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FIG. 6 in On unreported historical specimens of marine arthropods from the Solnhofen and Nusplingen Lithographic Limestones (Late Jurassic, Germany) housed at the Muséum national d'Histoire naturelle, Paris

FIG. 6. — Eryma modestiforme (Schlotheim, 1822) from the Late Jurassic Solnhofen Lithographic Limestones (Bavaria, Germany): A, specimen MNHN.F.B13463 from Solnhofen; B, specimen MNHN.F.A33507 from Solnhofen; C, D, specimen MNHN.F.A70905 (unknown locality): general view (C) and line drawing (D); E, F, specimen MNHN.F.B13452 from Solnhofen: general view (E) and line drawing of the carapace (F); G, specimen MNHN.F.A70906 from Painten; H, specimen MNHN.F.A32408 from Eichstätt. Scale bars: A-G, 1 cm; H, 0.5 cm. Abbreviations: a, branchiocardiac groove; as, antennal spine; a2, antenna; b, antennal groove; b1, hepatic groove; c, postcervical groove; d, gastro-orbital groove; di, diaeresis; e1e, cervical groove; ip, intercalated plate; P1-P2, periopods 1-2. Preparation: Y. Despres (C). Photographs: C. Lemzaouda (A, B, E), L. Cazes (C, G, H). Line drawings: J. Devillez.

opencc-zeroSep 2019View details →
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FIG. 2 in On unreported historical specimens of marine arthropods from the Solnhofen and Nusplingen Lithographic Limestones (Late Jurassic, Germany) housed at the Muséum national d'Histoire naturelle, Paris

FIG. 2. — Acanthochirana cordata (Münster, 1839): A, B, specimen MNHN.F.A33503 from Solnhofen; A, natural light; B, interpretation of the carapace; C, D, specimen MNHN.F.R03389 from Solnhofen; C, visible light; D, interpretation of the carapace. Scale bars: A, B, D, 1 cm; C, 2 cm. Abbreviations: a, branchiocardiac groove; b1, hepatic groove; e1e, cervical groove; egs, epigastric spine; hs, hepatic spine; r, rostrum. Photographs: L. Cazes. Line drawing: G.P. Odin.

opencc-zeroSep 2019View details →
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FIG. 11 in On unreported historical specimens of marine arthropods from the Solnhofen and Nusplingen Lithographic Limestones (Late Jurassic, Germany) housed at the Muséum national d'Histoire naturelle, Paris

FIG. 11. — Mesolimulus walchii (Desmarest, 1817):A, specimen MNHN.F.B13432; B, specimen MNHN.F.B13433. Scale bar: 1 cm. Photographs:L. Cazes.

opencc-zeroSep 2019View details →
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FIG. 9. — A in On unreported historical specimens of marine arthropods from the Solnhofen and Nusplingen Lithographic Limestones (Late Jurassic, Germany) housed at the Muséum national d'Histoire naturelle, Paris

FIG. 9. — A, Cycleryon propinquus (Schlotheim, 1822): specimen MNHN.F.B13436 from Solnhofen; B-H, Eryon cuvieri Desmarest, 1817:B, specimen MNHN.F.A33501 from Solnhofen; C, specimen MNHN.GG.2004/8218 from Solnhofen area; this specimen was referred to as coming from Pappenheim; since there are no Solnhofen Lithographic Limestones there, while many traders lived there, this specimen was probably purchased in Pappenheim; D, E, specimen MNHN.GG.2004/8220 from Solnhofen, natural light (D) and UV light (E); F, G, specimen MNHN.F.A33545 from Solnhofen, natural light (F) and UV light (G); H, specimen MNHN.F.B13439 from unknown locality. Scale bars: A, C, F, H, 2 cm; B, D, E, F, 1 cm. Photographs: L. Cazes.

opencc-zeroSep 2019View details →
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Fig. 3 in New articulated asteroids (Echinodermata, Asteroidea) and ophiuroids (Echinodermata, Ophiuroidea) from the Late Jurassic (Volgian / Tithonian) of central Spitsbergen

