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272 results for “crocodiles”
FIG. 5 in Current status of the Crocodile Lizard Shinisaurus crocodilurus Ahl, 1930 in Vietnam with implications for conservation measures
FIG. 5 Slash and burn practices in Tay Yen Tu NR, Vietnam. (A) example of forest fire; (B) burned area cleared for agricultural purposes or exploration by the paper industry. Photos: M. Bernardes & M. van Schingen.
FIG. 1 in Current status of the Crocodile Lizard Shinisaurus crocodilurus Ahl, 1930 in Vietnam with implications for conservation measures
FIG. 1 Shinisaurus crocodilurus in its natural habitat in Tay Yen Tu NR, Vietnam. Photo: M. van Schingen.
FIG. 4 in Current status of the Crocodile Lizard Shinisaurus crocodilurus Ahl, 1930 in Vietnam with implications for conservation measures
FIG. 4 Distribution of different age classes of S. crocodilurus in Vietnam. (A) Frequency of observed juveniles, subadults and adults from three nature reserves, p <0.001; (B) Frequency shift (of juveniles, subadults and adults) in Tay Yen Tu NR between 2010 and 2013, p <0.05.
FIGURE 4 in Morphological and taxonomic reexamination on a crocodile newt recently described from Japan (Urodela, Salamandridae, Echinotriton)
FIGURE 4. Eggs (A) and breeding habitat (B) of Echinotriton raffaellii from Tokunoshima, Kagoshima Prefecture.
FIGURE 3. A in Morphological and taxonomic reexamination on a crocodile newt recently described from Japan (Urodela, Salamandridae, Echinotriton)
FIGURE 3. A: Alive individual (KUHE 49873) of Echinotriton raffaellii, an adult female from Tokunoshima-cho, Oshimagun, Kagoshima Prefecture, B: Dorsal (left) and ventral (right) views of another individual (KUHE 49868) of E. raffaellii, an adult male from Amagi-cho, Oshima-gun, Kagoshima Prefecture. A scale shows 10 mm, C: Full-grown larva of E. raffaellii from unknown locality in Tokunoshima Island, Kagoshima Prefecture (in captivity), D: Alive individual (no voucher specimen) of E. andersoni, an adult female from Okinawajima Island, E: Dorsal (left) and ventral (right) views of holotype (BMNH 1946.9.5.89) of E. andersoni, an adult female from Okinawajima Island. A scale shows 10 mm.
FIGURE 2 in Morphological and taxonomic reexamination on a crocodile newt recently described from Japan (Urodela, Salamandridae, Echinotriton)
FIGURE 2. Histograms of the discriminant score obtained in LDA. Filled: Amami clade (E. raffaellii); open: Okinawa clade (E. andersoni). Boxes, top and bottom 25th percentiles; horizontall bars inside the boxes, means; vertical bars, score ranges.
FIGURE 1 in Morphological and taxonomic reexamination on a crocodile newt recently described from Japan (Urodela, Salamandridae, Echinotriton)
FIGURE 1. Map of the Central Ryukyus (Amami and Okinawa islands) to show distributional range (shown in black) of Echinotriton in Japan.
Crocodile dundee's knife
Source: Objaverse 1.0 / Sketchfab
Supplementary materials related to the manuscript entitled "Crocodile mothers' response to hatching calls"
Open the record for dataset details and reuse information.
FIGURE 7. NHMUK 1947.3.6.45 in Systematic revision of the living African Slender-snouted Crocodiles (Mecistops Gray, 1844)
FIGURE 7. NHMUK 1947.3.6.45, holotype, Mecistops leptorhynchus; mounted juvenile specimen (top), with close up views of the head, flank, and venter.
FIGURE 3 in Systematic revision of the living African Slender-snouted Crocodiles (Mecistops Gray, 1844)
FIGURE 3. Squamosal boss or crest of Mecistops cataphractus (a) and its absence in M. leptorhynchus (b).
FIGURE 6 in Systematic revision of the living African Slender-snouted Crocodiles (Mecistops Gray, 1844)
FIGURE 6. Photographic series of M. cataphractus illustrating variation seen in the color and pattern throughout this species distribution. Left to right, top to bottom: dark colored juvenile showing burnt orange eye coloration from captive collection, USA (1-1); adult showing unpatterned, tan coloration of the Upper Guinea populations and illustrating very clearly the squamosal bosses typical of M. cataphractus from the Abidjan National Zoo, Côte d'Ivoire (1-2); highly blotched individual with the green/olive coloration from Silver Springs, Florida (1-3); highly blotched and banded adult with dark gold coloration from Silver Springs, Florida (2-1); a similarly patterned juvenile wild caught in Côte d'Ivoire formerly held at the Dipi Crocodile Farm (2-2); representative ventral coloration and pattern, most individual M. cataphractus show some level of dark blotching, St. Augustine Alligator Farm, Florida (2-3); melanistic individual wild caught in the Abi Lagoon, Côte d'Ivoire but captive held at the Parc Zoologique d'Assinie (3-1); yellow/gold colored individual illustrating the reduced jaw spotting of some individuals found in the Upper Guinea forests of Ghana and Côte d'Ivoire (3-2); dull/dark colored yearling, Subin River, Ghana (3-3); typically colored and patterned animals from the Senegambia area illustrating the dark gold background color and heavy black blotching, jaw spots, and overall dark patterning from the Gambia River, River Gambia National Park, The Gambia (row 4).
