis complex and cervical vertebrae 3–4 in Osteology and relationships of Olorotitan arharensis, a hollow-crested hadrosaurid dinosaur from the latest Cretaceous of Far Eastern Russia
Fig. 13. Axis complex and cervical vertebrae 3–4 of hadrosaurid dinosaur Olorotitan arharensis Godefroit, Bolotsky, and Alifanov 2003 (AEHM 2/845, holotype), from the Upper Cretaceous of Kundur (Russia), in right lateral (A) and dorsal (B) views. Abbreviatons: ax, axis; cv, cervical vertebra.
Fig. 3. Diplodocid and dicraeosaurid cervical vertebrae. A. 8 in Pneumaticity and soft-tissue reconstructions in the neck of diplodocid and dicraeosaurid sauropods
Fig. 3. Diplodocid and dicraeosaurid cervical vertebrae. A. 8th cervical vertebra (SMA L25−3) of subadult Diplodocus sp., Howe Stephens Quarry, Wyoming, USA, Morrison Formation, Kimmeridgian, Late Jurassic, in left lateral aspect (A1) and as schematic drawing indicating external pneumatic structures (A). B. 7th and 8th cervical vertebra (SMA M34−1and M34−2) of juvenile undetermined diplodocid, Howe Stephens Quarry, Wyoming, USA, Morrison 2 Formation, Kimmeridgian, Late Jurassic, in left lateral aspect. C. Series of six cervical vertebrae of immature juvenile Apatosaurus louisae (CM 3390), Carnegie Museum Quarry at Dinosaur National Monument, Utah, USA, Morrison Formation, Late Jurassic, in right lateral aspect (C1) and with single vertebra in a larger scale (C2). D. Midcervical vertebrae of Barosaurus lentus (CM 1198), Carnegie Museum Quarry at Dinosaur National Monument, Utah, USA, Morrison Formation, Late Jurassic, in left lateral aspect, with broken distal half of cervical rib below. E. 8th cervical vertebra of Dicraeosaurus hansemanni (ZMB "skelet m"), Middle Saurian Bed, Tanzania, Tendaguru Beds, Late Jurassic, in right lateral aspect (E1) and with schematic drawing of external pneumatic structures (E2). Scale bars 50 mm, except D, for which is 300 mm.
FIGURE 19. Caudal vertebrae 4 through 8 in Anatomy of Mahakala omnogovae (Theropoda: Dromaeosauridae), Tögrögiin Shiree, Mongolia
FIGURE 19. Caudal vertebrae 4 through 8 of Mahakala omnogovae (IGM 100/1033) in lateral (top) and dorsal (bottom) views.
FIGURE 21. Caudal vertebrae 15 through 17 in Anatomy of Mahakala omnogovae (Theropoda: Dromaeosauridae), Tögrögiin Shiree, Mongolia
FIGURE 21. Caudal vertebrae 15 through 17 of Mahakala omnogovae (IGM 100/1033) in lateral (top) and dorsal (bottom) views. Anterior is to the left.
FIGURE 20. Caudal vertebrae 9 through 14 in Anatomy of Mahakala omnogovae (Theropoda: Dromaeosauridae), Tögrögiin Shiree, Mongolia
FIGURE 20. Caudal vertebrae 9 through 14 of Mahakala omnogovae (IGM 100/1033) in lateral (top) and dorsal (bottom) views. Anterior is to the right.
FIGURE 18. Caudal vertebrae 2 through 4 in Anatomy of Mahakala omnogovae (Theropoda: Dromaeosauridae), Tögrögiin Shiree, Mongolia
FIGURE 18. Caudal vertebrae 2 through 4 of Mahakala omnogovae (IGM 100/1033) in dorsal view. Caudal 4 is only the posterior half of vertebra.
Text-fig. 6. Squamates: a – vertebra of Amphisbaenia indet. from Nasrettinhoca 1, in dorsal (a1), ventral (a2), lateral (a3), anterior (a4), and posterior (a5) views, EUNHM PV-13238; b – right maxilla of Lacertidae indet. from Nasrettinhoca 1, in lateral (b1) and medial (b2) views, EUNHM PV-13239; c – cervical vertebra of Natrix sp. from Hamamkarahisar B, in dorsal (c1), ventral (c2), lateral (c3), anterior (c4), and posterior (c5) views, EUNHM PV-13240; d – trunk vertebra of Natricinae indet. from Nasrettinhoca 2, in dorsal (d1), ventral (d2), lateral (d3), anterior (d4), and posterior (d5) views, EUNHM PV-13241; e – vertebra of cf. Colubrinae indet. from Yenişarbademli, in ventral (e1), dorsal (e2), and anterior (e3) views, EUNHM PV-13262. Scale equals 1 mm. in Plio-Pleistocene Amphibians And Reptiles From Central Turkey: New Faunas And Faunal Records With Comments On Their Biochronological Position Based On Small Mammals
Text-fig. 6. Squamates: a – vertebra of Amphisbaenia indet. from Nasrettinhoca 1, in dorsal (a1), ventral (a2), lateral (a3), anterior (a4), and posterior (a5) views, EUNHM PV-13238; b – right maxilla of Lacertidae indet. from Nasrettinhoca 1, in lateral (b1) and medial (b2) views, EUNHM PV-13239; c – cervical vertebra of Natrix sp. from Hamamkarahisar B, in dorsal (c1), ventral (c2), lateral (c3), anterior (c4), and posterior (c5) views, EUNHM PV-13240; d – trunk vertebra of Natricinae indet. from Nasrettinhoca 2, in dorsal (d1), ventral (d2), lateral (d3), anterior (d4), and posterior (d5) views, EUNHM PV-13241; e – vertebra of cf. Colubrinae indet. from Yenişarbademli, in ventral (e1), dorsal (e2), and anterior (e3) views, EUNHM PV-13262. Scale equals 1 mm.
