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430 results for “Upper Jurassic”
FIGURE 13 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 13. Strict consensus of 23 MPTs demonstrating the relative position of TATE-099 using the matrix of Whitlock and Wilson (2020).
FIGURE 7 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 7. Left (A) and right (B) ectopterygoid right and left lateral views (C, D). Scale bar equals 10 cm. Artwork by Ryan Steiskal.
FIGURE 11 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 11. Computed tomography of the right dentary is displayed in coronal (left) and sagittal (right cross section, illustrating the presence of 1-2 unerupted teeth per alveolar position. The unerupted teeth were segmented for 3D rapid prototyping (lower left).
FIGURE 2 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 2. Left (A, B) and right (C, D) premaxillae in dorsal ventral views, respectively. Scale bar equals 10 cm. Artwork by Ryan Steiskal.
FIGURE 1. A in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 1. A. Depositional area of the Upper Jurassic Morrison Formation, and location of the Nail Quarry in south- eastern Wyoming, and B. the stratigraphic location of Nail Quarry in the Morrison Formation.
FIGURE 10 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 10. Computed tomography of the right and left maxillae (A-B, respectively) are displayed in coronal (upper) and sagittal (lower) cross sections; the left premaxilla (C) is shown in sagittal (left) and coronal (right) cross sections. The unerupted teeth (ii=first unerupted tooth) of the maxilla (D; left) and premaxilla (D; right) were segmented for 3D rapid prototyping. Note: proceeding caudally, the number of unerupted teeth in the maxilla declines from 5 (ii-vi) to 2 (ii-iii).
FIGURE 9 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 9. Right dentarty and surangular in A) left lateral view, and B) right lateral view. Scale bar equals 10 cm. Artwork by Ryan Steiskal.
FIGURE 12 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 12. Strict consensus of 47 MPTs demonstrating the relative position of TATE-099 using the matrix of Tschopp and others (2015).
FIGURE 5 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 5. Left pterygoid (i, iv), quadrate (ii, v), and quadratojugal (iii, vi) in A) dorsal and B) ventral views. Scale bar equals 10 cm. Artwork by Ryan Steiskal. Abb: pt, pterygoid; q, quadrate; qj, quadratojugal.
FIGURE 3 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 3. Right maxilla in (A) dorsal and (B) ventral views with the left ectopterygoid (i) and left palatine (ii) adhered to the ventral surface. Scale bar equals 10 cm. Artwork by Ryan Steiskal. Abb: aof, antorbital fenestra; paof, preantorbital fenestra.
FIGURE 8. Reconstructed cast and 3D in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 8. Reconstructed cast and 3D model of the braincase of TATE-099 in dorsal view (A, B), ventral view (C, D), posterior view (E, F), right lateral view (G, H), and left lateral view (I, J). Scale bar equals 10 cm. Abb: bo, basoccipital; bpr, basipterygoid process; bs, basisphenoid; bt, basal tuber; cpr, crista prootica; eo, exoccipital-opithsotic; f, frontal; fm, foramen magnum; p, parietal; pas, parasphenoid; pft, posttemporal fenestra; po, postorbital; popr, paroccipital process; so, supraoccipital; snc, sagittal nuchal crest; stf, supratemporal fenestra.
FIGURE 14. 3D in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 14. 3D model of a cast of the erupted tooth row of TATE-099 in (A) labial and (B) lingual views with crown heights (C) and comparative measurements of the unerupted replacement teeth (D). Scale bar equals 5 cm.
FIGURE 6 in A novel feeding mechanism of diplodocid sauropods revealed in an Apatosaurine skull from the Upper Jurassic Nail Quarry (Morrison Formation) at Como Bluff, Wyoming, USA
FIGURE 6. Reconstruction of the skull of TATE-099 in A) left lateral view, B) right lateral view, C) dorsal view, and D) ventral view. Scale bar equals 10 cm. Artwork by Ryan Steiskal.
