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4,028 results for “Mammalia”
Nominal list of bats of the Congo, Rwanda and Burundi (CRB) region in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)
<p><i>Nominal list of bats of the Congo, Rwanda and Burundi (CRB) region</i></p><table><thead><tr><th><b>Hayman</b> <i>et al.</i> (1966)</th><th>Present study</th></tr></thead><tbody><tr><th>MEGACHIROPTERA Pteropidae</th><td>PTEROPODIFORMI Pteropodidae Eidolinae</td></tr><tr><th><i>Eidolon helvum</i> (Kerr, 1792)</th><td><i>Eidolon helvum</i> (Kerr, 1792)</td></tr><tr><th colspan="2"><b>Rousettinae</b> <b>Epomophorini</b></th></tr><tr><th colspan="2"><i>Epomophorus anselli</i> Bergmans & Van Strien, 2004</th></tr><tr><th><i>Epomophorus crypturus</i> Peters, 1852 <i>Epomophorus gambianus</i> (Ogilby, 1835)</th><td><i>Epomophorus crypturus</i> Peters, 1852</td></tr><tr><th><i>Epomophorus anurus</i> Heuglin, 1864 <i>Epomophorus labiatus minor</i> (Dobson, 1880)</th><td><i>Epomophorus labiatus</i> (Temminck, 1837)</td></tr><tr><th colspan="2"><i>Epomophorus minimus</i> Claessen & De Vree, 1991</th></tr><tr><th><i>Epomophorus labiatus minor</i> (Dobson, 1880)</th><td><i>Epomophorus minor</i> Dobson, 1880</td></tr><tr><th><i>Epomophorus wahlbergi haldemani</i> (Halowell, 1846)</th><td><i>Epomophorus wahlbergi</i> (Sundevall, 1846)</td></tr><tr><th><i>Epomops dobsoni</i> (Bocage, 1889)</th><td><i>Epomops dobsonii</i> (Bocage, 1889)</td></tr><tr><th><i>Epomops franqueti franqueti</i> (Tomes, 1860)</th><td><i>Epomops franqueti</i> (Tomes, 1860)</td></tr><tr><th><i>Hypsignathus monstrosus</i> H. Allen, 1861</th><td><i>Hypsignathus monstrosus</i> H. Allen, 1862</td></tr><tr><th><i>Micropteropus intermedius</i> Hayman, 1963</th><td><i>Micropteropus intermedius</i> Hayman, 1963</td></tr><tr><th><i>Micropteropus pusillus</i> (Peters, 1867)</th><td><i>Micropteropus pusillus</i> (Peters, 1868)</td></tr><tr><th colspan="2"><i>Nanonycteris veldkampii</i> (Jentink, 1888)</th></tr><tr><th colspan="2"><b>Myonycterini</b></th></tr><tr><th><i>Megaloglossus woermanni</i> Pagenstecher, 1885 <i>Megaloglossus woermanni prigoginei</i> Hayman, 1966</th><td><i>Megaloglossus woermanni</i> Pagenstecher, 1885</td></tr><tr><th><i>Rousettus (Lissonycteris) angolensis</i> (Bocage, 1898)</th><td><i>Myonycteris angolensis</i> (Bocage, 1898)</td></tr><tr><th></th><td><i>Myonycteris relicta</i> Bergmans, 1980</td></tr><tr><th><i>Myonycteris wroughtoni</i> Andersen, 1908</th><td><i>Myonycteris torquata</i> (Dobson, 1878)</td></tr><tr><th></th><td><b>Plerotini</b></td></tr><tr><th><i>Plerotes anchietae</i> (Seabra, 1900)</th><td><i>Plerotes anchietae</i> (Seabra, 1900)</td></tr><tr><th></th><td><b>Rousettini</b></td></tr><tr><th><i>Rousettus aegyptiacus leachi</i> (Smith, 1823)</th><td><i>Rousettus aegyptiacus</i> (E. Geoffroy St.