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FIG. 41 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 41. — Permanent right dentition of Alcidedorbignya inopinata (MHNC 8372) in occlusal view (stage 7): A, upper dentition; B, lower dentition. Scale bar: 10 mm.

opencc-zeroNov 2022View details →
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FIG. 33. — A in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 33. — A, Transparent lateral view of the left mandible MHNC 8417 of juvenile Alcidedorbignya inopinata (stage 4) showing unerupted partial trigonid (paraconid anteriorly and fused protoconid and metaconid posteriorly) of p4 in crypt; B, view of the partial trigonid of p4 as preserved in crypt (the paraconid is approximately in its natural position but the fused protoconid and metaconid have been rotated along a vertical axis, which has placed the protoconid lingually and the metaconid labially, and along a transverse axis which has rocked the two cusps approximately 130° posteriorly; C, occlusal view of partial trigonid of p4 restored in its natural position. Scale bars: A, 5 mm; B, C, 1 mm.

opencc-zeroNov 2022View details →
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FIG. 22 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 22. — Slices of the CT-scans (lateral and coronal) of the mandible (MHNC 8298) of juvenile Alcidedorbignya inopinata (stage 3+): A, B, slices 111 and 127 of the lateral CT-scan; (slice 127 is lateral to slice 111); C, slice 570 of the coronal CT scan. The number for each illustrated slice refers to the position within the sequence of 260 images for A and B and 804 images for C (resolution binned images voxel size = 0.02781842 mm). Scale bar: 5 mm.

opencc-zeroNov 2022View details →
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FIG. 36 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 36. — Left maxilla (cast of YPFB Pal 6363), of juvenile Alcidedorbignya inopinata (stage 5) showing P4 erupting above dP4, which has not shed yet and complete germ of P3 still in crypt: A, occlusal view; B, mesiolingual view. Scale bar: 5 mm.

opencc-zeroNov 2022View details →
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FIG. 46 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 46. — Correlation of the evolution of feeding and maternal investment in the juvenile eutherian mammals as illustrated by Langer (2008: fig. 2) with the dental stages (1 to 8) defined here and the IDAS of Anders et al. (2011).

opencc-zeroNov 2022View details →
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FIG. 10. — A in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 10. — A, Transparent lateral view of left mandible (MHNC 8423) of juvenile Alcidedorbignya inopinata (stage 2) showing left m1 erupting and m2 in formation in crypt; B, the same in occlusal view; C, occlusal view of left m2 in crypt showing the trigonid with its three cusps partially formed but not completely fused in the centre of the trigonid basin and, posterior to the protoconid, the tip of a cusp interpreted as the hypoconid. Scale bars: A, B, 5 mm; C, 2 mm.

opencc-zeroNov 2022View details →
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FIG. 11 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 11. — Occlusal views of maxillae (stage 2) of juvenile Alcidedorbignya inopinata: A: left maxilla (MHNC 13948); B, right maxilla (MHNC 132949). Scale bar: 5 mm.

opencc-zeroNov 2022View details →
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FIG. 9 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 9. — Slices of the lateral CT-scan of the mandibles (MHNC 8423) of juvenile Alcidedorbignya inopinata (stage 2): A, B, slices (128, 109) of the left mandible (slice 109 is lateral to slice 128); C, slice 360 of the right mandible. The number for each illustrated slice refers to the position within the sequence of 699 images for A and B and 720 images for C (resolution binned images voxel size = 0.0159849 mm). Scale bar: 5 mm.

opencc-zeroNov 2022View details →
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FIG. 7F-K in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 7F-K. — Partial skull and mandibles (MHNC 8423) of juvenile Alcidedorbignya inopinata (stage 2): F, lateral view of left mandible; G, occlusal view of left mandible; H, medial view of left mandible; I, Lateral view of right mandible; J, occlusal view of right mandible; K, medial view of right mandible. Scale bar: 5 mm.

opencc-zeroNov 2022View details →
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FIG. 5 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 5. — Left mandible (MHNC 13859) of juvenile Alcidedorbignya inopinata (stage 1): A, lateral view; B, C, slices no. 93 and 103 of the lateral CT-scan of the specimen; (slice 93 is lateral to slice 103); D, medial view; E, occlusal view; F, slice no. 140 of the lateral CT-scan of the specimen (slice 140 is medial to slice 103). The number for each illustrated slice refers to the position within the sequence of 213 images for A and D (resolution binned images voxel size = 0.02781842 mm). Scale bar: 10 mm.

opencc-zeroNov 2022View details →
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FIG. 2 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 2. — Perinatal partial skull and mandibles (MHNC 8373) of Alcidedorbignya inopinata (stage 1): A, left lateral view of the skull and left mandible; B, right lateral view of the skull and left mandible; C, dorsal view of the skull and left mandible; D, ventral view of the skull and left mandible; E, postcranial elements of the same individual; F, slice no. 194 of the scan of the skull and left mandible; G, Lateral view of the right mandible; H, medial view of the right mandible (lateral view); I, slice no. 107 of the CT-scan of the right mandible; I', enlargement showing the germ of p1 developing in the bottom of the crypt; J, slice no. 122 of the CT-scan of the right mandible (slice 122 is medial to slice 107); J', enlargement showing the germ of p1 developing in the bottom of the crypt; K, occlusal view of the right mandible. The number for each illustrated slice refers to the position within the sequence of 771images (resolution binned images voxel size = 0.01857481 mm) for F and 246 images for I and J. Scale bars: 10 mm.

