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373 results for “Crocodyliformes”
FIG. 72 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 72. — Left ilium of Congosaurus bequaerti Dollo, 1914, MRAC 1806 (holotype):A, lateral view; B, medial view. Arrow points anteriorly.Scale bar: 1 cm.
FIG. 71 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 71. — Pelvic reconstruction of Acherontisuchus guajiraensis Hastings, Bloch & Jaramillo, 2011, UF/IGM 38; ischium has been repaired based on Hyposaurus natator (Troxell, 1925), NJSM 23368; pubis have been recreated based on Hyposaurus natator, YPM VP.000753; A, lateral view; B, anterior view; C, ventral view; D, dorsal view. Arrow points anteriorly. Target indicates anterior. Original 3D models of YPM VP.000753 courtesy of Narimane Chatar; original 3D models of NJSM 23368 courtesy of Candice Stephanic. Reconstructed bones only serve as a qualitative representation of the pelvic girdle of Acherontisuchus guajiraensis. Scale bar: 5 cm.
FIG. 64 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 64. — Right and left pelvic girdle elements of Anthracosuchus balrogus Hastings, Bloch & Jaramillo, 2014, UF/IGM 68: A, right pubis in posterior view; B, left pubis in posterior view; C, right pubis in anterior view; D, left pubis in anterior view. Dotted lines used to recreate the putative shape of the pubis; the actual length of the shaft is unknown. Blue translucent area highlights the distal rugged portion of the pubis. Target indicates anterior. Cross indicates posterior. Scale bar: 1 cm.
FIG. 67 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 67. — Right and left pelvic girdle elements of Hyposaurus natator (Troxell, 1925), NJSM 23368: A, right pubis in anterior view; B, left ilium in lateral view; C, left pubis in lateral view; D, left ischium in lateral view; E, right ilium in lateral view; F, right ilium in medial view. Target indicates anterior. Arrow points anteriorly. Pictures courtesy of Wayne Callahan. Scale bars: 1 cm.
FIG. 59 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 59. — Pelvic girdle elements of Lemmysuchus obtusidens (Andrews, 1909), NHMUK PV R 3168 (holotype): A, left ilium in lateral view; B, left ilium in medial view; C, left pubis in lateral view; D, left ischium in lateral view; E, left pubis in anterodorsal view; F, right ischium in lateral view; G, surimposition of both ischia (right and left) of Lemmysuchus obtusidens, NHMUK PV R 3168. Target indicates anterior. Arrow points anteriorly. Scale bar: 1 cm.
FIG. 60 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 60. — Pelvic reconstruction of Lemmysuchus obtusidens (Andrews, 1909), NHMUK PV R 3168 (holotype): A, lateral view; B, anterior view; C, ventral view; D, dorsal view. Arrow points anteriorly. Target indicates anterior. The left ischium and right ilium and pubis are mirrored. Scale bar: 5 cm.
FIG. 53 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 53. — Pelvic girdle elements of Neosteneosaurus edwardsi (Eudes-Deslongchamps, 1868), NHMUK PV R 3701: A, right ilium in medial view; B, right ilium in lateral view; C, right ischium in lateral view; D, right pubis in anterior view; E, left ischium in medial view. Arrow points anteriorly. Target indicates anterior. Scale bar: 1 cm.
FIG. 50 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 50. — Pelvic girdle elements of Proexochokefalos cf. bouchardi (Sauvage, 1872), MJSN SCR010-374: A, left ilium in lateral view; B, left ilium in medial view; C, right ischium in medial view; D, right ischium in lateral view. Arrow points anteriorly. Original models courtesy of Dr Jeremy Anquetin (Jurassica MuseumMJSN). Scale bar: 1 cm.
FIG. 45 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 45. — Pelvic girdle elements of Macrospondylus bollensis (Jäger, 1828): A, left pubis in posterior view of SMNS 17484a; B, left ilium in lateral view of SMNS 17484a; C, left ischium in lateral view of SMNS 17484a; D, left ischium in lateral view of SMNS 16848; E, overview of the pelvic girdle of PMU 35980. Arrow points anteriorly. Target indicates anterior. Scale bars: 1 cm.
FIG. 43 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 43. — Pelvic girdle elements of Teleosaurus sp., NHMUK PV R 238 (A) and OUMNH.J1638 (B-E): A, right ischium in lateral view; B, right ischium in lateral view; C, right ischium in medial view; D, right pubis in anterior view; E, right pubis in posterior view. Arrow points anteriorly. Target indicates anterior. Pictures courtesy of Dr. Michela Johnson. Scale bars: 1 cm.
