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430 results for “Upper Jurassic”
Data from: The oldest turritelline gastropods: from the Oxfordian (Upper Jurassic) of Kutch, India
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Fig. 1 in A new caenogastropod from the upper Rhaetian of Lombardy: Palaeobiogeographical history and implications for the Early Jurassic gastropod recovery
Fig. 1. Location of the outcrop (A) and stratigraphical section (B) modified from Jadoul et al. (2005).
Fig. 1. A in First record of chimaeroid fish Ischyodus from the Upper Jurassic of southwestern Gondwana
Fig. 1. A. Map indicating location of the studied area in central Chile. B. Enlarged map of Mina Del Fierro area where the material was collected.
FIGURE 9 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 9. Comparison of crania of Late Jurassic Cricosaurus specimens from southern Germany. (A) BMMS-BK 1-2, holotype of Cricosaurus albersdoerferi sp. nov.; (B) NKMB-P-Watt14/274, holotype of Cricosaurus bambergensis; (C) SNSB-BSPG AS I 504, holotype of Cricosaurus elegans; (D) SMNS 9808, lectotype of Cricosaurus suevicus; (E) GPIT-PV-31381, referred specimen of Cricosaurus suevicus and (F) SMNS 7322, referred specimen of Cricosaurus suevicus. Scale bars equal 50 mm.
FIGURE 8 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 8. Strict consensus topologies of Metriorhynchinae found in the parsimony analyses. A, unweighted topology; B, strongly down-weighted topology (k=1); C, all other weighting analyses topology (k=3, 7, 10, 20, and 50).
FIGURE 10 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 10. Comparison of tail bends of Late Jurassic Cricosaurus specimens from southern Germany. (A) BMMS-BK 1-2, holotype of Cricosaurus albersdoerferi sp. nov.; (B) SMNS 9808, lectotype of Cricosaurus suevicus; (C) GPIT-PV- 31381, referred specimen of Cricosaurus suevicus; (D) NKMB-P-Watt14/274, holotype of Cricosaurus bambergensis. No scale bars intended.
FIGURE 5 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 5. Cricosaurus albersdoerferi sp. nov. (BMMS-BK 1-2) holotype, late Kimmeridgian of Painten (Southern Germany). Cervical (A); dorsal (B) and sacral vertebrae (C) in lateral view. Abbreviations: ans, axis neural spine; axp, axis postzygapophysis; axr, axis rib; cr, cervical rib; dia, diapophysis; ns, neural spine; pat, postzygapophysis of atlas; pp, parapophysis; sr, sacral rib; sv, sacral vertebra. Scale bars equal 30 mm.
FIGURE 2 in A new species of Cricosaurus (Thalattosuchia, Metriorhynchidae) based upon a remarkably well-preserved skeleton from the Upper Jurassic of Germany
FIGURE 2. Simplified stratigraphy of the Upper Jurassic in the eastern Franconian Jura, highlighting the fossil-bearing horizon (silhouette). The type locality within the Kelheim district is indicated by a black star.
Fig. 6 in Foraminiferal Assemblages And Facies Associations In The Upper Jurassic Carbonates From Ardeu Unit (Metaliferi Mountains, Romania)
Fig. 6 Main facies associations of the carbonates from the Ardeu Unit. a Bio-oncoidal grainstone (F1) (Sample 48). Notice the thin rims of isopachus fibrous early cement bordering most of the bioclasts. b Bio-intraclastic grainsote/rudstone with Parurgonina caelinensis (P), Everticyclammina praekelleri (E) and Bacinella-type oncoids (B) (F1) (Sample 64). c Oncoidal wackestone/floatstone with numerous Bacinella-type oncoids, Thaumatoporella parvovesiculifera bridges and scarce foraminifera (F2) (Sample 5). d Bio-oncoidal floatstone with Rivularia-type cyanobacteria oncoids and Parurgonina caelinensis (F2) (Sample 23). Most of the oncoids are encrusted by Lithocodium aggregatum. e Coral-microbial-microencruster boundstone (F3) (Sample 183). f Brecciated bio-intraclastic grainstone with reef fragments (F4) (Sample 194). g Intraclastic rudstone (F5) (Sample 161). The intraclasts characterize different facies zones. h Intra-extra-bioclastic packstone/rudstone with different grain sorting and various intraclasts (F5) (Sample 160).