Fig. 3. Savignaster septentrionalis Rousseau & Gale sp. nov. A–B. Holotype PMO 218.000. A. Complete arm and associated interradial area showing chevron ossicles. B. Drawing of holotype showing main morphological features. C. Paratype PMO 217.976, partial arm preserved up to the tip. D. Paratype PMO 217.977, partial arm specimen with elongated, narrow ambulacrals set at nearly right-angle to the arm axis. E. Paratype PMO 217.978, a near complete arm with associated adambulacral spines. F. Paratype PMO 218.008, close-up view of fan-shaped trellis-like adambulacral spines articulated to the lateral margin of the adambulacral. Abbreviations: abact = abactinal ossicle; adamb = adambulacral; amb = ambulacral; cho = chevron ossicle.

opencc-by-4.0Mar 2018View details →
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FIGURE 37 in Fossil flower bugs (Heteroptera: Cimicomorpha: Cimicoidea) from the Late Jurassic of Northeast China, including a new family, Vetanthocoridae

FIGURE 37. Mecopodus xanthos gen. & sp. nov. Holotype, ♂, CNU-HE-LB2006031. Scale bar= 1 mm.

opennotspecifiedDec 2006View details →
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FIGURE 1 in Notoatherix antiqua gen. et sp. nov., first fossil water snipe fly from the Late Jurassic of Australia (Diptera: Athericidae)

FIGURE 1. Photographs of Notoatherix antiqua gen. et sp. nov., holotype; A—Part, B—Counterpart.

opennotspecifiedDec 2014View details →
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FIGURE 6 in A new Ginglymodi (Actinopterygii, Holostei) from the Late Jurassic-Early Cretaceous of Thailand, with comments on the early diversification of Lepisosteiformes in Southeast Asia

FIGURE 6. Reconstruction of Khoratichthys, gibbus, gen. et sp. nov. Scale bar equals 2 cm.

opennotspecifiedDec 2016View details →
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FIG. 3 in The decapod crustacean fauna from the Late Jurassic of Cricqueboeuf, Normandy (France)

FIG. 3. — Glypheopsis trouvillensis Charbonnier, Garassino, Schweigert & Simpson, 2013 from the Oxfordian of Cricqueboeuf (A-C, E, F) and Trouville-sur-Mer (D), Normandy, France: A-C, subcomplete specimen MPV 2013.1.146.1 (carapace and disconnected pleon), interpretative line drawing of carapace (B), left lateral view (A), and dorsal view of pleon and posterior margin of carapace (C); D, holotype FSL-EM 80052; E, F, carapace and fragments of pereiopods MPV 2013.1.146.2, left lateral and ventral views. Abbreviations: a, branchiocardiac groove; ac, antennal carina; b, antennal groove; b1, hepatic groove; c, postcervical groove; cd, cardiac groove; e1e, cervical groove; gc, gastro-orbital carina; i, inferior groove; ic, intercervical groove; oc, orbital carina; r, rostrum. Photographs: L. Cazes, except: D, C. Lemzaouda. Line drawing: S. Charbonnier. Scale bars: 5 mm.

opencc-zeroOct 2023View details →
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FIGURE 5 in Re-assessment of the Late Jurassic eusauropod dinosaur Hudiesaurus sinojapanorum Dong, 1997, from the Turpan Basin, China, and the evolution of hyper-robust antebrachia in sauropods

FIGURE 5. Teeth previously referred to Hudiesaurus sinojapanorum (IVPP 11121-2) but regarded as?Mamenchisauridae indet. herein. A–D, Two tooth crowns within a broken jaw element in lingual (A), labial (B), distal (C), and mesial (D) views. E–H, Isolated tooth crown in lingual (E), labial (F), distal (G), and mesial (H) views. I–L, isolated tooth crown in lingual (I), labial (J), distal (K), and mesial (L) views. Abbreviation: lb, lingual boss. Scale bars equal 10 mm.

opencc-by-4.0Dec 2021View details →
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FIGURE 1 in Re-assessment of the Late Jurassic eusauropod dinosaur Hudiesaurus sinojapanorum Dong, 1997, from the Turpan Basin, China, and the evolution of hyper-robust antebrachia in sauropods

