Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
97
datasets available to search
ShareScore release 0.7.1
Dataset results
97 results for “Jura”
Barn owl diet and prey fluctuations in the Jura mountains, eastern France
<p>Based on pellet collection, the diet of the Barn Owl (<em>Tyto alba</em>) was studied over a 8-year period in the Jura mountains, eastern France, during two population surges of its main prey (common vole, <em>Microtus arvalis </em>and montane water vole, <em>Arvicola amphibius</em>); Small mammals were sampled by trapping and index methods. Results have been published in the Canadian Journal of Zoology (<a href="http://doi.org/10.1139/z10-011">Bernard et al. 2010</a>). Dominique Michelat collected Barn Owl pellets and identified prey items, Pierre Delattre, Jean-Pierre Quéré Jean-Pierre Damange and Patrick Giraudoux sampled small mammals. Patrick Giraudoux managed the data.</p> <p><a href="https://zenodo.org/record/6945677/files/Small_mammals_trapping.txt?download=1">Small_mammals_trapping.txt </a>is the file of the raw trapping results for small mammals (instant abundance index i<sub>t</sub> in the article)</p> <p><a href="https://zenodo.org/record/6945677/files/diet_smm.txt?download=1">diet_smm.txt</a> is a file with:</p> <ul> <li>the small mammal density computed by season (d<sub>t</sub> in the article, rough estimate of densities in number of individuals per ha for <em>Apodemus spp.</em>, <em>Myodes glareolus</em>, <em>Microtus arvalis</em>, or weighted interpolated i<sub>t</sub> for the other species)</li> <li>the ratios of each category of prey items on the total number of items collected in the church tower of three sites, <a href="https://www.openstreetmap.org/#map=16/46.9536/6.1189">Levier</a>, <a href="https://www.openstreetmap.org/search?whereami=1&query=46.9321%2C6.1666#map=16/46.9321/6.1666">Chapelle d'Huin</a> and <a href="https://www.openstreetmap.org/search?whereami=1&query=46.9382%2C6.1976#map=16/46.9382/6.1976">Le Souillot</a>.</li> </ul> <p>For details see the material and methods of the article.</p> <p><strong>FILE DESCRIPTION</strong></p> <p><a href="https://zenodo.org/record/6945677/files/diet_smm.txt?download=1">diet_smm.txt</a></p> <ul> <li>date, year and season: year on two digits, then P, E, A, H respectively for<em> Printemps</em> (Spring), <em>Été</em> (Summer), <em>Automne</em> (Autumn), <em>Hiver</em> (Winter)</li> <li>at_t, abundance index of <em>Arvicola amphibius</em> (ex A.<em> terrestris</em>)</li> <li>ap_t, rough density estimate of <em>Apodemus sp.</em></li> <li>cg_t, rough density estimate of <em>Myodes glareolus</em></li> <li>ma_t, rough density estimate of <em>Microtus arvalis</em></li> <li>sa_t, relative abundance of <em>Sorex spp.</em></li> <li>n_l, number of prey items at Levier</li> <li>ma_p_l, ratio of <em>M. arvalis prey</em> items at Levier</li> <li>at_p_l, ratio of <em>A. amphibius</em> prey items at Levier</li> <li>apcg_p_l, ratio of <em>Apodemus spp.</em> or <em>Myodes glareolus</em> prey items at Levier</li> <li>sa_p_l, ratio of <em>Sorex spp.</em> prey items at Levier</li> <li>au_p_l, ratio of other prey items at Levier</li> <li>n_ch, number of prey items at Chapelle d'Huin</li> <li>map_ch, ratio of <em>M. arvalis prey</em> items at Chapelle d'Huin</li> <li>at_p_ch, ratio of <em>A. amphibius</em> prey items at Chapelle d'Huin</li> <li>apcg_p_ch, ratio of <em>Apodemus spp.</em> or <em>Myodes glareolus</em> prey items at Chapelle d'Huin</li> <li>sa_p_ch, ratio of <em>Sorex spp. </em>prey items at Chapelle d'Huin</li> <li>au_p_ch, ratio of other prey items at Chapelle d'Huin</li> <li>n_ls, number of prey items at Le Souillot</li> <li>ma_p_ls, ratio of <em>M. arvalis prey</em> items at Le Souillot</li> <li>at_p_ls, ratio of <em>A. amphibius</em> prey items at Le souillot</li> <li>apcg_p_ls, ratio of <em>Apodemus spp.</em> or <em>Myodes glareolus</em> prey items at Le Souillot</li> <li>sa_p_ls, ratio of <em>Sorex spp.</em> prey items at Le Souillot</li> <li>au_p_ls, ratio of other prey items at Le Souillot</li> </ul> <p><a href="https://zenodo.org/record/6945677/files/Small_mammals_trapping.txt?download=1">Small_mammals_trapping.txt </a></p> <ul> <li>date, trapping period: digit 1-2, year; digit 3-4, month. Example: 8704 = April 1987.</li> <li>n_traplines_f, number of traplines in forest</li> <li>ap_f, average number of <em>Apodemus spp</em>. captured in forest</li> <li>cg_f, average number of <em>Myodes glareolus</em> captured in forest</li> <li>sa_f, average number of <em>Sorex spp</em>. captured in forest</li> <li>n_traplines_hfb, number of traplines in hedges and forest borders</li> <li>ap_hfb, average number of <em>Apodemus spp</em>. captured in hedges and forest borders</li> <li>cg_hfb, average number of <em>Myodes glareolus</em> captured in hedges and forest borders</li> <li>sa_hfb, average number of <em>Sorex spp.