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Fig. 4. A in A new diplodocoid sauropod dinosaur from the Upper Jurassic Morrison Formation of Montana, USA
Fig. 4. A. Phylogenetic relationship of the Sauropoda as proposed by Wilson (2002). B. 50% majority heuristic bootstrap phylogeny using the updated matrix of Wilson (2002) and with Suuwassea emilieae and Losillasaurus giganteus added. Note the resultant trichotomic nature of the Flagellicaudata. Bootstrap values (percentages) indicated along each stem.
Fig. 3 in A new diplodocoid sauropod dinosaur from the Upper Jurassic Morrison Formation of Montana, USA
Fig. 3. Appendicular elements of Suuwassea emilieae ANS 21122. A. Right scapula in lateral view. B. Right coracoid in craniolateral view. C. Right humerus in cranial (C1) and lateral (C2) views. D. Right tibia in caudal (D1) and proximal (D2) views. E. Right fibula in lateral view. F. Calcaneus in?proximal view. G. Right metatarsal I in cranial view. H. Pedal unguals I (top) and?III in lateral view. Scale bars 5 cm; scale bars do not apply to close−up D2.
Fig. 20 in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig. 20. Skull of Jaxartosaurus aralensis Riabinin, 1939 in dorsal view. A: PIN 1/5009; B, after Norman and Sues (2000).
Fig. 15. Amurosaurus riabinini. A in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig. 15. Amurosaurus riabinini. A. Diagrammatical drawing of the left pubis (AEHM 1/263) in medial view. B. Left ilium (AEHM 1/264) in lateral view. C. Left ischium (AEHM 1/269) in lateral view. D. Right femur (AEHM 1/265) in lateral (D1), cranial (D2), medial (D3), and caudal (D4) views.
Fig. 1 in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig. 1. Map with the geographical location of the dinosaur localities in the Amur region (Russia) and in Heilongjiang Province (P.R. China).
Fig. 19 in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig. 19. Cladogram of Lambeosaurinae, showing the phylogenetic relationships of Amurosaurus riabinini. List of apomorphies for all ingroup taxa. Letters indicate nodes. For multistate characters, the number between brackets refers to the character state (see Appendix 1). Character are followed by an "a", when supported only by ACCTRAN or fast optimisation, and by a "d", when supported only by DELTRAN, or slow optimisation. Node A (Hadrosauridae): 15, 19, 21, 24, 25, 26, 27, 28, 30, 33, 34, 36, 37; Node B (Hadrosaurinae): 8, 10, 12, 22, 32, 38(2); Node C (Lambeosaurinae): 2, 3, 5, 7a, 11a, 16, 20, 23, 31, 35, 38(1); Node D: 4(1); Node E: 18; Node F: 6, 7d, 11d; Node G (parasauroloph clade, named according to Chapman and Brett−Surman 1990): 1, 4(2), 17, 39, 40; Node H (corythosaur clade, named according to Chapman and Brett−Surman 1990): 9, 13; Node I: 14(1).
Fig. 14. Amurosaurus riabinini. A in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig. 14. Amurosaurus riabinini. A. Right humerus (AEHM 1/278) in caudal (A1) and cranial (A2) views. B. Left ulna (AEHM 1/267) in lateral (B1) and cranial (B2) views. C. Left radius (AEHM 1/268) in caudal (C1) and medial (C2) views.
Fig. 3. A in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig. 3. A. Sketch showing bonebed at Blagoveschensk dinosaur locality. B. Diagram showing orientations of long bones at Blagoveschensk dinosaur locality.
Fig 10 in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig 10. Left maxilla of Amurosaurus riabinini (AEHM 1/12) in lateral (A, C) and medial (B, D) views.
Fig. 5 in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig. 5. Braincase of Amurosaurus riabinini (AEHM 1/232) in left (A, C) and right (B, D) lateral views. E. Detail of the right side of the braincase.
Fig. 12. Amurosaurus riabinini. A in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig. 12. Amurosaurus riabinini. A. Cranial cervical vertebra (AEHM 1/275) in cranial (A1) and left lateral (A2) views. B. Dorsal vertebrae (AEHM 1/297–299) in left lateral (B1) and caudal (B2) views. C. Partial sacrum (AEHM 1/296) in ventral (C1) and cranial (C2) views. D. Caudal vertebrae (AEHM 1/304–307) in left lateral (D1) and caudal (D2) views.
Fig. 9. Amurosaurus riabinini. A in The lambeosaurine dinosaur Amurosaurus riabinini, from the Maastrichtian of Far Eastern Russia
Fig. 9. Amurosaurus riabinini. A. Left jugal (AEHM 1/112) in medial (A1) and lateral (A2) views. B. Right squamosal (AEHM 1/240) in lateral (B1) and medial (B2) views. C. Right quadrate (AEHM 1/42) in lateral (C1) and medial (C2) views.
Fig. 2 in First Cenomanian dinosaur from Central Europe (Czech Republic)
Fig. 2. The stratigraphic position of the dinosaur remains in the Bohemian Cretaceous Basin. Time scale after Gradstein and Ogg (2004).
Fig. 3 in First Cenomanian dinosaur from Central Europe (Czech Republic)
Fig. 3. Left femur of cf. Iguanodontidae gen. et sp. indet. (Ornithischia, Ornithopoda), IGP MZHLZ/2003/1, in posterior (A), lateral (B), medial (C), anterior (D), and distal (F) views, with transverse cross−section through the femoral shaft (E).
Fig. 4 in Wear facets and enamel spalling in tyrannosaurid dinosaurs
Fig. 4. Medial view of Daspletosaurus torosus maxilla TMP 2001.36.01 (A) and expanded views of teeth with elliptical wear facets (B, C).
Fig. 2 in Wear facets and enamel spalling in tyrannosaurid dinosaurs
Fig. 2. Examples of additional tyrannosaurid lateral teeth with spalled surfaces. A. TMP 79.14.775. B. TMP 66.11.94.
Endocranial development in non-avian dinosaurs reveals an ontogenetic brain trajectory distinct from extant archosaurs
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Data from: The dentary of hadrosauroid dinosaurs: evolution through heterochrony
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Data for: Africa’s oldest dinosaurs reveal early suppression of dinosaur distribution
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New giant carnivorous dinosaur reveals convergent evolutionary trends in theropod arm reduction
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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