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138 results for “Cervidae”
Figure 10 in A new species of crown-antlered deer Stephanocemas (Artiodactyla, Cervidae) from the middle Miocene of Qaidam Basin, northern Tibetan Plateau, China, and a preliminary evaluation of its phylogeny
Figure 10. Species ranges, phyletic relationship, and zoogeographical positions of the Paradicrocerus–Stephanocemas clade. Most of the species ranges are approximate. Phyletic relationship is based on one of the shortest trees in our cladistic analysis, and some indeterminate taxa not included in the cladogram are inserted here based on our estimates of their relationships. The antlers are scaled to their approximate relative size, and dashed lines are mostly our own reconstructions of missing tines.
Figure 9 in A new species of crown-antlered deer Stephanocemas (Artiodactyla, Cervidae) from the middle Miocene of Qaidam Basin, northern Tibetan Plateau, China, and a preliminary evaluation of its phylogeny
Figure 9. Strict consensus of four shortest trees (tree length = 12) of the Paradicrocerus–Stephanocemas clade found by the branch and bound option of the PAUP program on a ten taxa ¥ nine characters data matrix (Table 1).
Figure 8. IVPP V15726 in A new species of crown-antlered deer Stephanocemas (Artiodactyla, Cervidae) from the middle Miocene of Qaidam Basin, northern Tibetan Plateau, China, and a preliminary evaluation of its phylogeny
Figure 8. IVPP V15726, Stephanocemas sp. from IVPP locality CD0406. A, dorsal, and B, ventral views of antler fragment. Scale is for both views.
Figure 6. IVPP V15724 in A new species of crown-antlered deer Stephanocemas (Artiodactyla, Cervidae) from the middle Miocene of Qaidam Basin, northern Tibetan Plateau, China, and a preliminary evaluation of its phylogeny
Figure 6. IVPP V15724, referred specimen of Stephanocemas palmatus sp. nov. A, dorsal, B, ventral, and C, medial views of posterior palm portion of a juvenile antler.
Figure 7. IVPP V15725 in A new species of crown-antlered deer Stephanocemas (Artiodactyla, Cervidae) from the middle Miocene of Qaidam Basin, northern Tibetan Plateau, China, and a preliminary evaluation of its phylogeny
Figure 7. IVPP V15725, Stephanocemas sp. from IVPP locality CD9818. A, stereophoto of dorsal view, B, lateral view, and C, ventral view of partial antler.
Figure 5. IVPP V15723 in A new species of crown-antlered deer Stephanocemas (Artiodactyla, Cervidae) from the middle Miocene of Qaidam Basin, northern Tibetan Plateau, China, and a preliminary evaluation of its phylogeny
Figure 5. IVPP V15723, referred specimen of Stephanocemas palmatus sp. nov. A, dorsal, and B, ventral views of palm portion of antler.
Figure 4. IVPP V15722 in A new species of crown-antlered deer Stephanocemas (Artiodactyla, Cervidae) from the middle Miocene of Qaidam Basin, northern Tibetan Plateau, China, and a preliminary evaluation of its phylogeny
Figure 4. IVPP V15722, left antler without pedicel, holotype of Stephanocemas palmatus sp. nov. from Qaidam Basin, northern Tibetan Plateau. A, medial, and B, ventral views. Left is posterior and right is anterior.
Figure 3 in A new species of crown-antlered deer Stephanocemas (Artiodactyla, Cervidae) from the middle Miocene of Qaidam Basin, northern Tibetan Plateau, China, and a preliminary evaluation of its phylogeny
Figure 3. Stereophoto of dorsal view of IVPP V15722, left antler without pedicel, holotype of Stephanocemas palmatus sp. nov. from Qaidam Basin, northern Tibetan Plateau. Top is posterior and bottom is anterior.
Figure 2 in A new species of crown-antlered deer Stephanocemas (Artiodactyla, Cervidae) from the middle Miocene of Qaidam Basin, northern Tibetan Plateau, China, and a preliminary evaluation of its phylogeny
Figure 2. Satellite image of the Barun Yawula anticline, with key fossil localities and their relative stratigraphical positions indicated. The east–west trending fold is asymmetrical with the south limb dipping more steeply than the north limb. A prominent resistant bed (a dark–light band combination, indicated by black dashed lines) within the rusty green sandstones layers helps to trace stratigraphical relationships between localities in eastern and western ends of the anticline, although multiple faults (with offsets ranging from 50 to 500 m), particularly those in the eastern end, complicate correlations. White lines are the measured section.
Combining traceological analysis and ZooMS on Early Neolithic bone artefacts from the Cave of Coro Trasito, NE Iberian Peninsula: Cervidae used equally to Caprinae
<p>MALDI-ToF MS and MALDI-tims-Q-ToF MS data (raw data: .txt files, merged spectra: msd files) used for the ZooMS analysis of 20 bone artefacts from the Early Neolithic site of Coro Trasito.</p>
Odocoileus virginianus (Cervidae) - whole organism
Image of Odocoileus virginianus (Cervidae) - whole organism
Odocoileus virginianus (Cervidae) - whole organism
Image of Odocoileus virginianus (Cervidae) - whole organism
Cervus elaphus (Cervidae) - whole organism - unspecified
Image of Cervus elaphus (Cervidae) - whole organism - unspecified
Rangifer tarandus (Cervidae) - whole organism
Image of Rangifer tarandus (Cervidae) - whole organism
Alces alces (Cervidae) - whole organism
Image of Alces alces (Cervidae) - whole organism
Alces alces (Cervidae) - whole organism
Image of Alces alces (Cervidae) - whole organism
Figure 1. A in The Caspian red deer, Cervus elaphus maral (Mammalia: Cervidae): a new host record for Rhipicephalus (Boophilus) annulatus (Acari: Ixodidae) in northern Iran
Figure 1. A combined phylogenetic tree constructed using Bayesian Inference method based on ITS2/16S rRNA sequence data of Rhipicephalus (Boophilus) species in this study with sequences originated from various part of world retrieved from GenBank database. The main R. (B.) annulatus clade separated by a vertical double headed line. The taxa were defined with a name of species, country, GenBank accession number (taxon of the present study is bold). Posterior probability values inserted in the place of nodes. Branch lengths are proportional to the evolutionary changes. Rhipicephalus sanguineus assigned as outgroup taxon.
Figure 1 in Primer Mazama provincia reporte documentado de piebaldismo en gouazoubira (Artiodactyla: Cervidae) en la de Córdoba, Argentina
Figure 1. Relative location of the Espinillo Bravo Private Nature Reserve, Capilla del Monte, Punilla Department, Córdoba, Argentina. Inset at the top left, in grey, the Gran Chaco region and the limits of the Province of Córdoba, in Argentina; in the center, red box, northern sector of the Punilla Department and on the right, in green, relative location of the RNPEB within that sector.
Figuras 2 a 4 in Primer Mazama provincia reporte documentado de piebaldismo en gouazoubira (Artiodactyla: Cervidae) en la de Córdoba, Argentina
Figuras 2 a 4. Ejemplar macho con piebaldismo registrado en la reserva natural privada "Espinillo Bravo", Capilla del Monte, Córdoba. Figuras 2 y 3, capturas en cámara trampa del 25 de noviembre de 2021; figura 4, captura del 1 de enero de 2022.
FIGURE 3 in A new early occurrence of Cervidae in North America from the Miocene-Pliocene Ellensburg Formation in Washington, USA
FIGURE 3. Generalized stratigraphic sequence of Craig's Hill locality, showing approximate positions of dates from Lamb (1997). Abbreviations: DT, dated tephra; F, overbank deposit with fossil.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.