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651 results for “netherlands”
Figure 3 in The conservation paradox of an introduced population of a threatened species: spadefoot toads in the coastal dunes of the Netherlands
Figure 3. Haplotype network for the common spadefoot toad (Pelobates fuscus) Haplotypes relevant to the current study are colour coded; the remainder is left grey (details in supplementary table S1). The prefix 'FUS' is not shown for the haplotype codes.
Figure 2 in The conservation paradox of an introduced population of a threatened species: spadefoot toads in the coastal dunes of the Netherlands
Figure 2. Phylogenetic tree for common spadefoot toad (Pelobates fuscus) and Pallas's spadefoot toad (P. vespertinus). Haplotypes relevant to the current study are colour coded; the remainder is left grey (details in Table S1). Haplotype abbreviations are: FUS = P. fuscus, VES = P. vespertinus, BAL = P. balcanicus, SYR = P. syriacus, CUL = P. cultripes, and VAR = P. varaldii.
FIGURES 1–8. 1. Closterium joostenii. 2. Closterium cynthiaforme. 3. Staurastrum subcomptum. 4 in Taxonomic notes on desmids from the Netherlands II, with a description of six new species
FIGURES 1–8. 1. Closterium joostenii. 2. Closterium cynthiaforme. 3. Staurastrum subcomptum. 4. Staurastrum exlooënse. 5. Cosmarium abbreviatiforme. 6. Cosmarium kouwetsii. 7. Zygospore of Cosmarium spierense with adhering gametangial cells. 8. Cosmarium spierense.
FIGURES 27–40. 27, 29–38 in Taxonomic notes on desmids from the Netherlands II, with a description of six new species
FIGURES 27–40. 27, 29–38. Single cells of Cosmarium spierense (35–38. SEM microphotographs). 28. Zygospore of Cosmarium spierense. 39, 40. immature and mature zygospore of Cosmarium spierense with adhering gametangial cells. Scale bar = 10 μm.
FIGURES 15–26. 15–20 in Taxonomic notes on desmids from the Netherlands II, with a description of six new species
FIGURES 15–26. 15–20. Cosmarium abbreviatiforme (19, 20. SEM microphotographs). 21–26. Cosmarium kouwetsii (24–26. SEM microphotographs). Scale bar = 10 μm.
FIGURES 41–52. 41–46 in Taxonomic notes on desmids from the Netherlands II, with a description of six new species
FIGURES 41–52. 41–46. Staurastrum exlooënse (45, 46. SEM microphotographs). 47–52. Staurastrum subcomptum. (fig. 47 and 48 are different views of the same cell. (50–52. SEM microphotographs). Scale bar = 10 μm.
FIGURES 8–11. 8. Cosmarium rostafinskii. 9. C. benedictum. 10. C. amstelodamense. 11. C in Some new and interesting desmids (Streptophyta, Desmidiales) from ephemeral puddles in the urban and industrial areas of Amsterdam (Netherlands)
FIGURES 8–11. 8. Cosmarium rostafinskii. 9. C. benedictum. 10. C. amstelodamense. 11. C. benedictum, zygote. Scalebar = 10μm.
FIGURES 12–18. 12–14. Cosmarium notabile. 15–16. C. galeatum. 17. C. fruticosum. 18. C in Some new and interesting desmids (Streptophyta, Desmidiales) from ephemeral puddles in the urban and industrial areas of Amsterdam (Netherlands)
FIGURES 12–18. 12–14. Cosmarium notabile. 15–16. C. galeatum. 17. C. fruticosum. 18. C. scutiforme. Scalebar = 10μm.
FIGURES 16–25 in Taxonomic notes on desmids from the Netherlands III, with a description of five new species
FIGURES 16–25. LM photographs. 16–19. Cosmarium arcuatiporosum (19. zygospore). 20–22. C. logiensiforme. 23-25. C. mandosii. Scale bar = 10 µm.
