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412 results for “177”
Figure 3 from: Brake I, Duin D, Van de Velde I, Smith V, Rycroft S (2011) Who learns from whom? Supporting users and developers of a major biodiversity e-infrastructure. ZooKeys 150: 177-192. https://doi.org/10.3897/zookeys.150.2191
Figure 3 - Pattern of support requests and of new Scratchpads over time. Number of support requests posted to both support systems by users and number of new Scratchpads created per month (October 2010–June 2011).
Figure 2 from: Brake I, Duin D, Van de Velde I, Smith V, Rycroft S (2011) Who learns from whom? Supporting users and developers of a major biodiversity e-infrastructure. ZooKeys 150: 177-192. https://doi.org/10.3897/zookeys.150.2191
Figure 2 - Pattern of email requests over time. Number of email requests per month divided into request category and each category divided into emails sent by users versus developers (October 2010–June 2011).
Figure 1 from: Brake I, Duin D, Van de Velde I, Smith V, Rycroft S (2011) Who learns from whom? Supporting users and developers of a major biodiversity e-infrastructure. ZooKeys 150: 177-192. https://doi.org/10.3897/zookeys.150.2191
Figure 1 - Pattern of issues over time. Number of issues per month divided into request category and each category divided into issues posted by users versus developers (October 2010–June 2011).
Figure 4 from: Brake I, Duin D, Van de Velde I, Smith V, Rycroft S (2011) Who learns from whom? Supporting users and developers of a major biodiversity e-infrastructure. ZooKeys 150: 177-192. https://doi.org/10.3897/zookeys.150.2191
Figure 4 - Pattern of requests over time by Scratchpad. Number of requests posted per month (October 2010–June 2011) for Scratchpads for which ten or more requests were posted during the analysed period. In the legend the creation date of the individual Scratchpads is cited.
Figure 6 from: Brake I, Duin D, Van de Velde I, Smith V, Rycroft S (2011) Who learns from whom? Supporting users and developers of a major biodiversity e-infrastructure. ZooKeys 150: 177-192. https://doi.org/10.3897/zookeys.150.2191
Figure 6 - Request processing time for email requests. Time lapse between posting of an email and the first reply to this email divided into request category and each category divided into emails sent by users versus developers (October 2010–June 2011).
Figure 177 from: Fernandez-Triana J, Whitfield J, Rodriguez J, Smith M, Janzen D, Hajibabaei M, Burns J, Solis A, Brown J, Cardinal S, Goulet H, Hebert P (2014) Review of Apanteles sensu stricto (Hymenoptera, Braconidae, Microgastrinae) from Area de Conservación Guanacaste, northwestern Costa Rica, with keys to all described species from Mesoamerica. ZooKeys 383: 1-565. https://doi.org/10.3897/zookeys.383.6418
Figure 177 - Apanteles duvalierbricenoi. A Habitus, lateral view B Fore wing C Antenna D Hypopygium and ovipositor sheats E Head, frontal view F Head, meso- and metasoma, dorsal view.
Figure 2 from: Frahnert S, Aguilera Román R, Eckhoff P, Wiley JW (2015) Juan Cristóbal Gundlach's collections of Puerto Rican birds with special regard to types. Zoosystematics and Evolution 91(2): 177-189. https://doi.org/10.3897/zse.91.5550
Figure 2 - ZMB 21632: Mimus polyglottos, female, collected by Gundlach on Puerto Rico in October 1873, mounted and labelled in ZMB, remounted in the 20th century (photo Hwa Ja Götz, MfN).
Figure 1 from: Frahnert S, Aguilera Román R, Eckhoff P, Wiley JW (2015) Juan Cristóbal Gundlach's collections of Puerto Rican birds with special regard to types. Zoosystematics and Evolution 91(2): 177-189. https://doi.org/10.3897/zse.91.5550
Figure 1 - ZMB 21494: Melanerpes portoricensis, female, collected by Gundlach on Puerto Rico in November 1873, mounted and labelled in ZMB (photo Hwa Ja Götz, MfN).
Figure 3 from: Frahnert S, Aguilera Román R, Eckhoff P, Wiley JW (2015) Juan Cristóbal Gundlach's collections of Puerto Rican birds with special regard to types. Zoosystematics and Evolution 91(2): 177-189. https://doi.org/10.3897/zse.91.5550
Figure 3 - Original label of Gundlach of the holotype of Chlorestes gertrudis ZMB 21628 (photo Hwa Ja Götz, MfN).
