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5,800 results for “illustrations”
Illustrative dataset for Ozone radiative forcing calculations using SOCRATES-RF
<p>This dataset provides to the reader/user with two netCDF files which illustrate the structure and properties of the input datasets (used directly by the software SOCRATES-RF) in support of the publication: "<strong>Historical tropospheric and stratospheric ozone radiative forcing using the CMIP6 database</strong>". It comprises two examples of January (pre-industrial decade, 1850s): one based on CMIP5 ozone concentrations and other based on the recently available CMIP6 ozone dataset. Both were created with the procedure described on the supplementary information of the publication "Historical tropospheric and stratospheric ozone radiative forcing using the CMIP6 database", Checa-Garcia, R et al.</p> <p>The sources of information for these datasets are the CMIP5 / CMIP6 ozone dataset, the ERA-Interim reanalysis dataset (2000-01 to 2009-12) and the solar irradiance from SORCE and TIM projects. Please see the references:</p> <ul> <li>Cionni, I., Eyring, V., Lamarque, J. F., Randel, W. J., Stevenson, D. S., Wu, F., Bodeker, G. E., Shepherd, T. G., Shindell, D. T., and Waugh, D. W.: Ozone database in support of CMIP5 simulations: results and corresponding radiative forcing, Atmos. Chem. Phys., 11, 11267-11292, https://doi.org/10.5194/acp-11-11267-2011, 2011.</li> <li>Hegglin, M. I., D. Kinnison, D. Plummer, R.Checa-Garcia et al., Historical and future ozone database (1850-2100) in support of CMIP6, GMD, in preparation.</li> <li>Dee, D. P., Uppala, S. M., Simmons, A. J., Berrisford, P., Poli, P., Kobayashi, S., Andrae, U., Balmaseda, M. A., Balsamo, G., Bauer, P., Bechtold, P., Beljaars, A. C. M., van de Berg, L., Bidlot, J., Bormann, N., Delsol, C., Dragani, R., Fuentes, M., Geer, A. J., Haimberger, L., Healy, S. B., Hersbach, H., Hólm, E. V., Isaksen, L., Kållberg, P., Köhler, M., Matricardi, M., McNally, A. P., Monge-Sanz, B. M., Morcrette, J.-J., Park, B.-K., Peubey, C., de Rosnay, P., Tavolato, C., Thépaut, J.-N. and Vitart, F. (2011), The ERA-Interim reanalysis: configuration and performance of the data assimilation system. Q.J.R. Meteorol. Soc., 137: 553–597. doi: 10.1002/qj.828</li> <li>Kopp G., Heuerman K., Lawrence G. (2005) The Total Irradiance Monitor (TIM): Instrument Calibration. In: Rottman G., Woods T., George V. (eds) The Solar Radiation and Climate Experiment (SORCE). Springer, New York, NY</li> </ul>
Published versions and illustrations of the Rubáiyát of Omar Khayyám
<p>These files cover published versions and illustrations of the Rubáiyát of Omar Khayyám. They form part of an archive of research data relating to the spread and influence of the <em>Rubáiyát</em> of Omar Khayyám. The data have been compiled by independent researchers W H (Bill) Martin and Sandra Mason; their contact details are in the README file. The files comprise a number of searchable listings relating to the poem and its different manifestations. </p> <p>This section of the archive contains two database tables covering published versions of the <em>Rubáiyát of Omar Khayyám.</em> The first of these, ROKlist2011, provides a listing of over 1600 editions or reprints of the poem, in different languages and translations, which we know either to exist or to have been identified by other compilers of <em>Rubáiyát </em>bibliographies. The second database ROKillus2011 provides more information on a subset of some 700 illustrated versions of the <em>Rubáiyát</em>. Further details of the coverage of the databases and the fields and codings used are given in the accompanying README document.</p>
Illustration of an inverted growth process
<p>Illustration of a basic inverted growth process. The semiconductor layers of interest are first grown on a semicondutor substrate. Then the full structure is attached to another substrate that acts as holder (glass, for example) and then the original substrate is removed.</p> <p>The video was created with Blender 2.79b. I attach the Blender file so you can create other views, change the colors, camera movements, etc. </p>
Extracted Illustrations of the Berlin State Library's Digitized Collections (part 1 of 4)
<p>The dataset consists of various illustrations extracted from 26,233 historical books and other media offered in the Berlin State Library's Digitized Collections. The media objects are older than 1920.</p> <p>Version 1.0 contains of 594,890 extracted illustrations in total.</p> <p>The extraction of illustrations is driven by the coordinates given by the ABBYY FineReader OCR engine (in ALTO XML) . The extracted illustrations have not been resized but compressed and saved in JPEG format.</p> <p>Pre-trained models in order to separate color scales, hand-written signatures, library stamps or the like from interesting content are available under: <a href="https://github.com/elektrobohemian/imi-unicorns">https://github.com/elektrobohemian/imi-unicorns</a>.</p> <p>The extracts for each media object are stored in separated sub-folders and tar files named after the PPN (a unique ID used in the library) to facilitate further processing. Additional metadata can be obtained with help of the PPN as described here: <a href="https://github.com/elektrobohemian/StabiHacks/blob/master/ppn-howto.md">https://github.com/elektrobohemian/StabiHacks/blob/master/ppn-howto.md</a> .