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263 results for “S3”
S3 | NORMANCT15 | NORMAN Collaborative Trial Targets and Suspects
<p>This is the collection associated with list S3 NORMANCT15 on the NORMAN Suspect List Exchange.</p> <p><a href="https://www.norman-network.com/nds/SLE/">https://www.norman-network.com/nds/SLE/</a></p> <p>S3 | NORMANCT15 | <strong>NORMAN Collaborative Trial Targets and Suspects</strong></p> <p>Schymanski <em>et al</em>. 2015.<br>DOI: <a href="http://link.springer.com/article/10.1007/s00216-015-8681-7">10.1007/s00216-015-8681-7</a></p> <p>Upload 22/3/2020: added merged InChIKey file for PubChem data extraction. 27/6/2025: added merged CSV</p>
Vanderpool 41SM77 FIN-S3
<p>3D laser scan data for Caddo NAGPRA vessels from the Vanderpool site (41SM77) in Smith County, Texas. All vessels were scanned using a ZScanner700CX running VXElements 2.0 via the scanner direct control function in Geomagic Design X, and the collection can also be accessed here (http://crhr-archive.sfasu.edu/handle/123456789/92). </p> <p>Many thanks to the Caddo Nation of Oklahoma and the Gregg County Historical Museum for permissions and access.</p>
Hoofprints in the Sand Supplement S3: ADI & GMM datasheet, TPS and sliders for GMM analysis
<p>Datasheet: Provenience, dating, measurements (mm), astragalar index values, and catalogue numbers for the astragali used in the ADI and GMM analyses (.csv file); thin plate spline coordinates (.tps file) and sliders (.csv file) for use in the GMM analysis. As demonstrated in Harding, S. et al. Hoofprints in the Sand: A Metric Study of Livestock on the Southern Phoenician Coast. In preparation for <em>Quaternary International</em>. </p>
Appendix S3 from: Droissart V, Dauby G, Hardy OJ, Deblauwe V, Harris DJ, Janssens S, Mackinder BA, Blach-Overgaard A, Sonké B, Sosef MSM, Stévart T, Svenning J-C, Wieringa JJ, Couvreur TLP (2018) Beyond trees: biogeographical regionalization of tropical Africa. Journal of Biogeography. DOI:10.1111/jbi.13190
<p>This dataset corresponds to GIS file that were generated in the study published by Droissart, Dauby et al. in <em>Journal of Biogeography</em>:</p> <p>Droissart V, Dauby G, Hardy OJ, Deblauwe V, Harris DJ, Janssens S, Mackinder BA, Blach-Overgaard A, Sonké B, Sosef MSM, Stévart T, Svenning J-C, Wieringa JJ, Couvreur TLP (2018) Beyond trees: biogeographical regionalization of tropical Africa. <em>Journal of Biogeography. </em>DOI:10.1111/jbi.13190</p> <p><em>Please cite the aforementioned article and the dataset herein, when using of any of these files in this dataset.</em></p> <p> </p> <p>The GIS file is referred in the paper as <strong>Appendix S3</strong> and correspond to the map presented in Figure 1. Each polygons of the shapefile correspond to the main floristic bioregions and transition zones of tropical Africa delimited using bipartite network clustering analysis of 24,719 plant species.</p> <p>The coordinate system of the ESRI shapefile is GCS_WGS_1984. Field descriptions for the associate table are:</p> <ul> <li><strong>bionames</strong>: name of the bioregions as given in Table S1.1.</li> <li><strong>bioreg_ID</strong>: identifier of the bioregions as given in Table S1.1 and Fig. 1. T= Transition zones</li> <li><strong>cluster_ID</strong>: identifier of clusters delimited using bipartite network clustering on the 24,719 plant species of the RAINBIO database, as given in Table S1.1 and Fig. S2.1.</li> </ul>
Powering the Circular Future: Climate Change and Economic Perspectives on Second-Life Batteries in the Belgian Context - Supporting Information S2 and S3
<p>The data contains the databases used to calculate the climate change impacts of second-life batteries including full Life Cycle Inventory data published in the article entitled "Powering the Circular Future: Climate Change and Economic Perspectives on Second-Life Batteries in the Belgian Context".</p> <p>The second file S3 contains the economic data and the climate change impacts of the same article.</p> <p>In version 2.0 of S2, a sensitivity analysis and more detail is added in the results.</p> <p> </p>
Hoofprints in the Sand Supplement S3: ADI Datasheet
<p>Datasheet: Provenience, dating, measurements (mm), astragalar index values, and catalogue numbers for the sheep astragali used in the ADI analyses (.csv file)</p>
Marcell Experimental Forest monthly porewater chemistry at the S3 fen, 2013 - ongoing
This data set reports the chemistry of porewater in the S3 peatland that was collected at the Marcell Experimental Forest (MEF) in Itasca County, Minnesota. Porewaters at four depths (0 to 1 m depths) have been collected about monthly from three different nest of piezometers since 2013, though never when samplers were frozen. Samples are measured for pH, specific conductivity, anions (chloride, sulfate), cations (calcium, magnesium, potassium, sodium, aluminum, iron, manganese, strontium), silicon, nutrients (ammonium, nitrate, soluble reactive phosphorus, total nitrogen, total phosphorus), and total organic carbon. The MEF is operated and maintained by the USDA Forest Service, Northern Research Station.