-Hilaire, 1810)</td></tr><tr><th></th><td><b>Scotonycterini</b></td></tr><tr><th><i>Casinycteris argynnis</i> Thomas, 1910</th><td><i>Casinycteris argynnis</i> Thomas, 1910</td></tr><tr><th><i>Scotonycteris zenkeri</i> Matschie, 1894</th><td><i>Scotonycteris bergmansi</i> Hassanin <i>et al.</i>, 2015</td></tr><tr><th></th><td><b>Stenonycterini</b></td></tr><tr><th><i>Rousettus (Stenonycteris) lanosus</i> Thomas, 1906</th><td><i>Stenonycteris lanosus</i> Thomas, 1906</td></tr><tr><th><b>MICROCHIROPTERA Hipposideridae</b></th><td><b>Hipposideridae</b></td></tr><tr><th></th><td><i>Asellia tridens</i> (E. Geoffroy St.-Hilaire, 1813)</td></tr><tr><th><i>Hipposideros cyclops</i> (Temminck, 1853)</th><td><i>Doryrhina cyclops</i> (Temminck, 1853)</td></tr></tbody></table>
FIG. 4. — CUWM 53 in New Amphicyonids (Mammalia, Carnivora) from Moghra, Early Miocene, Egypt
FIG. 4. — CUWM 53, Moghra, Early Miocene, Amphicyon giganteus (Schinz, 1825): A, lingual view; B, occlusal view; C, labial view. Scale bar: 100 mm.
FIG. 2. — CUWM 55 in New Amphicyonids (Mammalia, Carnivora) from Moghra, Early Miocene, Egypt
FIG. 2. — CUWM 55, Moghra, Early Miocene. Holotype of Cynelos anubisi n. sp.: A, lingual view; B, occlusal view; C, labial view. Scale bar: 100 mm.
FIG. 1 in Phylogenetic relationships of Nyctereutes Temminck, 1838 (Canidae, Carnivora, Mammalia) from early Pliocene of Çalta, Turkey
FIG. 1. — Nyctereutes donnezani from Çalta, central Turkey, early Pliocene. Skull MNHN.F.ACA292, probably belonging to a female individual, in dorsal (A), occipital (B), ventral (C) and right lateral (D) views. Scale bar: 50 mm.
FIG. 3 in Phylogenetic relationships of Nyctereutes Temminck, 1838 (Canidae, Carnivora, Mammalia) from early Pliocene of Çalta, Turkey
FIG. 3. — Nyctereutes donnezani from Çalta, central Turkey, early Pliocene: A-C, right mandible MNHN.F.ACA549 in occlusal (A), labial (B) and lingual (C), views; D-F, right mandible fragment MNHN.F.ACA294 in occlusal (D), labial (E) and lingual (F) views; G-I, right mandible fragment MNHN.F.ACA295 in occlusal (G), labial (H) and lingual (I) views; J, K, left mandible fragment FSL-212806 in lingual (J) and labial (K) views. Scale bar: 50 mm.
FIG. 2 in Phylogenetic relationships of Nyctereutes Temminck, 1838 (Canidae, Carnivora, Mammalia) from early Pliocene of Çalta, Turkey
FIG. 2. — Nyctereutes donnezani from Çalta, central Turkey, early Pliocene. Skull MNHN.F.ACA291, probably belonging to a male individual, in dorsal (A), occipital (B), ventral (C) and right lateral (D) views. Scale bar: 50 mm.
