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Fig. 10 in Late Cretaceous asioryctitherian eutherian mammals from Uzbekistan and phylogenetic analysis of Asioryctitheria

Fig. 10. Stereopairs of Bulaklestes kezbe Nessov, 1985; Dzharakuduk, Uzbekistan, Late Cretaceous (Turonian). A. URBAC 98−141, left m1, in lingual (A1) and occlusal (A2) views. B. URBAC 03−94, m2 from left dentary with m2 and alveoli for p5, m1, and m3, in lingual (B1) and occlusal (B2) views. C. URBAC 04−170, erupting m3 from right dentary with erupting m3 and posterior alveolus for m2; occlusal. D. URBAC 04−163, left dentary with m2–3, m1 lacking most of the crown, and alveoli for p5, in lingual (D1) and occlusal (D2) views.

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Fig. 1 in Late Cretaceous asioryctitherian eutherian mammals from Uzbekistan and phylogenetic analysis of Asioryctitheria

Fig. 1. Stereopairs of Daulestes kulbeckensis Trofimov and Nessov, 1979; Dzharakuduk, Uzbekistan, Late Cretaceous (Turonian). A. URBAC 98−126, probably associated lingual and labial parts of a left M1 in, occlusal (A1), labial (A2), and anterior (A3) views. B. URBAC 98−127, a right M2 lacking the metacone, in occlusal (B1), labial (B2), and anterior (B3) views.

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Fig. 9 in Late Cretaceous asioryctitherian eutherian mammals from Uzbekistan and phylogenetic analysis of Asioryctitheria

Fig. 9. Stereopairs of Bulaklestes kezbe Nessov, 1985; Dzharakuduk, Uzbekistan, Late Cretaceous (Turonian). A. URBAC 03−142, right dentary with p4 missing most of the crown, p5, m1, and alveoli for two−rooted c and p1–2 (p4–5, m1 shown), in occlusal (A1), labial (A2), and lingual (A3) views. B. URBAC 00−61, left dentary with i3?–4?, c, p1–2, 4, in occlusal (B1), labial (B2), and lingual (B3) views.

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Fig. 5 in Late Cretaceous asioryctitherian eutherian mammals from Uzbekistan and phylogenetic analysis of Asioryctitheria

Fig. 5. Uchkudukodon nessovi (McKenna, Kielan−Jaworowska, and Meng, 2000); Dzharakuduk, Uzbekistan, Late Cretaceous (Turonian). A. URBAC 04−221, skull fragment with right (reversed in A2 and A3) P5, M1–3, broken P2 and root for P4, in occlusal (A1, stereopair) and labial (A2, stereopair) views; A3, labeled labial drawing showing P4 fragment before loss during preparation. B. ZIN 79066, a skull with occluded dentaries of a sub−adult, type, only left anterior two−thirds of skull shown here, in occlusal (B1, stereopair, reversed) and labial (B2, stereopair) views; B3, labeled labial drawing.

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Fig. 10 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 10. Proximal tarsal bones of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. Right calcaneus in lateral view (A) and stereopair in anterior view (B). Right astragalus in anterodorsal view (C) and stereopair in posterior view (D).

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Fig. 11 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 11. Partial right tarsus of Dissacus zanabazari sp. nov., holotype, MAE− BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. A1, anterior view, A2, explanatory drawing of the same; B1, medial view, B2, explanatory drawing of the same.

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Fig. 9 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 9. Anterior views of right femur (A) and right tibia and fibula (B) of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene.

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Fig. 8 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 8. Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. A. Lateral view of pelvis with lumbar and sacral vertebrae. B. Right femur in distal view.

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Fig. 4 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 4. Mandible and lower dentition of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. A. Anterior view of the lower canines and incisors. Note the weakly trilobed morphology, most evident on i2. B. Stereopair of the left mandible in dorsal view. C. Medial view of the left mandible. D. Lingual view of the left p4 through m3.