FIGURES 7–15 in Taxonomic notes on desmids from the Netherlands III, with a description of five new species
FIGURES 7–15. LM photographs. 7, 8. Euastrum tumoriferum. 9, 10. Eu. dubioides. 11–15. Eu. neogutwinskii (14, 15 zygospore). Scale bar = 10 µm.
FIGURES 26–34. SEM photographs. 26. Cosmarium mandosii. 27. C. arcuatiporosum. 28. C. logiensiforme. 29. Euastrum tumoriferum. 30 in Taxonomic notes on desmids from the Netherlands III, with a description of five new species
FIGURES 26–34. SEM photographs. 26. Cosmarium mandosii. 27. C. arcuatiporosum. 28. C. logiensiforme. 29. Euastrum tumoriferum. 30 Eu. neogutwinskii. 31.Eu. dubioides. 32. Eu. dubium var. dubium. 33 Eu. dubium var. ornatum. 34. Eu. denticulatum. Scale bar = 10 µm.
FIGURES 1–6. Drawings 1. Cosmarium logiensiforme. 2. C. mandosii. 3. C in Taxonomic notes on desmids from the Netherlands III, with a description of five new species
FIGURES 1–6. Drawings 1. Cosmarium logiensiforme. 2. C. mandosii. 3. C. arcuatiporosum (with zygospore). 4. Euastrum tumoriferum. 5. Eu. dubioides. 6. Eu. neogutwinskii (with zygospore).
Input data for the exposure assessment case study on air pollution and noise for the province of Utrecht, the Netherlands
<p>Input datasets for the case study described in the manuscript "A computational framework for agent-based assessment of multiple environmental exposures".<br>Use the free 7-Zip to uncompress. Uncompressed size ca 103 GiB.</p> <p>The datasets are licensed under a Creative Commons license (CC-BY 4.0). Contact: o.schmitz@uu.nl</p>
Field measurement data of hydrodynamic and morphological processes in the mangrove forest of Lac Bay, Bonaire, Caribbean Netherlands
<p>31-10-2024, Rik Gijsman</p> <p>_________________________________________________________<br>Dataset of field measurement of hydrodynamic and morphological processes in the mangrove forest of Lac Bay, Bonaire, Caribbean Netherlands.</p> <p>_________________________________________________________<br>For more information please see scientific publication:</p> <p>Gijsman, R., Engel, S., van der Wal, D., van Zee, R., Johnson, J., van der Geest, M., Wijnberg, K.M. and Horstman, E.M. (2024). <strong>The Importance of Tidal Creeks for Mangrove Survival on Small Oceanic Islands</strong>. <em>Unpublished Manuscript</em>.</p> <p>_________________________________________________________</p> <p>Dataset contains: </p> <ol> <li>Timeseries data from field instruments: <br> <ol> <li>Atmospheric pressure</li> <li>Water depth</li> <li>Water level</li> <li>Flow velocity</li> <li>Waves</li> <li>Turbidity</li> <li>Rainfall</li> <li>Temperature</li> <li>Wind</li> <li>Tidal creek flows</li> <li>Tidal creek transport</li> <li>Lagoon suspension</li> </ol> </li> <li>Mapped data of field surveys: <ol> <li>Bathymetry and creek profiles</li> <li>Sediment characteristics</li> </ol> </li> <li>Python script for importing and plotting data</li> <li>Overview map with shapefiles of instrument location coordinates</li> </ol> <p>________________________________________<br>Additional notes for your information:</p> <ul> <li>Timeseries data stored in .txt files</li> <li>Visualization of data in .txt files provided with accompanying .png files</li> <li>Timeseries data of Hobo sensors, Rain gauge and KNMI station interpolated between 19-01-2022 00:00:00 and 18-05-2022 23:55:00 (120 days) on 5 minute intervals </li> <li>Timeseries data of other sensors interpolated between 19-01-2022 00:00:00 and 08-03-2022 23:55:00 (49 days) on 5 minute intervals</li> <li>Column headers show instrument station abbreviation</li> <li>Datetime in local timezone of Bonaire (GMT-4)</li> <li>When a property (e.g., water depth) was measured by different instruments, the instrument used is mentioned in the file name, e.g. "water_depth_hobo.txt"</li> <li>Measurements from KNMI (The Royal Netherlands Meteorological Institute) station 990 were included in the dataset and indicated with '_knmi' in the file name. Data obtained from 'https://www.knmi.nl/nederland-nu/klimatologie/uurgegevens_Caribisch_gebied' </li> </ul> <p> </p>