Figures 177-179 from: Huemer P, Karsholt O (2018) Revision of the genus Megacraspedus Zeller, 1839, a challenging taxonomic tightrope of species delimitation (Lepidoptera, Gelechiidae). ZooKeys 800: 1-278. https://doi.org/10.3897/zookeys.800.26292
Figures 177-179 Megacraspedus male genitalia. 177M.cuencellus Caradja, 1920 – Spain, GU 15/1401 P.H. (ZMUC) 178M.bidentatus sp. n. – Holotype, Spain, GU 16/1433 P.H. (ZMUC) 179M.fuscus sp. n. – Holotype, Spain, GU 17/1478 P.H. (ZMUC).
Figure 6 from: Kashani GM, Abedini A, Montesanto G (2018) Terrestrial isopods of the family Eubelidae Budde-Lund, 1899 from Iran, with description of a new species (Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 177-187. https://doi.org/10.3897/zookeys.801.23340
Figure 6 Somalodillo sp. A lateral view B cephalothorax and pereonite 1–2 in lateral view C cephalothorax in frontal view D pleon in dorsal view. Scale bar: 1 mm.
Figure 3 from: Kashani GM, Abedini A, Montesanto G (2018) Terrestrial isopods of the family Eubelidae Budde-Lund, 1899 from Iran, with description of a new species (Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 177-187. https://doi.org/10.3897/zookeys.801.23340
Figure 3 Koweitoniscusshafieii sp. n., female, paratype. A lateral view B pleon in dorsal view C cephalothorax and pereonite 1 in dorsal view D cephalothorax in frontal view. Scale bar: 1 mm.
Figure 4 from: Kashani GM, Abedini A, Montesanto G (2018) Terrestrial isopods of the family Eubelidae Budde-Lund, 1899 from Iran, with description of a new species (Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 177-187. https://doi.org/10.3897/zookeys.801.23340
Figure 4 Koweitoniscusshafieii sp. n., paratype, female. A lateral view B cephalothorax in dorsal view C cephalothorax in frontal view D antennula E antenna F telson and uropods. Scale bar: 1 mm.
Figure 1 from: Kashani GM, Abedini A, Montesanto G (2018) Terrestrial isopods of the family Eubelidae Budde-Lund, 1899 from Iran, with description of a new species (Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 177-187. https://doi.org/10.3897/zookeys.801.23340
Figure 1 Map of Iran indicating the sampling localities of Periscyphisvittatus (▼), Koweitoniscustamei (●), K.shafieii (▲), and Somalodillo sp. (◄). Numbers refer to the sampling localities indicated in brackets in the material examined section for each species. Abbreviations: Bu: Bushehr; CB: Chehar–Mahal va Bakhtiari; Fa: Fars; Im: Ilam; KB: Kohgiluyeh va Boyer–Ahmad; Kh: Khouzestan; Kr: Kerman; Lo: Lorestan; SB: Sistan va Balouchistan; Tr: Tehran.
Figure 5 from: Kashani GM, Abedini A, Montesanto G (2018) Terrestrial isopods of the family Eubelidae Budde-Lund, 1899 from Iran, with description of a new species (Isopoda, Oniscidea). In: Hornung E, Taiti S, Szlavecz K (Eds) Isopods in a Changing World. ZooKeys 801: 177-187. https://doi.org/10.3897/zookeys.801.23340
Figure 5 Koweitoniscusshafieii sp. n., male, paratype. A pereopod 1 B pereopod 7 C pleopod 1 endopodite with enlarged apex D pleopod 1 exopodite E pleopod 2 F pleopod 3 exopodite G pleopod 4 exopodite H pleopod 5 exopodite.
Fig 2 from: Bowles DE (2018) Introduced Japanese burrowing cricket (Orthoptera: Gryllidae: Velarifictorus (Velarifictorus) micado) range continues to expand in North America. Journal of Orthoptera Research 27(2): 177-181. https://doi.org/10.3897/jor.27.29067
Fig 2 Map showing the commonly projected distribution of Velarifictorus (Velarifictorus) micado (Saussure, 1877) in the United States of America and itscurrent known distribution. The shaded area indicates the previously reported range, triangles represent data collected by the authors, and circles represent data generated by public sources. Records are shown only for those locations that fall outside the previously reported range.
