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72 results for “Anguidae”
FIG. 13 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 13. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A, B, right coronoid in lateral (A) and medial (B) views; C-E, photograph (C) and virtual 3D models (D, E) of right splenial in lateral (C, D) and medial (E) views. Scale bars: A, B, D, E, 2 mm; C, 1 mm.
FIG. 9 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 9. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A-C, left pterygoid in dorsal (A) and ventral (B, C) views; D, detail of its denticulate field of the same pterygoid; E, F, virtual 3D models of right pterygoid in ventral (E) and dorsal (F) views. Scale bars: A-C, E, F, 2 mm; D, 1 mm.
FIG. 8 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 8. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A, B, virtual 3D models of right palatine in ventral (A) and dorsal (B) views. Scale bar: 2 mm.
FIG. 7 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 7. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A, B, photographs of left maxilla (A) and detail of teeth (B) in lateral view; C, D, virtual 3D model of left maxilla in lateral (C) and medial (D) views; E-G, photograph (E) and virtual 3D models (F, G) of left jugal in lateral (E, F) and medial (G) views. Scale bars: A, B, 1 mm; C, D, 5 mm; E-G, 2 mm.
FIG. 1 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 1. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A, holotype of slightly disarticulated skull; B, virtual 3D models of individual bones of the same specimen. Scale bar: 10 mm.
FIG. 3 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 3. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A, photograph of nasals in dorsal view; B, virtual 3D models of nasals and surrounding osteoderms in dorsal view. Scale bar: 2 mm.
FIG. 6 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 6. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A, B, right postfrontal in dorsolateral (A) and ventrolateral (B) views; C, D, left postfrontal in dorsolateral (C) and ventrolateral (D) views. Scale bar: 2 mm.
FIG. 12 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 12. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A, photograph; C, D, virtual 3D models of right dentary in lateral (A, B), medial (C) and ventromedial (D) views. Scale bar: 2 mm.
FIG. 14 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 14. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8610: A-G, osteoderms in external (A, C-G) and internal (B) views. Scale bars: 1 mm.
FIG. 10 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 10. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A-D, photograph (A) and virtual 3D models (B-D) of right fused exoccipital and opisthotic in anterolateral (A, B), anterior (C) and posterolateral (D) views. In A-C, fused exoccipital and opisthotic are dorsoventrally turned up. Scale bars: 2 mm.
FIG. 5 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 5. — Ophisaurus acuminatus Jörg, 1965: A-C, SMNK-PAL.8561, photograph (A) and virtual 3D models of right prefrontal in lateral (A, B) and medial (C) views; D, E, SMNK-PAL.8690, virtual 3D models of left prefrontal in lateral (D) and medial (E) views; F, G, posterior portion of left frontal bone in dorsal (F) and ventral (G) views. Scale bars: 2 mm.
FIG. 2. — A-D in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 2. — A-D, Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A, virtual 3D models of individual bones of holotype skull in internal view; B-D, right septomaxilla in dorsal (B), laterodorsal (C) and ventral (D) views; E, F, right septomaxilla of Ophisaurus attenuatus in dorsal (E) and ventral (F) views. Scale bars: A, 10 mm; B-F, 2 mm.
FIG. 4. — A-C in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 4. — A-C, Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A, B, virtual 3D models of nasals in dorsal (A) and ventral (B) views; C, reconstruction of posterior ornamented shields in dorsal view; D, E, virtual 3D models of anterior portions of skulls of Ophisaurus ventralis (Linnaeus, 1766) (ZFMK 95414) (D) and Ophisaurus attenuatus Baird, 1880 (DE 43) (E) in dorsal views. Scale bars: A-C, 2 mm; D, 3 mm; E, 2.5 mm.
FIG. 11 in Revision of the cranial anatomy of Ophisaurus acuminatus Jörg, 1965 (Anguimorpha, Anguidae) from the late Miocene of Germany
FIG. 11. — Ophisaurus acuminatus Jörg, 1965, SMNK-PAL.8561: A-G, photographs (A-D) and virtual 3D models (E-H) of left lower jaw elements and teeth in lateral (A-F) and medial (G, H) views. Scale bars: A, B, 0.5 mm; D, E, H, 2 mm; C, F, G, 5 mm.
Fig. 4 in Thermal ecology of the Pygmy Alligator Lizard, Gerrhonotus parvus Knight and Scudday, 1985 (Squamata: Anguidae), in Nuevo Léon, Mexico
Fig. 4. Relationship between body temperature (T b), air temperature (T) and substrate temperature (T) for Gerrhonotus a s parvus of Sierra Madre Oriental in Nuevo León, Mexico.
Fig. 1 in Thermal ecology of the Pygmy Alligator Lizard, Gerrhonotus parvus Knight and Scudday, 1985 (Squamata: Anguidae), in Nuevo Léon, Mexico
Fig. 1. Distribution of Gerrhonotus parvus in northeastern Mexico. The stars indicate the localities of specimens used in this study: Cañon de San Isidro, Santiago (white star) and Ejido Santa Rita, Galeana (black star). The coordinates are shown around the edges of the map in the UTM/WGS84 metric system.
Fig 9 in Bridging the gap: A new species of arboreal Abronia (Squamata: Anguidae) from the Northern Highlands of Chiapas, Mexico
Fig 9. Habitat of Abronia cunemica sp. nov. near Coapilla, Chiapas, Mexico. (A) Live and dead Pinus chiapensis trees in a cattle pasture, (B) intact Pinus- Quercus forest, (C) microhabitat of Quercus spp. trees laden with epiphytes. Photographs taken by Adam G. Clause on 19 February 2022 (A) and 14 August 2021 (B–C). https://doi.org/10.1371/journal.pone.0295230.g009
Fig 8 in Bridging the gap: A new species of arboreal Abronia (Squamata: Anguidae) from the Northern Highlands of Chiapas, Mexico
Fig 8. Geographic distribution of Abronia cunemica sp. nov. and nearby arboreal congeners in Chiapas and Oaxaca, Mexico. Inset photographs show characteristic differences in adult dorsal head color between A. cunemica sp. nov. (pale yellow, with dark markings distinct) and the closely related A. morenica (pale gray/tan, with dark markings absent or faint). The holotypes (adult males) of both species are shown; photograph of A. cunemica sp. nov. intentionally mirrored horizontally. Photographs by Adam G. Clause. Map layers courtesy of Natural Earth (public domain). https://doi.org/10.1371/journal.pone.0295230.g008
Fig 1 in Bridging the gap: A new species of arboreal Abronia (Squamata: Anguidae) from the Northern Highlands of Chiapas, Mexico
Fig 1. Maximum likelihood phylogenetic hypothesis for the genus Abronia based on 3425 RADseq loci. Numbers on branches are bootstrap values. B. = Barisia; E. = Elgaria; G. = Gerrhonotus. Species group names (I–VIII) follow the most recent molecular phylogenetic hypothesis of Abronia [38]. Color boxes indicate morphology-based taxonomic assignments [39]: subgenus Abronia (turquoise), subgenus Scopaeabronia (violet), subgenus Auriculabronia (blue), subgenera Abaculabronia plus Lissabronia (pale green), and former genus Mesaspis (pale orange). https://doi.org/10.1371/journal.pone.0295230.g001
Fig 2 in Bridging the gap: A new species of arboreal Abronia (Squamata: Anguidae) from the Northern Highlands of Chiapas, Mexico
Fig 2. Cross-validation results of conStruct analysis comparing the spatial and nonspatial conStruct models (in blue and green, respectively) run with K 1 through 4. https://doi.org/10.1371/journal.pone.0295230.g002
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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.