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278 results for “STEREO”

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zenodo40/100

A Stereo Camera Simulator for Large-Eddy Simulations of Continental Shallow Cumulus clouds based on three-dimensional Path-Tracing

<p>Dataset to produce the results of the publication: "A Stereo Camera Simulator for Large-Eddy Simulations of Continental Shallow Cumulus clouds based on three-dimensional Path-Tracing"</p><p>The dataset contains:</p><ul><li>Large-Eddy Simulation (LES) model configuration files</li><li>Selected output data of the LES experiments</li><li>Data and analysis scripts for the figures</li><li>The rendered camera images</li><li>The cloud field, cloud hulls, and reconstructed hulls</li><li>A frozen version of the open-source Blender code (version 2.90) as used in this study</li></ul><p>For the latest version of Blender, please visit:</p><p><a href="https://chat.openai.com/c/www.blender.org">www.blender.org</a></p><p>It is important to note that the method was specifically tested only on version 2.90.</p><p>&nbsp;</p><p>This research is supported by the German Research Foundation (DFG) under project number 430226822 (https://gepris.dfg.de/gepris/projekt/430226822). This research was supported by the U.S. Department of Energy's Atmospheric System Research, an Office of Science Biological and Environmental Research program, under grant DE-SC0022126. This work used resources of the Deutsches Klimarechenzentrum (DKRZ) granted by its Scientific Steering Committee (WLA) under project ID bb1086. The Gauss Centre for Supercomputing e.V. (https://www.gauss-centre.eu/) is acknowledged for providing computing time on the Gauss Centre for Supercomputing (GCS) supercomputer JUWELS at the Jülich Supercomputing Centre (JSC) under projects VIRTUALLAB and RCONGM.</p>

opencc-by-4.0May 2023View details →
zenodo40/100

Webis-STEREO-21

<p>We present the Webis-STEREO-21 dataset, a massive collection of <strong>S</strong>cientific <strong>Te</strong>xt <strong>Re</strong>use in <strong>O</strong>pen-access publications. It contains more than 91 million cases of reused text passages found in 4.2 million unique open-access publications. Featuring a high coverage of scientific disciplines and varieties of reuse, as well as comprehensive metadata to contextualize each case, our dataset addresses the most salient shortcomings of previous ones on scientific writing. Webis-STEREO-21 allows for tackling a wide range of research questions from different scientific backgrounds, facilitating both qualitative and quantitative analysis of the phenomenon as well as a first-time grounding on the base rate of text reuse in scientific publications.</p> <p>This is the open-access version of the dataset, which includes only the metadata of each reuse case. Due to licensing issues, the matched text is not included.</p>

opencc-by-4.0Oct 2021View details →
zenodo40/100

Digital Elevation Model from Pléiades stereo images - Upper Tuolumne basin, California, 2017-08-13

<p><br> Digital Elevation Model (DEM) derived from a triplet of stereo images of the Pl&eacute;iades satellite.<br> The images were acquired on 13th August 2017 and cover a part of the upper Tuolumne basin (California).<br> The DEM was calculated at a 3 m resolution with the Ames Stereo Pipeline software (Beyer et al., 2018).<br> Details about the processing of the images and the accuracy of the DEM are given in Deschamps-Berger et al. (2020).</p> <p>&nbsp;</p> <p>References<br> Beyer, R. A., Alexandrov, O., and McMichael, S. (2018). The Ames Stereo Pipeline: NASA&rsquo;s open source software for deriving and processing terrain data. <em>Earth and Space Science</em>, 5, 537&ndash;548. https://doi.org/10.1029/2018EA00040</p> <p>Deschamps-Berger, C., Gascoin, S., Berthier,<br> E., Deems, J., Gutmann, E., Dehecq, A., Shean, D., and Dumont, M. (2020).<br> Snow depth mapping from stereo satellite imagery in mountainous terrain :<br> evaluation using airborne lidar data. <em>The Cryosphere</em>, (February):1&ndash;28. https://doi.org/10.5194/tc-14-2925-2020</p>

opencc-by-4.0Apr 2022View details →
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Text-fig. 12. CUWM 132, right M3/ of Libycochoerus massai from Moghara, Egypt. a: stereo occlusal views; b: lingual view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 12. CUWM 132, right M3/ of Libycochoerus massai from Moghara, Egypt. a: stereo occlusal views; b: lingual view.