FIGURE 7 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 7. Cricosaurus albersdoerferi sp. nov. (BMMS-BK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Limbs and girdle elements. (A) front limbs and pectoral girdle, (B) hind limbs and pelvis. Abbreviations: ast, astragalus; cal, calcaneum; co, coracoid; dt, distal tarsal; fe, femur; fi, fibula; h, humerus; il, ilium; mc, metacarpal; mt, metatarsal; ph, phalanx; pub, pubis; r, radius; re, radiale; sc, scapula; ti, tibia; u, ulna. Scale bars equal 50 mm.
FIGURE 6 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 6. Cricosaurus albersdoerferi sp. nov. (BMMS-BK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Caudal vertebrae in lateral view. (A) proximal caudals, (B) distal caudal series and tail bend. Abbreviations: ap, anterior process; ffc, first flexural caudal vertebra; hp, hemapophysis; hs, hemapophyseal lobe; ns, neural spine. Scale bars equal 50 mm.
FIGURE 4 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 4. Cricosaurus albersdoerferi sp. nov. (BMMSBK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Close-ups of the dentition (A) and scleral ring (B). Scale bars equal 10 mm.
FIGURE 3 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 3. Cricosaurus albersdoerferi sp. nov. (BMMS-BK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Skull in lateral view with illustration of the preserved elements. Abbreviations: an, angular; art, articular; cor, coronoid; d, dentary; en, external naris; fr, frontal; hy, hyoid; jug, jugal; lac, lacrimal; mx, maxilla; ns, nasal; pmx, premaxilla; po, postorbital; pof, preorbital fenestra; prf, prefrontal;?qu, possible quadrate; sa, surangular; sdg, surangulodentary groove; sp, splenial;?sq, squamosal or squamosal-postorbital fragment. Scale bar equals 50 mm.
FIGURE 1 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 1. Cricosaurus albersdoerferi sp. nov. (BMMS-BK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Skeleton in lateral view. Scale bar equals 200 mm.
Fig. 5 in Foraminiferal Assemblages And Facies Associations In The Upper Jurassic Carbonates From Ardeu Unit (Metaliferi Mountains, Romania)
Fig. 5 Upper Jurassic dasycladalean algae (a-c, e-g), incertae sedis (d), cyanobacteria (h), sponges (j-k), and crustaceans (l) from the Ardeu Unit. a, b Salpingoporella pymaea (Gümbel) (a - Sample 39, b - Sample 167). c Petrascula sp. (Sample 7). d Thaumatoporella parvovesiculifera (Raineri) (arrows) (Sample 56). e Clypeina sulcata (Alth) (Sample 159). f-i Salpingoporella annulata Carozzi (f - Sample 67, i - Sample 41). g Neoteutloporella socialis (Praturlon) (Sample 193). h Rivularia-type cyanobacteria (Sample 69). j Calcistella jachenhausenensis Reitner (Sample 19). k Thalamopora lusitanica Termier & Termier (Sample 79). l Carpathocancer sp. (Sample 61).
Fig. 3 Upper Jurassic foraminifers from the Ardeu Unit. a-c in Foraminiferal Assemblages And Facies Associations In The Upper Jurassic Carbonates From Ardeu Unit (Metaliferi Mountains, Romania)
Fig. 3 Upper Jurassic foraminifers from the Ardeu Unit. a-c Bramkampella arabica Redmond (a - Sample 65, b - Sample 172, c - Sample 146). d Undetermined lituolid (Sample 41). e Kaminskia-type foraminifer with fine canaliculated wall (Sample 66). f-h Everticyclammina praekelleri Banner & Highton (Sample 65). i Alveosepta jaccardi (Schrodt) (Sample 49). j-l Ammobaculites sp. (j - Sample 65, k - Sample 110, l - Sample 95). m-n Charentia evoluta (Gorbachik) (m - Sample 32, n - Sample 45). o-p Protopeneroplis striata Weynschenk (o - Sample 153, p - Sample 212).
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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)
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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.