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430 results for “Upper Jurassic”
FIGURE 17 in Upper Jurassic sauropod record in the Lusitanian Basin (Portugal): Geographical and lithostratigraphical distribution
FIGURE 17. Postcranial sauropod remains from the Arruda Sub-basin: 1-6 and 8-17, lectotype material of Lourinhasaurus alenquerensis (Moinho do Carmo), middle-to-posterior cervical centrum (MG 30373) in left view (1), fused sacral neural spines (MG 30376) in left view (2), dorsal centrum (MG 4956) in left view (3), anterior caudal neural spine (MG 30374) in posterior (4) and anterior (5) views, anterior caudal centrum (MG 4956) in anterior view (6), middle dorsal neural spine (MG 30384) in posterior view (8), left ischium (MG 4957) in lateral view (9), posterior cervical neural spine (MG 30379) in right view (10), left scapula and coracoids (MG 5780) in lateral view (11), left astragalus (MG 30375) in proximal view (12), left pubis (MG 4970) in lateral view (13), left tibia (MG 4983) in anterior view (14), left fibula (MG 4984) in lateral view (15), left humerus (MG 2) in anterior view (16) and left femur (MG 4931) in posterior view (17); 7, Neosauropoda indet., partial dorsal centrum (MG 4799, Castanheira) in right view. Black scale bar: 10 cm. See Anatomical abbreviations for abbreviations.
FIGURE 11 in Upper Jurassic sauropod record in the Lusitanian Basin (Portugal): Geographical and lithostratigraphical distribution
FIGURE 11. Cranial and postcranial sauropod remains from the cliffs located on North of Peniche: 1,?Macronaria indet., partial spatulate tooth (MG 8783, Baleal) in lingual view; 2-3,?Turiasauria indet., heart-shaped tooth (SHN (JJS) 141, Baleal) in labial (2) and lingual (3) views; 4, Macronaria indet., compressed cone-chisel-shaped tooth (SHN 547, Pedras Muitas) in lingual view; 5-6, Eusauropoda indet., middle (MG 4917) and posterior cervical vertebrae from Pedras Muitas in right (5) and left (6) views, respectively; 7, Macronaria indet., compressed cone-chisel-shaped tooth (SHN 543, Baleal) in lingual view; 8, sacral rib (SHN, 538, Almagreira) in posterior or anterior view; 9, Eusauropoda indet., anterior caudal vertebra (SHN 180, Baleal) in left view; 10, Macronaria indet., right pubis (SHN 526, Almagreira) in lateral view. Black scale bar: 10 cm; Grey scale bar: 1 cm. See Anatomical abbreviations for abbreviations.
Fig. 5 in Gladius shape variation in coleoid cephalopod Trachyteuthis from the Upper Jurassic Nusplingen and Solnhofen Plattenkalks
Fig. 5. Gladius of vampyropod coleoid Trachyteuthis nusplingensis sp. nov. A. Holotype (SMNS 63596), Upper Kimmeridgian (Hybonoticeras beckeri Zone), Nusplingen. A1, gladius seen in dorsal aspect; A2, close−up of A1 showing the granules at the anterior third of the gladius; A3, close−up of A1 showing the granules at the middle third of the gladius; A4, close−up of A1 showing the granules at the posterior third of the gladius. B. Specimen SMNS 63259, Upper Kimmeridgian (Hybonoticeras beckeri Zone), Nusplingen, gladius seen in dorsal aspect. C. Specimen SMNS 65345, Upper Kimmeridgian (Hybonoticeras beckeri Zone), Nusplingen, gladius seen in dorsal aspect.
Fig. 7 in Gladius shape variation in coleoid cephalopod Trachyteuthis from the Upper Jurassic Nusplingen and Solnhofen Plattenkalks
Fig. 7. Gladius and soft−parts of vampyropod coleoid Trachyteuthis cf. teudopsiformis sp. nov. A. Specimen SOS 1425a (specimen of Naef 1922: fig. 52), Lower Tithonian (Hybonoticeras hybonotum Zone), dorsal imprints; note on both sides of gladius the subcircular structures which Naef (1922) identified as fins. B. Close−up of A showing the gladius outline especially of the posterior part; note evidence of a granulated median keel in the anterior half. 20 mm
Fig. 4 in Gladius shape variation in coleoid cephalopod Trachyteuthis from the Upper Jurassic Nusplingen and Solnhofen Plattenkalks
Fig. 4. Gladius of vampyropod coleoid Trachyteuthis hastiformis (Rüppell, 1829). Specimen SOS 5762, Lower Tithonian (Hybonoticeras hybonotum Zone), Sappenfeld (Solnhofen area). A. Dorsal view. B. Close up of A showing the anterior mantle margin. Note that the gladius protrudes from the latter. C. Close−up of A showing position and shape of the paired fins. D. Close−up of A showing the granules at the anterior third of the gladius. E. Close−up of A showing the granules at the middle third of the gladius. F. Close−up of A showing the granules at the posterior third of the gladius.