</p> <p>The dataset is published as a set of ZIP files, each fitting on a Blu Ray disc. <strong>After decompression, the contents will consume ca. 166 GB.</strong></p> <p><em>Change Log for Version</em></p> <ol> <li>original dataset</li> <li>added color histograms (RGB, separated by channel) in JSON and Python pickle format as extracted by the <a href="https://pillow.readthedocs.io/en/stable/">Pillow</a> package (see https://github.com/elektrobohemian/StabiHacks/tree/master/image-tools)</li> </ol> <p><strong>This is part 1 of 4. The following datasets contain the other ZIP files (8 files in total):</strong></p> <ul> <li><a href="https://doi.org/10.5281/zenodo.2598145">https://doi.org/10.5281/zenodo.2598145</a></li> <li><a href="https://doi.org/10.5281/zenodo.2598261">https://doi.org/10.5281/zenodo.2598261</a></li> <li><a href="https://doi.org/10.5281/zenodo.2598270">https://doi.org/10.5281/zenodo.2598270</a></li> </ul> <p> </p>
Snake Ancestor Illustration (Square)
<p>Illustration showing the lifestyle and the reconstructed brain model of the hypothetical ancestor of snakes (square)</p>
Icons illustrating aspects of data organization from the Data Literacy Initiative (DaLI) at TH Köln
<p>Icons created as part of the research project Data Literacy Initiative (DaLI) at TH Köln - University of Applied Sciences in Cologne, Germany. They illustrate aspects of best practices for data organization as recommended in Karl W. Broman & Kara H. Woo (2018) Data Organization in Spreadsheets, The American Statistician, 72:1, 2-10, DOI: 10.1080/00031305.2017.1375989.<br> </p> <p>When using any of the images please include the following attribution together with the DOI: This image was created by Jule Marie Schacht and Juliane Piecha for the Data Literacy Initiative (DaLI) at TH Köln and is used under a CC-BY license.</p> <p>The Data Literacy Initiative (DaLI) at TH Köln develops an interdisciplinary, modular program offering data literacy training to students from all fields.</p> <p>More information on the Data Literacy Initiative (DaLI) (in German): https://www.th-koeln.de/dali</p> <p>Illustrations created by: Jule Marie Schacht</p>
Golden Flying Snake (Chrysopelea ornata) brain illustration
<p>3D model of the Golden Flying Snake brain highlighting the anatomy and the spatial arrangement of its major subdivisions.</p> <p>The brain reconstruction was obtained from a microCT scan of a iodine-stained specimen through manual segmentation using the software Amira 5.5.0.</p> <p>Other illustrations can be found <strong><a href="https://zenodo.org/search?page=1&size=20&q=keywords:%22squamate%20brain%22">here</a></strong>.</p> <p><em>If you are interested in reptile brain evolution and behavior, please, have a look to our recent publication:</em></p> <p><a href="https://www.nature.com/articles/s41467-019-13405-w"><em><strong>"Comparative analysis of squamate brains unveils multi-level variation in cerebellar architecture associated with locomotor specialization"</strong></em></a></p> <p><strong>Simone Macrì, Yoland Savriama, Imran Khan & Nicolas Di-Poï</strong></p> <p><em>Nature Communications</em> <strong>10, </strong>5560 (2019)</p> <p> </p> <p><em>Check out also our *4K* video collection of various snake and lizard 3D brains:</em></p> <p><strong><a href="https://www.youtube.com/playlist?list=PLgx4vtT32C8hqxG_icKiuXGtZVLVX-oG1">Snake and Lizard brain reconstructions video collection</a></strong></p> <p> </p> <p>For any inquiries or additional information, please, refer to the contacts provided in the <strong><a href="https://www.nature.com/articles/s41467-019-13405-w">article</a></strong>.</p>
Painted Bronzeback (Dendrelaphis pictus) snake brain illustration
<p>3D model of the Painted Bronzeback snake brain highlighting the anatomy and the spatial arrangement of its major subdivisions.</p> <p>The brain reconstruction was obtained from a microCT scan of a iodine-stained specimen through manual segmentation using the software Amira 5.5.0.</p> <p>Other illustrations can be found <strong><a href="https://zenodo.org/search?page=1&size=20&q=keywords:%22squamate%20brain%22">here</a></strong>.</p> <p><em>If you are interested in reptile brain evolution and behavior, please, have a look to our recent publication:</em></p> <p><a href="https://www.nature.com/articles/s41467-019-13405-w"><em><strong>"Comparative analysis of squamate brains unveils multi-level variation in cerebellar architecture associated with locomotor specialization"</strong></em></a></p> <p><strong>Simone Macrì, Yoland Savriama, Imran Khan & Nicolas Di-Poï</strong></p> <p><em>Nature Communications</em> <strong>10, </strong>5560 (2019)</p> <p> </p> <p><em>Check out also our *4K* video collection of various snake and lizard 3D brains:</em></p> <p><strong><a href="https://www.youtube.com/playlist?list=PLgx4vtT32C8hqxG_icKiuXGtZVLVX-oG1">Snake and Lizard brain reconstructions video collection</a></strong></p> <p> </p> <p>For any inquiries or additional information, please, refer to the contacts provided in the <strong><a href="https://www.nature.com/articles/s41467-019-13405-w">article</a></strong>.</p>
FIG. 5 in Early illustrations of Aepyornis eggs (1851 - 1887): from popular science to Marco Polo's roc bird
FIG. 5. — Comparative dimensions of various bird eggs. From Capus (1885). Aepyornis egg (4) compared with eggs of an ostrich (3), a hen (2) and a hummingbird (1). Photo E. Buffetaut.
