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Dataset results
109 results for “year 2020”
Figure 2 from: Gogoi J, Rana TS (2020) The rediscovery of Uraria lacei Craib (Leguminosae) after 67 years from India. PhytoKeys 160: 99-107. https://doi.org/10.3897/phytokeys.160.54237
Figure 2 The first photographs of Uraria lacei Craib A habitat B habit C young panicle D mature panicle E stipules and magnified stem hairs F leaflets G upper surface of leaf H lower surface of leaf I abaxial surface of bract J adaxial surface of bract K rachis and fruit position with magnified hairs of pedicel L flower position on the panicle M single flower N calyx (Safranin stained) O petals–standard, wings, keel (Safranin stained) P androecium with magnified anthers (Safranin stained) Q gynoecium with magnified hairs R single pod S single seed. Scale bars: 2 mm (J, N–Q); 500 µm (S).
Figure 2 from: Wang T, Xiao B, Liu E-D, Nguyen KS, Duan J-Q, Wang K-L, Yan Y-H, Xiang J-Y (2020) Rediscovery of Angiopteris tonkinensis (Marattiaceae) after 100 years, and its revision. PhytoKeys 161: 1-9. https://doi.org/10.3897/phytokeys.161.54912
Figure 2 Morphological observation. Protomarattia tonkinensis (BX19001): A habit B frond C, E, F, G, H, M, O sporangia D rhizome N scale of stipe P exospores. Protomarattia tonkinensis (AT1-2): I whole plant J rhizome K stipe L sporangia. Archangiopteris tamdaoensis (SG2765): Q, U whole plant R frond S, T sporangia; Archangiopteris tamdaoensis (Ching 1958): V whole plant W, X1 sporangia X2 exospores X3 scale.
Figure 1 from: Wang T, Xiao B, Liu E-D, Nguyen KS, Duan J-Q, Wang K-L, Yan Y-H, Xiang J-Y (2020) Rediscovery of Angiopteris tonkinensis (Marattiaceae) after 100 years, and its revision. PhytoKeys 161: 1-9. https://doi.org/10.3897/phytokeys.161.54912
Figure 1 Distribution records of Protomarattia tonkinensis Hayata noted by Hayata (1919, green star) and new records in China and Vietnam (red stars).
Figure 3 from: Wang T, Xiao B, Liu E-D, Nguyen KS, Duan J-Q, Wang K-L, Yan Y-H, Xiang J-Y (2020) Rediscovery of Angiopteris tonkinensis (Marattiaceae) after 100 years, and its revision. PhytoKeys 161: 1-9. https://doi.org/10.3897/phytokeys.161.54912
Figure 3 Maximum Likelihood phylogeny derived from the combined data (atpB+rbcL+rps4-trnS+trnL-F). Numbers on branches are support values of ML, * means 100%.
Figure 9 from: Vahtera V, Stoev P, Akkari N (2020) Five million years in the darkness: A new troglomorphic species of Cryptops Leach, 1814 (Chilopoda, Scolopendromorpha) from Movile Cave, Romania. ZooKeys 1004: 1-26. https://doi.org/10.3897/zookeys.1004.58537
Figure 9 Map of Europe showing geographic distribution of Cryptops specimens analyzed herein. Asterisk – C. speleorex sp. nov. Dot – other Cryptops spp. used in the study (see Table 1 for details).
Figure 5 from: Vahtera V, Stoev P, Akkari N (2020) Five million years in the darkness: A new troglomorphic species of Cryptops Leach, 1814 (Chilopoda, Scolopendromorpha) from Movile Cave, Romania. ZooKeys 1004: 1-26. https://doi.org/10.3897/zookeys.1004.58537
Figure 5 Cryptops spp., Coxopleural pore field ACryptops speleorex sp. nov., holotype BCryptops anomalans, Pirin Mts (Bulgaria).
Figure 6 from: Vahtera V, Stoev P, Akkari N (2020) Five million years in the darkness: A new troglomorphic species of Cryptops Leach, 1814 (Chilopoda, Scolopendromorpha) from Movile Cave, Romania. ZooKeys 1004: 1-26. https://doi.org/10.3897/zookeys.1004.58537
Figure 6 Cryptops speleorex sp. nov., legs. A holotype, walking leg B paratype (ZMUT), walking leg, close-up of apical claw C holotype, ultimate legs, lateral view D, E paratype (NHMW), distal articles of ultimate teeth showing saw teeth.
Figure 7 from: Vahtera V, Stoev P, Akkari N (2020) Five million years in the darkness: A new troglomorphic species of Cryptops Leach, 1814 (Chilopoda, Scolopendromorpha) from Movile Cave, Romania. ZooKeys 1004: 1-26. https://doi.org/10.3897/zookeys.1004.58537
Figure 7 The single most parsimonious tree of length 1586 steps with jackknife resampling values > 50% shown on the nodes. Branch lengths represent the number of optimized character-state changes.
Figure 4 from: Vahtera V, Stoev P, Akkari N (2020) Five million years in the darkness: A new troglomorphic species of Cryptops Leach, 1814 (Chilopoda, Scolopendromorpha) from Movile Cave, Romania. ZooKeys 1004: 1-26. https://doi.org/10.3897/zookeys.1004.58537
Figure 4 Cryptops spp., sternites 8–9 and spiracles A, B sternites 8–9 ACryptops speleorex sp. nov., holotype, arrow indicating the endosternite BCryptops anomalans, Pirin Mts (Bulgaria) C, D spiracles CCryptops speleorex sp. nov., holotype DCryptops anomalans, Pirin Mts (Bulgaria).
