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706 results for “Late Jurassic”

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Fig. 9 in Osteology and phylogeny of Late Jurassic ichthyosaurs from the Slottsmøya Member Lagerstätte (Spitsbergen, Svalbard)

Fig. 9. Elements of Ophthalmosauridae indet. (PMO 224.252) from Spitsbergen, Svalbard, Slottsmøya Member Lagerstätte, Tithonian. A. Left quadrate in posterior view. B. Hyoid in anterior or posterior view. C. Rib in anterior or posterior view.

opencc-by-4.0Oct 2019View details →
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Fig. 4 in Osteology and phylogeny of Late Jurassic ichthyosaurs from the Slottsmøya Member Lagerstätte (Spitsbergen, Svalbard)

Fig. 4. Rostrum fragment of ophthalmosaurid ichthyosaur Keilhauia sp. PMO 222.667) from Spitsbergen, Svalbard, Slottsmøya Member Lagerstätte, Tithonian. Premaxillae, nasals, and vomer in dorsal (A1) and lateral A2) views. Anterior to the right.

opencc-by-4.0Oct 2019View details →
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Fig. 8 in Osteology and phylogeny of Late Jurassic ichthyosaurs from the Slottsmøya Member Lagerstätte (Spitsbergen, Svalbard)

Fig. 8. Skull of Ophthalmosauridae indet. (PMO 224.252) from Spitsbergen, Svalbard, Slottsmøya Member Lagerstätte, Tithonian; in dorsal (A1, A3) and ventral (A2, A4) views. Photographs (A1, A2) and interpretative drawings (A3, A4). L, left; R, right; paf, parietal foramen; suf, supratemporal fenestra.

opencc-by-4.0Oct 2019View details →
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Fig. 4 in The earliest record of a diogenid hermit crab from the Late Jurassic of the southern Polish Uplands, with notes on paguroid carapace terminology

Fig. 4. Explanation of the hypothesised origin (centre) of the cervical groove and massetic region, in transition from the Triassic anomuran Platykotta akaina (A) to Eopaguropsis nidiaquilae sp. nov. (B).

opencc-by-4.0Sep 2012View details →
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Fig. 1 in The earliest record of a diogenid hermit crab from the Late Jurassic of the southern Polish Uplands, with notes on paguroid carapace terminology

Fig. 1. Localities with diogenid−bearing strata of Middle–Late Oxfordian age in southern Poland (see inset), as follows: B, Bzów; G, Grabowa; N, Niegowonice; O, Ogrodzieniec; W, Wysoka (modified after Głowniak 2006: fig. 2).

opencc-by-4.0Sep 2012View details →
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Fig. 3 in The earliest record of pylochelid hermit crabs from the Late Jurassic of southern Poland, with notes on paguroid carapace terminology

Fig. 3. The position of the massetic region (new term) in various paguroid families and subfamilies.

opencc-by-4.0Sep 2012View details →
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Fig. 1 in The earliest record of pylochelid hermit crabs from the Late Jurassic of southern Poland, with notes on paguroid carapace terminology

Fig. 1. Localities with paguroid−bearing strata of Middle–Late Oxfordian age in southern Poland (see inset), as follows: G, Grabowa; K, Kroczyce; N, Niegowonice; O, Ogrodzieniec; W, Wysoka (modified after Głowniak 2006: fig. 2).

opencc-by-4.0Sep 2012View details →
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Fig. 2 in Reinterpretation of the Spanish Late Jurassic "Hispaniachelys prebetica" as an indeterminate plesiochelyid turtle

Fig. 2. Hypothesized phylogenetic position of the specimen RGCHSP-62-52, holotype of "Hispaniachelys prebetica" from late Oxfordian of the Betic Range of Spain, based on the modified data set of Joyce (2007) as proposed by Anquetin et al. (2008). A. Majority rule tree. Values are percentages under 100% obtained in this analysis. B. Strict consensus tree with bootstrap values (1000 replicates, only values over 50% shown).

opencc-by-4.0Jun 2013View details →
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Fig. 1. RGCHSP-62-52 in Reinterpretation of the Spanish Late Jurassic "Hispaniachelys prebetica" as an indeterminate plesiochelyid turtle

Fig. 1. RGCHSP-62-52, shell of the holotype of "Hispaniachelys prebetica" from late Oxfordian of the Betic Range of Spain, interpreted as plesiochelyid turtle herein. Carapace in dorsal view (A); most-anterior region of the carapace in dorsal view (B); plastron in ventral view (C); right epiplastron in dorsal (D) and posterior (E) views; seventh left peripheral in dorso-lateral (F), latero-ventral (G), and ventral (H) views; seventh right peripheral in dorso-lateral (I), latero-ventral (J), ventral (K), medial (L), and posterior (M) views; fifth or sixth right peripheral in latero-ventral (N), medial (O), and anterior (P) views. Photographs (A 1 –C 1, F 1 –K 1, N 1) and explanatory drawings (A 2 –C 2, F 2 –K 2, N 2). Rs, groove generated by the distal region of the dorsal ribs on the visceral surface of the peripherals.

opencc-by-4.0Jun 2013View details →
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Fig. 4 in New Late Jurassic symmetrical hermit crabs from the southern Polish Uplands and early paguroid diversification

Fig. 4. Schematic dorsal carapace views, with the position of the massetic (green), keraial (purple), and lateral branchial (orange) regions in Paguridae (A, B), Diogenidae (C, D), Pylojacqueidae (E), Parapaguridae (F), and Parapylochelidae (G–K).

opencc-by-4.0Jun 2012View details →
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Fig. 3 in New Late Jurassic symmetrical hermit crabs from the southern Polish Uplands and early paguroid diversification

