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Données du site www.identifier-les-champignons.com

<p>Donn&eacute;es en XLS et CSV du site www.identifier-les-champignons.com</p> <p>Descriptions anatomiques et morphologiques de la plupart des esp&egrave;ces de champignons de France</p>

opencc-by-4.0May 2020View details →
zenodo40/100

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 (&gt; 60 km of gill nets set daily), lake trout embryo suppression targets relatively small sites during a period of 2&ndash;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>

opencc-by-4.0May 2020View details →
zenodo40/100

Fig. 2. Kincaidiana hexatheca Altman, 1936 from various sites. A, K–O in On Kincaidiana Altman, 1936 and Guestphalinus Michaelsen, 1933 (Annelida, Clitellata, Lumbriculidae), with the descriptions of three new species

Fig. 2. Kincaidiana hexatheca Altman, 1936 from various sites. A, K–O from the sagittally sectioned lectotype, Loomis Lake, WA; B–C from Hoh River, WA; D from Inglenook Fen, CA; E–I from Big Creek, OR; J from O'Brien, OR. A-I. Tips of chaetae in anterior segments. A. IV ventral. B. VI dorsal. C. V ventral. D. V dorsal. E. IV dorsal. F. V ventral, frontal view. G. V ventral, chaeta with keel folded over. H. Dorsal, posterior segment. I. XV, ventral. J. Transverse section of anterior segment, showing 3-lobed pharyngeal gland. K. Ringed proboscis. L. Body wall in anterior segment, showing bands of circular muscle. M. Spermathecal ampulla, with concentrated sperm. N. Male porophore and penis. O. Atrium, prostate glands and vas deferens. Scale bars: A–I = 50 µm; J, L–O = 200 µm; K = 500 Mm.

opencc-by-3.0Oct 2017View details →
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Fig. 1. Kincaidiana hexatheca Altman, 1936 from various sites. A–B in On Kincaidiana Altman, 1936 and Guestphalinus Michaelsen, 1933 (Annelida, Clitellata, Lumbriculidae), with the descriptions of three new species

Fig. 1. Kincaidiana hexatheca Altman, 1936 from various sites. A–B. Complete worms, ventral view of anterior segments, from McKenzie River, OR (A), and from Big Creek, OR (B). C–M. Representative (mostly anterior) chaetae from different populations (ordered approximately north-south); dorsal chaetae with tips upward, ventrals with tips down. C. Hoh River, WA. D. Pool at Bogachiel River, WA. E. Salmon Creek watershed, WA, anterior dorsal pair. F–G. Two specimens from Big Creek, OR; tip of one dorsal chaeta with keel folded over. H. Rogue River, OR. I. From a Darlingtonia bog, O'Brien, OR. J–K. Two specimens from spring near Mule Creek, OR; K is from a smaller specimen, with simple-pointed chaetae. L. Illinois River, OR; older chaetae simple-pointed (worn?), replacements bifid. M. Inglenook Fen, CA. Scale bars: A–B = 2 mm; C–M = 200 Mm.

opencc-by-3.0Oct 2017View details →
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Fig. 1. Sampling sites. A in Taxonomy and morphology of four "ophrys-related" scuticociliates (Protista, Ciliophora, Scuticociliatia), with the description of a new genus, Paramesanophrys gen. nov.

Fig. 1. Sampling sites. A. Coastal waters of the Yellow Sea at Qingdao, Shandong province. B. A coastal mariculture-region in Zhanjiang, Guangdong province. C. Coastal waters of Daya Bay, Guangdong province.

opencc-by-3.0Apr 2016View details →
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Structural Profiling of Web Sites in the Wild

<p>The dataset contains and processes results of a large-scale survey of 708 websites, made in December 2019, in order to measure various features related to their size and structure: DOM tree size, maximum degree, depth, diversity of element types and CSS classes, among others. The goal of this research is to serve as a reference point for studies that include an empirical evaluation on samples of web pages.</p> <p>See the Readme.md file inside the archive for more details about its contents.</p>

opencc-by-4.0Mar 2020View details →
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FIG. 11 in New fossils of Amphicyonidae (Carnivora) from the middle Miocene (MN6) site of Carpetana (Madrid, Spain)

FIG. 11. — Reconstruction of the life appearance of Megamphicyon giganteus (Schinz, 1825) in the Miocene habitat of the Carpetana fossil site (artwork by M. Antón).

opencc-zeroJun 2020View details →
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FIG. 2 in New fossils of Amphicyonidae (Carnivora) from the middle Miocene (MN6) site of Carpetana (Madrid, Spain)

FIG. 2. — Vertebrae and sacrum of Megamphicyon giganteus (Schinz, 1825) from Carpetana. Sacrum 08.17.10203FC: A, dorsal view, B, ventral view; C, cranial view. First lumbar vertebra (L1) 08.17.11003C: D, caudal view; E, left view. Twelfth or thirteenth thoracic vertebra (T12/T13) 08.17.11003A: F, cranial view; G, right view; H, left view; I, dorsal view. Scale bar: 5 cm.

