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FIGURE 3. Calcaneus. A-F in Occurrence of the sabretooth cat Smilodon populator (Felidae, Machairodontinae) in the Cuvieri cave, eastern Brazil
FIGURE 3. Calcaneus. A-F) Left Calcaneus. A) Dorsal view; B) Astragalar view; C and D) Lateral view; E) Distal view; F) Right Calcaneus. A.1-E.1) Adult lioness (Panthera leo) A.2-F) Smilodon populator. Scale bar equals 20 mm.
FIGURE 5. Identified osteological material. A in Occurrence of the sabretooth cat Smilodon populator (Felidae, Machairodontinae) in the Cuvieri cave, eastern Brazil
FIGURE 5. Identified osteological material. A) Distal part of metatarsal (CVL2 12475); B) Proximal phalanx (CVL2 14207); B-C) Ungual phalanges (CVL2 14532; CVL2 14309) E-H) Intermediate phalanges (CVL2 15187; CVL2 13333; CVL2 13400; CVL2 13300). Scale bar equals 20 mm.
FIGURE 2 in Occurrence of the sabretooth cat Smilodon populator (Felidae, Machairodontinae) in the Cuvieri cave, eastern Brazil
FIGURE 2. Detail of the right calcaneal articulatory region CVL2 15315. As1 - External astragalar facet or ectal facet; As2 and As3 - internal astragalar facets or sustainable facets; Na - facet articulate with the navicular; C - Articulation facet with cuboid. Scale bar equals 20 mm.
FIGURE 9 in New occurrences of Belonostomus (Teleostomorpha: Aspidorhynchidae) from the Late Cretaceous of the North American Gulf Coastal Plain, USA
FIGURE 9. Belonostomus sp. ALMNH 1994.31.112. 1, lateral view; 2, medial view; 3, dorsal view. Scale bars equal 5 mm.
FIGURE 7 in New occurrences of Belonostomus (Teleostomorpha: Aspidorhynchidae) from the Late Cretaceous of the North American Gulf Coastal Plain, USA
FIGURE 7. Belonostomus sp. ALMNH 1994.24.15 1, dorsal view; 2, right lateral view; and 3, ventral view. Scale bars equal 5 mm.
FIGURE 4 in New occurrences of Belonostomus (Teleostomorpha: Aspidorhynchidae) from the Late Cretaceous of the North American Gulf Coastal Plain, USA
FIGURE 4. Belonostomus sp. SMU 77675. Fused left and right premaxillae. 1, dorsal view; 2, ventral view; 3, left lateral view; 4, close up of the teeth in lateral view. Scale bars equal 10 mm.
FIGURE 2 in New occurrences of Belonostomus (Teleostomorpha: Aspidorhynchidae) from the Late Cretaceous of the North American Gulf Coastal Plain, USA
FIGURE 2. An expanded map showing all known localities in North America that have produced Belonostomus fossils. 1. Ashville Formation, Saskatchewan, Canada. 2. Frenchman Formation, Saskatchewan, Canada. 3. Kaskapau Formation, Alberta, Canada. 4. Foremost and Oldman formations, Alberta, Canada. 5. Dinosaur Park Formation, Alberta, Canada. 6. Horseshoe Canyon, Alberta, Canada 7. St. Mary River Formation, Alberta, Canada. 8. Tongue River Formation, North Dakota, USA.9. Judith River Formation, Montana, USA. 10. Hell Creek Formation, Montana, USA 11. Judith River Formation, North Dakota, USA 12. Hell Creek Formation, North Dakota, USA. 13. Lance Formation, Wyoming, USA. 14. Mesa Verde Formation, Wyoming, USA, 15. Prairie Bluff Chalk, Mississippi, USA. 16. Tombigbee Sand Member of the Eutaw Formation, Alabama, USA 17. Paluxy Formation, Texas, USA 18. Austin Chalk Formation, Texas, USA 19. Del Rio Formation, Texas, USA, 20. Eagle Ford Formation, Texas, USA. 21. Agua Nueva Formation, Nuevo Leon, México. 22. Tlayua Formation, Puebla, México. 23. Cerro de la Virgen Formation, Oaxaca, México.