Acceptance and Development of Quantum Computing in the Netherlands and Germany: Barriers and Remedies from a Multi-stakeholder Perspective}
<p>The repository contains the email sent to the candidates, the interview guide, the complete list of interview transcripts, the qualitative analysis performed with QDA Miner Lite, the code books of the initial and final data analysis, and the excerpts from the interviews.</p>
Evaluation of implementation and effect of Healthy Daycare (Gezonde Kinderopvang) in the Netherlands
<p>During the project the following datasets of the evaluation of the implementation and the effects of Health Daycare (Gezonde Kinderopvang) were collected:</p> <ol> <li>Daycare providers questionnaire and dataset (CSV)</li> <li>Observation protocol and dataset (see <span>10.21943/auas.27917742)</span></li> <li>MIDI questionnaire and dataset (CSV)</li> <li>Policy analysis (CSV)</li> <li>Core elements (WORD)</li> </ol> <p>Some of these datasets are pseudonimyzed, but because of the small dataset and research population, the answers can potentially be traced back to individuals.<br>If you are interested in research with one or more of these datasets, please contact Eline Vlasblom, department Child Health, TNO. The TNO project number for this project is 060.39533.</p>
Netherlands F3 block and New Zealand Kerry-3D seismic attributes
<p>The dataset comprises sub-volumes of seismic attributes, which include structural smoothed seismic data, chaos, variance, semblance, similarity, and the most positive curvature from the F3 block and Kerry-3D seismic data. The selected sub-volumes are from regions with a high occurrence of faults.</p>
Figure 2 in New species of Stenomacrus (Hymenoptera: Ichneumonidae: Orthocentrinae) reared from Bradysia impatiens (Diptera: Sciaridae) in The Netherlands
Figure 2. Stenomacrus meijeri sp. nov., paratype male: (a) whole insect, scale bar 1.0 mm; (b) head (dorsal view), scale bar 0.2 mm; (c) head (anterior view), scale bar 0.2 mm; (d) apex of metasoma and parameres (ventro-lateral view), scale bar 0.5 mm.
Figure 3 in New species of Stenomacrus (Hymenoptera: Ichneumonidae: Orthocentrinae) reared from Bradysia impatiens (Diptera: Sciaridae) in The Netherlands
Figure 3. Biology of Stenomacrus meijeri sp. nov. and its host Bradysia impatiens: (a) fully grown B. impatiens larva; (b) B. impatiens pupa; (c) B. impatiens adult; (d) S. meijeri sp. nov. larva; (e) close-up of the larva head of S. meijeri sp. nov.; (f) parasitised B. impatiens pupae containing an S. meijeri sp. nov. larva (left) and an S. meijeri sp. nov. adult (right); (g) typical resting position of S. meijeri sp. nov.
Figure 1 in New species of Stenomacrus (Hymenoptera: Ichneumonidae: Orthocentrinae) reared from Bradysia impatiens (Diptera: Sciaridae) in The Netherlands
Figure 1. Stenomacrus meijeri sp. nov., holotype female: (a) whole insect, scale bar 1.0 mm; (b) head (anterior view), scale bar 0.2 mm; (c) head (dorsal view), scale bar 0.2 mm; (d) propodeum and base of metasoma (dorsal view), scale bar 0.5 mm.
ScienceDex guides
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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.