</em> captured in hedges and forest borders</li> <li>n_traplines_g, number of traplines in grassland</li> <li>ma_g, average number of Microtus arvalis captured in grassland</li> <li>sa_g, average number of <em>Sorex spp.</em> captured in grassland</li> </ul> <p><a href="https://zenodo.org/record/6945677/files/SmallMammalSamplingArea.kml?download=1">SmallMammalSamplingArea.kml</a> kml file locating the small mammal sampling area<br> </p>
Population dynamics of small mammals in the Jura massif, Franche-Comté, France (1979-2000)
<p>Small mammal populations were monitored seasonally from August 1979 to July 2000 according to a stratified sampling plan and using standard trapping, mostly in the area of Septfontaines – Le Souillot, Doubs, France (6.18°E, 46.97°N). The dataset includes 2120 trap lines (90% n = 1912 in the Septfontaines – Le Souillot (LS) area), and 22848 captures (92% n = 20937 in the LS area).</p> <p><strong>Methods</strong></p> <p>Small mammals were captured using INRA trap lines. INRA live traps (15 × 5 × 5 cm) are suitable for species of body mass less than 50 g. In a standard way generally applied here,each trap line consisted of 34 live traps spaced 3 meters apart. Trap lines were set up for three nights and checked every morning. Animals were euthanized by cervical dislocation, weighed and dissected for sex, reproductive status and age determination. Liver was examined macroscopically for parasites. Relative age was estimated based on the dry weight of crystalline eye lenses.</p> <p><em>Caveats:</em> in a very little number of cases (beginning of the study and circumstantial occasions) trap lines were not standard (150 m length, 51 traps, or set up for one or two nights only, etc.). See <a href="https://zenodo.org/record/6997317/files/Codes_Trapline.docx?download=1">Codes_Trapline.docx</a> and fields "remarques" (table <a href="http://zenodo.org/record/6997317/files/traplines.txt?download=1">traplines.txt</a>) and 'observation' (table <a href="http://zenodo.org/record/6997317/files/captures.txt?download=1">captures.txt</a>). Sometimes field not informed have been coded "", 99 or NA. Although we did our best to harmonize this in the files uploaded, some inconsistencies might remain. Those issues should be considered carefully before data analysis.</p> <p>Trapping and animal handling was carried out in full accordance with the relevant European guidelines (Directive 86/609/EEC) and national regulations. INRA (<em>Institut National de la Recherche Agronomique</em>), the umbrella organization under which the field work was carried out, created its first ethical committee in 1998. It was therefore impossible to get formal ethical approval prior to the major part of the study. A similar research protocol used from 2014 to 2017 received full approval from the <em>Comité d’Éthique Bisontin en Expérimentation Animale</em> (CEBEA No. 58).</p> <p><strong>FILE DESCRIPTION</strong></p> <p>Files <a href="https://zenodo.org/record/6997317/files/traplines.txt?download=1">traplines.txt</a>, <a href="https://zenodo.org/record/6997317/files/Ccaptures.txt?download=1">captures.txt</a> and <a href="https://zenodo.org/record/6997317/files/rates.txt?download=1">rates.txt</a> are tables of a relational database. They can be linked using the index field 'codeligne' between <a href="https://zenodo.org/record/6997317/files/traplines.txt?download=1">traplines.txt</a> and <a href="https://zenodo.org/record/6997317/files/captures.txt?download=1">captures.txt</a>, and 'codeind' between <a href="https://zenodo.org/record/6997317/files/captures.txt?download=1">captures.txt</a> and <a href="https://zenodo.org/record/6997317/files/rates.txt?download=1">rates.txt</a>.</p> <p><strong>Main files</strong></p> <p><a href="https://zenodo.org/record/6997317/files/captures.txt?download=1">captures.txt</a></p> <ul> <li>codeligne, trapline ID</li> <li>numind, specimen ID for the trap line</li> <li>numcontr, control number (traps were controlled every morning; for 3 successive nights for standard trap lines). E.g. 1 for a specimen captured on the 1st control.</li> <li>numpiege, trap ID in the trap line (1,2,....n). E.g. 34 is the 34th trap in the trap line counted from the beginning.