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360 results for “Artiodactyla”
Figure 16. The relationship between log10 in A taxonomic revision of the Tragulus mouse-deer (Artiodactyla)
Figure 16. The relationship between log10 island area and body size in T. javanicus (lower regression line) and T. napu (upper regression line).
Figure 9 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)
Figure 9. Common hippo pes in plantar view.
Figure 3 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)
Figure 3. Muscle maps for the common hippo femur: A, cranial; B, lateral; C, caudal; D, medial.
Figure 6 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)
Figure 6. Muscle maps for the common hippo pes: A, dorsal; B, plantar.
Figure 5 in Hind limb myology of the common hippopotamus, Hippopotamus amphibius (Artiodactyla: Hippopotamidae)
Figure 5. Common hippo leg in cranial view.
Figure 3. Plesiomeryx cadurcensis. A & B, occlusal view. A, left P2 in New data on the Cainotheriidae (Mammalia, Artiodactyla) from the early Oligocene of south-western France
Figure 3. Plesiomeryx cadurcensis. A & B, occlusal view. A, left P2/-M3/ (ABL1 1452). B, right C-M/3 (MGT 104). P. huerzeleri. C & D, occlusal view. C, right P2/-M3/ (MGT 3209). D, left P/2-M/3 (MGT 3187). Scale bar = 1 mm.
Figure 6 in The phylogeny and taxonomy of Hippopotamidae (Mammalia: Artiodactyla): a review based on morphology and cladistic analysis
Figure 6. Strict consensus tree of the three most parsimonious trees obtained from the cladistic analysis (length = 81, CI = 0.6420, RI = 0.7752). In italic-bold, the bootstrap results are given as an indication of clade robustness.
Figure 3. Cranial character states. A in The phylogeny and taxonomy of Hippopotamidae (Mammalia: Artiodactyla): a review based on morphology and cladistic analysis
Figure 3. Cranial character states. A, lateral view of a Hexaprotodon liberiensis skull. B, Lateral view of a Hippopotamus amphibius skull. C, lateral view of a Hex. mingoz skull. D, three dorsal views of the braincase (from bottom to top: in Hex. harvardi, in Hex. mingoz, in Hip. amphibius). E, four schematic anterior views of the left orbit (from right to left: in Hex. protamphibius, in Hex. harvardi, in Hip. gorgops, in Hex. sivalensis).
FIGURE 6 in A new species of Euprox (Cervidae, Artiodactyla) from the upper Miocene of the Linxia Basin, Gansu Province, China, with interpretation of its paleoenvironment
FIGURE 6. Dentition of Euprox grandis sp. nov. (V 20080.1, holotype). Scale bar equals 2 cm.
FIGURE 2. AMNH 21322 in Selection of a lectotype for Brachycrus laticeps mooki Schultz and Falkenbach (Mammalia, Artiodactyla, Merycoidodontidae)
FIGURE 2. AMNH 21322, paralectotype jaw of Brachycrus laticeps mooki, lateral view.