FIG. 4 in Early illustrations of Aepyornis eggs (1851 - 1887): from popular science to Marco Polo's roc bird
FIG. 4. — "The Ruc's egg". Colour lithograph, frontispiece of The Book of Ser Marco Polo, the Venetian, Concerning the Kingdoms and Marvels of the East. Volume 2 (Yule 1871). Photo E. Buffetaut.
FIG. 6 in Early illustrations of Aepyornis eggs (1851 - 1887): from popular science to Marco Polo's roc bird
FIG. 6. — "Egg of the Epiornis" [sic]. From Scientific American, March 12, 1887. Photo E. Buffetaut.
FIG. 1 in Early illustrations of Aepyornis eggs (1851 - 1887): from popular science to Marco Polo's roc bird
FIG. 1. – Egg of Aepyornis maximus Geoffroy Saint-Hilaire, 1851, from Rowley (1878). The original plate shows the egg (from Rowley's collection) at its actual size. This appears to be the first illustration of an Aepyornis egg in a scientific paper. Photo E. Buffetaut.
FIG. 3 in Early illustrations of Aepyornis eggs (1851 - 1887): from popular science to Marco Polo's roc bird
FIG. 3. — Egg of Aepiornis [sic] maximus, compared with a hen's egg. From Ward (1866). Photo E. Buffetaut.
Figure 3 in New records and combinations in Neotropical Premnobius Eichhoff (Coleoptera: Curculionidae: Scolytinae: Ipini) with an illustrated key to New World species
Figure 3. Premnobius flechtmanni (Wood), female. A) Dorsal view. B) Lateral view. C) Frontal view. D) Declivity. Photos by T.H. Atkinson.
Figure 7 in An illustrated key to powder post beetles (Coleoptera, Bostrichidae) associated with rubberwood in Thailand, with new records and a checklist of species found in Southern Thailand
Figure 7. Heterobostrychus aequalis (Waterhouse, 1884). Dorsal view of female a and male b lateral view of male elytral declivity c intercoxal process of the first abdominal ventrite d.
Figure 3 in An illustrated key to powder post beetles (Coleoptera, Bostrichidae) associated with rubberwood in Thailand, with new records and a checklist of species found in Southern Thailand
Figure 3. Dorsal views of Minthea reticulata Lesne, 1931 a Minthea rugicollis (Walker, 1858) b and Lyctoxylon dentatum (Pascoe, 1866) c.
"The Veiled Virgin illustrates visual segmentation of shape by cause": Stimuli and Experimental Data
<p>Stimuli and raw experimental data from the experiments reported in PNAS article "The Veiled Virgin illustrates visual segmentation of shape by cause"</p>
FIG. 12 in L'histoire de la description du squale bouclé Echinorhinus brucus (Bonnaterre, 1788) (Echinorhinidae) et la redécouverte des illustrations du type perdu
FIG. 12. — Manuscrit de Blainville (Ms BLA 60) donnant la description du « Squalus spinosus » et ses observations de l'holotype publiées dans sa Faune française (Blainville 1825: 66-68). Crédits: Muséum national d'Histoire naturelle.
FIG. 10 in L'histoire de la description du squale bouclé Echinorhinus brucus (Bonnaterre, 1788) (Echinorhinidae) et la redécouverte des illustrations du type perdu
FIG. 10. — « Genre Echinorhine, Echinorhinus, Blainv. ». Extrait du registre des anciennes collections d'Ichtyologie du Muséum national d'Histoire naturelle (Anonyme: 43) révélant la présence de cinq spécimens conservés montés, dont deux ont une origine inconnue (nos 376,377) et dont deux furent réformés /détruits (nos 376, 378).
FIG. 11 in L'histoire de la description du squale bouclé Echinorhinus brucus (Bonnaterre, 1788) (Echinorhinidae) et la redécouverte des illustrations du type perdu
FIG. 11. — Illustration originale de l'holotype sec d'Echinorhinus brucus par Blainville ([1809]-1821, Ms BLA 60) vu du profil gauche au crayon et à l'encre sur papier vergé (A, en haut) et détail de ses dents et de sa tête (B), (femelle, 195 cm). Cette illustration aurait dû servir de modèle aux figures de la planche 16 non éditée de sa Faune française. Crédits: Muséum national d'Histoire naturelle.
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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.