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Fig. 3. A. Right P4 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 3. A. Right P4 to M3 of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. B. Explanantory drawing of the same. Hatched areas in B indicate crushed and distorted enamel, and shading denotes missing enamel, with features reconstructed from left dentition.

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Fig. 2. A in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 2. A. Stereopair of the right basicranium of Dissacus zanabazari sp. nov., holotype, MAE−BU− 97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. B. Explanatory drawing of the same.

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Fig. 1 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 1. Skull of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene, in dorsal (A), lateral (B), and ventral (C) views. The antorbital and postorbital portions of the skull are completely separate and were positioned based on more complete mesonychid skulls.

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Fig. 5 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 5. Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. Left scapula shown in ventral (A) and lateral (B) views C. Stereopair of left manus, in anterior view. Abbreviations: ce, centrale; Mc, metacarpal; mg, magnum; td, trapezoid.

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Fig. 6 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 6. Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. A. Left radius and ulna in medial view. B. Right humerus in anterior view.

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Fig. 7. A in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 7. A. Medial view of the left manus of Dissacus zanabazari sp. nov., holotype, MAE−BU−97−13786, Tsagaan Khushuu, Gobi Desert, Mongolia, early Eocene. B. Explanatory drawing of the same.

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Fig. 12 in A new species of mesonychian mammal from the lower Eocene of Mongolia and its phylogenetic relationships

Fig. 12. Phylogenetic position of Dissacus zanabazari as depicted in a strict consensus of 8 most parsimonious trees, each 220 steps in length. Bremer support values are placed below and to the left of each node. Abbreviation: H, Hapalodectidae.

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Fig. 2 in First?cimolodontan multituberculate mammal from South America

Fig. 2. SEM micrographs of?left p4 of Argentodites coloniensis gen. et sp. nov., MPEF 604 (Upper Cretaceous La Colonia Formation, Chubut Province, Argentina) in different views. A. Dorsal view. Stereo−photograph (A1) and explanatory drawing of the same (A2). B. Labial view of the same, figured in a presumable life position, with posterior margin arranged sub−vertically. C. Lingual view of the same, with posterior margin turned counterclockwise from presumable life position. Explanatory drawing (C1) and stereo−photograph (C2). D. Postero−dorsal view of the same. Stereo−photograph (D1), and explanatory drawing (D2).

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Fig. 3 in First?cimolodontan multituberculate mammal from South America

Fig. 3. SEM micrographs of etched enamel surfaces of A. Argentodites coloniensis gen. et sp. nov., MPEF 604 (Upper Cretaceous La Colonia Formation, Chubut Province, Argentina) and B. A ptilodontoid multituberculate Mesodma sp., PMO 169.283 (Early Paleocene Ravenscrag Formation, Saskatchewan, Canada). A1. Anterior view of p4 of A. coloniensis, etched enamel zone shown within the square. A2. Enamel section tangential to the row of cusps showing prism arrangement. Dentine in lower left corner. A3. Area near the dentine; t, enamel tubules, d, dentine. A4. Detail of A2 showing prisms with circular cross section, closer to the dentine. Black arrow, closed prism sheath; white arrow, open prism sheath. A5. Another detail of A2, showing elongated prisms. B. Mesodma sp., enamel showing prism arrangement, in the same scale as A2, in order to enable a comparison.

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Fig. 1 in First?cimolodontan multituberculate mammal from South America

Fig. 1. Position of South America and adjacent lands, 85–63 million years ago, showing location of the formations that yielded Late Cretaceous multituberculates. Black arrows indicate migrations of vertebrates between North and South Americas. Note the division of South America by sea into South Gondwanan Province (light grey) and North Gondwana Province (square hatching). Modified after Pascual (2006).

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Fig. 1 in First record of a Jurassic mammal (?"Peramura") from Ethiopia

Fig. 1. Locality maps, Jema River valley, Ethiopia. Collecting locality marked with an asterisk. Modified from Goodwin et al. (1999).

opencc-by-4.0Dec 2007View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record