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109 results for “year 2020”
FIG. 4 in State of the Amphibia 2020: A Review of Five Years of Amphibian Research and Existing Resources
FIG. 4. Additions of amphibian species over time. (A) Geographic heat map and point cluster of new species described between 2016 and 2020. The countries with the highest numbers of new species in this time period are China (100 species), Brazil (95 species), Ecuador (67 species), Madagascar (56 species), and Peru (56 species). Inset graphs indicate the cumulative number of new species described by region between 2007 and 2020; years 2016–2020 are highlighted with the blue rectangle; y-axis scale indicated for Latin America is the same for all insets. Total cumulative number of (B) species and (C) genera in AmphibiaWeb taxonomy database, split by order. (D) Cumulative numbers of formal and unspecified (informal) species names in the GenBank Taxonomy database. Examples of unspecified names are ''Hyla cf areniCOlOr'' or ''Hyla sp. B.'' See supplemental data files for data used to generate this figure (see Data Accessibility).
FIG. 3 in State of the Amphibia 2020: A Review of Five Years of Amphibian Research and Existing Resources
FIG. 3. Images of several new species described in the last five years. (A) IChthyOPhiS benjii from Mizoram, India (Lalremsanga et al., 2021), photo by Hmar Tlawmte Lalremsanga; (B) HydrOManteS SaMWeli (Bingham et al., 2018), holotype from Shasta County, CA, USA, photo copyright Robert Hansen; (C) NaSUtiXalUS MedOGenSiS (Jiang et al., 2016), holotype from Medog, Tibet, China, photo by Ke Jiang; (D) Rhinella lilyrOdriGUeZae (Cusi et al., 2017), holotype from Cordillera Azul National Park, Perú, photo copyright Anton Sorokin; (E) PriStiMantiS VerrUCOlatUS (Páez and Ron, 2019), holotype from Azuay Province, Ecuador, photo by Santiago Ron; (F) Mini MUM (Scherz et al., 2019), holotype from Manombo Special Reserve, Madagascar, photo by Mark Scherz.
FIG. 7 in State of the Amphibia 2020: A Review of Five Years of Amphibian Research and Existing Resources
FIG. 7. The (A) cumulative amount of data and (B) number of studies in the Sequence Read Archive, separated by model (AMbyStOMa MeXiCanUM, XenOPUS laeViS, XenOPUS trOPiCaliS) and non-model (all other) species. (C) Total number of species represented in the Sequence Read Archive. Years missing data points indicate that no data were submitted that year for that order.
FIG. 6 in State of the Amphibia 2020: A Review of Five Years of Amphibian Research and Existing Resources
FIG. 6. (A) Cumulative number and (B) size of sequenced amphibian genomes by year. The blue box highlights the years 2016–2020.
FIG. 1 in State of the Amphibia 2020: A Review of Five Years of Amphibian Research and Existing Resources
FIG. 1. Trends in amphibian research from 2016 through 2020 by (A) proportion change in publication number and (B) absolute number of publications in each biological subfield. The additional categories of ''amphibian'' and ''background'' in panel A refer to the proportional change of all amphibian publications and all publications (not amphibian-specific) from 2016 to 2020.
FIG. 8 in State of the Amphibia 2020: A Review of Five Years of Amphibian Research and Existing Resources
FIG. 8. The cumulative number of mitochondrial DNA (mtDNA), nuclear DNA (nDNA), and messenger RNA (mRNA) sequences, as well as species, added to the GenBank Nucleotide database from 1982 to 2020, highlighting the last five years, 2016–2020, in blue. Some of the projects that contributed substantially to increase sequence numbers are highlighted on the figure; see text for references. Years missing data points indicate that no data were submitted that year for that order.
