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4,028 results for “Mammalia”
Figure 16 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 16. Estimation of the relative positions of various planes of the skull, atlas, and vertebral column of Odobenocetops in order to evaluate the position of the long right tusk relative to the axis of the body.
Figure 15 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 15. Auditory region of Odobenocetops peruvianus, holotype (SMNK PAL 2491). Lateral view (A) and posterolateral view showing the tympanic aperture (B). On B, the outline of the tympanic aperture has been enhanced with a white line. Abbreviations: Ap, anterior process of the periotic; Bo, basioccipital; Eam, external auditory meatus; Fo, foramen ovale; Gf, glenoid fossa; Oc, occipital condyle; Po, paroccipital process of the exoccipital; Ptp, post-tympanic process of the squamosal; Sp, sigmoid process of the tympanic; Tym, tympanic.
Figure 8 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 8. Odobenocetops cf. leptodon, referred specimen (MNHN PPI 249). Periotic in dorsal (A), lateral (B), ventral (C), and medial (D) views.
Figure 4 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 4. Odobenocetops leptodon, referred specimen (MNHN SAO 202). Skull in lateral left (A) and lateral right (B) views.
Figure 19 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 19. Approximate curvature radius of a vertical section of the occipital condyle in Odobenocetops peruvianus, Tursiops truncatus and Delphinapterus leucas.
Figure 7 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 7. Odobenocetops leptodon, referred specimen (MNHN SAO 202). Periotic in dorsal (A), lateral (B), ventral (C), and medial (D) views. Abbreviations: ac, aqueductus cochleae; ap, anterior process; av, aqueductus vestibuli; dfc, dorsal opening of the facial canal; ef, fovea epitubaria; fc, fenestra cochleae; fi, fossa incudis; fm, fossa mallei (= epitympanic recess); iam, internal auditory meatus; pbf, posterior bullar facet; pc, pars cochlearis (= promontorium); pp, posterior process; slf, sulcus facialis; so, supernumerary ossicles; st, stapes; stf, fossa for stapedial muscle; ts, tractus spiralis; vfc, ventral opening of the facial canal; vr, ventral rim of the anterior process.
Figure 18 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 18. Reconstruction of Odobenocetops leptodon in its inferred environment (painting by Mary Parrish, Smithsonian Institution, Washington DC, USA).
Figure 11 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 11. Odobenocetops leptodon, holotype (SMNK PAL 2492). Atlas in anterior (A), posterior (B), dorsal (C), ventral (D), lateral right (E), and lateral left (F) views.
Figure 3 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 3. Odobenocetops leptodon, referred specimen (MNHN SAO 202). Skull in dorsal (A), ventral (B), and anteroventral (C) views.
Figure 17 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 17. Positions of the head in Odobenocetops leptodon. Maximum flexion (occasional) (A); median position (swimming) (B); maximum extension (feeding) (C).
Figure 10 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 10 Odobenocetops leptodon, referred specimen (MNHN SAO 202). Malleus in posteromedial view (A); incus in ventral view (B). Abbreviations: ast, articular facet for the stapes; cb, crus breve; cl, crus longum; icf, articular facets for the incus; mn, manubrium; pm, processus muscularis; tu, tuberculum.
Figure 9 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 9. Odobenocetops leptodon, referred specimen (MNHN SAO 202). Partial tympanic in ventral (A) and medial (B) views.
Figure 6 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 6. Auditory region of Odobenocetops leptodon, holotype (SMNK PAL 2492). Lateral view (A) and posterolateral view showing the tympanic aperture (B). On B, the outline of the tympanic aperture has been enhanced with a white line. Abbreviations: Ap, anterior process of the periotic; Bo, basioccipital; Cho, choanae; Eam, external auditory meatus; Fo, foramen ovale; Gf, glenoid fossa; Llpt, lateral lamina of the pterygoid; Oc, occipital condyle; Pa, palatine; Ptc, pterygoid crest; Ptp, post-tympanic process of the squamosal; po, paroccipital process of the exoccipital; Pts, pterygoid sinus; Sp, sigmoid process of the tympanic; Tym, tympanic.
