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4,028 results for “Mammalia”
Figure 11 in Craniodental anatomy of late Oligocene archaeohyracids (Notoungulata, Mammalia) from Bolivia and Argentina and new phylogenetic hypotheses
Figure 11. Archaeohyrax suniensis sp. nov., upper dentition. A, left P3-M3, SAL 189. B, right P3-M3 (reversed), YPM-PU 22056. C, rostrum with right and left P2-M3, YPM-PU 23701. Mesial to the left. Scale bar = 1 cm.
Figure 9 in Further evidence of the African antiquity of hyaenodontid ('Creodonta', Mammalia) evolution
Figure 9. Comparison of the occlusal sketch of the lower molars of: A, Prototomus minimus (reconstruction; M3 in reversed view); B, Boualitomus marocanensis (reversed view); and C, D, Lahimia selloumi gen. et sp. nov. [C: MNHN PM57; D: OCP DEK/GE 443 (reversed view)].
Figure 8 in Further evidence of the African antiquity of hyaenodontid ('Creodonta', Mammalia) evolution
Figure 8. Lahimia selloumi gen. et sp. nov. View of the anterior part of the dentition of OCP DEK/GE 442. Alveoli with broken roots of left P2–M1. Occlusal stereo-view. Occlusal sketch of the anterior part of the dentition of OCP DEK/GE 442.
Figure 7 in Further evidence of the African antiquity of hyaenodontid ('Creodonta', Mammalia) evolution
Figure 7. Lahimia selloumi gen. et sp. nov. Detailed scanning electron micrograph views of the molars. A, B, MNHN PM56, M2–M3 in occlusal stereo-view (A), and labial view (B). C, D, holotype OCP DEK/GE 443, M1–M3 in occlusal (C) and labial views (D).
Figure 3 in Further evidence of the African antiquity of hyaenodontid ('Creodonta', Mammalia) evolution
Figure 3. Stratigraphical column of the phosphates series of the quarrying area of Sidi Chennane, Ouleb Abdoun Basin, Morocco (OCP documents).
Figure 4 in Further evidence of the African antiquity of hyaenodontid ('Creodonta', Mammalia) evolution
Figure 4. Lithological section of the Thanetian in the Sidi Chennane quarry with localization of the fossiliferous level of Lahimia selloumi gen. et sp. nov.
Figure 5 in Further evidence of the African antiquity of hyaenodontid ('Creodonta', Mammalia) evolution
Figure 5. Lahimia selloumi gen. et sp. nov. A–C, holotype OCP DEK/GE 443, right lower jaw bearing M1–M3, roots of P4 and alveoli of C1 and P2–P3. A, Occlusal stereo-view; B, labial view; C, lingual view. D–F, OCP DEK/GE 442, left lower jaw bearing M2–M3 and alveoli with broken root of P2–P4 and M1. D, Occlusal stereo-view; E, labial view; F, lingual view.
Figure 1 in Further evidence of the African antiquity of hyaenodontid ('Creodonta', Mammalia) evolution
Figure 1. Geographical and geological framework of the Ouled Abdoun Basin, Morocco (adapted from Arambourg, 1952: fig. 3). Sidi Hajjaj, Mrizig, Al Brouj, Oulad Fares, El Halassa, Meraa El Arech, Grand Daoui, and Sidi Chennane are the main mining areas.
Figure 2 in Further evidence of the African antiquity of hyaenodontid ('Creodonta', Mammalia) evolution
Figure 2. View of the quarry where specimen OCP DEK/GE 442 was found, with stratigraphical annotations.
Figure 6 in Dental microwear in the orthodentine of the Xenarthra (Mammalia) and its use in reconstructing the palaeodiet of extinct taxa: the case study of Nothrotheriops shastensis (Xenarthra, Tardigrada, Nothrotheriidae)
Figure 6. Hierarchical cluster dendrogram (same method as Fig. 3) including Nothrotheriops shastensis among all extant xenarthran taxa. Note that N. shastensis clusters with extant folivores (Bradypus).
Figure 3 in Dental microwear in the orthodentine of the Xenarthra (Mammalia) and its use in reconstructing the palaeodiet of extinct taxa: the case study of Nothrotheriops shastensis (Xenarthra, Tardigrada, Nothrotheriidae)
Figure 3. Hierarchical cluster dendrogram of microwear variables for all extant xenarthran species in this study. Euclidean distance measure is used. Note that folivores (Bradypus) cluster together (shaded area).
Figure 4 in Dental microwear in the orthodentine of the Xenarthra (Mammalia) and its use in reconstructing the palaeodiet of extinct taxa: the case study of Nothrotheriops shastensis (Xenarthra, Tardigrada, Nothrotheriidae)
Figure 4. Plot of mean scratch and pit values for individual Cabassous centralis specimens (N = 11) in relation to extant xenarthran dietary ecomorphospaces from Fig. 2. The four individuals with highest scratch values are labelled by specimen number for reference within text.