opencc-zeroNov 2022View details →
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FIG. 7A-E in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 7A-E. — Partial skull and mandibles (MHNC 8423) of juvenile Alcidedorbignya inopinata (stage 2): A, dorsal view of skull; B, ventral view of skull; C, enlargement of part of right palate; D, right lateral view of skull; E, left lateral view of skull. Scale bars: A-D, 5 mm; E, 2 mm.

opencc-zeroNov 2022View details →
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FIG. 4. — A in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 4. — A, Transparent lateral view of left mandible (MHNC 8373) of juvenile Alcidedorbignya inopinata (stage 1) showing left m1 and the tip of a cusp of m2 in crypt (probably the protoconid); B, the same in occlusal view; C, occlusal view of left m1 in crypt and partial cusp tip of m2 (probably the protoconid). Scale bars: A, B, 5 mm; C, 2 mm.

opencc-zeroNov 2022View details →
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FIG. 1 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 1. — Correlation between the dental stage (1 to 8) defined here and the IDAS (Individual Dental Age Stages) of Anders et al. (2011).

opencc-zeroNov 2022View details →
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FIG. 8 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 8. — Slices of CT-scan of skull (MHNC 8423) of juvenile Alcidedorbignya inopinata (stage 2): A-D, slices (70, 121, 297, 529) of the frontal CT-scan (slice 70 is anterior and slice 529 is posterior); E, slice 593 of the coronal CT-scan. The number for each illustrated slice refers to the position within the sequence of 1630 images for A-D and 922 images for E (resolution binned images voxel size = 0.0159858 mm). Scale bar: 5 mm.

opencc-zeroNov 2022View details →
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FIG. 3 in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 3. — Mandibles of the perinatal specimen (MHNC 8373) showing the crypt of m2 in formation with a cusp tip: A, left mandible; B, right mandible. The number for each illustrated slice refers to the position within the sequence of 772 images (resolution binned images voxel size = 0.01857481 mm) for A and 247 images (resolution binned images voxel size = 0.01857481 mm) for B. Scale bar: 2 mm.

opencc-zeroNov 2022View details →
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FIG. 6. — A in Dental ontogeny in the early Paleocene placental mammal Alcidedorbignya inopinata (Pantodonta) from Tiupampa (Bolivia)

FIG. 6. — A, Transparent lateral view of left mandible (MHNC 13859) of juvenile Alcidedorbignya inopinata (stage 1) showing left m1 and the tip of a cusp of m2 in crypt (probably the protoconid); B, the same in occlusal view; C, occlusal view of left m1 in crypt and cusp tip of m2 interpreted here as the protoconid (the cusp has been slightly displaced and rotated clockwise c. 45°); D, occlusal view of the protoconid of m2 in its probable natural position. Scale bars: A, B, 5 mm; C, 2 mm.

opencc-zeroNov 2022View details →
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FIGURE 1 in Generalist diet of Microraptor zhaoianus included mammals

FIGURE 1. Holotype specimen of Microraptor zhaoianus (IVPP V 12330) with mammal foot gut contents. A, entire specimen. Box inset indicates the location of B and C. B, close-up view of mammal foot. C, illustration of visible bones: dark gray elements are Microraptor ribs, yellow bones are the articulated mammalian foot and light gray are unidentified bones. Note the juxtaposition of the foot over the inside of the left ribs and the overlap of the right ribs over the foot, particularly over digits II and III. Abbreviations: ast, astragalus; cal, calcaneum; mtI, metatarsal 1; nav, navicular; lr, left rib; rr, right rib. Scale bar in A equals 100 mm and in B and C equals 5 mm.

opencc-by-4.0Dec 2022View details →
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Figure 34 in Type Specimens of Non-fossil Mammals in the Australian Museum, Sydney

Figure 34. AM M.5650, holotype skull of Hydromys lawnensis Troughton, 1935b. (Photography by Sally Cowan).

opencc-by-4.0Oct 2017View details →
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Literature review of occurrence and transmission dynamics of SARS-CoV2 in mammal animals

<p>A literature review has been conducted, focusing on susceptibility of wild and domestic animal species reported under field and laboratory conditions, considering different diagnostic tests (e.g., virus isolation, RNA and antibody detection), infection dynamic, pathogenesis, immunity and further transmission of the virus. Review protocol and data extraction tables are available.</p> <p>The following review questions were considered:</p> <ul> <li>Which mammal species have been reported positive to SARS CoV 2 in the field (either at RNA, isolated virus, antibodies), and their geographical distribution?</li> </ul> <ul> <li>Which wild and domestic mammal species are susceptible to SARS CoV 2 in laboratory conditions</li> <li><em>Dynamic of infection and pathogenesis</em>: <ul> <li>What are confirmed infection routes for these species?</li> <li>What is the length of the incubation period in these species</li> <li>What are the clinical signs, if any, their severity, duration, etc.</li> <li>Which species are able to shed the virus (even in absence of clinical signs)</li> <li>Do these species develop protective immunity</li> </ul> </li> <li>Which of these species can further transmit the disease to same/other species ?</li> <li>What are the genetic virus variants in each species where it is isolated?</li> <li>In which animals vaccines against SARS CoV 2 have been tested, and what are the results in terms of immunogenicity, protection to challenge, or safety?</li> </ul> <ul> <li>Which diagnostic tests are used in animals to detect SARS CoV <ul> <li>Type of test</li> <li>Test performance (Se, Sp)</li> <li>Sample matrix used</li> </ul> </li> </ul>

opencc-by-4.0Jan 2023View 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