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4,059 results for “mammal”
Fig. 6 in A new large mammal from the Ypresian of Morocco: Evidence of surprising diversity of early proboscideans
Fig. 6. Daouitherium rebouli gen. et sp. nov. MNHN PM3, right dentary with m1–3 and p3 in occlusal view.
Fig. 2 in A new large mammal from the Ypresian of Morocco: Evidence of surprising diversity of early proboscideans
Fig. 2. Daouitherium rebouli gen. et sp. nov. Holotype, CPSGM MA4, left dentary with m1–3, p2–4, and anterior alveoli in labial stereo−view (A) and lingual stereo−view (B).
Fig. 4 in A new large mammal from the Ypresian of Morocco: Evidence of surprising diversity of early proboscideans
Fig. 4. Daouitherium rebouli gen. et sp. nov. Holotype, CPSGM MA4. Detail of the anterior part showing the p2 and anterior alveoli (arrows) in sub−occlusal view.
Fig. 3 in A new large mammal from the Ypresian of Morocco: Evidence of surprising diversity of early proboscideans
Fig. 3. Daouitherium rebouli gen. et sp. nov. Holotype, CPSGM MA4. Detailed occlusal stereo−view of p2–4 (A), m1–2 (B), and m3 (C).
Fig. 1 in A new large mammal from the Ypresian of Morocco: Evidence of surprising diversity of early proboscideans
Fig. 1. Daouitherium rebouli gen. et sp. nov. Holotype, CPSGM MA4, left dentary with m1–3, p2–4, and anterior alveoli in occlusal stereo−view.
Fig.3. A–C in New earliest Tiffanian (late Paleocene) mammals from Cochrane 2, southwestern Alberta, Canada
Fig.3. A–C. Pararyctes rutherfordi sp.nov., Cochrane 2 locality, Alberta. A.Holotype, incomplete right maxilla with P4, M2–3, UALVP 45094 in occlusal view (A1, A2). B.Left M2, UALVP 25180 in occlusal view. C.Left m1 or m2, UALVP 45095 in labial (C 1), lingual (C2), and occlusal (C3) views. D–I. Bessoecetor septentrionalis comb.nov., Cochrane 2 locality, Alberta. D.Right P4, UALVP 25119 in occlusal view. E.Left M1, UALVP 28423 in occlusal view. F.Left M2, UALVP 28412 in occlusal view. G.Right p4, UALVP 28438 in labial (G 1), lingual (G2), and occlusal (G3) views. H. Left m2, UALVP 28414 in labial (H1), lingual (H2), and occlusal (H3) views. I.Holotype, left m3, UALVP 126 in labial (I 1), lingual (I2), and occlusal (I3) views.Scale bars 1 mm.
Fig.1 in Early Cretaceous "symmetrodont" mammal Gobiotheriodon from Mongolia and the classification of "Symmetrodonta"
Fig.1. Gobiotheriodon infinitus (Trofimov, 1980).PIN 3101/80, holotype, right dentary with m2–4 in lingual (A), labial (B), and occlusal (C) views. Höövör (Khoboor), Mongolia; Early Cretaceous, Aptian or Albian. Scale bar 1 mm.
Fig.1. A–C in New earliest Tiffanian (late Paleocene) mammals from Cochrane 2, southwestern Alberta, Canada
Fig.1. A–C. Ptilodus gnomus sp.nov., Cochrane 2 locality, Alberta. A.Holotype, right P4, UALVP 45145 in labial (A 1), lingual (A2), and occlusal (A3) views. B.Left p4, UALVP 45148 in labial (B 1), lingual (B2), and anterior (B3) views. C.Incomplete left dentary having i1, p3–4, UALVP 18670 in labial (C1) and lingual (C2) views. D. Baiotomeusrusselli sp.nov., Cochrane 2 locality, Alberta.Holotype, left P4, UALVP 18787 in labial (D 1), lingual (D2), and occlusal (D3) views. E–H. Thryptacodonorthogonius, comb.nov., Cochrane 2 locality, Alberta. E.Left M1, UALVP 45099 in occlusal view. F.Holotype, left M2, UALVP 124 in occlusal view. G.Left M3, UALVP 24993 in occlusal view. H.Right m1, UALVP 42872 in labial (H 1), lingual (H2), and occlusal (H3) views. Scale bars 1 mm.
Fig.2. A in Early Cretaceous "symmetrodont" mammal Gobiotheriodon from Mongolia and the classification of "Symmetrodonta"
Fig.2. A.Cf. Gobiconodon sp., PIN 3101/81, right maxillary fragment in occlusal view, with M3?, and alveoli for M2? and M4–5? (A1); enlarged M3? of the same in occlusal view (A2); the same in anterior view (A3). B. Gobiotheriodon infinitus (Trofimov, 1980), PIN 3101/80, holotype, right dentary fragment with m2−m4 in occlusal view (B1); the same in lingual and slightly posterior view (B2).All SEM micrographs, A 1, A2 and B1, stereopairs.All from Early Cretaceous (Aptian or Albian) at Höövör (Khoboor) in Mongolia. Scale bars 1 mm.
Fig. 4. Goods coverage index for each sample using the OTUs. Retained 330,000 in Bacterial community of ticks (Acari: Ixodidae) and mammals from Arauca, Colombian Orinoquia
Fig. 4. Goods coverage index for each sample using the OTUs. Retained 330,000 (49.90%) features in 15 (93.75%) samples at the specified sampling depth (22,000).