FIGURE 1. Map showing Xinjiang Autonomous Region in China, with a magnified inset showing the approximate location of the Hudiesaurus specimens within Shanshan County.

opencc-by-4.0Dec 2021View details →
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FIG. 12. — Specimen B3 in New data on the theropod diversity from the Middle to Late Jurassic of the Vaches Noires cliffs (Normandy, France)

FIG. 12. — Specimen B3, anterior cervical vertebra of an indeterminate Allosauroidea from Callovian or Oxfordian marls, in anterior (A), posterior (B) and left lateral (C) views.Abbreviations: acdl, anterior centrodiapophyseal lamina; cpol, centrodiapophyseal lamina; cpof, centropostzygapophyseal fossa; cprf, centroprezygapohyseal lamina; dp, diapophysis; ns, neural spine; pcdl, posterior centrodiapophyseal lamina; plr, pleurocoel; po, postzygapophysis; pocdf, postzygapophyseal centrodiapophyseal fossa; pp, parapophysis; spof, spinopostzygodiapophyseal fossa; sprf, spinoprezygapohyseal fossa. Scale bar: 5 cm.

opencc-zeroMar 2022View details →
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Figure 8. Ebertichthys ettlingensis n. gen. et n in New remarkable Late Jurassic teleosts from southern Germany: Ascalaboidae n. fam., its content, morphology, and phylogenetic relationships

Figure 8. Ebertichthys ettlingensis n. gen. et n. sp. Detail of vertebrae 21–23 and associated intermuscular bones (JME ETT 132a). Small arrows point to a median bone that is bifid distally. Abbreviations: Ant, anterior; epin.p, epineural processes; epl.b, epipleural bones; ha, haemal arch; hs, haemal spine; na, neural arch; ns, neural spine; V21, vertebra 21.

opencc-by-4.0Jan 2016View details →
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Fig. 4 in First record of a Late Jurassic rhamphorhynchine pterosaur from Gondwana

Fig. 4. Comparison between the humeri of Rhamphorhynchinae gen. et sp. indet. (MUHNCAL.20165) and other rhamphorhynchids in dorsal (A–C, E–G), ventral (D, K–R), posterior (H), and anterior (I, J) views. A. Rhamphorhynchinae gen. et sp. indet., left humerus (MUHNCAL.20165). B. Dorygnathus banthensis Theodori, 1830, right humerus (PSB 759a, from Padian and Wild 1992). C. Dorygnathus banthensis Theodori, 1830, left humerus (MB 1905.15, from Unwin and Martill 2017). D. Rhamphorhynchidae indet. right humerus (NHMUK PV R 40126b, from O'Sullivan and Martill 2018). E. Rhamphorhynchidae indet., right humerus (NHMUK PV R 40126c, from O'Sullivan and Martill 2018). F. Rhamphorhynchidae indet., left humerus (NHMUK PV R 28160a, from O'Sullivan and Martill 2018). G. Rhamphorhynchidae indet., left humerus (OUM J.23043, from O'Sullivan and Martill 2018). H. Rhamphorhynchinae gen. et sp. indet., left humerus (MUHNCAL.20165). I. Rhamphorhynchus muensteri Goldfuss, 1831, left humerus from Wellnhofer 1975a: 23, fig. 11e). J. Dorygnathus banthensisTheodori, 1830, right humerus (SMNS 50164, from Witton 2015). K. Rhamphorhynchinae gen. et sp. indet., left humerus (MUHNCAL.20165). L. Rhamphorhynchus muensteri Goldfuss, 1831, left humerus from Wellnhofer 1975a: 23, fig. 11d). M. Qinglongopterus guoi Lü, Unwin, Zhou, Gao, and Shen, 2012, left humerus (D3080/1, from Lü et al. 2012). N. Bellubrunnus rothgaengeri Hone, Tischlinger, Frey, and Röper, 2012, left humerus (BSP–1993–XVIII–2, from Hone et al. 2012). O. Sericipterus wucaiwanensisAndres, Clark, and Xing, 2010, right humerus (IVPP V14725, from Andres et al. 2010). P. Rhamphorhynchus etchesi O'Sullivan and Martill, 2015, right humerus (MJML K-1597, from O'Sullivan and Martill 2015). Q. Rhamphorhynchinae gen. et sp. indet., right humerus (PRC 64, from Buffetaut et al. 2015). R. Nesodactylus hesperius Colbert, 1969, left humerus (AMNH 2000, redraw from Colbert 1969). Scale bars: A–C, E–M, O–R, 10 mm; D, N, 5 mm.