opencc-zeroJun 2020View details →
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FIG. 7 in New fossils of Amphicyonidae (Carnivora) from the middle Miocene (MN6) site of Carpetana (Madrid, Spain)

FIG. 7. — Left Mt IV 08.17.99728-538 of Megamphicyon giganteus (Schinz, 1825) from Carpetana: A, dorsal view; B, medial view; C, lateral view; D, plantar view; E, proximal view; F, distal view. Scale bar: 2 cm.

opencc-zeroJun 2020View details →
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FIG. 1 in New fossils of Amphicyonidae (Carnivora) from the middle Miocene (MN6) site of Carpetana (Madrid, Spain)

FIG. 1. — Fragment of the left hemimandible 08.17.4215 A 13-373 of Megamphicyon giganteus (Schinz, 1825) from Carpetana: A, buccal view; B, occlusal view; C, lingual view. Scale bar: 5 cm.

opencc-zeroJun 2020View details →
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FIG. 9 in New fossils of Amphicyonidae (Carnivora) from the middle Miocene (MN6) site of Carpetana (Madrid, Spain)

FIG. 9. — Comparison between the distal epiphyses of the right femur of several carnivorans, in distal view: A, Amphicyon major Blainville, 1841 from Sansan; B, Megamphicyon giganteus (Schinz, 1825) from Carpetana; C, Panthera leo (Linnaeus, 1758); D, Ursus americanus Pallas, 1780. Scale bar: 2 cm.

opencc-zeroJun 2020View details →
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Overzicht archeologische sleuven site Kerkhove-Kouter

<p>This plan/drawing/plot was made by the&nbsp;documentation team of the Kerkhove-Kouter archaeological excavations, based on data brought together in the years 1970, 1980 and 1990. It schematically plots the archaeological trenches excavated during the 1970s and 1980s. Although the date of production was not documented, it is estimated to be in the beginning of the 1990s. The original designers/drawer is unknown.</p> <p>In March 2020 the&nbsp;plan/drawing/plot was photographed in sections with a&nbsp;Phase One&nbsp;IQ3 100MP, Schneider Kreuznach 80mm LS f/2.8, auto-aligned in Photoshop and prepared for upload on zenodo.org by Hendrik Hameeuw, curator of the&nbsp;Kerkhove-Kouter archaeological excavations collections&nbsp;at the &#39;Regionaal Archeologfisch Museum a/d Schelde&#39; at Waarmaarde, Belgium.&nbsp;</p>

opencc-by-4.0Jul 2020View details →
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CPTu Lisbon pilot site campaign 2

<p>Raw CPTu data from the field investigation works at the Lisbon pilot site of the LIQUEFACT project.</p> <p>Location map of the site investigation points and further details are provided in Viana da Fonseca et al. (2019).</p> <p>Viana da Fonseca, A., Ferreira, C., Coelho, C., Coelho, J., Quintero, J., Rios, S., Millen, M., Cordeiro, D. (2019). Chapter 3 of Deliverable D2.7 - Methodology for assessment of earthquake‐induced risk of soil liquefaction at the four European testing sites (microzonation). LIQUEFACT project, Horizon 2020 European Union funding for Research &amp; Innovation, GA n&ordm;. 700748 (<a href="http://www.liquefact.eu">www.liquefact.eu</a>).</p>

opencc-by-4.0Jul 2020View details →
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CPTu Lisbon pilot site campaign 1

<p>Raw CPTu data from the field investigation works at the Lisbon pilot site of the LIQUEFACT project.</p> <p>Location map of the site investigation points and further details are provided in Viana da Fonseca et al. (2019).</p> <p>Viana da Fonseca, A., Ferreira, C., Coelho, C., Coelho, J., Quintero, J., Rios, S., Millen, M., Cordeiro, D. (2019). Chapter 3 of Deliverable D2.7 - Methodology for assessment of earthquake‐induced risk of soil liquefaction at the four European testing sites (microzonation). LIQUEFACT project, Horizon 2020 European Union funding for Research &amp; Innovation, GA n&ordm;. 700748 (<a href="http://www.liquefact.eu">www.liquefact.eu</a>).</p>

opencc-by-4.0Jul 2020View details →
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Dataset for "Intraspecies diversity reveals a subset of highly variable plant immune receptors and predicts their binding sites"