Fig 1 from: Bowles DE (2018) Introduced Japanese burrowing cricket (Orthoptera: Gryllidae: Velarifictorus (Velarifictorus) micado) range continues to expand in North America. Journal of Orthoptera Research 27(2): 177-181. https://doi.org/10.3897/jor.27.29067
Fig 1 Velarifictorus (Velarifictorus) micado (Saussure, 1877), nymph. Source: USGS Bee Inventory and Monitoring Lab, Public Domain.
MUSES Fractional Vegetation Coverage (FVC) 8-Day Global 250m SIN Grid in 2016 (001–177)
<p>The MUltiscale Satellite remotE Sensing (MUSES) product suite includes products with different spatial and temporal resolutions for parameters such as Normalized Difference Vegetation Index (NDVI), Near-Infrared Reflectance of Vegetation (NIRv), Leaf Area Index (LAI), Fraction of Absorbed Photosynthetically Active Radiation (FAPAR), Fractional Vegetation Coverage (FVC), Gross Primary Production (GPP), Net Primary Production (NPP). For more information about the MUSES products, please refer to this website (<a href="https://muses.bnu.edu.cn/">https://muses.bnu.edu.cn/</a>).</p> <p>This dataset is the MUSES global FVC product at 250m spatial resolution and 8-day temporal resolution. The MUSES FVC product is provided on a Sinusoidal grid and spans from 2000 to 2019 (continuously updated). It was generated from the MUSES LAI product at 250m resolution and other ancillary information using the complement to unity of the transmittance of light through the entire canopy in the nadir viewing direction (Xiao <em>et al</em>., 2016). The MUSES FVC values are physically consistent with the corresponding MUSES LAI values. The MUSES FVC product is spatially complete and temporally continuous.</p> <p>This dataset is the MUSES FVC product in 2016 (001–177). <em>Please <a href="https://zenodo.org/record/7511224#.Y7oJM_5Bw2x"><strong><em>click</em> here</strong></a> to download the MUSES FVC product <strong>in 2015 (185–361)</strong></em>, and <em><a href="http://zenodo.org/record/7508632#.Y7gpc31ByUk"><strong>click here</strong></a> to download the MUSES FVC product <strong>in 2016 (185–361</strong></em><em><strong>)</strong></em>.</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2016 (001–177)</li> <li>Spatial Resolution: 250m</li> <li>Temporal Resolution: 8 days</li> <li>Projection: Sinusoidal</li> <li>Data Format: HDF</li> <li>Scale: 0.01</li> <li>Valid Range: 0 – 100</li> </ul> <p><strong>Citation </strong>(Please cite this paper whenever these data are used)<strong>:</strong></p> <ol> <li>Xiao Zhiqiang, <em>et a</em>l. (2016). Estimating the Fractional Vegetation Cover from GLASS Leaf Area Index Product. <em>Remote Sensing</em>, 8, 337.</li> </ol> <p>If you have any questions, please contact Prof. Zhiqiang Xiao (zhqxiao@bnu.edu.cn).</p>
MUSES Fractional Vegetation Coverage (FVC) 8-Day Global 250m SIN Grid in 2011 (001–177)
<p>The MUltiscale Satellite remotE Sensing (MUSES) product suite includes products with different spatial and temporal resolutions for parameters such as Normalized Difference Vegetation Index (NDVI), Near-Infrared Reflectance of Vegetation (NIRv), Leaf Area Index (LAI), Fraction of Absorbed Photosynthetically Active Radiation (FAPAR), Fractional Vegetation Coverage (FVC), Gross Primary Production (GPP), Net Primary Production (NPP). For more information about the MUSES products, please refer to this website (<a href="https://muses.bnu.edu.cn/">https://muses.bnu.edu.cn/</a>).</p> <p>This dataset is the MUSES global FVC product at 250m spatial resolution and 8-day temporal resolution. The MUSES FVC product is provided on a Sinusoidal grid and spans from 2000 to 2019 (continuously updated). It was generated from the MUSES LAI product at 250m resolution and other ancillary information using the complement to unity of the transmittance of light through the entire canopy in the nadir viewing direction (Xiao <em>et al</em>., 2016). The MUSES FVC values are physically consistent with the corresponding MUSES LAI values. The MUSES FVC product is spatially complete and temporally continuous.