opencc-by-4.0Dec 2021View details →
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Text-fig. 11. CGM 94-138, right mandible fragment containing p/4–m/3 of Libycochoerus massai from Moghara, Egypt. a: lingual view; b: stereo occlusal view; c: buccal view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 11. CGM 94-138, right mandible fragment containing p/4–m/3 of Libycochoerus massai from Moghara, Egypt. a: lingual view; b: stereo occlusal view; c: buccal view.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Text-fig. 9. CUWM 360, right mandible fragment and associated m/3 of Diamantohyus africanus from Moghara, Egypt. a: stereo occlusal views; b: buccal view; c: lingual view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 9. CUWM 360, right mandible fragment and associated m/3 of Diamantohyus africanus from Moghara, Egypt. a: stereo occlusal views; b: buccal view; c: lingual view.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Text-fig. 8. CUWM 261, right mandible with damaged m/2–m/3 of Diamantohyus africanus from Moghara, Egypt. a: lingual view; b: stereo occlusal views; c: buccal view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 8. CUWM 261, right mandible with damaged m/2–m/3 of Diamantohyus africanus from Moghara, Egypt. a: lingual view; b: stereo occlusal views; c: buccal view.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Text-fig. 7. CUWM 239, left m/3 of Diamantohyus africanus from Moghara, Egypt. a: buccal view; b: stereo occlusal views; c: lingual view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 7. CUWM 239, left m/3 of Diamantohyus africanus from Moghara, Egypt. a: buccal view; b: stereo occlusal views; c: lingual view.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Text-fig. 5. CUWM 63, left mandible with d/4–m/2 of Diamantohyus africanus from Moghara, Egypt. a: buccal view; b: stereo occlusal views; c: lingual view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 5. CUWM 63, left mandible with d/4–m/2 of Diamantohyus africanus from Moghara, Egypt. a: buccal view; b: stereo occlusal views; c: lingual view.

opencc-by-4.0Dec 2021View details →
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Text-fig. 3. CUWM 134, right lower molar of Diamantohyus africanus from Moghara, Egypt. a: stereo occlusal view; b: lingual view; c: buccal view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 3. CUWM 134, right lower molar of Diamantohyus africanus from Moghara, Egypt. a: stereo occlusal view; b: lingual view; c: buccal view.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Text-fig. 6. CUWM 121, right mandible with m/3 of Diamantohyus africanus from Moghara, Egypt. a: lingual view; b: stereo occlusal views; c: buccal view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 6. CUWM 121, right mandible with m/3 of Diamantohyus africanus from Moghara, Egypt. a: lingual view; b: stereo occlusal views; c: buccal view.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Text-fig. 4. CUWM 106, left mandible with p/4–m/3 of Diamantohyus africanus from Moghara, Egypt. a: buccal view; b: stereo occlusal views; c: lingual view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 4. CUWM 106, left mandible with p/4–m/3 of Diamantohyus africanus from Moghara, Egypt. a: buccal view; b: stereo occlusal views; c: lingual view.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Text-fig. 2. Diamantohyus africanus from Moghara, Egypt. a: CUWM 59, right upper molar, stereo occlusal view; b: CUWM 57, right m/3, b1 – stereo occlusal views, b2 – buccal view, b3 – lingual view. in New Suoid Fossils (Mammalia, Artiodactyla) From The Miocene Of Moghara, Egypt, And Gebel Zelten, Libya: Biochronological Implications