Table S3. List of Locustella sound recordings included in bioacoustic analysis surrounding description of the Taliabu Grasshopper-Warbler. The table provides information on sound library sources and sampling localities of recordings as well as raw data on all 11 bioacoustic parameters measured (see Supplementary Materials section SM3 for more details on parameters). Recordings whose source is labeled as "private recording" were obtained by colleagues and are available upon demand from the corresponding author.
<p>supplement to Rheindt, Frank E., Prawiradilaga, Dewi M., Ashari, Hidayat, Suparno, Gwee, Chyi Yin, Lee, Geraldine W. X., Wu, Meng Yue, Ng, Nathaniel S. R. (2020): A lost world in Wallacea: Description of a montane archipelagic avifauna. Science 367: 167-170, DOI: 10.1126/science.aax2146</p>
Video S3 - Organic Pellet Application to Carrington Island Spawning Site
<p><strong>Video S3.</strong> Suppression of invasive lake trout by treatment of spawning sites with organic pellets to kill embryos in an IPM approach. Because only a few weeks are available to safely work on Yellowstone Lake following the peak of lake trout spawning each autumn, we expanded the embryo suppression research to include a comprehensive treatment of a spawning site with organic pellets by helicopter (with long line and seeder/spreader) to better understand the logistical constraints that may be faced when attempting large-scale, multi-site applications in the future. Dr. Christopher Guy of the USGS Montana Cooperative Fishery Research Unit describes the Carrington Island spawning site. During an October 2019 experimental treatment, all of the rocky substrate at this spawning site (0.5 ha) was treated with 18,000 kg of organic (soy and wheat gluten) pellets in less than one day. The pellets induce organic decomposition and decline in dissolved oxygen concentration, which is lethal to lake trout embryos, curtailing recruitment from the site. Relative to the expansive lake areas intensively gillnetted over a 22-week season (> 60 km of gill nets set daily), lake trout embryo suppression targets relatively small sites during a period of 2–3 weeks in autumn where the majority of a future year class is concentrated. Broad-scale application of pellets in autumn may reduce lake trout recruitment and enhance population suppression as part of an IPM approach targeting multiple lake trout life stages because the area of the 14 verified spawning sites is only 11.4 ha (0.03% of lake surface area).</p>
Supplementary Figure S3 in Mitogenomic phylogeny of the Asian colobine genus Trachypithecus with special focus on Trachypithecus phayrei (Blyth, 1847) and description of a new species
Supplementary Figure S3 Morphometric comparisons (PCA performed on 12 molar measurements (A-B, same analysis as in Figure 4), 24 molar and cranial measurements (C-D), and 12 cranial measurements (E-F)) among Trachypithecus phayrei individuals representing West (red), Central (blue), and East (yellow) clades. Shown is projection of specimen scores on first and second principal components extracted with percentage of variance explained by each component (Tables S7-8). Specimens are clustered by species and represented by maturity (right panels) and sex (left panels) to show the influence of age and sex on comparisons.
Figure 6. Micropsectra aristata. A, pupal thorax. B, pupal frontal apotome. C, clypeal seta S3 in A revision of West Palaearctic species of the Micropsectra atrofasciata species group (Diptera: Chironomidae)
Figure 6. Micropsectra aristata. A, pupal thorax. B, pupal frontal apotome. C, clypeal seta S3 of larva.
Figure S3 in The structure of the compound eyes and phototaxis in two phenotypes of the bean pest Callosobruchus maculatus (Coleoptera: Bruchinae)
Figure S3. Electrophysiological waveforms of compound eyes of two types of Callosobruchus maculatus. A. White. B. Green (520–530 nm). C. Blue (460–470 nm). D. Ultraviolet (365 nm). E. Red (620–630 nm).
