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112 results for “Rhinoceros”
FIGURE 1 in Geoparnus rhinoceros sp. nov., a new edaphic dryopid with unusual sexual dimorphism (Coleoptera: Dryopidae)
FIGURE 1. Habitus of Geoparnus rhinoceros sp. nov., male.
Locations of Oryctes rhinoceros (L.)
<p>Locations of Oryctes rhinoceros (L.).</p>
FIGURE 9. A in Pleistocene rhinoceros from Bogovina Cave: The first report of Stephanorhinus hundsheimensis Toula, 1902 (Mammalia, Rhinocerotidae) from Serbia
FIGURE 9. A reconstruction of Stephanorhinus hundsheimensis (Toula, 1902) with its calf in its hypothetical palaeoenvironment (after Gianfranco Mensi, 2015; this unpublished illustration is used here through the courtesy of the artist, all rights reserved).
FIGURE 8 in Pleistocene rhinoceros from Bogovina Cave: The first report of Stephanorhinus hundsheimensis Toula, 1902 (Mammalia, Rhinocerotidae) from Serbia
FIGURE 8. Chronological and biochronological ranges of the four Stephanorhinus species known from the territory of Europe. Marine isotope stages according to Lisiecki and Raymo (2005).
FIGURE 2 in Pleistocene rhinoceros from Bogovina Cave: The first report of Stephanorhinus hundsheimensis Toula, 1902 (Mammalia, Rhinocerotidae) from Serbia
FIGURE 2. Dental terminology of rhinoceros cheek teeth (figure adapted from Fukuchi et al., 2009). A) Upper dentition: 1, protocone; 2, paracone; 3, metacone; 4, hypocone; 5, protoloph; 6, ectoloph; 7, metaloph; 8, parastyle; 9, metastyle; 10, paracone rib; 11, metacone rib; 12, crochet; 13, antecrochet; 14, crista; 15, lingual valley; 16, medisinus; 17, anterior fossetta; 18, postfossetta; 19, paracone fold; 20, protocone constriction; 21, mesial cingulum. B) Lower dentition: 22, paraconid; 23, protoconid; 24, metaconid; 25, hypoconid; 26, entoconid; 27, paralophid; 28, metalophid; 29, hypolophid; 30, mesial valley; 31, distal valley; 32, vestibular syncline.
FIGURE 1 in Pleistocene rhinoceros from Bogovina Cave: The first report of Stephanorhinus hundsheimensis Toula, 1902 (Mammalia, Rhinocerotidae) from Serbia
FIGURE 1. Geographical and geological location of Bogovina Cave. A) Terrain in the vicinity of Bogovina Cave with simplified geological map (after Veselinović et al., 1964). Elevation of the terrain is exaggerated several times. B) Position of Bogovina Cave in the central part of the Balkan Peninsula.
Figure 1 in Low Variation in Nuclear and Mitochondrial DNA Inhibits Resolution of Invasion Pathways across the Pacific for the Coconut Rhinoceros Beetle (Scarabeidae: Oryctes rhinoceros)
Figure 1. COI haplotype network. TCS Network based on 1480 base pairs of the COI gene region from a total of 127 individuals (8 to 39 from any given location) representing 127 total haplotypes. Hash marks represent a single base pair change. Populations are highly monotypic; Palau is the exception with two haplotypes.
Figure 2. CAD haplotype network. TCS Network based off 814 in Low Variation in Nuclear and Mitochondrial DNA Inhibits Resolution of Invasion Pathways across the Pacific for the Coconut Rhinoceros Beetle (Scarabeidae: Oryctes rhinoceros)
Figure 2. CAD haplotype network. TCS Network based off 814 base pairs of the CAD gene region from a total of 117 samples (8 to 39 from any given location) representing 234 total haplotypes. Hash marks represent a single base pair change. A PHASE algorithm was used to generate haplotypes from ambiguities present in the sequence data of a multi-copy nuclear gene, resulting in twice as many haplotypes as samples.
Figure 6 from: Perger R, Grossi P (2013) Revision of the rhinoceros beetle genus Oryctophileurus Kolbe with description of a new species, the male of O. varicosus Prell, and notes on biogeography (Scarabaeoidea, Dynastinae, Phileurini). ZooKeys 346: 1-16. https://doi.org/10.3897/zookeys.346.6114
Figure 6 - Dorsal and lateral habitus of Oryctophileurusarmicollis Prell, 1911, A and B holotype male, body length 18.5 mm C and D female, body length 18 mm, scale bar 5 mm.
Figure 7 from: Perger R, Grossi P (2013) Revision of the rhinoceros beetle genus Oryctophileurus Kolbe with description of a new species, the male of O. varicosus Prell, and notes on biogeography (Scarabaeoidea, Dynastinae, Phileurini). ZooKeys 346: 1-16. https://doi.org/10.3897/zookeys.346.6114
Figure 7 - Pronotum of males with body length 20 mm, dorsal, higher areas light, inner teeth of transversal pronotal carina indicated by white arrow: A Oryctophileurus armicollis Prell B Oryctophileurus guerrai; ocellate punctures at posteriolateral pronotal surface, character state does not differ between sexes C Oryctophileurus armicollis D Oryctophileurus guerrai.