Figure 13 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 13. Odobenocetops peruvianus, referred specimen (SMNK PAL 2491). Skull of a probable female in dorsal (A), ventral (B), occipital (D), and anteroventral (E) views; posteroventral view of the anterior region of the palate showing the two small tusks (C).
Figure 2 in The anatomy of Odobenocetops (Delphinoidea, Mammalia), the walrus-like dolphin from the Pliocene of Peru and its palaeobiological implications
Figure 2. Odobenocetops leptodon, holotype (SMNK PAL 2492). Skull: dorsal (A), ventral (B), and lateral (left side) (C) views.
FIG. 8 in New data about the diversity of Early Oligocene eomyids (Mammalia, Rodentia) in Western Europe
FIG. 8. — Lingual view of m1/2 molar from two levels of Saint- Martin-de-Castillon: A, Eomys aff. E. antiquus (Aymard, 1853) from the level C (FSL 98156); B, Eomys aff. E. zitteli Schlosser, 1884 from the level J (FSL 98181). Scale bar: 0.5 mm.
FIG. 7 in New data about the diversity of Early Oligocene eomyids (Mammalia, Rodentia) in Western Europe
FIG. 7. — Measurements of Eomys Schlosser, 1884 teeth compared the neotype of E. zitteli Schlosser, 1884 are indicated by stars.
FIG. 6 in New data about the diversity of Early Oligocene eomyids (Mammalia, Rodentia) in Western Europe
FIG. 6. — Eomys minor Comte & Vianey-Liaud, 1987 teeth, La Blache: A, A', Lm1/2, FSL 98182; A, occlusal view; A', labial view; B, RM1/2, FSL 98183; C, LM3, FSL 98184; D, Rm1/2, FSL 98185; E, Rp4, FSL 98186. Scale bar: 0.5 mm.
FIG. 9. — A-D in New data about the diversity of Early Oligocene eomyids (Mammalia, Rodentia) in Western Europe
FIG. 9. — A-D, Eomys sp.teeth,MÖhren 20;A, LP4,BSP 1975 XXII 837; B, LM1/2, BSP 1975 XXII 846;C, Rm1/2, BSP 1975 XXII 845;D, Lm1/2, BSP 1975 XXII 742; E-G, Eomyidae gen. et sp.indet.teeth, MÖhren 20; E, LM1/2, BSP 1975 XXII 858; F, RP4? RM1/2?, BSP 1975 XXII 857; G, RM2, BSP 1975 XXII 853. Scale bar: 0.5 mm.
FIG. 5.— A-Q, Eomys aff. E in New data about the diversity of Early Oligocene eomyids (Mammalia, Rodentia) in Western Europe
FIG. 5.— A-Q, Eomys aff. E. antiquus (Aymard, 1853) teeth, Saint-Martin-de-Castillon C; A, RDP4, FSL 98150; B, RP4, FSL 98155; C, RP4, FSL 98157; D, LP4, FSL 98162; E, RM1/2, FSL 98164; F, LM1/2, FSL 98160; G, LM3, FSL 98153; H, LM3, FSL 98169; I, Rdp4, FSL 98167; J, Rp4, FSL 98166; K, Lp4, FSL 98159; L, Lp4, FSL 98154; M, Lp4, FSL 98158; N, Rm1/2, FSL 98151; O, Rm1/2, FSL 98156; P, Lm1/2, FSL 98163; Q, Lm3, FSL 98161; R-V, Eomys aff. E. zitteli Schlosser,1884 teeth, Saint-Martin-de-Castillon J; R, RDP4, FSL 98180; S, RM1/2, FSL 98178; T, RM1/2, FSL 98179; U, Rdp4, FSL 98176; V, Lm1/2, FSL 98177. Scale bar: 0.5 mm.
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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.