Figure 3 from: Vahtera V, Stoev P, Akkari N (2020) Five million years in the darkness: A new troglomorphic species of Cryptops Leach, 1814 (Chilopoda, Scolopendromorpha) from Movile Cave, Romania. ZooKeys 1004: 1-26. https://doi.org/10.3897/zookeys.1004.58537
Figure 3 Cryptops spp., forcipular coxosternum, ventral view ACryptops speleorex sp. nov., holotype BCryptops anomalans, Pirin Mts (Bulgaria).
Figure 1 from: Vahtera V, Stoev P, Akkari N (2020) Five million years in the darkness: A new troglomorphic species of Cryptops Leach, 1814 (Chilopoda, Scolopendromorpha) from Movile Cave, Romania. ZooKeys 1004: 1-26. https://doi.org/10.3897/zookeys.1004.58537
Figure 1 Cryptops speleorex sp. nov. A holotype, habitus, dorsal view B paratype (ZMUT), posteriormost segments and ultimate legs, dorsal view.
Figure 2 from: Vahtera V, Stoev P, Akkari N (2020) Five million years in the darkness: A new troglomorphic species of Cryptops Leach, 1814 (Chilopoda, Scolopendromorpha) from Movile Cave, Romania. ZooKeys 1004: 1-26. https://doi.org/10.3897/zookeys.1004.58537
Figure 2 Cryptops spp., head and anteriormost segments ACryptops speleorex sp. nov., holotype, dorsal view BCryptops anomalans, Pirin Mts (Bulgaria), dorsolateral view (slightly apical).
Dataset of EMBCP survey results: 17-18 years old students (2020)
<p>In order to provide a picture of marine science communication in Europe being presented at the European Marine Board Future Science Brief N°8 ‘<a href="https://www.marineboard.eu/publications/marine-science-communication-europe-way-forward">Marine Science Communication in Europe: a way forward</a>’, the European Marine Board Communications Panel (EMCP) carried out three surveys targeting different stakeholder groups from across Europe. The results of these surveys underpin this document. Two main, in-depth surveys were carried out, one targeting experts (Ocean scientists, marine policy-makers, industry representatives, media professionals and Ocean communication or education experts) and the other targeting secondary-school students (17-18 years old). This dataset presents the results of the survey targeting students.</p>
Fig. 3. SNSB-BSPG 2020 XCIII 18 containing a in A new glimpse on trophic interactions of 100-million-year old lacewing larvae
Fig. 3. SNSB-BSPG 2020 XCIII 18 containing a neuropteran larva with attached mite from Hukawng Valley, Kachin State, Myanmar; Turonian– Cenomanian, Cretaceous, 90–100 mya. Labeled version of Fig. 2, dorsal (A1) and ventral (A2) views (colour-marked version online, mite marked in light green); arrows point to single tooth in stylet. Close-up of one of the stylets (A3); arrow points to single tooth. Close-up on attached mite, dorsal (A4) and ventral (A5) views. Abbreviations: co3, coxa of thorax appendage 3; fe1, 3, femur of thorax appendage 1, 3; l2?, 3?, presumed (walking) leg 2?, 3?; t1, 3, thorax appendage 1, 3; ta1, 3, tarsus of thorax appendage 1, 3; ti1, 3, tibia of thorax appendage 1, 3; tr3, trochanter of thorax appendage 3.
Agricultural production in the years 2003, 2020, and 2023 in the Cuitzeo Basin
Open the record for dataset details and reuse information.
Figure 5 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 5 Ratios of different ways to cite Aurivillius's series of works from 1912 to 2019.
Figure 1 from: Gogoi J, Rana TS (2020) The rediscovery of Uraria lacei Craib (Leguminosae) after 67 years from India. PhytoKeys 160: 99-107. https://doi.org/10.3897/phytokeys.160.54237
Figure 1 Map of Manipur showing the locality where Uraria lacei was rediscovered.
Figure 8 from: Vahtera V, Stoev P, Akkari N (2020) Five million years in the darkness: A new troglomorphic species of Cryptops Leach, 1814 (Chilopoda, Scolopendromorpha) from Movile Cave, Romania. ZooKeys 1004: 1-26. https://doi.org/10.3897/zookeys.1004.58537
Figure 8 Likelihood tree with bootstrap values > 50% shown for each node.
Example for USA metrological years 2020 and 2022 results data sets and post processing python code
<p>The files contain LCF model output data for 2020 and 2022 metrological years in the US as well as a python post-processing code to aggregate the reults of these files.</p>
FIG. 2 in State of the Amphibia 2020: A Review of Five Years of Amphibian Research and Existing Resources
FIG. 2. The number of species in each order threatened by different drivers of amphibian decline, where each species can be represented by multiple drivers. IUCN conservation status categories are: extinct or extinct in the wild (EX/EW), critically endangered (CR), endangered (EN), vulnerable (VU), near threatened (NT), least concern (LC), and data deficient (DD). Of species with accounts on AmphibiaWeb, 53.3% (1,261 of 2,364 species) have data on at least one factor driving their decline.
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
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.