Figure 3 from: Perger R, Grossi P (2013) Revision of the rhinoceros beetle genus Oryctophileurus Kolbe with description of a new species, the male of O. varicosus Prell, and notes on biogeography (Scarabaeoidea, Dynastinae, Phileurini). ZooKeys 346: 1-16. https://doi.org/10.3897/zookeys.346.6114
Figure 3 - Dorsal and lateral habitus of Oryctophileurus nasicornis (Burmeister, 1847) A and B male C and D female, scale bar 5 mm.
Figure 5 from: Perger R, Grossi P (2013) Revision of the rhinoceros beetle genus Oryctophileurus Kolbe with description of a new species, the male of O. varicosus Prell, and notes on biogeography (Scarabaeoidea, Dynastinae, Phileurini). ZooKeys 346: 1-16. https://doi.org/10.3897/zookeys.346.6114
Figure 5 - Dorsal and lateral view of aedeagus. A and B Oryctophileurusarmicollis Prell, 1911 C and D Oryctophileurus varicosus Prell, 1934, scale bar 1 mm.
Figure 2 from: Perger R, Grossi P (2013) Revision of the rhinoceros beetle genus Oryctophileurus Kolbe with description of a new species, the male of O. varicosus Prell, and notes on biogeography (Scarabaeoidea, Dynastinae, Phileurini). ZooKeys 346: 1-16. https://doi.org/10.3897/zookeys.346.6114
Figure 2 - Dorsal and lateralhabitus of males. A and B Amblyodus taurus Westwood, 1878 C and D Amblyodus castroi Grossi & Grossi, 2012, scale bar 5 mm.
Figure 1 from: Perger R, Grossi P (2013) Revision of the rhinoceros beetle genus Oryctophileurus Kolbe with description of a new species, the male of O. varicosus Prell, and notes on biogeography (Scarabaeoidea, Dynastinae, Phileurini). ZooKeys 346: 1-16. https://doi.org/10.3897/zookeys.346.6114
Figure 1 - A map of distributional locations of South American Amblyodus and Oryctophileurus species (partly adapted from Grossi and Grossi (2011), only most southern distribution of Amblyodus taurus shown), yellow, Amblyodus taurus; light blue, Amblyodus castroi; magenta, Oryctophileurus nasicornis; green, Oryctophileurus varicosus; orange, Oryctophileurus armicollis (no data for Peru); red, Oryctophileurus guerrai B Andean and Subandean area of Tarija department, Bolivia; border of Tariquía National Reserve indicated by white line; surveyed areas by red rectangles C survey transect (indicated white) with collection location (highlighted red) of Oryctophileurus guerrai D habitat of Oryctophileurus guerrai in the bottom of a moist gully.
Figure 4 from: Perger R, Grossi P (2013) Revision of the rhinoceros beetle genus Oryctophileurus Kolbe with description of a new species, the male of O. varicosus Prell, and notes on biogeography (Scarabaeoidea, Dynastinae, Phileurini). ZooKeys 346: 1-16. https://doi.org/10.3897/zookeys.346.6114
Figure 4 - Dorsal and lateral habitus of Oryctophileurus varicosus Prell, 1934, A and B male C and D female, scale bar 5 mm.
Figure 8 from: Perger R, Grossi P (2013) Revision of the rhinoceros beetle genus Oryctophileurus Kolbe with description of a new species, the male of O. varicosus Prell, and notes on biogeography (Scarabaeoidea, Dynastinae, Phileurini). ZooKeys 346: 1-16. https://doi.org/10.3897/zookeys.346.6114
Figure 8 - Dorsal and lateral habitus of Oryctophileurus guerrai sp. n., A and B holotype male, body length 20 mm C and D allotype female, body length 19 mm, scale bar 5 mm.
Data from: Genetic structure and diversity among historic and modern populations of the Sumatran rhinoceros (Dicerorhinus sumatrensis)
Open the record for dataset details and reuse information.
Naïve-like pluripotency to pave the way for saving the northern white rhinoceros from extinction
GEO Series GSE161173. Ceratotherium simum cottoni. 9 samples. Type: Expression profiling by high throughput sequencing.
Robust induction of primordial germ cells of white rhinoceros on the brink of extinction
GEO Series GSE193166. Ceratotherium simum simum; Ceratotherium simum cottoni. 26 samples. Type: Expression profiling by high throughput sequencing.
Lower jaw of young woolly rhinoceros
Found in a gravel pit in western Berlin. Model: The model is based only on 48 photographs taken from one angle in order to test the platform and RealityCapture. This results in some irregularities.. **See the object in our database: https://sammlung-online.stadtmuseum.de/Details/Index/1522414** **CC-BY-Attribution: Stadtmuseum Berlin | Oliver Ziebe** Source: Objaverse 1.0 / Sketchfab
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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.