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FIGURE 2 in A new early dinosaur (Sauropodomorpha) from the Caturrita Formation (Late Triassic), Paraná Basin, Brazil
FIGURE 2. Skull of the prosauropod Unaysaurus tolentinoi gen. et sp. nov, in A, left lateral reconstruction of the bones; B, left lateral premaxilla, maxilla, nasal, and dentary (splenial bone [= spl] is
FIGURE 3 in A new early dinosaur (Sauropodomorpha) from the Caturrita Formation (Late Triassic), Paraná Basin, Brazil
FIGURE 3. Skeletal reconstruction of the prosauropod Unaysaurus tolentinoi gen. et sp. nov., showing A, preserved bones and individuals bones; B, axis; C, most anterior dorsal vertebrae; D, most posterior dorsal vertebrae with the infradiapophysial cavities; E, medial caudal vertebra; F, right digital manus I in dorsal view; G, left digital pes I in dorsal view and; H, preserved left metatarsals in proximal view. For abbreviations, see appendix. Scale bar equals 10 mm.
FIGURE 1 in A new early dinosaur (Sauropodomorpha) from the Caturrita Formation (Late Triassic), Paraná Basin, Brazil
FIGURE 1. Map showing the central portion of the Rio Grande do Sul State and the Água Negra outcrop, between Santa Maria and São Martinho da Serra cities (source Leal et al. 2001); Carnian Norian (c. 220 Ma) Upper Triassic paleogeographic map, the black cross indicates the fossiliferous exposures of southern Brazil (modified from Lucas 1998); Lithostratigraphic subdivision of the Upper Triassic rocks in the Rio Grande do Sul state, with the fossiliferous level of Unaysaurus tolentinoi gen. et sp. nov., shown in grey (modified from Da Rosa and Leal 2002).
Fig. 3 in The Triassic Amphibian Thoosuchus yakovlevi and the Relationships of the Trematosauroidea (Temnospondyli: Stereospondyli)
Fig. 3. Phylogeny of trematosauroid temnospondyls and related taxa resulting from a PAUP analysis of the data matrix presented in Table 1. (A), preferred phylogeny representing one of the ten most parsimonious trees (MPTs), showing the Capitosauria and Trematosauria (denoted by short arrows) as defined by Yates & Warren (2000). Nodes A–F discussed in the text. (B), strict consensus of ten MPTs, showing decay index for each clade.
Fig. 1 in The Triassic Amphibian Thoosuchus yakovlevi and the Relationships of the Trematosauroidea (Temnospondyli: Stereospondyli)
Fig. 1. Thoosuchus yakovlevi (AM F98271), a basal trematosauroid temnospondyl from the Early Triassic of Russia. Photographs of the skull in (A), dorsal; (B), ventral; (C), occipital; (D), anterior and (E), lateral views. Scale bar equals 30 mm.
FIG. 1 in Reevaluation of Therioherpeton cargnini Bonaparte & Barberena, 1975 (Probainognathia, Therioherpetidae) from the Upper Triassic of Brazil
FIG. 1. — Correlation of the tetrapod assemblages from depositional sequences II and III with lithostratigraphic units and global ages. Based on Rubert & Schultz (2004). Abbreviations: Ca-1, Caturrita 1; SM-1, Santa Maria 1; SM-2, Santa Maria 2.
Figure 8. A in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 8. A, drawing of cervical vertebrae 5–8 and presacral vertebrae 26 and 27 as example for the vertebral structures in specimen FMNH PR2251. B, drawing of neural arches 9–12 of specimen FMNH PR2251. Anterior is to the right. Scale bar = 5 cm.
Figure 10 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 10. Drawings of preserved shoulder girdle elements of specimen FMNH PR2251. A, left coracoid. B, right clavicle; the broken bone plate attached to the posterolateral end of the clavicle may represent a remnant of the scapula (Sc?). See Appendix for explanation of abbreviations. Scale bar = 5 cm.
Figure 4 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 4. Drawing of the skull of Cymbospondylus nichollsi sp. nov. (FMNH PR2251) in lateral view. See Appendix for explanation of abbreviations. Scale bar = 10 cm.
Figure 3 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 3. Drawing of the skull of Cymbospondylus nichollsi sp. nov. (FMNH PR2251) in dorsal view. See Appendix for explanation of abbreviations. Scale bar = 10 cm.
Figure 2 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 2. Right temporal opening of specimen FMNH PR2251 with the arrow indicating the bite marks on the parietal plateau. See Appendix for explanation of abbreviations.