<p>Datasets for preprint (https://doi.org/10.1101/2020.07.10.190785) entitled:</p> <p>&quot;Intraspecies diversity reveals a subset of highly variable plant immune receptors and predicts their binding sites&quot;</p> <p>Contains:</p> <p>- All data&nbsp;files for scripts quoted in the preprint and&nbsp;deposited at&nbsp;https://github.com/krasileva-group/hvNLR</p> <p>- Clade Membership Tables</p> <p>- Clade Alignment Files</p> <p>- Clade Trees</p> <p>- Excel&nbsp;files for Figure S1, Figure S2, and Table 1</p>

opencc-by-4.0Jul 2020View details →
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Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore: Tegnùa Metamauco, Site 4, Rock samples

<p>Rock samples</p> <p>Research Activity: Geology of the Northern Adriatic Biogenic Reefs</p> <p>Project: Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore&nbsp;</p> <p>Scientific coordinators: Sandra Donnici (CNR) and Luigi Tosi (CNR)</p> <p>Scientific Divers: Andrea Bergamasco (CNR), Luigi Tosi (CNR)</p> <p>Surface coordinator: Sandra Donnici (CNR)</p> <p>Sampling Date: 2014.06.24</p> <p>Sampling Site: Tegn&ugrave;a Metamauco</p> <p>Site Coordinates: 45.213506 N; 12.395296 E&nbsp; (DEG WGS84)</p> <p>Seabed Depth: 21.9 m</p> <p>Biogenic reef elevation: 2.6 m</p>

opencc-by-4.0May 2020View details →
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Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore: Tegnùa Chioggia, Site 4, Rock samples

<p>Rock samples</p> <p>Research Activity: Geology of the Northern Adriatic Biogenic Reefs</p> <p>Project: Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore&nbsp;</p> <p>Scientific coordinators: Sandra Donnici (CNR) and Luigi Tosi (CNR)</p> <p>Scientific Divers: Andrea Bergamasco (CNR), Luigi Tosi (CNR)</p> <p>Surface coordinator: Sandra Donnici (CNR)</p> <p>Sampling Date: 2014.07.17</p> <p>Sampling Site: Tegn&ugrave;a Chioggia</p> <p>Site Coordinates: 45.230303 N; 12.489957 E (DEG WGS84)</p> <p>Seabed Depth: 22.2 m</p> <p>Biogenic reef elevation: 1.5 m</p>

opencc-by-4.0May 2020View details →
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Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore: Tegnùa Metamauco, Site 3, Rock samples

<p>Rock samples</p> <p>Research Activity: Geology of the Northern Adriatic Biogenic Reefs</p> <p>Project: Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore&nbsp;</p> <p>Scientific coordinators: Sandra Donnici (CNR) and Luigi Tosi (CNR)</p> <p>Scientific Divers: Andrea Bergamasco (CNR), Luigi Tosi (CNR)</p> <p>Surface coordinator: Sandra Donnici (CNR)</p> <p>Sampling Date: 2014.06.23</p> <p>Sampling Site: Tegn&ugrave;a Metamauco</p> <p>Site Coordinates: 45.213046 N; 12.396041 E&nbsp; (DEG WGS84)</p> <p>Seabed Depth: 21.9 m</p> <p>Biogenic reef elevation: 2.6 m</p>

opencc-by-4.0May 2020View details →
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Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore: Tegnùa Delfino Bianco, Site 1, Rock samples

<p>Rock samples</p> <p>Research Activity: Geology of the Northern Adriatic Biogenic Reefs</p> <p>Project: Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore&nbsp;</p> <p>Scientific coordinators: Sandra Donnici (CNR) and Luigi Tosi (CNR)</p> <p>Scientific Divers: Andrea Bergamasco (CNR), Luigi Tosi (CNR)</p> <p>Surface coordinator: Sandra Donnici (CNR)</p> <p>Sampling Date: 2013.10.14</p> <p>Sampling Site: Tegn&ugrave;a Delfino Bianco</p> <p>Site Coordinates: 45.205000 N; 12.406215 E&nbsp; (DEG WGS84)</p> <p>Seabed Depth: 21.8 m</p> <p>Biogenic reef elevation: 2.5 m</p>

opencc-by-4.0May 2020View details →
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Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore: Tegnùa Nautilus, Site 1, Rock samples

<p>Rock samples</p> <p>Research Activity: Geology of the Northern Adriatic Biogenic Reefs</p> <p>Project: Stratigraphy and genesis of the Biogenic Reefs in the Venice offshore&nbsp;</p> <p>Scientific coordinators: Sandra Donnici (CNR) and Luigi Tosi (CNR)</p> <p>Scientific Divers: Andrea Bergamasco (CNR), Luigi Tosi (CNR)</p> <p>Surface coordinator: Sandra Donnici (CNR)</p> <p>Sampling Date: 2014.10.21</p> <p>Sampling Site: Tegn&ugrave;a Nautilus</p> <p>Site Coordinates: 45.212841 N; 12.387204 E (DEG WGS84)</p> <p>Seabed Depth: 21 m</p> <p>Biogenic reef elevation: 2.8 m</p>

opencc-by-4.0May 2020View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record