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4,028 results for “Mammalia”
FIG. 11 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 11. — Pencil drawings of the skull and mandible of Alcidedorbignya inopinata (MHNC 8372) emphasizing the suture lines. Part of the right premaxilla, left premaxilla and left upper incisors have been reconstructed: A, dorsal view; B, ventral view; C, skull in lateral view; D, mandible in lateral view. Scale bar: 1 cm.
FIG. 9 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 9. — Lower incisors of Alcidedorbignya inopinata: A, MHNC 8399, occusal view; B, MHNC 8399, lingual view; C, MHNC 8399 labial view; D, MHNC 8372 occusal view; E, MHNC 8372, lingual view; F, MHNC 8372, labial view. Scale bar: 5 mm.
FIG. 13 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 13. — Partial skull of Alcidedorbignya inopinata (MHNC 8399): A, dorsal view; B, ventral view; C, right lateral view; D, right lateral view of the mandible. Scale bar: 1 cm.
FIG. 10 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 10 (continuation). — Stereophotographs of the skull of Alcidedorbignya inopinata (MHNC 8372): D, right lateral view; E, left lateral view. Scale bar: 1 cm.
FIG. 5 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 5. — Pathological osteolysis and odontolysis on MHNC 8399. Abbreviations: odlr, odontolysis of root; osl, ostelolysis. Scale bar: 1 cm.
FIG. 10 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 10. — Stereophotographs of the skull of Alcidedorbignya inopinata (MHNC 8372): A, dorsal view; B, ventral view; C, occipital view. Scale bar: 1 cm.
FIG. 1 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 1. — Holotype of Alcidedorbignya inopinata: left partial maxilla with P4-M3, YPFB Pal 6121. Scale bar: 1 cm.
FIG. 8 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 8. — Upper incisors of Alcidedorbignya inopinata: A, MHNC 8399 (left incisors), occusal view; B, MHNC 8399 (left incisors), lingual view; C, MHNC 8399 (left incisors), labial view; D, MHNC 8372 (right incisors), occusal view; E, MHNC 8372 (right incisors), lingual view; F, MHNC 8372 (right incisors), labial view. Scale bar: 5 mm.
FIG. 7 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 7. — Intraspecific variation in the elevation of the snout in Alcidedorbignya inopinata, which is considered here as related to sexual dimorphism: A, scatter plot showing the distribution of maxilla height from the anterolabial angle of M1 to the anterior end of the jugal on the anterior edge of the orbit; B, histogram showing the bimodal distribution of maxilla height; C, scatter plot showing the distribution of the width and length of the upper canine according to inferred sex of the individuals; D, scatter plot showing the distribution of the height and width of the upper canine according to inferred sex of the individuals; E, scatter plot showing the distribution of the proportions of the M2 of Alcidedorbignya inopinata as compared to inferred sex of the individuals. Colors: blue filling (males); pink or red filling (females). Abbreviations: LM2, mesiodistal length of M2; WM2, labiolingual width of M2.
FIG. 3 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 3. — Section of the skull of MHNC 8372 (Alcidedorbignya inopinata) when discovered in the "quarry" of Tiupampa in July 1999. Scale bar: 3 cm.
FIG. 4 in Alcidedorbignya inopinata, a basal pantodont (Placentalia, Mammalia) from the early Palaeocene of Bolivia: anatomy, phylogeny and palaeobiology
FIG. 4. — Juvenile skulls of Alcidedorbignya inopinata: A, MHNC 8373; B, MHNC 8423; C, MHNC 8416. Scale bar: 1 cm.
Figure 2 in Natural history of the marsupial Thylamys macrurus (Mammalia, Didelphidae) in fragments of savannah in southwestern Brazil
Figure 2. Abundance of males versus females, and young versus adults of the marsupial Thylamys macrurus in fragments of savannah of southwestern Brazil, during dry (April to September) and wet (October to March) seasons, 2003 and 2004.