Text-fig. 2. Diamantohyus africanus from Moghara, Egypt. a: CUWM 59, right upper molar, stereo occlusal view; b: CUWM 57, right m/3, b1 – stereo occlusal views, b2 – buccal view, b3 – lingual view.

opencc-by-4.0Dec 2021View details →
zenodo40/100

Text-fig. 19. Turritella shell from White Patch Fossil Site 1. a: stereo lateral view; b: obverse view to show the spiral ridges. in Stratigraphy, Chronology And Palaeontology Of The Tertiary Rocks Of The Cheringoma Plateau, Mozambique

Text-fig. 19. Turritella shell from White Patch Fossil Site 1. a: stereo lateral view; b: obverse view to show the spiral ridges.

opencc-by-4.0Dec 2021View details →
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Text-fig. 20. Proximal right ulna of an embrithopod from White Patch Bone Site. a: lateral view; b: proximal view (anterior to the left); c: stereo view of the articular surface for the humerus. Note the damaged medial and lateral sides of the articular surface (dotted lines) which makes the distal part of the articular surface look narrower than it would have been in life. in Stratigraphy, Chronology And Palaeontology Of The Tertiary Rocks Of The Cheringoma Plateau, Mozambique

Text-fig. 20. Proximal right ulna of an embrithopod from White Patch Bone Site. a: lateral view; b: proximal view (anterior to the left); c: stereo view of the articular surface for the humerus. Note the damaged medial and lateral sides of the articular surface (dotted lines) which makes the distal part of the articular surface look narrower than it would have been in life.

opencc-by-4.0Dec 2021View details →
zenodo40/100

◂Fig. 6 Gynoecial development, fruit and seedling of C. crenata %yellow frames), C. cf. grandicalyx %blue frames) and C. sinensis %pink frames; A–F light microscopy, G–K stereo microscopy of endocarp, mesocarp removed; L–O field images; TS in horizontal orientation). A, B TS of anthetic flower %note two to three abortive ovules and strongly stained, peripheral tissue). C, D TS of anthetic flower %note two to three abortive ovules and lignifying portions of prospective mesocarp). E Young fruit %note developing endocarp and flashily pink portions of the mesocarp). F TS of postanthetic flower %note three abortive ovules and lignifying portions of prospective mesocarp). G TS of endocarp, with three developed embryos removed %note scanty endosperm). H Endocarp. J TS of endocarp. K Endocarp. L Immature fruits. M Mature fruits. N Seedlings %note short hypocotyl and long petioles of cotyledons). O Seedlings %note long hypocotyl and short petioles of cotyledons; image taken from cultivated plant, accession number 2012–0005, in the Botanical Garden Munich) %LS, longisection; TS, transverse section; ao, abortive ovule; cot, cotyledon; db, dorsal bundle; c, calyx; ec, endocarp; ens, endosperm; ex, exocarp; fr, fruit; h, hypocotyl; int, integument; lb, lateral bundle; mc, mesocarp; o, ovule; pet, petiolus; sty, style; ut, peripheral tissue; vs, ventral slit) in Observations on flower and fruit anatomy in dioecious species of Cordia (Cordiaceae, Boraginales) with evolutionary interpretations