Fig. 9. Cervical vertebrae. A, C, E, Acleistochelys maliensis n.gen., n in Acleistochelys, a New Side-Necked Turtle (Pelomedusoides: Bothremydidae) from the Paleocene of Mali
Fig. 9. Cervical vertebrae. A, C, E, Acleistochelys maliensis n.gen., n.sp. CNRST SUNY 199; B, D, FMNH PR 268 probably Chedighaii or Bothremys. A, B, anterior views; C, D, right lateral views; E, dorsal view.
Fig. 8. Cervical vertebrae. A, C, E, Acleistochelys maliensis n.gen., n in Acleistochelys, a New Side-Necked Turtle (Pelomedusoides: Bothremydidae) from the Paleocene of Mali
Fig. 8. Cervical vertebrae. A, C, E, Acleistochelys maliensis n.gen., n.sp. CNRST SUNY 199; B, D, F, FMNH PR 268 probably Chedighaii or Bothremys. A, B, posterior views; C, D, left lateral views; E, F, ventral views.
Text-fig. 7. Fossil urodelans from studied localities. a, b – Mioproteus caucasicus, trunk vertebra, dorsal (a) and lateral (b) views; c, d – Chelotriton paradoxus, trunk vertebra, dorsal (c) and lateral (d) view. Scale bar 1 mm. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology
Text-fig. 7. Fossil urodelans from studied localities. a, b – Mioproteus caucasicus, trunk vertebra, dorsal (a) and lateral (b) views; c, d – Chelotriton paradoxus, trunk vertebra, dorsal (c) and lateral (d) view. Scale bar 1 mm.
Text-fig. 6. Fish remains from Volchaya Balka locality (Late Miocene, North Caucasus). a – Scardinius sp., SSC-RAS G-2/1, pharyngeal tooth of the first row, side view, occlusal view; b – Abramis cf. bjoerkna, SSC-RAS G-2/2, pharyngeal tooth of the first row: top – side view, bottom – occlusal view; c – Carassius sp., SSC-RAS G-2/3, pharyngeal tooth of the first row: top – side view, bottom – occlusal view; d – Alburnus sp., SSC-RAS G-2/4, fragment of pharyngeal bone (os pharyngicus inferius), medial view; e – Acipenser sp., SSC-RAS G-2/5, left hyomandibular: left – medial view, right – proximal view; f – Gobiidae gen. indet., SSC-RAS G-2/6, tail vertebra: left – lateral view, right – dorsal view; g – Gobiidae gen. indet., SSC-RAS G-2/7, dentary: top – medial view, bottom – dorsal view. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology
Text-fig. 6. Fish remains from Volchaya Balka locality (Late Miocene, North Caucasus). a – Scardinius sp., SSC-RAS G-2/1, pharyngeal tooth of the first row, side view, occlusal view; b – Abramis cf. bjoerkna, SSC-RAS G-2/2, pharyngeal tooth of the first row: top – side view, bottom – occlusal view; c – Carassius sp., SSC-RAS G-2/3, pharyngeal tooth of the first row: top – side view, bottom – occlusal view; d – Alburnus sp., SSC-RAS G-2/4, fragment of pharyngeal bone (os pharyngicus inferius), medial view; e – Acipenser sp., SSC-RAS G-2/5, left hyomandibular: left – medial view, right – proximal view; f – Gobiidae gen. indet., SSC-RAS G-2/6, tail vertebra: left – lateral view, right – dorsal view; g – Gobiidae gen. indet., SSC-RAS G-2/7, dentary: top – medial view, bottom – dorsal view.
Figure 45. Caecilian vertebrae. A in The Palaeozoic Ancestry of Salamanders, Frogs and Caecilians
Figure 45. Caecilian vertebrae. A, atlas vertebra of Ichthyophis mindanaoensis in right lateral and anterior views. B, atlas of the Lower Cretaceous Rubricacaecilia monbaroni. C, right lateral view of anterior trunk vertebra of Rubricacaecilia monbaroni. D, atlas of the Lower Jurassic Eocaecilia macropoda. A–D, reproduced from Evans & Sigogneau-Russell (2001). E, lateral views of atlas and posterior trunk vertebra of Typhlonectes natans. Reproduced from Wake (2003).
Fig. 6. Vertebrae 5 in Myxiops aphos, new characid genus and species (Characiformes: Characidae) from the rio Lençóis, Bahia, Brazil
Fig. 6. Vertebrae 5 to 8 showing the form of pre- and postzygapophyses, MZUSP 81025, 46.4 mm SL; lateral view, anterior to left. Scale bar 1 mm.
Figure 22. Vertebrae I–IV in Ontogeny of a new Palaeogene pipid frog from southern South America and xenopodinomorph evolution
Figure 22. Vertebrae I–IV of two anuran taxa in dorsal view. A, Xenopus wittei (KU 195673). B, Rhinophrynus dorsalis (KU 69084). Numbers before the colon indicate the character and numbers after the colon indicate the character state. Spaces between bones are shown in black, cartilage is shown in grey, and bone is shown in white. Not to scale.
Fig. 54. Cervical vertebra 10 in The Osteology Of Alioramus, A Gracile And Long-Snouted Tyrannosaurid (Dinosauria: Theropoda) From The Late Cretaceous Of Mongolia
Fig. 54. Cervical vertebra 10 of the holotype specimen of Alioramus altai (IGM 100/1844) in left lateral (A), right lateral (B), anterior (C), posterior (D), dorsal (E), and ventral (F) views. Scale bar 5 5 cm. Abbreviations as in figure 47.
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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.