Fig. 3. Schematic dorsal views of shields of Late Jurassic (Oxfordian) hermit crabs. A. Diogenicheles theodorae gen. et sp. nov. B. Masticacheles longirostris gen. et sp. nov. C. Pilgrimcheles karolinae gen. et sp. nov.

opencc-by-4.0Jun 2012View details →
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Fig. 2 in New Late Jurassic symmetrical hermit crabs from the southern Polish Uplands and early paguroid diversification

Fig. 2. Paguroid hermit crabs from the Oxfordian (Late Jurassic) of Bzów (A, B, E, F) and Ogrodzieniec (C, D). A. Diogenicheles theodorae gen. et sp. nov., holotype; I−F/MP/3957/1533/08(ISEA). B, C. Pilgrimcheles karolinae gen. et sp. nov. B. Holotype; I−F/MP/3953/1533/08(ISEA). C. Paratype MAB k. 3205. D–F. Masticacheles longirostris gen. et sp. nov. D. Holotype; I−F/MP/6194/1577/10 (ISEA). E. Paratype; I−F/MP/3958/1533/08(ISEA). F. Paratype; MAB k. 3204. Scale bars 2 mm.

opencc-by-4.0Jun 2012View details →
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Fig. 19 in A new species of the ginglymodian fish Isanichthys from the Late Jurassic Phu Kradung Formation, northeastern Thailand

Fig. 19. Phylogenetic hypothesis of ginglymodians interrelationships. A. Strict consensus tree of the 24 most parsimonious tree (305 steps; consistency index = 0.38; retention index = 0.65). All characters are unordered and have equal weight. In brackets are the bootstrap values of the nodes if superior to 50 (3840 replicates) and the Bremer supports if superi- or to 1. B. Relationships between the species of Isanichthys if I. luchowensis is removed from the analysis (strict consensus of three trees, 303 steps, CI = 0.38, RI = 0.65). The rest of the cladogram is similar to A.

opencc-by-4.0Aug 2012View details →
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Fig. 17 in A new species of the ginglymodian fish Isanichthys from the Late Jurassic Phu Kradung Formation, northeastern Thailand

Fig. 17. Ginglymodian fish Isanichthys lertboosi sp. nov., KS36-2 (holotype); Phu Kradung Formation, Late Jurassic; Kalasin Province, Northeastern Thailand. Caudal fin in right view. All branchings and segmentations of the rays are not drawn, although present, because they are hardly visible on the specimen.

opencc-by-4.0Aug 2012View details →
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Fig. 18 in A new species of the ginglymodian fish Isanichthys from the Late Jurassic Phu Kradung Formation, northeastern Thailand

Fig. 18. Skull of ginglymodian fish Isanichthys luchowensis sp. nov., cv 002; Early or middle Jurassic of Sichuan, China. A. Photograph. B. Semi-interpretative line drawing.

opencc-by-4.0Aug 2012View details →
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Fig. 12 in A new species of the ginglymodian fish Isanichthys from the Late Jurassic Phu Kradung Formation, northeastern Thailand

Fig. 12. Ventral views of the snout of the ginglymodian fish Isanichthys lertboosi sp. nov., KS36-2; Phu Kradung Formation, Late Jurassic; Kalasin Province, Northeastern Thailand; showing vormerine and ectopterygoid teeth. Photographs in different angles (A, B) and semi-interpretative line drawing (C).

opencc-by-4.0Aug 2012View details →
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Fig. 10 in A new species of the ginglymodian fish Isanichthys from the Late Jurassic Phu Kradung Formation, northeastern Thailand

Fig. 10. Snout region and mandible of the ginglymodian fish Isanichthys lertboosi sp. nov., KS34-281; Phu Kradung Formation, Late Jurassic; Kalasin Province, Northeastern Thailand; in left lateral view. A. Photograph. B. Semi-interpretative line drawing.

opencc-by-4.0Aug 2012View details →
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Fig. 9 in A new species of the ginglymodian fish Isanichthys from the Late Jurassic Phu Kradung Formation, northeastern Thailand

Fig. 9. Part of suspensorium and mandible of the ginglymodian fish Isanichthys lertboosi sp. nov., KS34-281; Phu Kradung Formation, Late Jurassic; Kalasin Province, Northeastern Thailand; in right lateral view. A. Photograph. B. Semi-interpretative line drawing.

opencc-by-4.0Aug 2012View details →
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Fig. 8 in A new species of the ginglymodian fish Isanichthys from the Late Jurassic Phu Kradung Formation, northeastern Thailand

Fig. 8. Braincase of the ginglymodian fish Isanichthys lertboosi sp. nov., KS34-380; Phu Kradung Formation, Late Jurassic; Kalasin Province, Northeastern Thailand; in left ventrolateral view (the dorsal side faces down) (A), left posteroventral (B), and posterior (C) views. Photographs (A 1 –C 1) and semi-interpretative line drawings (A 2 –C 2). Shaded areas in B 2 and C 2 correspond to matrix.

opencc-by-4.0Aug 2012View details →
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Fig. 6 in A new species of the ginglymodian fish Isanichthys from the Late Jurassic Phu Kradung Formation, northeastern Thailand

Fig. 6. Skull roof of the ginglymodian fish Isanichthys lertboosi sp. nov., KS36-2; Phu Kradung Formation, Late Jurassic; Kalasin Province, Northeastern Thailand; in dorsal views. A. KS34-380. B. KS36-3. Photographs (A1, B1) and semi-interpretative line drawings (A2, B2).

opencc-by-4.0Aug 2012View details →

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International Brain Laboratory public data

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OpenNeuro

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Last verified 2026-04-29Open record