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Fig. 1 in Epidemiology of Trichinella infection in wild boar from Spain and its impact on human health during the period 2006-2019

Fig. 1. Prevalence of Trichinella infection in wild boar from several Spanish autonomous communities.

opencc-by-4.0Dec 2022View details →
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Fig. 4 in Epidemiology of Trichinella infection in wild boar from Spain and its impact on human health during the period 2006-2019

Fig. 4. Box-plot and post hoc pairwise comparison via Dunn's test of the incidence. Box-plot with different letters indicate a statistically significant difference.

opencc-by-4.0Dec 2022View details →
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Fig. 3 in Epidemiology of Trichinella infection in wild boar from Spain and its impact on human health during the period 2006-2019

Fig. 3. Three-dimensional plots for the interaction effects of the total number of wild boars hunted and the prevalence of the Trichinella infection in wild boar on incidence of trichinellosis in humans.

opencc-by-4.0Dec 2022View details →
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FIGURE 14 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 14. Scatter diagram showing the ratio of total length to proximal epiphysis breadth in late pleistocene-holocene Capreolus capreolus phalanx II. Middle Pleistocene locality: Kozi Grzbiet and Miesenheim 1. Late middle and late Pleistocene locality: Weimar Ehringsdorf, Biśnik Cave, Chlupáč Cave and Deszczowa Cave. Postglacial and Holocene locality: Biśnik Cave (uppermost layers), Jasna Strzegowska Cave and Poland in general. Data from Stefaniak (2015) and references therein.

opencc-by-4.0Feb 2017View details →
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FIGURE 13 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 13. Scatter diagram showing the ratio of lower carnassial (m1) length (Lm1) and breadth (B m1) in late Pleistocene and Recent Mustela nivalis from Poland. The Solna Jama Cave specimen displays a moderately large size, with the length of m1 less than 4 mm, typical of the late Pleistocene and postglacial period.

opencc-by-4.0Feb 2017View details →
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FIGURE 12 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 12. Scatter diagram showing the ratio of total calvarium length to zygomatic breadth in extant Mustela nivalis from Poland, compared with the fossil specimen from Solna Jama Cave.

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FIGURE 11 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 11. Skulls of Mustela nivalis from Poland: recent specimens (1-3) and the fossil from Solna Jama Cave (4). 1, robust, adult male; 2, adult female; 3, young, adult female; and 4, adult female. Note fully developed sagittal crest in individual from Solna Jama Cave, indicating fully mature age. Scale bar equals 10 mm.

opencc-by-4.0Feb 2017View details →
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FIGURE 7 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 7. Scatter diagram showing the ratio of m1 trigonid breadth (B tri) to m1 talonid breadth (B tal) in the forms of Gulo: G. schlosseri and G. gulo. Data from Döppes (2001): late Pleistocene G. gulo and recent G. gulo; data from Marciszak (2012): G. schlosseri and late Pleistocene G. gulo (part).

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FIGURE 4 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 4. Gulo gulo cranium from Solna Jama Cave (JSJ/Gg/1-1) in dorsal view (left) compared with a cranium from a large modern male from Scandinavia (right) from collection of Natural History Museum University of Wrocław (coll. no. M/500328). Scale bar equals 10 mm.

opencc-by-4.0Feb 2017View details →
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FIGURE 10 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 10. Scatter diagram showing the ratio of mandiblar height (measured after m1) to m1 length in fossil and extant Mustela eversmanii and Mu. putorius. Data from Marciszak (2012) and references therein.

opencc-by-4.0Feb 2017View details →
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FIGURE 6 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 6. Metacarpals (mtcp) and metatarsals (mtts) of Gulo gulo from Solna Jama Cave. From left to right: right mtcp III (JSJ/Gg/1-29), left mtcp V (JSJ/GG/1-31), left mtts II (JSJ/Gg/1-33), left mtts III (JSJ/Gg/1-34), left mtts IV (JSJ/Gg/1-35) and right mtts V (JSJ/Gg/1-36). Scale bar equals 10 mm.

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FIGURE 9 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 9. Right mandible of Mustela eversmanii (JSJ/Mev/1) from Solna Jama Cave. Note relatively short and robust body mandible and massiveness of the symphysal area. Scale bar equals 10 mm.