Fig. 3 in Gladius shape variation in coleoid cephalopod Trachyteuthis from the Upper Jurassic Nusplingen and Solnhofen Plattenkalks
Fig. 3. Gladius of vampyropod coleoid Trachyteuthis hastiformis (Rüppell, 1829). A. Holotype (SMF IX1328), Lower Tithonian (Hybonoticeras hybonotum Zone), Mühlheim. A1, lower slab with gladius in dorsal aspect; A2, close−up of A1 showing the granulated area within the spindle−shaped elevation, which is flattened but easily visible in outlines; A3, original drawing of Rüppell (1829: pl. 3: 3). B. Specimen MARKM 1 (original of Meyer (1855: pl. 19: 1), Lower Tithonian (Hybonoticeras hybonotum Zone), Solnhofen area. B1, gladius in ventral aspect; B2, close−up of B1 showing the spindle−shape structure; B3, original drawing of Meyer (1855: pl. 19: 1).
Fig. 1 in Gladius shape variation in coleoid cephalopod Trachyteuthis from the Upper Jurassic Nusplingen and Solnhofen Plattenkalks
Fig. 1. Morphology, terminology and measurements of a vampyropod gladius. A. Trachyteuthis. B. Loligosepia.
Fig. 2 in Gladius shape variation in coleoid cephalopod Trachyteuthis from the Upper Jurassic Nusplingen and Solnhofen Plattenkalks
Fig. 2. Gladius shape variation in Trachyteuthis. A. Planar type. B. Nonplanar type. C. Keeled type. The granulated area is marked by a pointed line.
Fig. 6 in Gladius shape variation in coleoid cephalopod Trachyteuthis from the Upper Jurassic Nusplingen and Solnhofen Plattenkalks
Fig. 6. Gladius of vampyropod coleoid Trachyteuthis teudopsiformis sp. nov. A. Holotype (G 1306061), Lower Tithonian (Hybonoticeras hybonotum Zone), Blumenberg. A1, gladius seen in dorsal aspect; mm, mantle musculature; A2, close−up of A1 showing the granules at the anterior half of the gladius; A3, close−up of A1 showing the granules at the posterior half of the gladius. B. Paratype (MB.C.1002.4), Lower Tithonian (Hybonoticeras hybonotum Zone), Daiting. B1, gladius seen in ventral aspect; B2, close−up of B1 showing imprints of dorsal granules. C. Counterpart of the paratype (PIMUZ17826), gladius seen in dorsal aspect.
FIG. 9. — Most parsimonious tree T1 in A revision of the Upper Jurassic-Lower Cretaceous dragonfly family Tarsophlebiidae, with a discussion on the phylogenetic positions of the Tarsophlebiidae and Sieblosiidae (Insecta, Odonatoptera, Panodonata)
FIG. 9. — Most parsimonious tree T1 (obtained with PAUP4.0b10, Branch and Bound option), Consistency Index CI: 0.9375, CI excluding uninformative characters: 0.9231, Retention Index RI: 0.9375, and RC (RC = CI × RI): 0.8789.
FIG. 7. — Turanophlebia vitimensis n in A revision of the Upper Jurassic-Lower Cretaceous dragonfly family Tarsophlebiidae, with a discussion on the phylogenetic positions of the Tarsophlebiidae and Sieblosiidae (Insecta, Odonatoptera, Panodonata)
FIG. 7. — Turanophlebia vitimensis n. sp., holotype (PIN 2361/1); A, imprint; B, right fore wing; C, left fore wing; D, left hind wing; E, F, apex of the abdomen; E, counterimprint; F, imprint. Scale bars: A, 10 mm; B, D-F, 5 mm; C, 3 mm.