FIGURE 4 in Systematic revision of the living African Slender-snouted Crocodiles (Mecistops Gray, 1844)
FIGURE 4. Typical nuchal scutellation in adult Mecistops cataphractus (a) and M. leptorhynchus (b). Note also the modest squamosal boss in M. cataphractus, which is absent in M. leptorhynchus.
FIGURE 2. MCZ R-22483 in Systematic revision of the living African Slender-snouted Crocodiles (Mecistops Gray, 1844)
FIGURE 2. MCZ R-22483, neotype, Mecistops cataphractus. Photographic series showing dorsal, ventral, and lateral views of the skull, and overview of the mandibles. Photo credit: Museum of Comparative Zoology, Harvard University, ©President and Fellows of Harvard College.
FIGURE 9 in Systematic revision of the living African Slender-snouted Crocodiles (Mecistops Gray, 1844)
FIGURE 9. Photographic series of M. leptorhynchus illustrating variation seen in the color and pattern throughout this species distribution. Left to right, top to bottom: Dark individual from the Ruzizi Delta, Lake Tanganyika, DRC (1-1); close-up of the head of a standard colored individual from the N'dougou Lagoon, Gabon (1-2); high gold juvenile from the Echira River, Gabon (1-3); typical ventral coloration of M. leptorhynchus, N'dougou Lagoon, Gabon (2-1); typical flank scalation illustrating the comparatively less keeled and scaly appearance of M. leptorhynchus compared to M. cataphractus (2-2); abnormally blonde individual from the Mpassa River, Plateau Bateke, Gabon (2-3); high orange and black individual from the N'gowe River, Gabon (3-1, photo credit: J. Thorbjarnarson); typical nuchal scalation (3-2); hatchling crèche from the N'gowe River, Gabon (3-3).
FIGURE 1 in Systematic revision of the living African Slender-snouted Crocodiles (Mecistops Gray, 1844)
FIGURE 1. Map showing the distribution of Mecistops and its two content species: M. cataphractus and M. leptorhynchus.
FIGURE 8. FLMNH 166780 in Systematic revision of the living African Slender-snouted Crocodiles (Mecistops Gray, 1844)
FIGURE 8. FLMNH 166780, suitable replacement type material in the event it's needed, Mecistops leptorhynchus. Photographic series showing dorsal, ventral, and lateral views of the skull, and overview of the mandibles.
Fig. 4 in Divergent Morphology among Populations of the New Guinea Crocodile, Crocodylus novaeguineae (Schmidt, 1928): Diagnosis of an Independent Lineage and Description of a New Species
Fig. 4. Ventral cranial shape variation depicted using transformation grids with corresponding example specimen among drainages in Papua New Guinea. Solid points indicate consensus landmarks for all individuals, and lines extending from points indicate the extent (length) and direction of shape change exhibited by that classifier. Populations in northern drainages (i.e., Sepik; FMNH 14048; Crocodylus novaeguineae) exhibit an extended maxilla and reduced postcranial elements relative to southern populations from Lake Murray/Binaturi (C. halli; LSUMZ 44740) and the Aramia River (C. halli; USNM 211290), exhibiting strikingly shorter maxilla and enlarged postcranial elements.
Fig. 3 in Divergent Morphology among Populations of the New Guinea Crocodile, Crocodylus novaeguineae (Schmidt, 1928): Diagnosis of an Independent Lineage and Description of a New Species
Fig. 3. Dorsal cranial shape variation depicted using transformation grids with corresponding example specimen among drainages in Papua New Guinea. Solid points indicate consensus landmarks for all individuals, and lines extending from points indicate the extent (length) and direction of shape change exhibited by that classifier. Populations in northern drainages (i.e., Sepik River; FMNH 14048; Crocodylus novaeguineae) exhibit an extended maxilla and reduced postcranial elements relative to southern populations from Lake Murray/Binaturi (C. halli; LSUMZ 44740), exhibiting strikingly shorter maxilla and enlarged postcranial elements, or Aramia River (C. halli; USNM 211290), exhibiting a morphology closer to consensus.
Fig. 1 in Divergent Morphology among Populations of the New Guinea Crocodile, Crocodylus novaeguineae (Schmidt, 1928): Diagnosis of an Independent Lineage and Description of a New Species
Fig. 1. Homologous landmarks used in geometric morphometric analysis for dorsal (top, n ¼ 15 landmarks) and ventral (bottom, n ¼ 13 landmarks) views. LSUMZ 44740.
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Allen Brain Atlas
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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
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