FIGURE 3. A in New occurrences of Belonostomus (Teleostomorpha: Aspidorhynchidae) from the Late Cretaceous of the North American Gulf Coastal Plain, USA
FIGURE 3. A correlated stratigraphic column representing formations in the North American Gulf Coastal Plain where Belonostomus fossils can be found. The stars represent where in the section Belonostomus fossils have been documented. The line indicates how deep into section they have been observed (modified from Scott et al., 2003).
FIGURE 5 in New occurrences of Belonostomus (Teleostomorpha: Aspidorhynchidae) from the Late Cretaceous of the North American Gulf Coastal Plain, USA
FIGURE 5. Belonostomus sp. SMU 77676. Partial predentary. 1, ventral view; 2, dorsal view. Abbreviation: pds: predentary symphysis. Scale bars equal 10 mm.
FIGURE 8 in New occurrences of Belonostomus (Teleostomorpha: Aspidorhynchidae) from the Late Cretaceous of the North American Gulf Coastal Plain, USA
FIGURE 8. Belonostomus sp. MMNS 3152. Rostrum and premaxillae. 1, left lateral view. Anterior to the left. 2, ventral view. Scale bar equal 10 mm.
FIGURE 1. A in New occurrences of Belonostomus (Teleostomorpha: Aspidorhynchidae) from the Late Cretaceous of the North American Gulf Coastal Plain, USA
FIGURE 1. A locality map showing the counties in Texas, USA where the three new Belonostomus fossils were collected.
Figure 6 in First occurrence of brachyopid temnospondyls in Southeast Asia and review of the Mesozoic amphibians from Thailand
Figure 6. Posterior part skull of Brachyopidae indet. (KS34-1481) from Phu Noi locality, in dorsal (a) and palatal views (b). Reconstruction outline of KS34-1481 (estimate reconstruction outline of the anterior part based on Sinobrachyops placenticephalus Dong, 1985) in dorsal (c) and palatal views (d). Reconstruction of Thai Brachyopidae (e) is not to scale (drawn by Sita Manitkoon). Abbreviations: oc, occipital condyles; exo, exoccipital; int, interpalatal vacuities; ob, orbit; p, parietal; pp, postparietal; pt, pterygoid; psp, parasphenoid; st, supratemporal; sub, subtemporal fossa; t, tabular; q, quadrate.
Figure 1 in First occurrence of brachyopid temnospondyls in Southeast Asia and review of the Mesozoic amphibians from Thailand
Figure 1. Mesozoic amphibian outcrops from Thailand (symbol); locality in Huai Hin Lat Formation (Upper Triassic), Khlong Min Formation (Middle or Upper Jurassic), Phu Kradung Formation (Upper Jurassic), and Sao Khua Formation (Lower Cretaceous).
Figure 3 in First occurrence of brachyopid temnospondyls in Southeast Asia and review of the Mesozoic amphibians from Thailand
Figure 3. Thai Brachyopoidea indet. intercentra, TF 3228 (a–d), TF 31229 (e–h), TF 3144 (i–l, after Buffetaut et al., 1994b; fig. 1), and KS37-8 (m–p). Thai Brachyopidae indet. intercentra, KS34-1474 (q–t) and KS34-1489 (u–x). Anterior views (a, e, i, m, q, u), posterior views (b, f, j, n, r, v), left views (c, g, k, o, s, w), and right views (d, h, l, p, t, x).
Figure 5 in First occurrence of brachyopid temnospondyls in Southeast Asia and review of the Mesozoic amphibians from Thailand
Figure 5. New Triassic amphibian remains from Thailand. An intercentrum of Stereospondyli indet. (CY-HN 378) in anterior (a), posterior (b), left (c), and right (d) views. Dermal bone fragments of Stereospondyli indet. of CY-HN 364 (e–f), CY-HN 365 (g–h), CY-HN368 (i–j), and CY-HN-377 (k–l) in ventral view and dorsal view. Abbreviations: ap, ascending process; pp, parapophyses; ps, polygonal sculpture; rs, radial sculpture.