Supplementary Repository S3
<p>SQL queries and query results that were used to estimate the precision of MAIA jobs with UnKnoT on <a href="https://biigle.de">biigle.de</a>.</p>
Figure S3 in A skeleton from the Middle Jurassic of Scotland illuminates an earlier origin of large pterosaurs
Figure S3. Histology of the wing phalanx of the new Middle Jurassic pterosaur Dearc sgiathanach, Related to STAR Methods. Thin section in plane polarized light (a), crosspolarized light with a lambda filter (b), cross-polarized light (c), and illustration (d) of histological features: lines of arrested growth (red) and endosteal resorption (blue). Note position of external line of arrested growth very close to the external surface. (e) Inner cortex of wing phalanx under plane polarized light, showing densely vascularized fibrolamellar bone with a line of arrested growth (arrows). (f) Cortex of wing phalanx under cross-polarized light with a lambda filter, showing endosteal lamellae (el), lines of arrested growth (arrows), predominance of primary fibrolamellar bone (flb), and an external zone of parallel-fibered bone (pfb). Note parallel-fibered bone (appearing cyan) adjacent to the line of arrested growth. (g) External cortex of wing phalanx under plane polarized light, showing line of arrested growth (arrow) adjacent to the external bone surface (below dotted yellow line). (h) External cortex of wing phalanx under cross-polarized light, showing parallel-fibered bone (pfb) at the periosteal surface, possibly indicating a decrease in growth rate from the earlier fibrolamellar bone (flb). Arrows denote lines of arrested growth. Abbreviations: el, endosteal lamellae; flb, fibrolamellar bone; pfb, parallel-fibered bone.
Mean, standard deviation, and percentiles of the schema and domain scores of the German version of the Young Schema Questionnaire - Short Form 3 (YSQ-S3) in a German opportunity sample (n=1,150)
<p>Mean, standard deviation, and percentiles of the schema and domain scores of the German version of the Young Schema Questionnaire - Short Form 3 (YSQ-S3) in a German opportunity sample (n=1,150). Details are reported in: Kriston L, Schäfer J, Jacob GA, Härter M, Hölzel LP. Reliability and validity of the German version of the Young Schema Questionnaire - Short Form 3 (YSQ-S3). <em>Eur J Psychol Assess</em> 2013; 29: 205-212.</p> <p>IMPORTANT: This is an opportunity sample that is not representative of any well-defined population. Accordingly, the values should not be used as reference or norm values for the German version of the YSQ-S3.</p>
Mittelwert, Standardabweichung und Perzentile der Schema- und Domänen-Scores der deutschen Version des Young Schema Questionnaire - Short Form 3 (YSQ-S3) in einer deutschen Gelegenheitsstichprobe (n=1150)
<p>Mittelwert, Standardabweichung und Perzentile der Schema- und Domänen-Scores der deutschen Version des Young Schema Questionnaire - Short Form 3 (YSQ-S3) in einer deutschen Gelegenheitsstichprobe (n=1150). Details sind beschrieben in: Kriston L, Schäfer J, Jacob GA, Härter M, Hölzel LP. Reliability and validity of the German version of the Young Schema Questionnaire - Short Form 3 (YSQ-S3). <em>Eur J Psychol Assess</em> 2013; 29: 205-212.</p> <p>WICHTIG: Es handelt sich um eine Gelegenheitsstichprobe, die für keine gut definierbare Population repräsentativ ist. Dementsprechend sollten die Werte nicht als Referenz- oder Normwerte für die deutsche Version des YSQ-S3 verwendet werden.</p>
Supplementary material S3. Leiestes tomaszewskae sp. nov., holotype, Nr. 6723 [MAIG], X-ray micro-CT volume rendering of the right antenna.
<p>X-ray micro-CT volume rendering of the right antenna of <em>Leiestes</em> <em>tomaszewskae</em> sp. nov., holotype, Nr. 6723 [MAIG].</p>
Stowaways Supplement S3: Ma'agan Mikhael B Rattus rattus Cranial and Post-cranial Measurements Datasheet
<p>Table S3-1. Measurements of MMB R. rattus crania, after Lepus protocol in von den Driesch (1976: figs. 18a, b). All measurements in mm. N-dash represents a measurement that was not applicable or not available based on the element’s state of preservation.</p> <p>Table S3-2. Measurements of MMB R. rattus mandibles, after Lepus protocol in von den Driesch (1976: fig. 25). All measurements in mm. N-dash represents a measurement that was not applicable or not available based on the element’s state of preservation.</p> <p>Table S3-3. Measurements of selected MMB R. rattus post-cranial bones. GL=greatest length, GB=greatest breadth, Bp=proximal breadth, Bd=distal breadth. All measurements in mm. N-dash represents a measurement that was not applicable or not available based on the element’s state of preservation.</p> <p>***Version 2 added two new specimens from the September 2022 excavation season.</p>
Supplementary material S3. Ptilodactyla eocenica Kundrata, Bukejs and Blank, 2021, male, SIZK ZH-85, X-ray micro-CT volume rendering of the hind legs.
<p>Supplementary material S3 in paper: Telnov D., Perkovsky E.E., Kundrata R., Kairišs K., Vasilenko D.V., Bukejs A. Revealing Palaeogene distribution of the Ptilodactylidae (Insecta: Coleoptera): the first <em>Ptilodactyla</em> Illiger, 1807 records from Rovno amber of Ukraine. <em>Historical Biology</em>.</p>
FIGURE S3 in A new goniopholidid crocodylomorph from the Late Jurassic of Portugal
FIGURE S3. Likelihood Ancestral State reconstruction of character 221 of the two most parsimonious trees traced over the strict consensus tree, using our matrix based on Arribas et al. (2019).
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.