Figure 1 in Natural history of the marsupial Thylamys macrurus (Mammalia, Didelphidae) in fragments of savannah in southwestern Brazil
Figure 1. Map showing the actual distribution of the marsupial Thylamys macrurus in Paraguay and Brazil. Point 1 refers to the range expansion of this species north- and eastward in the Brazilian Cerrado. Black (new records) and white (previous records) circles are of T. macrurus; white square is southernmost record of T. velutinus. in the western Cerrado. Localities: Brazil, Mato Grosso do Sul: 1, Inocência; 2, Dois Irmãos do Buriti; 3, 4, Aquidauana. Previous records: 5, 6, Cáceres et al. (forthcoming), Carmignotto and Monfort (2006) (Bonito); 7, Vieira (1955) (Campo Grande); 8, Carmignotto and Monfort (2006) (Bodoquena); 9, Palma and Vieira (2006) (Bonito). Paraguay: 10, Palma et al. (2002) (Concepción); 11, 12, Torres (2002) (Asunción and Sapucay). Biomes: Ce, Cerrado (savannah); Ch, humid chaco; Fe, semideciduous forest; Pa, Pantanal.
Fig. 1 in Conservation Status Of Small Asian Mongoose Herpestes Javanicus (É. Geoffroy Saint-Hilaire, 1818) (Mammalia: Carnivora: Herpestidae) In Lao Pdr
Fig. 1. Lao PDR, with locations of post-1990 Small Asian Mongoose records, survey areas, and sites mentioned in the text. Filled stars: confirmed records; open stars: provisional records. Increasing altitude is represented by increasing darkness: areas of level terrain are therefore areas of uniform shading. Dotted outlines indicate national protected areas (all surveyed to at least some extent). Survey areas outside NPA system: A, Phongsali town and surrounds; B, Upper Lao Mekong and Bokeo plain; C, Xiangkhouang plateau, Phou (= Mount) Gnouan and Phou San; D, Muang (= District) Sangthong, Vientiane municipality; E, Nam Theun Extension proposed NPA (= former Nam Chat–Nam Phan provincial protected area); F, Pakxan wetlands; G, Nakai plateau; H, Muang Vilabouli, Savannakhet province; I, western Savannakhet lowlands and Mekong; J, central Savannakhet lowlands; K, Phou Ahyon; L, Dakchung plateau; M, Salavan town and surrounds; N, Phou Kathong proposed NPA; O, Xe (= River) Namnoy catchment and Bolaven Southwest proposed NPA; P, Muang Pathoumphon, Champasak province; Q, Nam Ghong provincial protected area; R, Dong Khanthung proposed NPA. In addition various sites around Vientiane received at least moderate coverage.
Fig. 4. A in Reproduction And Infant Pelage Colouration Of The Banded Leaf Monkey (Mammalia: Primates: Cercopithecidae) In Singapore
Fig. 4. A, Infant banded leaf monkey from Singapore (red arrow) separated from carrying adult (pink arrow); B, Banded leaf monkey infant being carried by an adult.
Fig. 1 in Reproduction And Infant Pelage Colouration Of The Banded Leaf Monkey (Mammalia: Primates: Cercopithecidae) In Singapore
Fig. 1. Distribution of Presbytis femoralis. Presbytis f. robinsoni is found in north Malay Peninsula, P. f. percura in east-central Sumatra, and P. f. femoralis in Johor and Singapore.
Fig. 1 in Population Assessment Methods For The Sunda Colugo Galeopterus Variegatus (Mammalia: Dermoptera) In Tropical Forests And Their Viability In Singapore
Fig. 1. The detection probability function of the Fourier series model after removing the extreme 5% of observations.
Fig. 2 in Population Assessment Methods For The Sunda Colugo Galeopterus Variegatus (Mammalia: Dermoptera) In Tropical Forests And Their Viability In Singapore
Fig. 2. Map showing the separation between Bukit Timah Nature Reserve and Bukit Batok Nature Park (location with new sightings of Sunda Colugo).
Fig. 13 in Pacific Flying Foxes (Mammalia: Chiroptera): Two New Species of Pteropus from Samoa, Probably Extinct
Fig. 13. Skin of USNM 8597/37860, lectotype of Pteropus samoensis Peale, 1848. A, dorsal view. B, ventral view.
Fig. 7 in Pacific Flying Foxes (Mammalia: Chiroptera): Two New Species of Pteropus from Samoa, Probably Extinct
Fig. 7. Skulls of smaller-toothed, medium-sized Pteropus species of the southwest Pacific region. A, Partially cleaned skull of Pteropus fundatus, endemic to Vanuatu (AM M26897, adult male, Mota); B, reconstructed skull of Pteropus allenorum, endemic Samoa (ANSP 1234, unsexed subadult, Upolu); C, skull of Pteropus mahaganus, endemic to the Solomon Archipelago (AM M6280, adult male, Bougainville). Scale bar 5 10 mm.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.