Figure 7 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 7. Close-up view of the occipital–cervical complex of specimen FMNH PR2251 in posteroventral view. Vertebrae are observed in ventrolateral view. See Appendix for explanation of abbreviations.
Figure 11 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 11. Comparison of the lateral views of the postrostral skull regions of Cymbospondylus. A, Cymbospondylus nichollsi sp. nov., based on the holotype FMNH PR2251. B, C. petrinus, based on UCMP 9950. C, C. buchseri, based on PIMUZ 4351, modified after Sander (1989b). B and C are based on left sides of the skulls and have been inverted.
Figure 9 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 9. Drawings of ribs of specimen FMNH PR2251. A, double-headed first cervical rib. B, anterior dorsal rib. C, middle dorsal rib. Scale bar = 2 cm.
Figure 12 in A new species of Cymbospondylus (Diapsida, Ichthyosauria) from the Middle Triassic of Nevada and a re-evaluation of the skull osteology of the genus
Figure 12. Strict consensus of three most parsimonious trees reflecting the hypothesized phylogenetic relationships of Cymbospondylus nichollsi sp. nov. to a selection of mainly Triassic ichthyosaurs. Based on the data matrix of Nicholls & Manabe (2001). After inclusion of C. nichollsi, 15 taxa and 44 characters were considered in the analysis.
Fig. 29 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 29. Skeletal elements of specimen GPIT-PV-30788 on display in the diorama. A. Both pubes with some gastric ribs. B. Probably nine dorsal vertebrae, two sacral vertebrae. C. Twelve caudal vertebrae. D. A partial left ilium, conjoined ischia. E. Left femur. F. Left tibia, left fibula, left astragalus. G. Two distal tarsals, five metatarsals, partial digits.
Fig. 27 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 27. Specimen GPIT-PV-30786 on display nowadays in the diorama (as it was originally mounted, Fig. 13E), comprising a complete right hindlimb, the left pes, partial pubes and conjoined ischia, and a series of around 50 caudal vertebrae. The specimen is embedded in a cast matrix.
Fig. 25 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 25. Illustration of specimen "GPIT Skelett I" by von Huene (new catalogue number: GPIT-PV-117990). The translation of the text is as follows: "Skeleton 1. Plateosaurus Quenstedti Huene in a bent down position. An in natural context found individual from the lower bone layer. 1. Skull (the original skull on skeleton I is under the glass top), on the mounted skeleton is the plaster cast of another individual. 2. Cervical vertebrae. 3. Dorsal vertebrae. 4. Sacral Vertebrae. 5. Caudal vertebrae. 6. Scapula (shoulder blade). 7. Coracoid, attached to which are rudiments of the clavicles (collar bones). 8. Humerus (upper arm). 9. Radius and ulna (forearm). 10. Hand. 11. Ilium. 12. Pubis. 13. Ischium. 14. Femur (thigh). 15. Tibia and fibula (lower leg). 16. Foot. 17. Abdominal ribs. These numbers denote the same skeletal parts on the other explanations." [Fig. 13].
Fig. 23 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 23. The holotype of 'Pachysaurus giganteus' von Huene, 1932 (comprises three metatarsal bones, poorly preserved and heavily reconstructed as it was mounted in a now dismounted display. A. Drawing of the dismounted corner, details in Fig. 22. B. Drawing of specimen "GPIT E". C. GPIT-PV-60234, metatarsal II. D. GPIT-PV-60235, metatarsal III. E. GPIT-PV-60236, metatarsal IV.
Fig. 22 in Diversity and taxonomy of the Late Triassic sauropodomorphs (Saurischia, Sauropodomorpha) stored in the Palaeontological Collection of Tübingen, Germany, historically referred to Plateosaurus
Fig. 22. Most of this "Lying Skeleton Parts" corner was removed in the 60s and comprised three historical specimens: "skeleton IV", referred to as Plateosaurus 'plieningeri', most of it now the holotype of Tuebingosaurus maierfritzorum Regalado Fernández & Werneburg, 2022, the gastralia blocks of specimen GPIT-PV-30784 ("GPIT I"), and three metatarsals that make up the holotype of 'Pachysaurus giganteus' von Huene, 1932 (Fig. 23), or historical number "GPIT E". Explanation of the numbers: 1. = cranial material; 4. = sacral vertebrae; 5. = caudal vertebrae; 9. = radius and ulna (forearm); 10. = manus; 11. = ilium; 12. = pubis; 13. = ischium; 14. = femur (thigh); 15. = tibia and fibula (lower leg); 16. = pes; 17. = abdominal ribs (gastralia).
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.