Fig. 2 Upper Jurassic foraminifers from the Ardeu Unit. a-h in Foraminiferal Assemblages And Facies Associations In The Upper Jurassic Carbonates From Ardeu Unit (Metaliferi Mountains, Romania)
Fig. 2 Upper Jurassic foraminifers from the Ardeu Unit. a-h Labyrinthina mirabilis Weynschenk (a - Sample 153, b - Sample 27, c - Sample 64, d - Sample 165, e - Sample 33, f - Sample 21, g - Sample 159, h - Sample 55). i-p Parurgonina caelinensis Cuvillier, Foury & Pignatti Morano (i - Sample 65, j - Sample 36, k - Sample 129, l - Sample 30, m - Sample 23, n - Sample 65, o - Sample 38, p - Sample 64).
Fig. 1 in Foraminiferal Assemblages And Facies Associations In The Upper Jurassic Carbonates From Ardeu Unit (Metaliferi Mountains, Romania)
Fig. 1 Geological map of the BalȘa-Ardeu-Băcâia region (modified after Mantea & Tomescu, 1986) 1 Mesozoic ophiolites (CăpâlnaȘ-Techereu Nappe); 2 Oxfordian limestones (Ardeu Unit); 3 Kimmeridgian-Tithonian carbonates (Ardeu Unit); 4 Barremian-Aptian limestones (Ardeu Unit); 5 Aptian conglomerates and sandstones (CăpâlnaȘ-Techereu Nappe); 6 Albian breccia and sandstones (CăpâlnaȘ-Techereu Nappe); 7 Coniacian-Santonian siltites and sandstones; 8 Santonian- Campanian marls; 9 Santonian-Maastrichtian flysch deposits; 10?Maastrichtian-Paleogene continental deposits; 11 Badenian limestones; 12 Quaternary deposits; 13 Faults; 14 Nappe; 15 Location of the studied sections.
Fig. 15 in Calcareous Algae, Microbial Structures And Microproblematica From Upper Jurassic-Lowermost Cretaceous Limestones Of Southern Crimea
Fig. 15 Calcareous algae (Udoteaceae), Cyanobacteria, and Microproblematica from the Yalta-Ay Petri area, southern Crimea. a to c Arabicodium sp. in longitudinal oblique sections. a, sample KJ-23a; b, sample KC-11; c, sample KB-47a. d, e Nipponophycus ramosus Yabe & Toyama in oblique and transverse oblique (d) and longitudinal (e) sections; d, ample KB-25c; e, sample KB-39. f to i Crescentiella morronensis (Crescenti) in longitudinal and longitudinal-oblique (f-h) and transverse (i) sections; f, g, sample KC-7a; h, sample KB-38b; i, sample KC-7. j, k Girvanella sp. Sample KB-38f (k, enlargement of j). Scale bar: 0.25 mm (a-c, e, g, i-k); 0.5 mm (d, f, i).
Fig. 3 in Calcareous Algae, Microbial Structures And Microproblematica From Upper Jurassic-Lowermost Cretaceous Limestones Of Southern Crimea
Fig. 3 Calcareous algae (Dasycladales) from the Belogorsk (a to e) and Yalta-Ay Petri (f to n) areas, southern Crimea. a to e Actinoporella gr. podolica (Alth) in oblique-tangential (a, b), longitudinal-tangential (c) and longitudinal (d) sections. a, sample 003A; b, sample 007B; c, e, sample 013C; d, sample 014. f to k, m, n Campbelliella striata (Carozzi) in longitudinal oblique (f), tangential (g, h, n), oblique-transverse (i, j, k), and transverse (m) sections. f, sample KC-28; g, sample KB-24-1a; h, sample KE-4e; I, sample KC-41; j, sample KB-25b; k, sample KE-8; m, sample KB-24e; n, sample KB-25d. l Clypeina sulcata (Alth) (Cl),?Salpingoporella sp. (or stipe of Humiella?) (S), and fragments of Campbelliella (Ca). Sample KB-22. Scale bar: 0.25 mm (a to g, j, n); 0.5 mm (h, i, k, m).
Fig. 6 in Calcareous Algae, Microbial Structures And Microproblematica From Upper Jurassic-Lowermost Cretaceous Limestones Of Southern Crimea
Fig. 6 Calcareous algae (Dasycladales) from the Yalta-Ay Petri area, southern Crimea. a, f Rajkaella sp. Sections through secondary laterals. a, sample KA-11; f, sample KR-9. b to e Rajkaella cf. iailensis (Maslov). Distal part of primary laterals and secondary laterals in longitudinal-oblique section. b, sample KE-4; c, sample KJ-32; d, e, sample KR-9. g to k Salpingoporella annulata Carozzi in longitudinal-oblique (g), oblique (h), longitudinal (i), transverse (j) and transverseoblique (k) sections. g, sample KE-4d; h, sample KJ-5e; i, sample KA-7; j, k, sample KE-4b. Scale bar: 0.25 mm (a to k).