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FIGURE 5 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 5. Gulo gulo cranium from Solna Jama Cave (JSJ/Gg/1-1) in ventral view (left) compared with a cranium from a large modern male from Scandinavia (right) from collection of Natural History Museum University of Wrocław (coll. no. M/500328). Note particularly powerful dentition of the individual from Solna Jama Cave in comparison with recent G. gulo. Scale bar equals 10 mm.

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FIGURE 8 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 8. Occurrence of members of the genus Gulo in the late Quaternary of Poland (after Marciszak, 2012 and references therein). Red dot: Gulo schlosseri; black dot: G. gulo from late middle Pleistocene (3-5) and late Pleistocene-Holocene (3-12). Localities: 1, Żabia Cave; 2, Kozi Grzbiet; 3, Biśnik Cave; 4, Cave no. 4 on the Birów Hill; 5, Deszczowa Cave; 6, Nietoperzowa Cave, Ciemna Cave; 7, Mamutowa Cave; 8, Borsuka Cave; 9, Cave in Czarkowa; 10, Niedźwiedzia Cave; 11, Północna Duża Cave, Naciekowa Cave; and 12, Solna Jama Cave.

opencc-by-4.0Feb 2017View details →
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FIGURE 2 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 2. Environs of Solna Jama Cave entrance (1), showing the fissured crystalline limestones, in which the cave developed. The "Wolverine Niche" (2) and the corrosion, phreatic features of the cave passage (3). The "Wolverine Niche" is the place in the cave, where partially preserved skeleton of particularly large Gulo gulo was found (Photo by K. Stefaniak).

opencc-by-4.0Feb 2017View details →
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FIGURE 1 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 1. Location of Solna Jama Cave in Europe indicated by red star (1), in Poland marked by red square (2), in the environs of Gniewoszów village indicated by red star (3) and map of the site (4) after Pulina (1996) and Stefaniak et al. (2009).

opencc-by-4.0Feb 2017View details →
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FIGURE 3. Ursus arctos priscus m2 in Large mammals (carnivores, artiodactyls) from Solna Jama Cave (Bystrzyckie Mts, Southwestern Poland) in the context of faunal changes in the postglacial period of Central Europe

FIGURE 3. Ursus arctos priscus m2 (JSJ/Ua/1) from Solna Jama Cave in occlusal view. Note robust build and arctoid shape of tooth, with only slightly expanded, buccal margin of the talonid. Scale bar equals 10 mm.

opencc-by-4.0Feb 2017View details →
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Georeferenced and cropped "Half Inch" (1:126,720) maps of Burma (colonial period)