FIG. 10 in The Palaeotheriidae (Equoidea, Perissodactyla, Mammalia) from the Eocene fauna of Aumelas (Hérault department, France)
FIG. 10. — Pachynolophus sp. from Aumelas: A, AUM 199, right maxillary fragment with P3/-M3/; A1, labial view; A2, occlusal view; B, AUM 1586, right maxillary fragment with (alv. P1/)-P2/-(M2/); B1, labial view; B2, occlusal view; C, AUM 213, left M3/ (reversed), occlusal view; D, AUM 1596, left fragment with P3/-P4/ (reversed), occlusal view; E, AUM 332, right DP/4, occlusal view; F, AUM 1600, right mandible with M/2-M/3 (pars); F1, occlusal view; F2, labial view; G, AUM 323, symphysis with both /C and sockets of incisors, dorsal view; H, AUM 1599 left mandible fragment with (P/3)-(M/3) (reversed); H1, occlusal view; H2, labial view; I, AUM 1620, left mandible with DP/2-M/2-(M/3), occlusal view; J, AUM 1617, mandible with right /C-(alv. DP/1)-DP/2-M/3, sockets of incisors and left /C); J1, occlusal view; J2, labial view. Scale bars: 2 cm.
FIG. 7 in The Palaeotheriidae (Equoidea, Perissodactyla, Mammalia) from the Eocene fauna of Aumelas (Hérault department, France)
FIG. 7. — Propalaeotherium cf. gaudryi (Lemoine, 1878) from Aumelas: A, AUM 1584, left maxillary with (P1/ roots)-P2/-M3/, occlusal view (reversed); B, AUM 1583, maxillary with left P2/-M3/ and right P1/-M2/, occlusal view (reversed); C, AUM 168, right maxillary with (alv. C/)-(alv. P1/)-P2/-M3/; C1, labial view, C2, occlusal view; D, AUM 192, right P4/, occlusal view; E, AUM 209, right maxillary with M1/-M3/, occlusal view; F, AUM 206, right mandible with (alv. P/1-P/2)-P/3-M/3; F1, occlusal view; F2, labial view; G, AUM 1603, right mandible with (P/3)-P/4-M/3; G1, occlusal view; G2, labial view; H, AUM 1601, right mandible with (P/4)- M/1-M/3, occlusal view. Scale bar: 2 cm.
FIG. 5 in The Palaeotheriidae (Equoidea, Perissodactyla, Mammalia) from the Eocene fauna of Aumelas (Hérault department, France)
FIG. 5. — Propalaeotherium sudrei Remy, Krasovec & Marandat, 2016:A, AUM 205, right mandible with M/3; A1, occlusal view; A2, labial view;B, AUM 179, left mandible with P/4-M/3 (reversed);B1, occlusal view; B2, labial view;C, AUM 166, right mandible with P/3-M/1-(M/2); C1, occlusal view; C2, labial view; D, AUM 182, left mandibular fragment with (D/3)-D/4-M/1, (reversed), occlusal view; E, AUM 208, left mandible with (alv.P/2-P/3)-P/4-M/1-(M/2)-M/3 (reversed), occlusal view. Scale bars: 2 cm. (Note that the mandible AUM 206 [Remy et al. 2016: fig.3E-F] is now recorded as Propalaeotherium cf. gaudryi (Lemoine, 1878)).
FIG. 12 in The Palaeotheriidae (Equoidea, Perissodactyla, Mammalia) from the Eocene fauna of Aumelas (Hérault department, France)
FIG. 12. — Strict consensus of the two trees of the cladistic analysis. "Hyracotheres" are included in the Palaeotheriidae according to Remy, 2017. The taxa recognized at Aumelas are mentioned in red.
FIG. 11 in The Palaeotheriidae (Equoidea, Perissodactyla, Mammalia) from the Eocene fauna of Aumelas (Hérault department, France)
FIG. 11. — Lophiotherium sp. from Aumelas: A, AUM 1633, right M3/; A1, occlusal view; A2, labial view; B, AUM 1547, left M2 (reversed), occlusal view; C, AUM 1626, left M2/ (reversed), occlusal view; D, AUM 234, right M1/, occlusal view (cast); E, AUM 232, left M1/ (reversed), occlusal view (cast); F, AUM 172, left M1/ (reversed), occlusal view; G, AUM 1550, right M/2, occlusal view (cast); H, AUM 1622, left M/1 (reversed), occlusal view; I, AUM 1624, right M/1, occlusal view; J, AUM 1551, right P/3, occlusal view (cast); K, AUM 1548, left mandible with (P/4)-M/1-M/3 (reversed); K1, occlusal view; K2, labial view; L, AUM 170, left mandible fragment with (alv. DP/1)-DP/2-DP/4 (reversed); L1, occlusal view; L2, labial view. Scale bars: 2 cm.