opencc-by-4.0Sep 2021View details →
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Fig. 16 in Evidence of external gametophores in puzzling Late Triassic-Early Jurassic dasycladalean green algae

Fig. 16. Early Jurassic goniospore (A–C) and choristospore (D) Dasycladales. A. Cylindroporella? liasica (Lebouché and Lemoine in Granier and Deloffre, 1994), redrawn from Barattolo and Parente (2000). B. Chinianella ellenbergeri (Lebouché and Lemoine in Granier and Deloffre, 1994) Granier, Masse, and Berthou, 1994, emend. nov. C. Granieria iberica (Dragastan and Trappe, 1986) Barattolo and Romano in Barattolo et al., 2008, redrawn from Barattolo et al. (2008). D. Eodasycladus barrabei (Lebouché and Lemoine in Granier and Deloffre, 1994), redrawn from Barattolo et al. (2012).

opencc-by-4.0Dec 2021View details →
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Fig. 12 in Re-evaluation of pachycormid fishes from the Late Jurassic of Southwestern Germany

Fig. 12. Fragmentary skull attributed to Pachycormidae gen. et sp. indet. (GPIT/OS/1303) from the Kimmeridgian (Jurassic) of Nusplingen, Germany. Overview with mandibles and suborbitals in external view (photograph A1, explanatory drawing A2). Left first and second suborbitals in external view (A3). Anterior teeth of the right dentary (A4), note the procumbency of the mesial tooth, as well as the smooth apical and striated collar enameloid. Abbreviations: an, angular; ch, ceratohyal; de, dentary; hh, hypohyal; mc, mandibular canal; so1/so2, first and second suborbitals + fused infraorbital.

opencc-by-4.0Aug 2020View details →
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Fig. 7 in Re-evaluation of pachycormid fishes from the Late Jurassic of Southwestern Germany

Fig. 7. Pachycormid fish Hypsocormus posterodorsalis sp. nov. (GPIT/ OS/00836) from the Kimmeridgian (Jurassic) of Nusplingen, Germany. Pelvic plates and lepidotrichia in internal view (photograph A1, explanatory drawing A2).

opencc-by-4.0Aug 2020View details →
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FIGURE 14. Taeniopteris leaves. 1. Taenopteris spatulata, LX1097 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand

FIGURE 14. Taeniopteris leaves. 1. Taenopteris spatulata, LX1097, Curio Bay; 2. Taeniopteris crassinervis, LX2365, Curio Bay; 3. Taeniopteris sp. 'narrow', LX2365, Little Bay-03. All scale bars equal 10 mm.

opencc-by-4.0Dec 2019View details →
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FIGURE 1 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand

FIGURE 1. Catlins Coast fossil locality map. Arrow in the upper inset map points to a rectangle that delineates the general region along the southern coast of New Zealand's South Island. The upper map indicates the whole area regarded as 'Catlins Coast' in this work, and shows the Owaka and Chasm localities, which are a little distant from the others, and it delineates a rectangular area, which is shown in detail in the lower map.

opencc-by-4.0Dec 2019View details →
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FIGURE 4. Cladophlebis patagonica pinnules. 1. LX1498 in Middle-Late Jurassic plant assemblages of the Catlins coast, New Zealand

FIGURE 4. Cladophlebis patagonica pinnules. 1. LX1498, Black Point (Note the distinct apical broadening of the pinnule base); 2. LX1074, Curio Bay; 3. LX1197, Slope-02; 4. LX1069, The Boat Harbour; 5. LX1076, Curio Bay (Note that some of the veins dichotomise twice.); 6. LX2070, The Boat Harbour (Note the pronounced apical broadening of the pinnule base which continues to the adjacent pinnule as a 'wing'. All scale bars equal 10 mm).

opencc-by-4.0Dec 2019View details →

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