</p> <p>This dataset is the MUSES FVC product in 2011 (001–177). <em>Please <a href="https://zenodo.org/record/7533423#.Y8HkE3ZByUk"><strong><em>click</em> here</strong></a> to download the MUSES FVC product <strong>in 2010 (185–361)</strong></em>, and <em><a href="http://zenodo.org/record/7528428#.Y8CZcnZByUk"><strong>click here</strong></a> to download the MUSES FVC product <strong>in 2011 (185–361</strong></em><em><strong>)</strong></em>.</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2011 (001–177)</li> <li>Spatial Resolution: 250m</li> <li>Temporal Resolution: 8 days</li> <li>Projection: Sinusoidal</li> <li>Data Format: HDF</li> <li>Scale: 0.01</li> <li>Valid Range: 0 – 100</li> </ul> <p><strong>Citation </strong>(Please cite this paper whenever these data are used)<strong>:</strong></p> <ol> <li>Xiao Zhiqiang, <em>et a</em>l. (2016). Estimating the Fractional Vegetation Cover from GLASS Leaf Area Index Product. <em>Remote Sensing</em>, 8, 337.</li> </ol> <p>If you have any questions, please contact Prof. Zhiqiang Xiao (zhqxiao@bnu.edu.cn).</p>
MUSES Fractional Vegetation Coverage (FVC) 8-Day Global 250m SIN Grid in 2008 (001–177)
<p>The MUltiscale Satellite remotE Sensing (MUSES) product suite includes products with different spatial and temporal resolutions for parameters such as Normalized Difference Vegetation Index (NDVI), Near-Infrared Reflectance of Vegetation (NIRv), Leaf Area Index (LAI), Fraction of Absorbed Photosynthetically Active Radiation (FAPAR), Fractional Vegetation Coverage (FVC), Gross Primary Production (GPP), Net Primary Production (NPP). For more information about the MUSES products, please refer to this website (<a href="https://muses.bnu.edu.cn/">https://muses.bnu.edu.cn/</a>).</p> <p>This dataset is the MUSES global FVC product at 250m spatial resolution and 8-day temporal resolution. The MUSES FVC product is provided on a Sinusoidal grid and spans from 2000 to 2019 (continuously updated). It was generated from the MUSES LAI product at 250m resolution and other ancillary information using the complement to unity of the transmittance of light through the entire canopy in the nadir viewing direction (Xiao <em>et al</em>., 2016). The MUSES FVC values are physically consistent with the corresponding MUSES LAI values. The MUSES FVC product is spatially complete and temporally continuous.</p> <p>This dataset is the MUSES FVC product in 2008 (001–177). <em>Please <a href="https://zenodo.org/record/7540561#.Y8c995hBw2x"><strong><em>click</em> here</strong></a> to download the MUSES FVC product <strong>in 2007 (185–361)</strong></em>, and <em><a href="http://zenodo.org/record/7538189#.Y8SRkv5ByYl"><strong>click here</strong></a> to download the MUSES FVC product <strong>in 2008 (185–361</strong></em><em><strong>)</strong></em>.</p> <p><strong>Dataset Characteristics:</strong></p> <ul> <li>Spatial Coverage: Global</li> <li>Temporal Coverage: 2008 (001–177)</li> <li>Spatial Resolution: 250m</li> <li>Temporal Resolution: 8 days</li> <li>Projection: Sinusoidal</li> <li>Data Format: HDF</li> <li>Scale: 0.01</li> <li>Valid Range: 0 – 100</li> </ul> <p><strong>Citation </strong>(Please cite this paper whenever these data are used)<strong>:</strong></p> <ol> <li>Xiao Zhiqiang, <em>et a</em>l. (2016). Estimating the Fractional Vegetation Cover from GLASS Leaf Area Index Product. <em>Remote Sensing</em>, 8, 337.</li> </ol> <p>If you have any questions, please contact Prof. Zhiqiang Xiao (zhqxiao@bnu.edu.cn).</p>
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.