FIG. 50 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 50. — Lateral view of the right pelvic bones of some extant mysticetes. A, Balaenoptera musculus; B, Balaenoptera musculus; C, Megaptera novaeangliae; D, E, Balaena mysticetus. The iliac, pubic and ischial portions are, respectively, in blue, yellow and green. Modified from Struthers (1893).
FIG. 49 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 49. — Lateral view of innominate of some extinct cetaceans. A, Georgiacetus vogtlensis (GSM 350); B, Basilosaurus isis (CGM 42176, cast); C, Basilosaurus cetoides (USNM 12261); D, Chrysocetus healyorum (SCSM 87-195, cast, right innominate, reversed); E, Mystacodon selenensis (MUSM 1917). Not to scale.
FIG. 48 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 48. — Mystacodon selenensis (MUSM 1917, holotype). Left innominate: A, lateral view; B, dorsal view; C, medial view; D, ventral view. Scale bar: 5 cm.
FIG. 39 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 39. — Ribs transverse sections of Mystacodon, basilosaurids, and chaeomysticetes. A, Mystacodon selenensis (MUSM 1917, holotype): section of an anterior-median (right?) rib of the thoracic cage in the median region of the diaphysis; B, Dorudon atrox (UM 101222): section of a left R4 at mid-diaphysis (reversed); C, Basilosaurus isis (WH 074): section of a left R4 at mid-diaphysis. B and C are reproduced from Houssaye et al. (2015). D, Piscobalaena nana (MNHN.F. SAS1618). E, Balaenoptera acutorostrata (IRSNB uncatalogued). Abbreviations: ant, anterior; med, medial. Scale bar: 1 cm.
FIG. 42 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 42. — Mystacodon selenensis (MUSM 1917, holotype). Right humerus: A, lateral view; B, medial view; C, anterior view; D, posterior view. Scale bar: 5 cm.
FIG. 6 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 6. — Lateral view of the skull of Mystacodon selenensis (MUSM 1917, holotype). Oblique lines and grey-shaded regions indicate respectively broken and reconstructed parts. Scale bar: 20 cm.
FIG. 1 in Mystacodon selenensis, the earliest known toothed mysticete (Cetacea, Mammalia) from the late Eocene of Peru: anatomy, phylogeny, and feeding adaptations
FIG. 1. — Views of the extraction of the postcranial skeleton of Mystacodon selenensis (MUSM 1917 holotype) at Playa Media Luna (Ica Department, Peru).
FIG. 6 in Hungry for fruit? - A case study on the ecology of middle Miocene Moschidae (Mammalia, Ruminantia)
FIG. 6. — Bivariate plot with raw number of scratches versus raw number of pits in Micromeryx flourensianus Lartet, 1851 from Sansan () and Steinheim am Albuch (), in M.? eiselei Aiglstorfer, Costeur, Mennecart & Heizmann, 2017 (), and in Moschus moschiferus Linnaeus, 1758 () plotted in reference to extant leaf dominated ungulate browsers (B), and extant grazers (G) at 35 times magnification (extant comparative data from Semprebon 2002 and Solounias & Semprebon 2002). Gaussian confidence ellipses (p = 0.95) on the centroid are indicated for the extant leaf browsers and grazers (convex hulls) adjusted by sample size.
FIG. 2 in Hungry for fruit? - A case study on the ecology of middle Miocene Moschidae (Mammalia, Ruminantia)
FIG. 2. — Geographic position of the middle Miocene localities Sansan (France) and Steinheim am Albuch (Germany); palinspastic map for the middle Miocene in Central and Western Europe modified after Neubauer et al. (2015).
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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.