Fig. 9 in Calcareous Algae, Microbial Structures And Microproblematica From Upper Jurassic-Lowermost Cretaceous Limestones Of Southern Crimea
Fig. 9 Calcareous algae (Dasycladales) from the Yalta-Ay Petri area, southern Crimea. a to f Steinmanniporella taurica (Pcelincev) in longitudinal (a, b), longitudinal, slightly oblique (c), oblique tangential (d) and oblique (e, f) sections. White square area in c is enlarged in Fig. 11f. a, sample KB-51m; b, sample KC-17b; c, sample KB38a; d, sample KC-13; e, sample KB-51L; f, sample KJ-23a. Scale bar: 0.5 mm (a to f).
Figure 6 in What is Geosaurus? Redescription of Geosaurus giganteus (Thalattosuchia: Metriorhynchidae) from the Upper Jurassic of Bayern, Germany
Figure 6. Comparative cranial morphology for species previously referred to as Geosaurus gracilis. A, Cricosaurus grandis holotype, BSPG AS-VI-1. B, Cricosaurus suevicus lectotype, SMNS 9808. C, Cricosaurus elegans holotype, BSPG AS I 504. D, Rhacheosaurus gracilis referred specimen, NHM R.3948. Note that R. gracilis has a more delicate skull, when compared with all of the other specimens, in addition to a slender rostrum. Scale bars: 20 mm.
Figure 23 in The 'fabrosaurid' ornithischian dinosaurs of the Upper Elliot Formation (Lower Jurassic) of South Africa and Lesotho
Figure 23. cf. Stormbergia. SAM-PK-K1107, photos of block of articulated material including portions of two anterior dorsals, rib fragments, left scapulocoracoid and left humerus. Humerus is exposed in anterolateral (A) and posteromedial (B) views. Abbreviations: ac, acromion process; adv, anterior dorsal; cor, coracoid; dpc, deltopectoral crest of the humerus; gl, glenoid; hum, humerus; scap, scapula.
Figure 6 in The 'fabrosaurid' ornithischian dinosaurs of the Upper Elliot Formation (Lower Jurassic) of South Africa and Lesotho
Figure 6. Ornithischia incertae sedis. NM QR 3076, semiarticulated specimen, as preserved on bedding plane. Abbreviations: ast, astragalus; ax, axis; calc, calcaneum; cv, cervical vertebra; dcav, distal caudal vertebrae; dv, dorsal vertebrae; fem, femur; il, ilium; md, posterior portion of mandible; mts, metatarsals; pal, palpebral; pcav, proximal caudal vertebra; ph, phalanges; pm, premaxilla; pub, pubis; qd, quadrate; ra, radius; scap, scapula; tib, tibia; ul, ulna.
Figure 21 in The 'fabrosaurid' ornithischian dinosaurs of the Upper Elliot Formation (Lower Jurassic) of South Africa and Lesotho
Figure 21. cf. Stormbergia. SAM-PK-K1107, anterior-mid dorsal series in right lateral view (A). These vertebrae have been articulated together as labelled by the preparator, and appear to fit reasonably well, but the original association is not known. SAM-PK-K1107, posterior dorsals, sacrum and anterior caudals in right lateral view (B). Abbreviations: cav, caudal vertebrae; di, diapophysis; ds, dorsosacral; pa, parapophysis; dv, posterior dorsals; pub, fragment of pubic shaft; sv2, sv3, sv4, sv5, 'true' sacral vertebrae, i.e. those vertebrae which have ribs which articulate with the ilium.
Figure 5 in The 'fabrosaurid' ornithischian dinosaurs of the Upper Elliot Formation (Lower Jurassic) of South Africa and Lesotho
Figure 5. Stormbergia dangershoeki gen. et sp. nov. BP/1/4885 (referred specimen), sacral block in ventral view. Note the presence of a tab-shaped obturator process, as in SAM-PK-K1105 and BMNH R11000. Abbreviations: ds, dorsosacral vertebra; dv, dorsal vertebra; il, ilium; ilisp, ischiadic peduncle of the ilium; fem, femur; lisch, left ischium; obt, tab-shaped obturator process; pub, pubis; risch, right ischium; saf, supraacetabular flange; sar, sacral rib; sv5, posteriormost sacral vertebrae.
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