Climatic Data Analysis Years 2019, 2020, 2021
<ul> <li> Climatic Data Analysis:<br> Years 2019-2020-2021, naming convention of the Excels organized by month (English):<br> “Month”_”Year”_T_HR_V<br> </li> <li>The data structure is:<br> 1st Column Sampling Time (h) - 2nd Temperature (ºC) - 3rd Relative Humidity (%) - 4th Wind Speed (m/s)</li> </ul>
Southwest Greenland Ice Sheet Yearly Ice Velocities dataset from 1984 to 2020
<p>The present dataset is published after the work of Paul Halas, Jérémie Mouginot, Basile de Fleurian and Petra Langebroek on the Southwest of the Greenland Ice Sheet. It provides ice velocity products derived using the processing chain developped by Jérémie Mouginot and collaborators, following the steps described in Romain Millan’s paper ”Mapping Surface Flow Velocity of Glaciers at Regional Scale Using a Multiple Sensors Approach” (https://doi.org/10.3390/rs11212498). In order to derive the velocity fields, we used all available imagery from Landsat 5, Landsat 7 and Landsat 8, from 1984 up to 2021, with less than 40% cloud coverage. Unfortunately, no data was collected for 1984, 1993, 1996, 1997 and 1998. Please also note that the spatial coverage is really limited before 1999. From 2016, satellite imagery from Sentinel-2 is also used, improving the spatial coverage of our velocity maps.<br> In this archive, we provide:<br> • Complete dataset of all velocity fields derived from every image pair;<br> • Yearly median results run through all data for every single pixel;<br> • Yearly GeoTIFF spatial aggregate of all previously computed medians;<br> • The shapefile ”cube grid.shp” describing the grid used for our area.</p> <p>For any question, please contact Paul Halas (<a href="mailto:paul.halas@uib.no">paul.halas@uib.no</a>).</p>
NEP 2020 with them "Four Year Degree Programme with Multiple Entry and Exit" and "Pursuing two Academic Programmes Simultaneously and Twining / Dual / Joint Degrees"
<p>UGC Sponsored Online Workshop on<strong> NEP 2020 </strong>with them<strong> </strong>“Four Year Degree Programme with Multiple Entry and Exit” and “Pursuing two Academic Programmes Simultaneously and Twining / Dual / Joint Degrees” on<strong> 18 July 2022. </strong>Organized by Mumbai University.</p>
A pilot study on the drug price revision strategy in Japan: A comparison among fiscal years 2018, 2020, and 2022
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Figure 7 from: Lin M-Y, Ge S-Q (2020) Aurivillius's "Neue oder wenig bekannte Coleoptera Longicornia" (1886–1927), the correct years and page numbers. ZooKeys 911: 113-137. https://doi.org/10.3897/zookeys.911.48684
Figure 7 Ratios of different ways to cite Aurivillius's series of works before the year 1990, between 1990–2000, and after the year 2000.
Figure 1 from: Lin M-Y, Ge S-Q (2020) Aurivillius's "Neue oder wenig bekannte Coleoptera Longicornia" (1886–1927), the correct years and page numbers. ZooKeys 911: 113-137. https://doi.org/10.3897/zookeys.911.48684
Figure 1 First page of part 18, showing the title, date of submission, journal's page number and Aurivillius's page number.
Figure 3 from: Lin M-Y, Ge S-Q (2020) Aurivillius's "Neue oder wenig bekannte Coleoptera Longicornia" (1886–1927), the correct years and page numbers. ZooKeys 911: 113-137. https://doi.org/10.3897/zookeys.911.48684
Figure 3 Last page of part 18, showing the species number, figure numbers, ending mark, release date, journal's page number and Aurivillius's page number.
Figure 6 from: Lin M-Y, Ge S-Q (2020) Aurivillius's "Neue oder wenig bekannte Coleoptera Longicornia" (1886–1927), the correct years and page numbers. ZooKeys 911: 113-137. https://doi.org/10.3897/zookeys.911.48684
Figure 6 Ratios of different ways to cite Aurivillius's series of works before and after the year 2000.
Figure 2 from: Lin M-Y, Ge S-Q (2020) Aurivillius's "Neue oder wenig bekannte Coleoptera Longicornia" (1886–1927), the correct years and page numbers. ZooKeys 911: 113-137. https://doi.org/10.3897/zookeys.911.48684
Figure 2 Second page of part 18, showing the species number, journal's page number and Aurivillius's page number.
Figure 4 from: Lin M-Y, Ge S-Q (2020) Aurivillius's "Neue oder wenig bekannte Coleoptera Longicornia" (1886–1927), the correct years and page numbers. ZooKeys 911: 113-137. https://doi.org/10.3897/zookeys.911.48684
Figure 4 page 29 of part 23, showing the part number, species number, journal's page number and Aurivillius's page number, and four cases of wrong citation.
Supplementary material 1 from: Lin M-Y, Ge S-Q (2020) Aurivillius's "Neue oder wenig bekannte Coleoptera Longicornia" (1886–1927), the correct years and page numbers. ZooKeys 911: 113-137. https://doi.org/10.3897/zookeys.911.48684
: Data type: personal communications / figures.
Figure 4 from: Hofmann MM, Renner SS (2020) One-year-old flower strips already support a quarter of a city's bee species. Journal of Hymenoptera Research 75: 87-95. https://doi.org/10.3897/jhr.75.47507
Figure 4 The percentage of bee species recorded at each flower strip that is also found in the surrounding area at distances of 500, 1000, and 1500 m.
Supplementary material 3 from: Hofmann MM, Renner SS (2020) One-year-old flower strips already support a quarter of a city's bee species. Journal of Hymenoptera Research 75: 87-95. https://doi.org/10.3897/jhr.75.47507
: Data type: species data
Figure 2 from: Hofmann MM, Renner SS (2020) One-year-old flower strips already support a quarter of a city's bee species. Journal of Hymenoptera Research 75: 87-95. https://doi.org/10.3897/jhr.75.47507
Figure 2 The flower strip at Fockensteinstraße as an example of the urban context of the flower strips studied here.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.