Figure 4 in First occurrence of brachyopid temnospondyls in Southeast Asia and review of the Mesozoic amphibians from Thailand
Figure 4. Cretaceous anuran remains from Thailand: left humerus, SHM-PT 529 in ventral (a) and medial view (b); right humerus, SHM-PT 530 in ventral (c) and medial view (d). Partial pelvic girdle, SHM-HY 231 in dorsal (e) and lateral view (f) (after Srisuk, 2002, 2005). Reconstruction of Thai anuran (g) is not to scale (drawn by Sita Manitkoon). Abbreviations: act, acetabulum; acr, acetabulum rim; cap, capitulum; ect, ectepicondyle; ent, entepicondyle; isc, ischium; pu, pubis.
Figure 2. Triassic amphibian remains from Thailand. A in First occurrence of brachyopid temnospondyls in Southeast Asia and review of the Mesozoic amphibians from Thailand
Figure 2. Triassic amphibian remains from Thailand. A replica skull of Cyclotosaurus cf. posthumus (D.M.R. Ch.D 001) in dorsal (a), palatal (b), and posterior views (c). A reconstruction of Thai Cyclotosauridae (d). A dermal bone of Plagiosauroidea indet. (TF 1453) in ventral (e) and dorsal (f) views. A reconstruction of Thai Plagiosauroidea (g). Reconstruction images (d, g) are not to scale (drawn by Sita Manitkoon).
Figure 1 in Relationships of cochlear coiling shape and hearing frequencies in cetaceans, and the occurrence of infrasonic hearing in Miocene Mysticeti
Figure 1. Cochlear anatomy and visualization of methods. (a) Three-dimensional rendering of the cochlea (shown as right) of Balaenoptera acutorostrata in apical view. (b) Same, virtually transected along the modiolus (mod) showing the primary and secondary bony laminae (bl1 and bl2, respectively). (c) Radii ratio method as applied in this study: circles superimposed onto basal and apical turns of a 2-D projection of the path tracing the basilar membrane within the cochlea. Dots represent three points on each circle for calculation of the respective radius. (d) Landmark-based geometric morphometrics: 3-D resampled path with landmarks 1 to 40.
Figure 2 in The westernmost occurrence of Gnathorhiza in the Triassic, with a discussion of the stratigraphic and palaeogeographic distribution of the genus
Figure 2. Palaeobiogeography of Gnathorhiza during Carboniferous and Permian (a) and Triassic (b). 1, Gnathorhiza sp.: USA, southeastern Utah, Cutler Group, Halgaito Formation (Vaughn, 1966, 1969, 1973); 2, Gnathorhiza sp.: USA, New Mexico, Rio Arriba County, Cutler Group (Berman, 1993); 3, G. bothrotreta: USA, New Mexico, Socorro County, Valencia County, Abo Formation (Berman, 1976, 1993), Gnathorhiza sp.: USA, New Mexico, Sandoval County, Abo Formation, San Miguel County, Sangre de Cristo Formation (Berman and Reisz, 1980); 4, Gnathorhiza sp.: USA, Arizona, Cochise County, Black Prince Limestone (Thayer, 1985); 5, G. serrata: USA, Texas, Baylor County, Lauders Formation and Wilbarger County, Arroyo Formation (Cope, 1883; Dalquest, 1968; Dalquest et al., 1989), G. dikeloda: Knox County, Vale and Choza Formation (Olson, 1951), Gnathorhiza sp.: north-central Texas, Nocona, Petrolla, Waggoner ranch Formations (Johnson and May, 2013); 6, G. pusilla: USA, Oklahoma, Grant County, Garber Formation (Case, 1915), G. serrata: Noble County, Wellington Formation (Carlson, 1968), Cleveland County, Hennessey Formation, G. noblensis (Olson, 1970; Olson and Daly, 1972); 7, Gnathorhiza sp.: USA, Kansas, Geary County, Lyon County, Speiser Shale (Schultze, 1985), Brown County, Bern Limestone Formation (Chorn and Schultze, 1990), Greenwood County, Hamilton Quarry (Cunnigham, 1993), Key County, Matfield Formation (McCahon and Miller, 2015); 8, G. serrata, G. dikeloda: USA, Nebraska, Richardson County, Eskridge Formation (Huttenlocker et al., 2005, 2013); 9, G. pusilla: USA, Illinois, Vermillion County (Cope, 1877); 10, aff. Gnathorhiza: Germany, Saar–Nahe Basin (Boy and Schindler, 2000; Schindler, 2007); 11, G. tatarica, G. otschevi: Russia, Orenburg region, Kutulukskaya Svita (Minikh, 1989, 1992), Gnathorhiza sp.: Kulchumovskaya Svita (Tverdokhlebov et al., 2005); 12, Gnathorhiza sp.: Brazil, Sao Paulo State, Corumbatai Formation, Paraná State, Rio do Rasto Formation (Toledo and Bertini, 2005); 13 Gnathorhiza sp.: Brazil, Rio Grande do Sul State, Rio do Rasto Formation (Ragonha, 1989; Richter and Langer, 1998); 14, Gnathorhiza sp.: Oman, Al Wusta region, Gharif Formation (Schultze et al., 2008); 15, Gnathorhiza otschevi: Poland, Czatkowice 1, karst fillings (this paper); 16, G. triassica triassica, G. triassica baskunchakensis, G. triassica beresnikiensis: Russia, Arkhangelsk Oblast (Minikh, 1977); 17, G. triassica triassica: Russia, Komi Republic (Minikh, 1977); 18, G. triassica triassica, G. triassica baskunchakensis: Russia, Kirov Oblast (Minikh, 1977); 19, G. triassica triassica, G. triassica beresnikiensis, G. lozovskii, G. bogdensis: Russia, Vologda Oblast (Minikh, 1977); 20, G. otschevi, G. triassica triassica, G. triassica beresnikiensis, G. bogdensis: Russia, Kostroma Oblast (Minikh, 1977); 21, G. triassica triassica, G. lozovskii: Russia, Yaroslavl Oblast (Minikh, 1977; Novikov and Sennikov, 1997); 22, Gnathorhiza otschevi: Russia, Vladimir Oblast (Newell et al., 2010); 23, G. triassica triassica: Russia, Nizhny Novgorod Oblast (Minikh, 1977, 2000); 24, G. otschevi, G. triassica triassica, G. triassica beresnikiensis, G. triassica baskunchakensis, G. lozovskii: Russia, Orenburg Oblast (Minikh, 1977; Minikh and Minikh, 1997); 25, G. triassica triassica, G. triassica baskunchakensis: Kazakhstan, Atyrau Oblast (Minikh and Minikh, 1997); 26, G. otschevi, G. triassica baskunchakensis, G. bogdensis: Russia, Bolshoye Bogdo Mountain (Minikh, 1977; Minikh and Minikh, 1997). Numbers not in stratigraphic order. Lower Permian and Early Triassic palaeogeographic maps modified from http://cpgeosystems.com/paleomaps.html.
Figure 1 in The westernmost occurrence of Gnathorhiza in the Triassic, with a discussion of the stratigraphic and palaeogeographic distribution of the genus
Figure 1. Tooth plates of Gnathorhiza otschevi from Czatkowice 1. (a, b) Upper tooth plate, ZPAL P. VII/6 in occlusal view and (c) in lateral view, and (d) a section of the first ridge; (e, f) lower tooth plate, ZPAL P. VII/7, in occlusal view and in dorsal view (g); (h) lower tooth plate, ZPAL P. VII/9, in occlusal view and (i) in medial view; (j) upper tooth plate, ZPAL P. VII/5, in occlusal view; (k) measurements of Minikh (1977) method. Scale bar for (a)–(c) and (e)–(j) 1 mm, 0.5 mm for (d).
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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.