◂Fig. 6 Gynoecial development, fruit and seedling of C. crenata %yellow frames), C. cf. grandicalyx %blue frames) and C. sinensis %pink frames; A–F light microscopy, G–K stereo microscopy of endocarp, mesocarp removed; L–O field images; TS in horizontal orientation). A, B TS of anthetic flower %note two to three abortive ovules and strongly stained, peripheral tissue). C, D TS of anthetic flower %note two to three abortive ovules and lignifying portions of prospective mesocarp). E Young fruit %note developing endocarp and flashily pink portions of the mesocarp). F TS of postanthetic flower %note three abortive ovules and lignifying portions of prospective mesocarp). G TS of endocarp, with three developed embryos removed %note scanty endosperm). H Endocarp. J TS of endocarp. K Endocarp. L Immature fruits. M Mature fruits. N Seedlings %note short hypocotyl and long petioles of cotyledons). O Seedlings %note long hypocotyl and short petioles of cotyledons; image taken from cultivated plant, accession number 2012–0005, in the Botanical Garden Munich) %LS, longisection; TS, transverse section; ao, abortive ovule; cot, cotyledon; db, dorsal bundle; c, calyx; ec, endocarp; ens, endosperm; ex, exocarp; fr, fruit; h, hypocotyl; int, integument; lb, lateral bundle; mc, mesocarp; o, ovule; pet, petiolus; sty, style; ut, peripheral tissue; vs, ventral slit)

opencc-by-4.0Aug 2022View details →
zenodo40/100

Coffee3D - 3-D models for coffee trees using multiple-view stereo

<p>This is a set of images, odometry data, and 3-D point clouds for 8 coffee tree specimens. Images were captured by a Logitech C920 camera. Odometry data was produced using monocular visual SLAM by Mur-Artal &amp; Tardos&#39; <a href="https://github.com/raulmur/ORB_SLAM2">ORB-SLAM2 </a>SLAM system under <a href="https://github.com/thsant/3dmcap">3dmcap</a>.</p> <p>Two multiple-view stereo systems were employed in 3-D reconstruction: Furukawa &amp; Ponce <a href="https://www.di.ens.fr/pmvs">PMVS</a> and Sch&ouml;enberger&#39;s <a href="https://colmap.github.io">COLMAP</a>.</p>

opencc-by-nc-sa-4.0Aug 2019View details →
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Text-fig. 3. Right maxilla of a young adult individual of Arsinoitherium zitteli from the Fayum, Egypt (M 8802, NHM collection, London). The dotted lines indicate the homologous part preserved in the specimen from Grigema, Tunisia. a) stereo occlusal view, b) stereo buccal view, c) stereo lingual view. in Arsinoitherium (Embrithopoda) And Other Large Mammals And Plants From The Oligocene Of Tunisia

Text-fig. 3. Right maxilla of a young adult individual of Arsinoitherium zitteli from the Fayum, Egypt (M 8802, NHM collection, London). The dotted lines indicate the homologous part preserved in the specimen from Grigema, Tunisia. a) stereo occlusal view, b) stereo buccal view, c) stereo lingual view.

opencc-by-4.0Aug 2017View details →
zenodo40/100

Text-fig. 2. Buhakia hyaenoides (MORALES et al., 2003) from Arrisdrift, Sperrgebiet (Namibia). GSN AD 241'99 (holotype), left m2. a: lingual view, b: buccal view, c: occlusal view (stereo pairs). in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)

Text-fig. 2. Buhakia hyaenoides (MORALES et al., 2003) from Arrisdrift, Sperrgebiet (Namibia). GSN AD 241'99 (holotype), left m2. a: lingual view, b: buccal view, c: occlusal view (stereo pairs).

opencc-by-4.0Dec 2017View details →
zenodo40/100

Text-fig. 1. Leakitherium hiwegi SAVAGE, 1965 from Rusinga, Kenya. NHMUK M 19083 (holotype), left maxilla with M2 – M1. a: occlusal view, b: lingual view, c: buccal view (stereo pairs). in New Hyaenodonts (Ferae, Mammalia) From The Early Miocene Of Napak (Uganda), Koru (Kenya) And Grillental (Namibia)

Text-fig. 1. Leakitherium hiwegi SAVAGE, 1965 from Rusinga, Kenya. NHMUK M 19083 (holotype), left maxilla with M2 – M1. a: occlusal view, b: lingual view, c: buccal view (stereo pairs).

opencc-by-4.0Dec 2017View details →

ScienceDex guides

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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record