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268 results for “Emperors,”
Hasalpur inscription of Nāgavarman, detail of emperor's name(?)
<p>Figure 59 in</p> <p><em>To engrave his virtues on the disc of the moon… Inscriptions of the Aulikaras and Their Associates</em></p> <p>Dániel Balogh, 2019</p> <p>Hasalpur inscription of Nāgavarman.</p> <p>Closeup and freehand tracing of tentatively read viṣṇuvardhana</p> <p>Version 2: Clear strokes in green, unclear and tentatively restored strokes in blue</p>
pyMelt_MultiNest inversion files for Nekrylov et al. "Magmatic evolution along the Emperor-Hawaiian seamount chain revealed by olivine-hosted melt inclusions"
<p>pyMelt_MultiNest inversion data collected for Nekrylov et al. "Magmatic evolution along the Emperor-Hawaiian seamount chain revealed by olivine-hosted melt inclusions"</p>
Global analysis of emperor penguin populations
<p>Like many polar animals, emperor penguin populations are challenging to monitor because of the species' life history and remoteness. Consequently, it has been difficult to establish its global status, a subject important to resolve as polar environments change. To advance our understanding of emperor penguins, we combined remote sensing, validation surveys, and using Bayesian modeling we estimated a comprehensive population trajectory over a recent 10-year period, encompassing the entirety of the species' range. Reported as indices of abundance, our study indicates with 81% probability that the global population of adult emperor penguins declined between 2009 and 2018, with a posterior median decrease of 9.6% (95% credible interval (CI) -26.4% to +9.4%). The global population trend was -1.3% per year over this period (95% CI = -3.3% to +1.0%) and declines likely occurred in four of eight fast ice regions, irrespective of habitat conditions. Thus far, explanations have yet to be identified regarding trends, especially as we observed an apparent population up-tick toward the end of time series. Our work potentially establishes a framework for monitoring other Antarctic coastal species detectable by satellite, while promoting a need for research to better understand factors driving biotic changes in the Southern Ocean ecosystem.</p>
Paleolithic Divergence and Multiple Neolithic Expansions of Ancestral Nomadic Emperor-related Paternal Lineages
Open the record for dataset details and reuse information.
Fig. 66 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 66. Phylogenetic trees reconstructed from the concatenated mitochondrial dataset (IGR1). The evolutionary history was inferred by using the Bayesian inference (BI). Numbers on nodes represent bootstrap values (only>0.5 values are shown respectively). The three undescribed species are shown in bold and underlined.
Fig. 62 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 62. Hemicorallium tokiyasui sp. nov., NSMT-Co 1736. Sclerites: from tentacles, autozooid mounds, branch tips and colony base. Scale bar: 0.05 mm.
Fig. 61 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 61. Cross section of basal branch of Hemicorallium tokiyasui sp. nov., NSMT-Co 1736. Scale bar: 1.0 mm.
Fig. 57 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 57. Hemicorallium tokiyasui sp. nov., holotype, NSMT-Co 1736. A, Autozooid side, B, opposite side. Scale bar: 20 mm.
Fig. 56 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 56. Hemicorallium muzikae sp. nov., NSMT-Co 1738. Composition of sclerites from each part sampled.
Fig. 63 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 63. Hemicorallium tokiyasui sp. nov., NSMT-Co 1736. Composition of sclerites from each part sampled.
Fig. 55 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 55. Hemicorallium muzikae sp. nov.: NSMT-Co 1738. Sclerites: from tentacles, autozooid mounds, branch tips and colony base. Scale bar: 0.05 mm.
Fig. 51 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 51. Surface detail of Hemicorallium muzikae sp. nov., NSMT- Co 1738. Abbreviations: PO, commensal polychaete; W, wart. Scale bars: 1.0 mm.
Fig. 47 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 47. Hemicorallium kaiyo sp. nov., NSMT-Co 1737. Sclerites: from tentacles, autozooid mounds, branch tips and colony base. Scale bar: 0.05 mm.
Fig. 44 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 44. The distribution of autozooids of Hemicorallium kaiyo sp. nov., NSMT-Co 1737. Scale bar: 5.0 mm.
Fig. 43 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 43. Hemicorallium kaiyo sp. nov., holotype, NSMT-Co 1737. A, Autozooid side; B, opposite side. Scale bar: 20 mm.
Fig. 52 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 52. Detail of twig of Hemicorallium muzikae sp. nov., NSMT- Co 1738. Abbreviations: AZ, autozooid; SZ, siphonozooid. Scale bar: 1.0 mm.
Fig. 41 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 41. Hemicorallium cf. sulcatum, NSMT-Co 1735. Sclerites: from tentacles, autozooid mounds, branch tips and colony base. Scale bar: 0.05 mm.
Fig. 38 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 38. Hemicorallium cf. sulcatum, NSMT-Co 1734. Sclerites: from tentacles, autozooid mounds, branch tips and colony base. Scale bar: 0.05 mm.
Fig. 36 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 36. Hemicorallium cf. sulcatum (Kishinouye, 1903a), NSMT- Co 1734. A, Autozooid side; B, opposite side; C, surface detail. Abbreviations: AZ, autozooid; SZ, siphonozooid. Scale bars: A, B, 20 mm; C, 1.0 mm.
Fig. 26 in A Report on Coralliidae (Cnidaria: Octocorallia) Specimens Collected from the Emperor Seamounts with Descriptions of Three New Species
Fig. 26. Surface detail of Hemicorallium laauense, NSMT-Co 1731. Abbreviations: PO, commensal polychaete; AZ, autozooid; W, wart. Scale bar: 1.0 mm.
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.