Supplementary material 3 from: Morales-Donoso JA, Vacari GQ, Bernegossi AM, Sandoval EDP, Peres PHF, Galindo DJ, de Thoisy B, Vozdova M, Kubickova S, Barbanti Duarte JM (2023) Revalidation of Passalites Gloger, 1841 for the Amazon brown brocket deer P. nemorivagus (Cuvier, 1817) (Mammalia, Artiodactyla, Cervidae). ZooKeys 1167: 241-264. https://doi.org/10.3897/zookeys.1167.100577
Cranial measurements of the Passalites nemorivagus specimen (T359)
Supplementary material 1 from: Morales-Donoso JA, Vacari GQ, Bernegossi AM, Sandoval EDP, Peres PHF, Galindo DJ, de Thoisy B, Vozdova M, Kubickova S, Barbanti Duarte JM (2023) Revalidation of Passalites Gloger, 1841 for the Amazon brown brocket deer P. nemorivagus (Cuvier, 1817) (Mammalia, Artiodactyla, Cervidae). ZooKeys 1167: 241-264. https://doi.org/10.3897/zookeys.1167.100577
List of BAC clones used in Passalites nemorivagus (Cuvier, 1817) topotype
Supplementary material 5 from: Morales-Donoso JA, Vacari GQ, Bernegossi AM, Sandoval EDP, Peres PHF, Galindo DJ, de Thoisy B, Vozdova M, Kubickova S, Barbanti Duarte JM (2023) Revalidation of Passalites Gloger, 1841 for the Amazon brown brocket deer P. nemorivagus (Cuvier, 1817) (Mammalia, Artiodactyla, Cervidae). ZooKeys 1167: 241-264. https://doi.org/10.3897/zookeys.1167.100577
Male Passalites nemorivagus topotype (Cuvier, 1817) collected in French Guiana (T359)
Supplementary material 2 from: Morales-Donoso JA, Vacari GQ, Bernegossi AM, Sandoval EDP, Peres PHF, Galindo DJ, de Thoisy B, Vozdova M, Kubickova S, Barbanti Duarte JM (2023) Revalidation of Passalites Gloger, 1841 for the Amazon brown brocket deer P. nemorivagus (Cuvier, 1817) (Mammalia, Artiodactyla, Cervidae). ZooKeys 1167: 241-264. https://doi.org/10.3897/zookeys.1167.100577
Mitochondrial markers utilized in this study
Fig. 2. A. Artiodactyla indeterminate 1 in Middle Eocene ungulate mammals from Myanmar: A review with description of new specimens
Fig. 2. A. Artiodactyla indeterminate 1, NMMP−KU 1556, a left maxillary fragment with?M2, occlusal view: A1, stereo pair; A2, schematic drawing of?M2. B, C. Artiodactyla indeterminate 2. B. NMMP−KU 1765, a right M2; B1, stereo pair; B2, schematic drawing. C. NMMP−KU 1742, a right M3; C1, stereo pair; C2, schematic drawing.
Figure 1 in A taxonomic revision of the Tragulus mouse-deer (Artiodactyla)
Figure 1. Measurement details of Tragulus skulls and mandibles (letters refer to text).
Figure 9 in A taxonomic revision of the Tragulus mouse-deer (Artiodactyla)
Figure 9. Map of the Terutau and Langkawi island groups west of the Malay and Thai peninsula.
Fig. 1 in A phylogeographic framework for the conservation of Saharan and Arabian Dorcas gazelles (Artiodactyla: Bovidae)
Fig. 1 Potential distribution (gray shaded) of Dorcas gazelles (G. dorcas) according to IUCN antelope survey reports (East 1988a, b; Mallon and Kingswood 2001) including sampling locations of wild specimens of Dorcas (♦) and Saudi gazelles () used in this study.
Figure 5 in Evolution and functional morphology of the frontal sinuses in Bovidae (Mammalia: Artiodactyla), and implications for the evolution of cranial pneumaticity
Figure 5. Digital reconstructions from computed tomography (CT) scan data of the skulls of Tetracerus quadricornis (A–B; YPM 7396) and Boselaphus tragocamelus (C–D; AMNH 22842, image reversed), illustrating frontal sinuses and related anatomy. Skulls are shown in lateral (A, C) and dorsal (B, D) views. The boxed areas indicate the region of the skull that has been rendered partially transparent in order to visualize the anatomy of the frontal sinuses. Scale bars: 5 cm.
Figure 6 in Biogeography and conservation of desert warthog Phacochoerus aethiopicus and common warthog Phacochoerus africanus (Artiodactyla: Suidae) in the Horn of Africa
Figure 6: Geographic distribution of desert warthog Phacochoerus aethiopicus and common warthog Phacochoerus africanus in the Horn of Africa relative to mean annual rainfall.
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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.