Fig. 3 in Bacterial community of ticks (Acari: Ixodidae) and mammals from Arauca, Colombian Orinoquia
Fig. 3. Operational taxonomic units (OTUs) shared at the genus and species level for mammals and ticks. Percentage values are found in the Venn diagrams. (A) Samples of Desmodus rotundus. (B) Samples of Didelphis marsupialis. (C) Samples of Marmosa robinsoni. (D) Samples of Hydrochoerus. hydrochaeris and Amblyomma mixtum. (E) Samples of Odocoileus virginianus cariacou and Rhipicephalus microplus. (F) Samples of Amblyomma mixtum and Riphicephalus microplus.
Fig. 1 in Bacterial community of ticks (Acari: Ixodidae) and mammals from Arauca, Colombian Orinoquia
Fig. 1. Study area. (A) American Continent, (B) Colombia, (C) Department of Arauca, Colombia. Sampled localities in the municipalities of Arauca. (1) Vereda El Socorro, Finca Los Trompillos. (2) Vereda El Socorro, Finca Palmira. (3) Vereda Las Plumas, El Ca˜no. (4) Vereda Las Plumas, Los Iguanitos.
Fig. 2 in Bacterial community of ticks (Acari: Ixodidae) and mammals from Arauca, Colombian Orinoquia
Fig. 2. Relative frequency of OTUs. The bars represent the bacterial communities and the representative families are indicated. (A) OTUs in blood and liver of mammals and ticks (16 samples); bacterial taxa were grouped up to the genus level (6 levels). (B) Relative frequency of OTUs in ticks (3 samples: MH13; MH16 and MH18). Bacterial taxa were grouped at the species level (7 levels). Complete relative frequencies in supplementary material 2.
Fig. 2 in Trypanosoma cruzi in domestic and wild mammals in the northeast region of Colombia
Fig. 2. Study area and detection of T. cruzi in domestic and wild mammals. Discrete typing units (DTUs): TcI (T cruzi I genotype), TcII (T cruzi II genotype), UK (unknown genotype).
Fig. 1 in Trypanosoma cruzi in domestic and wild mammals in the northeast region of Colombia
Fig. 1. Environmental characteristics of Villa Lucia village. a) Palms predominate in the vegetation; b) Crops and annexes adjacent to the house are present in the peridomicile.
Fig. 1 in Dentition and relationships of the Jurassic mammal Shuotherium
Fig. 1. Comparison of the dentaries and dentitions in Shuotherium and the australosphenidans Bishops and Ausktribosphenos, in lingual view. A. Shuotherium dongi, left dentary (IVPP V6448, holotype). B. Bishops whitmorei, left dentary (NMV P210075, holotype). C. Ausktribosphenos nyktos, right dentary, reversed (NMV P2080901, holotype). Modified after: A, Chow and Rich (1982); B, Rich, Vickers−Rich et al. (1999); C, Rich, Flannery et al. (2001).
Fig. 2 in An extended range of the multituberculate Kryptobaatar and distribution of mammals in the Upper Cretaceous of the Gobi Desert
Fig. 2. Comparison of teeth in Kryptobaatar dashzevegi. A. PM 120/108, Hermiin Tsav I, Gobi Desert, Mongolia; upper incisors (A1), right P1−P3 (A2), left P2, P3 (A3), left M1, M2 (A4). B. Right M2, ZPALMgM−I/52, Djadokhta Formation, Bayan Zag. C. Right M1 and M2, ZPALMgM−I/8, Djadokhta Formation, Bayan Zag. All SEM micrographs in occlusal view. M1 in A4 appears narrower than it originally was because of break of the middle cusps in outer row and outer margin.
North American Mammals
Smithsonian__s North American Mammals contains over 400 mammal species and thousands of photographs, watercolors, scientific illustrations, range maps, weights and measures, descriptive text, references, links, and the conservation status of each species,. Searches and navigation are available for every knowledge level, and an interactive map lets users map multiple species ranges simultaneously, and explore the relationships between species and ecoregions.<p></p>
FIGURE 1 in Four mammal fossil calibrations: balancing competing palaeontological and molecular considerations
FIGURE 1. The phylogenetic placement of reference fossils (full red arrows) relative to modern groups for 1, Macropodoidea; 2, Monotremata; 3 Caviomorpha-Phiomorpha; and 4, Chiroptera. These clades are shaded grey and black circles identify the calibrated nodes. Relationships among modern taxa are taken from the DNA analysis of Meredith et al. (2011), although each is supported by a broad consensus of molecular phylogenetic studies. Dotted red arrows (1, 3, 4) indicate possible alternative placements for the reference fossil that if they can be confirmed, would offer (tighter) calibration of a slightly younger node.
FIGURE 12 in Mammals from the earliest Uintan (middle Eocene) Turtle Bluff Member, Bridger Formation, southwestern Wyoming, USA, Part 1: Primates and Rodentia
FIGURE 12. Elymys? emryi new species from TBM, macrophotographs with corresponding line drawings of specimens: 1 and 9, LM1, SDSNH 110463; 2 and 10, RM1, SDSNH 110465; 3 and 11, RM1 (holotype), SDSNH 110466; 4 and 12, RM2, SDSNH 110444; 5 and 13, LM3, SDSNH 110448; 6 and 14, Rm1, SDSNH 110456; 7 and 15, Lm2, SDSNH 110457; 8 and 16, Lm3, SDSNH 110461. All occlusal views. Scale bar equals 1 mm.
ScienceDex guides
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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.