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4,028 results for “Mammalia”
Fig. 8 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 8. Profile views of symphyses of Pliopapio alemui, Parapapio ado from Laetoli, and P. ado from Kanapoi. Top: MB 1938–1 (cast, reversed), ARAVP1/563. Middle: NMTLAET 74/322b (cast), ARAVP1/73. Bottom: KNMKP286 (reversed).
Fig. 9 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 9. Holotype of Kuseracolobus aramisi ARAVP1/87. Occlusal view. Opposite page: lateral views, left side above, right (reversed) below.
Fig. 6 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 6. Box and whisker plot of the ratio: length inion–nasion/length nasion–prosthion. Labeling is the same as in Fig. 3.
Fig. 4 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 4. Box and whisker plot of the ratio: length nasion–rhinion/length nasion–prosthion. Labeling is the same as in fig. 3.
Fig. 3. The x in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 3. The xaxis represents different papionin genera or subgenera as follows: Ccb, Cercocebus; Din, Papio (Dinopithecus); Lop, Lophocebus; Mac, Macaca; Man, Mandrillus; Omo, Theropithecus (Omopithecus); Pap, Papio (Papio); Pdo, Paradolichopithecus; Ppa, Parapapio; Pli, Pliopapio; Smo, Theropithecus oswaldi; The, T. gelada. Sample size for each (sub)genus is given in parentheses below each label. The yaxis plots values of centroid size computed from 45 cranial landmarks. Centroid sizes were computed using Morpheus (Slice, 1998). The central bar represents the median, or 50th percentile. The bottom and top of each box represent the value at the 25th and 75th percentiles, respectively, and the whiskers extend to the farthest observation that is less than 1.5 times the length of the box. Any individuals outside of the whisker range are marked separately.
Fig. 7 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 7. Mandibles of Pliopapio alemui. Top row left to right: ARAVP1/73, ARAVP1/133, ARA VP1/1006 (two pieces). 2nd row: ARAVP1/563, ARAVP1/740, ARAVP1/548, ARAVP1/740,
Fig. 11 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 11. Mandibles of Kuseracolobus aramisi. Top row: ARAVP1/7, ARAVP1/70, ARAVP1/ 564, ARAVP1/1774, 2nd row: ARAVP6/796, ARAVP1/5, ARAVP1/290. 3rd row: ARAVP6/ 796, ARAVP1/5, ARAVP1/290. Bottom row: ARAVP6/796, ARAVP1/1774 (reversed).
Fig. 2 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 2. Maxillae of Pliopapio alemui. Counterclockwise from top left: ARAVP1/1007 lateral view, ARAVP1/1723 (reversed), ARAVP6/437 lateral view (reversed), ARAVP6/437 frontal view, ARA VP1/1007 occlusal view, ARAVP1/1723 occlusal view.
Fig. 1 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 1. Holotype of Pliopapio alemui ARAVP6/933. All views are in Frankfurt orientation. Lateral view of the left side. Opposite page: dorsal view (above); lateral view of the right side (below).
FIG. 2. — Left m1 in The last amphicyonid (Mammalia, Carnivora) in Africa
FIG. 2. — Left m1 KNM-FT 3379 of Agnotherium sp. from Fort Ternan, Kenya: A, lingual view; B, buccal view; C, occlusal view. Scale bar: 10 mm.
FIG. 1 in The last amphicyonid (Mammalia, Carnivora) in Africa
FIG. 1. — Molars of Bonisicyon illacabo n. gen, n. sp.: A-C, HMD-1-P11 (holotype), right m1, Hamadi Das, Gona, Ethiopia; D-F, ESC- 2-P224, left m2, Escarpment, Gona, Ethiopia; G, ABD-1-P35, damaged right M2, Asbole Dora, Gona, Ethiopia; A, D, lingual views; B, E, buccal views; C, F, G, occlusal views. Scale bar: 10 mm.
Fig. 10 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 10. Maxillae of Kuseracolobus aramisi. Top row: KUSVP2/70, ARAVP6/1686. Middle row: ARAVP1/87, ARAVP1/6, ARAVP1/1686. Bottom row: KUSVP2/70, ARAVP1/1686 (reversed).