FIG. 6. — Turanophlebia mongolica n in A revision of the Upper Jurassic-Lower Cretaceous dragonfly family Tarsophlebiidae, with a discussion on the phylogenetic positions of the Tarsophlebiidae and Sieblosiidae (Insecta, Odonatoptera, Panodonata)
FIG. 6. — Turanophlebia mongolica n. sp.; A, holotype (PIN 3559/69); B, holotype, reconstruction of hind wing. Scale bar: A, 10 mm; B, 5 mm.
FIG. 2. — Tarsophlebia minor n in A revision of the Upper Jurassic-Lower Cretaceous dragonfly family Tarsophlebiidae, with a discussion on the phylogenetic positions of the Tarsophlebiidae and Sieblosiidae (Insecta, Odonatoptera, Panodonata)
FIG. 2. — Tarsophlebia minor n. sp., holotype (No. 55, coll. Carpenter, MCZ), left hind wing. Scale bar: 10 mm.
FIG. 1 in A revision of the Upper Jurassic-Lower Cretaceous dragonfly family Tarsophlebiidae, with a discussion on the phylogenetic positions of the Tarsophlebiidae and Sieblosiidae (Insecta, Odonatoptera, Panodonata)
FIG. 1. — Tarsophlebia eximia (Hagen, 1862); A, male specimen (SOS 1720, JME), secondary genital apparatus; B, male holotype (BSPGM AS-VI-44b), counterpart, right hind leg; C, male (No. 6129, coll. Carpenter, MCZ), head; D, male (No. 6222, coll. Carpenter, MCZ), male genital appendage. Scale bars: A, B, D, 5 mm; C, 10 mm.
FIG. 5. — Turanophlebia anglicana n in A revision of the Upper Jurassic-Lower Cretaceous dragonfly family Tarsophlebiidae, with a discussion on the phylogenetic positions of the Tarsophlebiidae and Sieblosiidae (Insecta, Odonatoptera, Panodonata)
FIG. 5. — Turanophlebia anglicana n. sp., holotype (No. 018531, Booth Museum of Natural History, Brighton, UK); A, complete wing, other wing is that of a Libelluloidae; B, reconstruction of the hind wing; C, detail of hind wing nodus. Abbreviations: Ax1, Ax2, primary antenodal cross-veins; CuP, Cubitus Posterior; IR2, intercalary vein of radial area; MA, Median Anterior. Scale bars: A, 10 mm; B, 5 mm; C, 1 mm.
FIGURE 16 in Two new tritylodontids (Synapsida, Cynodontia, Mammaliamorpha) from the Upper Jurassic, southwestern Mongolia
FIGURE 16. Strict consensus of four most parsimonious trees generated in a phylogenetic analysis of tritylodontid taxa. Support for nodes are shown as MP bootstrap values/Bremer support values.
FIGURE 8 in Two new tritylodontids (Synapsida, Cynodontia, Mammaliamorpha) from the Upper Jurassic, southwestern Mongolia
FIGURE 8. Upper postcanine dentition of Shartegodon altai PSS-MAE 633 (holotype) in occlusal views. The identity of the buccal, medial, and lingual cusps is labeled on the left PC2. Abbreviations: B, buccal; M, medial; L, lingual; PC, upper postcanine teeth.
FIGURE 14 in Two new tritylodontids (Synapsida, Cynodontia, Mammaliamorpha) from the Upper Jurassic, southwestern Mongolia
FIGURE 14. Postcranial elements of Nuurtherium baruunensis PSS-MAE 632 (holotype; top) with accompanying line drawing of recognizable bones (bottom). Gray indicates matrix. Abbreviations: AR, anterior rib; As, left astragalus; CV, caudal vertebrae; Cl, right clavicle; DV, dorsal vertebrae; F, left femur; mc, metacarpal; mp, metapodial; pc, postcanine teeth; PR, posterior rib; U, left ulna; S, right scapula; T, right tibia. Scale bar = 50 mm.
FIGURE 7 in Two new tritylodontids (Synapsida, Cynodontia, Mammaliamorpha) from the Upper Jurassic, southwestern Mongolia
FIGURE 7. Left partial ramus of Shartegodon altai PSS-MAE 633 (holotype) in (A) lateral and (B) medial views. Scale bar = 5 mm.
FIGURE 5 in Two new tritylodontids (Synapsida, Cynodontia, Mammaliamorpha) from the Upper Jurassic, southwestern Mongolia
FIGURE 5. Isolated right region of the basicranium of Shartegodon altai PSS-MAE 633 (holotype). Scale bar = 5 mm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.