FIG. 69 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 69. — Pelvic girdle elements of Dyrosaurus maghribensis Jouve, Iarochène, Bouya & Amaghzaz, 2006: A-C, OCP DEK-GE 252; A, left pubis in anterior view; B, left ilium in lateral view; C, left ischium in lateral view; D, right pelvic girdle in medial view of the holotype (OCP DEK-GE 255); E, right pubis in anterior view (OCP DEK-GE 254). Target indicates anterior. Arrow points anteriorly. Scale bars: 1 cm.
FIG. 42 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 42. — Reconstruction of the pelvic girdle of Mycterosuchus nasutus (Andrews, 1909), NHMUK PV R 2617: A, right lateral view; B, anterior view; C, ventral view; D, dorsal view. Target indicates anterior. Arrow points anteriorly. The right pubis is mirrored. The ilium, ischium and first sacral are reconstructed from Sericodon jugleri Von Meyer, 1845, MJSN SCR010-312, and only serve as a qualitative representation to better highlight the remains of Mycterosuchus nasutus NHMUK PV R 2617. Scale bar: 5 cm.
FIG. 41 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 41. — Pelvic girdle elements of Mycterosuchus nasutus (Andrews, 1909): A, B, NHMUK PV R 2617, holotype; C, D, CAMSM J.1420 (referred); A, left pubis in anterior view; B, left pubis in posterior view; C, left ischium in medial view; D, left ischium in lateral view; E, left pubis in posterior view; F, left pubis in anterior view. Target indicates anterior. Cross indicates posterior. Pictures of CAMSM J.1420 courtesy of Dr. Michela Johnson. Scale bars: 1 cm.
FIG. 58 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 58. — Reconstruction of the pelvic girdle of Neosteneosaurus edwardsi (Eudes-Deslongchamps, 1868), NHMUK PV R 3898 (A, C, E) and NHMUK PV R 2865 (B, D, F): A, B, right lateral views; C, D, anterior views; E, F, ventral views. Target indicates anterior. Arrow points anteriorly. The right ilium and ischium of NHMUK PV R 3898 are mirrored. The right pubis and left ischium of NHMUK PV R 2865 is mirrored. Scale bars: 5 cm.
FIG. 39 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 39. — Pelvic girdle elements of Sericodon jugleri Von Meyer, 1845, MJSN SCR010-312: A, left ilium in lateral view; B, left ilium in medial view; C, left ischium in lateral view; D, left ischium in medial view. Cross indicates posterior. Original models courtesy of Dr. Jeremy Anquetin (Jurassica Museum-MJSN). Scale bar: 1 cm.
FIG. 38 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 38. — Pelvic girdle elements of Aeolodon priscus (Von SÖmmerring, 1815), MNHN.F.CNJ78: A, left ischium in lateral view; B, overview of Aeolodon priscus. Scale bars: 1 cm.
FIG. 66 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 66. — Right pelvic girdle elements of Hyposaurus natator (Troxell, 1925), YPM VP.000753, holotype: A, right ilium in medial view; B, right ilium in lateral view; C, right ischium in lateral view; D, right pubis in lateral view; E, left pubis in posteroventral view. Target indicates anterior. Arrow points anteriorly. Scale bar: 1 cm.
FIG. 37 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 37. — Pelvic girdle elements of Aeolodon priscus (Von SÖmmerring, 1815), NHMUK PV R 1086 (holotype): A, right ischium in medial view; B, left ischium in lateral view; C, overview of Aeolodon priscus. Scale bars: 1 cm.
FIG. 52 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 52. — Pelvic girdle elements of Neosteneosaurus edwardsi (Eudes-Deslongchamps, 1868), PETMG R178: A, left ilium in lateral view; B, left ilium in medial view; C, right ischium in lateral view; D, right pubis in anterior view; E, left pubis in anterior view. Arrow points anteriorly. Target indicates anterior. Pictures courtesy of Dr Michela Johnson. Scale bar: 1 cm.
FIG. 36 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 36. — Pelvic girdle elements and overview of Plagiophthalmosuchus gracilirostris (Westphal, 1961), NHMUK PV OR 14792 (holotype): A, right ilium in dorsal view; B, right ilium in lateral view; C, overview of Plagiophthalmosuchus gracilirostris. Arrow points anteriorly. Scale bars: A, B, 1 cm; C, 5 cm.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.