Fig. 5 in New Early Pliocene Cercopithecidae (Mammalia: Primates) from Aramis, Middle Awash Valley, Ethiopia
Fig. 5. Box and whisker plot of the ratio: width of muzzle at M1/M2 contact/biporionic width. Labeling is the same as in fig. 3.
FIG. 5 in First report of Brachypotherium Roger, 1904 (Rhinocerotidae, Mammalia) in the Middle Miocene of Greece
FIG. 5. — Plot comparing the length versus breadth of the m2 of Brachypotherium Roger, 1904 from various localities (dimensions in mm); the dental measurements are taken from Colbert (1935), Heissig (1972, 1976), Hooijer & Patterson (1972), Fortelius (1990) and Cerdeño (1993).
FIG. 3 in First report of Brachypotherium Roger, 1904 (Rhinocerotidae, Mammalia) in the Middle Miocene of Greece
FIG. 3. — Brachypotherium brachypus (Lartet, 1851), Chryssavgi, CHR, Macedonia, Greece; Late Astaracian, MN 7+8 (Middle Mio- cene); A-C, left M1, 2, CHR-501 in lingual (A), labial (B) and occlusal (C) views; D-F, right M3, CHR-500, in mesial (D), distal (E) and occlusal (F) views. Scale bar: 2 cm.
FIG. 2. — A in First report of Brachypotherium Roger, 1904 (Rhinocerotidae, Mammalia) in the Middle Miocene of Greece
FIG. 2. — A, Locality Chryssavgi (CHR), indicating the position where small (a) and large (b) mammals were found; B, C, undetermined tibia found in the position b, in situ (B) and after preparation (C); D, undetermined vertebra found in the position b. Scale bar: 10 cm.
FIG. 4 in Alicornops (Mammalia, Rhinocerotidae) dans le Miocène supérieur des Collines Bugti (Balouchistan, Pakistan): implications phylogénétiques
FIG. 4. — Arbre de consensus strict des six arbres également parcimonieux (1330 pas; IC = 0,2639; IR = 0,4745) obtenus avec Hsearch de PAUP 4.0b10 (« stepwise addition », 100 réplications; Swofford 1998). Les nombres encerclés (de 1 à 22) sont les numéros des noeuds. Les nombres situés au-dessous des branches correspondent aux valeurs de bootstrap (500 réplications; commande Bootstrap de PAUP 4.0b10; Swofford 1998). Les espèces dont l'attribution générique est discutée dans le texte apparaissent en caractères gras. Abréviations: Ea, Elasmotheriina; Ma, Menoceratina.
FIG. 3 in Alicornops (Mammalia, Rhinocerotidae) dans le Miocène supérieur des Collines Bugti (Balouchistan, Pakistan): implications phylogénétiques
FIG. 3. — Alicornops complanatum (Heissig, 1972) n. comb., rangée dentaire inférieure gauche, avec p2-m3 (MNHN-MHNT Pak 1606), Sartaaf, Miocène supérieur des Collines Bugti (Balouchistan, Pakistan); A, vue occlusale; B, vue labiale. Échelle: 2 cm.
FIG. 1. — A in First report of Brachypotherium Roger, 1904 (Rhinocerotidae, Mammalia) in the Middle Miocene of Greece
FIG. 1. — A, Geographic map of the area, indicating Mygdonia Basin and the fossiliferous site Chryssavgi (CHR), Macedonia, Greece; the map is taken from www.shaded-relief.com; B, geological map the Neogene-Quaternary lithostratigraphic units of the Mygdonia Basin (from Koufos et al. [1995]); C, synoptic stratigraphic coluMN of the Chryssavgi Formation (from Koufos et al. [1995]).
FIG. 2 in Alicornops (Mammalia, Rhinocerotidae) dans le Miocène supérieur des Collines Bugti (Balouchistan, Pakistan): implications phylogénétiques
FIG. 2. — Coupe synthétique du Néogène du Synclinal de Dera Bugti (Collines Bugti, Balouchistan, Pakistan). Le gisement de Sartaaf est indiqué par une flèche. Complété d'après Welcomme et al. (1997, 1999, 2001).
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.