<p>Georeferenced (to WGS1984) and cropped set of about 555 historic maps of Burma at a scale of 1 inch per two miles (1:126,720) covering most of the country. Those topographic maps, originally produced and published by the Great Trigonometrical Survey of India between 1878 and 1949, have been scanned and shared with the public as "Old Survey Of India Maps&rdquo; Community under a CC BY 4.0 International Licence.</p> <p>Each of the map sheet scans was georeferenced using the Latitude-Longitude corner coordinates in Everest 1830 projection. Those map sheets were cropped, keeping only the map area - to allow a seamless mosaic without the mapframe overlapping adjacent map sheets when several map sheets are put together in a GIS. Those cropped map sheets were projected from Everest 1830 to WGS1984 (EPSG:4326) - standard GPS - projection to make them easier to use and combine with other GIS data.</p> <p>Many grid cells in this dataset are covered by 2 versions of map sheets - those with hill shade and only lat-lon grid and those without hill shade and featuring a LCC map grid.&nbsp;</p> <p>Those map sheets can be loaded directly in any GIS such as QGIS or ESRI ArcGIS.</p> <ul> <li>The mm_HI_JBv2024_epsg4326 folder contains the cropped end georeferenced map sheets in jpg-format as well as accompagning georeference and metadata incl.<br> <ul> <li>The mm_HI_JBv2024_epsg4326_kmlLinks contains a KML file for each map sheet facilitating their easy use in Google Earth byt linking them the georeferenced map sheet file located in the mm_HI_JBv2024_epsg4326 folder.&nbsp;</li> <li>The mm_historicHI_EPSG4326.gdb contains three ESRI mosaic datasets to easily load all mapsheets, only mapheets with hillshading and lat-lon grid and only "regular" mapsheets without hillshading and LCC grid into ArcGIS</li> </ul> </li> <li>The mm_HI_JBv2024_scanMaps folder contains the uncropped original map scans (renamed though) in jpg-format.</li> <li>The mm_historicTopoHI_JBv2024 is a masterlist cataloguing all map sheets for easier use and matching them with the original source files as shared via the "Old Survey Of India Maps&rdquo; Community (e.g. to identify new mapsheets should new maps be released)</li> </ul> <p>All georeferenced map scans are based on maps shared as part of the "Old Survey Of India Maps&rdquo; via Zenodo. Links to each file can be found in the above mentined excel file and most can be also accessed through the zenodo repository below.</p> <ul> <li><a href="../records/7894128">https://zenodo.org/records/8040798</a> (128k Maps of South Asia, version 4, Published May 3, 2023)</li> </ul> <p>The file naming convention is to first give the <strong><em>number</em></strong>&nbsp;of the 4 degree x 4 degree block followed by the&nbsp;<strong><em>letter (A to P)</em></strong> of the sixteen 1 degree x 1 degree blocks in each 4 degree block eg. 38 D, and this is followed by the <strong>cardinal direction letters</strong> (NE, NW, SE, SW)&nbsp;to indicate the 30x30 minutes sized map position in the 1 degree block.&nbsp;</p> <p>This <strong><em>Number - Letter - Cardinal direction letter&nbsp;</em></strong>designation is followed by the <strong>year of the edition, </strong>followed by the <strong>map series type</strong> either HI-hs (hillshaded) or HI-reg (regular),&nbsp;followed by the <strong><em>map sheet title/name</em></strong>.</p> <p>The original files as shared as part of the "<a href="https://zenodo.org/records/11661876">Old Survey Of India Maps</a>&rdquo; have been renamed to further standardize the file naming, sometimes correcting them and to make them unique in the case several editions of the same map sheet were available.</p> <p>Lineage: This version (1.01, Upload 2024-08-20) has some file attributes fixed.</p>

opencc-by-4.0Aug 2024View details →
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Characterization of the mean and extreme Mediterranean cyclones and their variability during the period 1500 BCE to 1850 CE

<p>Essential files for reproduction of Figures in manuscript "Characterization of the mean and extreme Mediterranean cyclones and their variability during the period 1500 BCE to 1850 CE".</p> <p>Respository contains cyclone tracking output (cyclone_tracking.txt), cyclone frequency files of CESM and ERA5 for the common period 1981-2010 (cyclone_freq_ERA5_1981_2010.nc, cyclone_freq_CESM_1981_2010.nc), the cyclones that make up the composites (cmed_composites.zip, emed_composites.zip, zip files contain multiple nc files), the Pearson correlation coefficients between the PCs of the modes of circulation and cyclone characteristics (correlations.zip, containing multiple nc files), and the cyclone frequencies used for the superposed epoch analysis (freq_pre_eruption.nc, freq_post_eruption.nc)</p>

opencc-by-4.0Aug 2024View details →
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Database of indicators of socio-economic development of the Great Altai regions in the post-Soviet period

<p>As part of the research work "Altai vector of Eurasian economic integration: cross-border challenges, effects, strategic objectives and priorities for the Altai Krai" (FZMW-2023-0015), the task was to develop a database of indicators of development of cross-border regions of Russia, Kazakhstan, Mongolia and China for the period 1990-2022. To solve the task, statistical data from official sources were used. The database contains 68 indicators of socio-economic development of the Great Altai region, grouped into 10 structural blocks. The temporal resolution of the data is 1 year. The data were preliminarily analyzed for outliers and inconsistencies. On the basis of econometric methods, processing was performed to restore short-term gaps in the time series of the data. The generated database represents a unique set of socio-economic and climatic indicators for the transboundary study area, allowing to solve the problems of modeling and analysis of agricultural production dynamics in the post-Soviet period.</p>

embargoedcc-by-4.0May 2024View 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