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112 results for “Rhinoceros”
FIGURES 15–20 in Philcarneum new genus and Constricticollis new genus, two distinctive rhinoceros beetles (Coleoptera: Scarabaeidae: Dynastinae: Pentodontini) from opposite sides of Australia with a revised key to the Australian dynastine genera
FIGURES 15–20. Constricticollis clunis Hutchinson & Allsopp new genus, new species, holotype female: 15, frontal view; 16, rear view; 17, head, dorsal view; 18, head, ventral view; 19, head, dorso-lateral view; 20, head and pronotum, dorsal view.
FIGURES 11–14 in Philcarneum new genus and Constricticollis new genus, two distinctive rhinoceros beetles (Coleoptera: Scarabaeidae: Dynastinae: Pentodontini) from opposite sides of Australia with a revised key to the Australian dynastine genera
FIGURES 11–14. Constricticollis clunis Hutchinson & Allsopp new genus, new species, holotype female: 11, dorsal view; 12, ventral view; 13, lateral view; 14, labels.
FIGURE 10 in Philcarneum new genus and Constricticollis new genus, two distinctive rhinoceros beetles (Coleoptera: Scarabaeidae: Dynastinae: Pentodontini) from opposite sides of Australia with a revised key to the Australian dynastine genera
FIGURE 10. Known distribution of Philcarneum aenigma Allsopp & Hutchinson new genus, new species in southern New South Wales (blue dots) and of Constricticollis clunis Hutchinson & Allsopp new genus, new species in northwestern Australia (red dot).
Data from: Genetic structure of the black rhinoceros (Diceros bicornis) in south-eastern Africa
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Data from: Extinctions, genetic erosion and conservation options for the black rhinoceros (Diceros bicornis)
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Data from: Genomic analysis of demographic history and ecological niche modeling in the endangered Sumatran Rhinoceros Dicerorhinus sumatrensis
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Exploring the behaviors and social preferences of a large, multi-generational herd of zoo-housed southern white rhinoceros (Ceratotherium simum simum), 2020–2021
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Data from: Contrasting evolutionary history, anthropogenic declines and genetic contact in the northern and southern white rhinoceros (Ceratotherium simum)
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Acceleration and depth data on foraging behaviour of rhinoceros auklets breeding at Teuri Island
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Data from: Microwear-mesowear congruence and mortality bias in rhinoceros mass death assemblages
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Data from: Sexual dimorphism and heightened conditional expression in a sexually selected weapon in the Asian rhinoceros beetle
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Data from: Transpacific coalescent pathways of coconut rhinoceros beetle biotypes: resistance to biological control catalyzes resurgence of an old pest
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Data from: Using drones and sirens to elicit avoidance behaviour in white rhinoceros as an anti-poaching tactic
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Latitudinal cline of larval growth rate and its proximate mechanisms in a rhinoceros beetle
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rhinoceros auklet microsatellite data
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FIG. 3 in Mauled by a rhinoceros: the final years of Alfred Duvaucel (1793 - 1824) in India
FIG. 3. — Mounted specimen of a two-horned Sumatran rhinoceros (Dicerorhinus sumatrensis (Fischer, 1814)), photographed in the stores of the Musée zoologique in Strasbourg (no. Mam-01505) by Marie Meister in July 2018. It was said to be connected with Alfred Duvaucel when it was transferred from Paris in 1829, but as this species of rhinoceros is unknown in the vicinity, it is unlikely to be the animal that was responsible for Duvaucel's injury in the Rajmahall Hills of Bihar, India.
FIG. 2 in Mauled by a rhinoceros: the final years of Alfred Duvaucel (1793 - 1824) in India
FIG. 2. — As there is no known portrait of Alfred Duvaucel, this is a depiction of the general region where he was attacked by a rhinoceros in January 1823: Siccra Gulley on the Ganges, aquatint by Thomas Daniell (1749-1840) and published in his Oriental Scenery (Daniell & Daniell 1804).
FIG. 1 in Mauled by a rhinoceros: the final years of Alfred Duvaucel (1793 - 1824) in India
FIG. 1. — Simplified map of northern India showing localities mentioned in the text. Thanks to Roger Bour, Paris.
Data from: Genetic structure and diversity among historic and modern populations of the Sumatran rhinoceros (Dicerorhinus sumatrensis)
The Sumatran rhinoceros (Dicerorhinus sumatrensis), once widespread across Southeast Asia, now consists of as few as 30 individuals within Sumatra and Borneo. To aid in conservation planning, we sequenced 218 bp of control region mitochondrial (mt) DNA, identifying 17 distinct mitochondrial haplotypes across modern (N = 13) and museum (N = 26) samples. Museum specimens from Laos and Myanmar had divergent mtDNA, consistent with the placement of western mainland rhinos into the distinct subspecies D. s. lasiotis (presumed extinct). Haplotypes from Bornean rhinos were highly diverse, but dissimilar from those of other regions, supporting the distinctiveness of the subspecies D. s. harrissoni. Rhinos from Sumatra and Peninsular Malaysia shared mtDNA haplotypes, consistent with their traditional placement into a single subspecies D. s sumatrensis. Modern samples of D. s. sumatrensis were genotyped at 18 microsatellite loci. Rhinos within Sumatra formed two sub-populations, likely separated by the Barisan Mountains, though with only modest genetic differentiation between them. There are so few remaining Sumatran rhinoceros that separate management strategies for subspecies or subpopulations may not be viable, while each surviving rhino pedigree is likely to retain alleles found in no other individuals. Given the low population size and low reproductive potential of Sumatran rhinos, rapid genetic erosion is inevitable, while an under-appreciated concern is the potential for fixation of harmful genetic variants. Both concerns underscore two overriding priorities for the species: (1) translocation of wild rhinos to ex situ facilities, and (2) collection and storage of gametes and cell lines from every surviving captive and wild individual.
FIGURE 23 in Geoparnus rhinoceros sp. nov., a new edaphic dryopid with unusual sexual dimorphism (Coleoptera: Dryopidae)
FIGURE 23. Known distribution of Geoparnus rhinoceros sp. nov. in Sarawak.
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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.