Figure 4 in The differentiation of bunodont Listriodontinae (Mammalia, Suidae) of Africa: new data from Kalodirr and Moruorot, Kenya
Figure 4. Basicranium and nuchal face of Listriodon jeanneli and comparisons with other listriodonts. A–C, drawings of the ventral view of the auditory region, of A, Lis. jeanneli (KNM WK-17127); B, Listriodon splendens (MNHN Sa 10141); C, Libycochoerus massai (MNHN LBE 563). E–F, dorsal view of the skull KNM WK-17127 of Lis. jeanneli; comparison with D, dorsal view of the skull MNHN LBE 563 of Lib. massai. Abbreviations: ab, auditory bulla; flm, foramen lacerum medium (median lacerate foramen); flp, foramen lacerum posterior (posterior lacerate foramen = foramen jugulare); fm, foramen magnum; fo, foramen ovale; hf, hypoglossal foramen; gs, glenoid surface; mf, mandibular fossa; nc, nuchal crest; nt, nuchal tubercle; oam, opening of the auditory meatus (opening of the external acoustic meatus); oc, occipital condyle; pgp, postglenoid process; pop, paroccipital process; ptp, post-tympanic process; sf, styloid foramen; smf, stylomastoid foramen; smp, suprameatic process; tn, tympanic neck. Scale bars: A–C = 50 mm; D–F = 50 mm.
Figure 9 in The differentiation of bunodont Listriodontinae (Mammalia, Suidae) of Africa: new data from Kalodirr and Moruorot, Kenya
Figure 9. Phylogenetic relationships of the Listriodontinae: strict consensus of the 27 parsimonious trees (length = 153; consistency index = 0.55; retention index = 0.77). Above the nodes are the number of unambiguous synapomorphies followed by the total number of synapomorphies (ACCTRAN optimization). Bremer support (Bremer, 1994) superior to 1 is in parentheses after the letter corresponding to the node. A indicates the African taxa. Abbreviations: Na, Namachoerini; Ku, Kubanochoerini; Li, Listriodontini.
Figure 3 in The differentiation of bunodont Listriodontinae (Mammalia, Suidae) of Africa: new data from Kalodirr and Moruorot, Kenya
Figure 3. Cranium of Listriodon jeanneli KNM WK-17127 in A, dorsal view; B, ventral view; C, detail of the left cheek teeth row in occlusal view; D, lateral view; E, right auditory bulla associated to the cranium in a, posterior; b, medial; c, anterior; d, lateral; e, anterior view. Scale bars: A, B, D = 50 mm; C, E = 20 mm.
Figure 6 in The differentiation of bunodont Listriodontinae (Mammalia, Suidae) of Africa: new data from Kalodirr and Moruorot, Kenya
Figure 6. Craniodental remains of Listriodon jeanneli from Moruorot (KNM MO 18127): A, fragment of mandible with right p3–m3 in view a, occlusal; b, lingual; c, ventral; d, buccal; B, left upper male canine in view a, anterior; b, ventral; c, posterior; d, dorsal; C fragment of maxilla with right P4–M2 with associated right and left M3. Scale bar = 50 mm.
Figure 2 in The differentiation of bunodont Listriodontinae (Mammalia, Suidae) of Africa: new data from Kalodirr and Moruorot, Kenya
Figure 2. Nomenclature of: A, upper molar and B, lower molar of bunolophodont listriodonts. Grooves are figured in full lines, crests in dotted lines. Abbreviations: Equivalent for Hünermann's (1986) coordinates corresponding to the lower molars are given in parentheses; a, ectometafossa/id (1); b, premetafossa/id (2); c, endometafossa/id (3); d, postmetafossa/id (3i); E, entoconid; e, ectoprotoconid (4); eHc, ectohypocrista; f, preprotofossa/id (5); g, endoprotofossa/id (6); H, hypocone/id; Hpe, prehypoconule/id; h, postprotofossa/id (6a); i, pre-entofossa/id (7); j, endoentofossa/id (8); k, postentofossa/id (9); l, ectohypofossa/id (10); M, metacone/ id; m, prehypofossa/id (10v); n, entohypofossa/id (11); o, posthypofossa/id (12); Pa, paracone; Pe, pentaconid; pHc, posthypocrista; Po, protocone/id; Pp, preprotoconule/id.
Figure 7 in The differentiation of bunodont Listriodontinae (Mammalia, Suidae) of Africa: new data from Kalodirr and Moruorot, Kenya
Figure 7. Comparison of mandibles and lower cheek teeth of Listriodon jeanneli from Moruorot (KNM MO 18127, B, D, F) and Kubanochoerus anchidens Rusinga (KNM RU 2785, A, C, E). A–B, occlusal views; C–D, detail of the jugal teeth; E–F, right male lower canine section, postfacet orientated downwards. A and B are reconstructions of the original specimens. Abbreviations: ab, anterior basin; lb, lingual basin; m, metaconid; pf, postfossid; pmc, postmetacristid; Scale bars: A–B = 50 mm, C–F = 20 mm.
Figure 5 in The differentiation of bunodont Listriodontinae (Mammalia, Suidae) of Africa: new data from Kalodirr and Moruorot, Kenya
Figure 5. Comparison of the lateral profile of the skull KNM WK-17127 from Kalodirr and the left profile of the holotype of Listriodon jeanneli from Moruorot (MNHN 1933-9) with a reconstruction of the living appearance of Lis. jeanneli. The corresponding features and placemarks are the following: 1, thickness of the zygomatic arch; 2, distal edge of the palatal part of the maxilla; 3, basis of the pterygoids; 4, position of the fossa for the oblique ventral muscle (fossa musculus obliquus ventralis); 5, level of the anterior origin of the sagittal crest. Scale bar = 50 mm.
Figure 5 in Gliridae (Rodentia, Mammalia) with a simple dental pattern: a new genus and new species from the European Early and Middle Miocene
Figure 5. Simplomys robustus (De Bruijn, 1967) from San Roque 4A (collection MNCN). A, P4 SR4A-895. B, M1 SR4A-754. C, M2 SR4A-778. D, M3 SR4A-787. E, p4 SR4A-921. F, m1 SR4A-801. G, m2 SR4A-804. H, m3 SR4A-918. Right side specimens underlined.
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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.