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4,028 results for “Mammalia”
Figure 3 in Distribution and conservation of Acomys cilicicus (Mammalia: Rodentia) in Turkey
Figure 3. IUCN distribution map of Acomys cilicicus (yellow dashed area). Blue dashed areas (1 to 7 on map) show destroyed/changed habitats between 2004 and 2017.
Figure 2 in Distribution and conservation of Acomys cilicicus (Mammalia: Rodentia) in Turkey
Figure 2. The distribution and relative abundance of Acomys cilicicus and Apodemus mystacinus samples in study area.
Figure 5 in Distribution and conservation of Acomys cilicicus (Mammalia: Rodentia) in Turkey
Figure 5. Habitat change in the distribution area of Acomys cilicicus. Blue and green dashed areas (4–7 on map) show destroyed/changed habitats between 2004 and 2017.
Figure 1 in Distribution and conservation of Acomys cilicicus (Mammalia: Rodentia) in Turkey
Figure 1. Sampling localities. The numbers of localities are the same as in Table 1. Blue circles indicate trapping localities where no Acomys cilicicus samples were collected and red circles indicate the localities where Acomys cilicicus samples were collected. Green dashed areas show the estimated distribution areas of two isolated populations (A and B on map) of Acomys in the study area, and yellow dashed area (C on map) shows the IUCN distribution map of Acomys cilicicus.
Figure 4 in Distribution and conservation of Acomys cilicicus (Mammalia: Rodentia) in Turkey
Figure 4. Habitat change in the distribution area of Acomys cilicicus. Blue and green dashed areas (1, 2, 3, and 7 on map) show destroyed/ changed habitats between 2004 and 2017.
Figure 2 in Rediscovered after half a century: a new record of the grey dwarf hamster, Cricetulus migratorius (Mammalia: Cricetidae), in Romania
Figure 2. Mandible of Cricetulus migratorius in comparison to other hamster species present in Romania (from top to bottom: A. Cricetulus migratorius, Botoşani, 10 Mar 2007; B. Mesocricetus newtoni, Măcin, 21 Oct 2013; C. Cricetus cricetus, Jigodin Bai, 02 May 2010, all from owl pellets).
Figure 2. A in On tooth anomalies and the loss of Canis lupus (Mammalia: Carnivora) in Turkey*
Figure 2. A- Root fusion of the premolars (Skull No: 17), Balveols of the root fusion (Skull No: 17), C- root fusion (Skull No: 29), D- premolar tended to be 3-rooted (2 roots could not be seperated) (Skull No: 29), E- alveol of the root fusion (Skull No: 29), and F- root fusion anomaly in the lower jaw (Skull No: 29).
Figure 4. A in On tooth anomalies and the loss of Canis lupus (Mammalia: Carnivora) in Turkey*
Figure 4. A- Premolar loss (Skull No: 6), B- premolar loss (Skull No: 10), C- premolar loss (Skull No: 16), D- premolar loss (Skull No: 20), E- premolar loss (Skull No: 20), and F- molar loss (Skull No: 27).
Figure 7. A in On tooth anomalies and the loss of Canis lupus (Mammalia: Carnivora) in Turkey*
Figure 7. A- Carnassial remnant (Skull No: 3), B- premolar remnant (Skull No: 10), C- premolar remnant (Skull No: 19), and D- premolar remnant (Skull No: 27).
Figure 6. A in On tooth anomalies and the loss of Canis lupus (Mammalia: Carnivora) in Turkey*
Figure 6. A- Incisor fracture (Skull No: 9), B- incisor fracture (Skull No: 10), C- canine fracture (Skull No:12), D- premolar fracture (Skull No: 14), E- incisor fracture (Skull No: 16), Fmultiple fractures (Skull No: 18), G- multiple fractures (Skull No: 18), and H- incisor fracture (Skull No: 29).
Figure 3. A in On tooth anomalies and the loss of Canis lupus (Mammalia: Carnivora) in Turkey*
Figure 3. A- Premolar additional root bilaterally (Skull No: 11), B- additional root anomaly of the lower premolars overlapped the upper third premolars (Skull No: 11), and C- 3-rooted tooth (Skull No: 11).
Figure 3. Hyaena hyaena records from Turkey recorded before 2004 in Status and distribution of the Striped Hyaena, Hyaena hyaena, in Turkey: an updated assessment (Carnivora: Mammalia)
Figure 3. Hyaena hyaena records from Turkey recorded before 2004 (blue circles) and after 2004 (red circles), and the estimated current distribution areas in Turkey (blue filled areas).
Figure 6 in Discrimination of the sister hedgehog species Erinaceus concolor and E. roumanicus (Erinaceomorpha: Mammalia): a geometric morphometric approach
Figure 6. Multivariate regression analysis of shape variables vs centroid size of the dorsal cranium (closed circle: E. concolor, n = 39; open circle: E. roumanicus, n = 10).
Figure 4 in Discrimination of the sister hedgehog species Erinaceus concolor and E. roumanicus (Erinaceomorpha: Mammalia): a geometric morphometric approach
Figure 4. PCA scatter plot graphics showing the variations in the mandible (closed circle: E. concolor, n = 54; open circle: E. roumanicus, n = 14) with warped outline drawings describing shape changes along the PC1 axis for each species.
Figure 5 in Discrimination of the sister hedgehog species Erinaceus concolor and E. roumanicus (Erinaceomorpha: Mammalia): a geometric morphometric approach
Figure 5. Histograms of the crossvalidation results. a. Dorsal surface of crania, b. Right side of mandible. Red bars: E. concolor; blue bars: E. roumanicus.
Fig. 197 in Species Taxonomy, Phylogeny, and Biogeography of the Brontotheriidae (Mammalia: Perissodactyla)
Fig. 197. Summary tree of the analysis of unordered characters, depicting a strict reduced consensus where only the unstable fragmentary wildcards have been removed. Those branches intersected by dotted lines show the variable phylogenetic positions of the wildcard taxa among the most parsimonious trees. Node numbers correspond to table 15.
Fig. 194 in Species Taxonomy, Phylogeny, and Biogeography of the Brontotheriidae (Mammalia: Perissodactyla)
Fig. 194. Strict component consensus of heuristic search performed with ordered multistate characters.
Fig. 196 in Species Taxonomy, Phylogeny, and Biogeography of the Brontotheriidae (Mammalia: Perissodactyla)
Fig. 196. Strict component consensus of heuristic search performed with unordered multistate characters.
Fig. 192 in Species Taxonomy, Phylogeny, and Biogeography of the Brontotheriidae (Mammalia: Perissodactyla)
Fig. 192. Selected views of Camp Margetts ''mandible taxon B'' (AMNH 26400). (A) Right view, (B) right p2–p4, (C) dorsal view, (D) lingual view of incisors and canines, (E) labial view of incisors and canines.
Fig. 195 in Species Taxonomy, Phylogeny, and Biogeography of the Brontotheriidae (Mammalia: Perissodactyla)
Fig. 195. Summary tree of the analysis of ordered characters, depicting the primary strict reduced consensus and the possible positions of pruned wildcards as represented by lettered dotted lines. Those branches intersected by dotted lines show the variable phylogenetic positions of the wildcard taxa among the most parsimonious trees. Node numbers correspond to table 14.
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.