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572 results for “Late Eocene”
FIG. 44 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 44. — Mystacodon selenensis (MUSM 1917, holotype). Left ulna: A, medial view; B, lateral view; C, posterior view; D, anterior view. Scale bar: 5 cm.
FIG. 7 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 7. — Comparative reconstruction of the dorsal (A, C, E) and ventral (B, D, F) views of the skull of: A, B, Cynthiacetus peruvianus; C, D, Mystacodon selenensis; E, F, Llanocetus denticrenatus. Not to scale; drawings scaled to same bizygomatic width. Coloured shaded area on the ventral views are reconstructions of the palatal surface. The reconstruction of the palatal surface of Llanocetus is more hypothetical than that of Mystacodon since the anterior region of the rostrum is missing.
FIG. 28 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 28. — Mystacodon selenensis (MUSM 1917, holotype). A-C, posterior of right?p2 (tooth IV); D-F posterior half of right?p3 (tooth V), G-I, right?i2 (tooth VI). A, labial view; B, lingual view; C, occlusal view; D, labial view; E, lingual view; F, occlusal view; G, labial view, H, lingual view; I, occlusal view. Scale bar: 3 cm.
FIG. 41 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 41. — Mystacodon selenensis (MUSM 1917, holotype). Right scapula: A, lateral view; B, medial view; C, distal view. Scale bar: 10 cm.
FIG. 13 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 13. — Dorsolateral view of the orbit of Mystacodon selenensis (MUSM 1917, holotype). Oblique lines and grey-shaded regions indicate respectively broken and reconstructed parts. Scale bar: 10 cm.
FIG. 36 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 36. — Mystacodon selenensis (MUSM 1917, holotype). Thoracic vertebra:?T12; A, anterior view; B, left lateral view; C, dorsal view; D, posterior view; E, right lateral view; F, ventral view. Scale bar: 5 cm.
FIG. 22 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 22. — Anterior view of the left dentary of Mystacodon selenensis (MUSM 1917, holotype). Scale bar: 2 cm.
FIG. 40 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 40. — Mystacodon selenensis (MUSM 1917, holotype). Sternum: A, dorsal view; B, ventral view; C, left lateral view; D, anterior view of the manubrium; E, Anterior view of St2; F, anterior view of the xiphisternum. Scale bar: 10 cm.
FIG. 35 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 35. — Mystacodon selenensis (MUSM 1917, holotype). Thoracic vertebra:?T10; A, anterior view; B, left lateral view; C, dorsal view; D, posterior view; E, right lateral view; F, ventral view. Scale bar: 5 cm.
FIG. 34 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 34. — Mystacodon selenensis (MUSM 1917, holotype). Thoracic vertebra:?T9; A, anterior view; B, left lateral view; C, posterior view; D, right lateral view; E, ventral view. Scale bar: 5 cm.
FIG. 31 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 31. — Mystacodon selenensis (MUSM 1917, holotype). Cervical vertebra:?C7; A, anterior view; B, left lateral view; C, dorsal view; D, posterior view; E, right lateral view; F, ventral view. Scale bar: 5 cm.
FIG. 23 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 23. — Left thyrohyal of Mystacodon selenensis (MUSM 1917, holotype). A, ventral view; B, dorsal view; C, proximal view; D, distal extremity of the bone as preserved. Scale bar: 5 cm.
FIG. 32 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 32. — Mystacodon selenensis (MUSM 1917, holotype). Thoracic vertebra:?T2; A, anterior view; B, left lateral view; C, dorsal view; D, posterior view; E, right lateral view; F, ventral view. Scale bar: 5 cm.
SEM images of gold palladium coated epoxy casts. Scale = 0.60 mm in Late Middle Eocene bats from the Creechbarrow Limestone Formation, Dorset, southern England with description of a new species of Archaeonycteris (Chiroptera: Archaeonycteridae)
SEM images of gold palladium coated epoxy casts. Scale = 0.60 mm
FIGURE 6 in A new late Eocene Bicornucythere species (Ostracoda, Crustacea) from Myanmar, and its significance for the evolutionary history of the genus
FIGURE 6. Interpretative drawing of the hingement of the right valve (Fig. 4H). Scale bar = 100 µm.
FIGURES 23–24 in Revision of the genus Metoisops (Hemiptera: Heteroptera, Miridae, Isometopinae) from late Eocene European amber
FIGURES 23–24. Metoisops consimilis—dorsal views.
FIGURES 20–22 in Revision of the genus Metoisops (Hemiptera: Heteroptera, Miridae, Isometopinae) from late Eocene European amber
FIGURES 20–22. Metoisops variabilis—dorsal views, antennal segments.
FIGURES 18–19 in Revision of the genus Metoisops (Hemiptera: Heteroptera, Miridae, Isometopinae) from late Eocene European amber
FIGURES 18–19. Metoisops grabenhorsti—dorsal views.
FIGURES 16–17 in Revision of the genus Metoisops (Hemiptera: Heteroptera, Miridae, Isometopinae) from late Eocene European amber
FIGURES 16–17. Metoisops punctatodiffusus—dorsal views.
FIGURES 14–15 in Revision of the genus Metoisops (Hemiptera: Heteroptera, Miridae, Isometopinae) from late Eocene European amber
FIGURES 14–15. Metoisops intergerivus—dorsal views.
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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.