</li> <li>espece, species (see <a href="http://zenodo.org/record/6997317/files/Codes_Sp_Parasites.docx?download=1">Codes_Sp_Parasites.docx</a> for the codes)</li> <li>poids, wet weight in g</li> <li>sexe, sex (1 male, 2 female)</li> <li>cristallin, dry weight of the two crystalline lens, in 1/10 of mg</li> <li>uterus, uterus diameter</li> <li>foetusd, number of foetuses in the uterus right horn</li> <li>foetusg, number of foetuses in the uterus left horn</li> <li>cicplacd, number of placental scares in the uterus right horn</li> <li>cicplacg, number of placental scares in the uterus left horn</li> <li>corpsjd, number of <em>corpus luteum</em> in the right ovary</li> <li>corpsjg, number of <em>corpus luteum</em> in the left ovary</li> <li>allaitante, milking (1 yes, 0 no)</li> <li>corpsblancd, number of <em>corpus albicans</em> in the right ovary</li> <li>corpsblancg, number of <em>corpus albicans</em> in the left ovary</li> <li>testd, length of the right testicle</li> <li>testg, length of the left testicle</li> <li>vesd, length of the right seminal vesicle</li> <li>vesg, length of the left seminal vesicle</li> <li>diammax, parasite mass great diameter</li> <li>diammin, parasite mass small diameter</li> <li>nombrekyste, parasite cyst number</li> <li>nomlu, parasite species as identified in the field</li> <li>nomanaly, parasite species as identified in the lab</li> <li>observation, remark</li> <li>codeind, specimen ID (codeligne+numind)</li> </ul> <p><a href="https://zenodo.org/record/6997317/files/rates.txt?download=1">rates.txt </a></p> <ul> <li>codeind, specimen ID</li> <li>ratepds, spleen weight (1/100 g)</li> <li>remarque, remark</li> </ul> <p><a href="https://zenodo.org/record/6997317/files/traplines.txt?download=1">traplines.txt</a></p> <ul> <li>codeligne, 8 digits trap line ID. LS891001 = location LS, 89 year, 10 month, 01, trap line ID for this place, year and month. See <a href="https://zenodo.org/record/6997317/files/Codes_Trapline.docx?download=1">Codes_Trapline.docx</a> for more details.</li> <li>dept, administrative department (INSEE code)</li> <li>date, date at which the trapline has been set up</li> <li>descripteur1, habitat description, <a href="https://zenodo.org/record/6997317/files/Codes_Trapline.docx?download=1">Codes_Trapline.docx</a></li> <li>descripteur2, habitat description, see <a href="https://zenodo.org/record/6997317/files/Codes_Trapline.docx?download=1">Codes_Trapline.docx</a></li> <li>facies, habitat description, see <a href="https://zenodo.org/record/6997317/files/Codes_Trapline.docx?download=1">Codes_Trapline.docx</a></li> <li>remarque, remark,</li> <li>lati, latitude of the northwest corner of the sampling grid (CRS NTF (Paris) / Lambert zone II, EPSG: 27572), see <a href="https://zenodo.org/record/6997317/files/Codes_Trapline.docx?download=1">Codes_Trapline.docx</a></li> <li>longi, longitude of the northwest corner of the sampling grid (CRS NTF (Paris) / Lambert zone II, EPSG: 27572), see <a href="https://zenodo.org/record/6997317/files/Codes_Trapline.docx?download=1">Codes_Trapline.docx</a></li> <li>precis, precision, the number of Lambert II squares (1km x 1km) composing the square side of the grid, see <a href="https://zenodo.org/record/6997317/files/Codes_Trapline.docx?download=1">Codes_Trapline.docx</a></li> </ul> <p><strong>Supplementary files</strong></p> <p><a href="https://zenodo.org/record/6997317/files/bboxlarge.kml?download=1">bboxlarge.kml</a>, the bounding box including all the area with trap lines that could be geographically located. It takes the precision of the location into account (hence, includes the southeastern extremes of the grid squares (see Codes_Trapline.docx).</p> <p><a href="https://zenodo.org/record/6997317/files/bboxLS.kml?download=1">bboxLS.kml</a>, the bounding box of the study area "LS" (Le Souillot) including all the trap lines that could be geographically located. It takes the precision of the location into account (hence, includes the southeastern extremes of the grid squares, see <a href="https://zenodo.org/record/6997317/files/Codes_trapline.docx?download=1">Codes_Trapline.docx</a>). Those trap lines are the core (90% of the total number of the traplines set) of the research carried out in the area.</p> <p><a href="https://zenodo.org/record/6997317/files/lineloc.kml?download=1">lineloc.kml</a>, the geographical coordinates of the northwestern corner of the square including each trap line with trapline ID and precision (1, square of 1 x 1 km; 2, square of 2 x 2 km, etc.).</p> <p><a href="https://zenodo.org/record/6997317/files/Code_Sp_Parasites.docx?download=1">Codes_Sp_Parasites.docx</a>, codes of small mammal species and parasite names.</p> <p><a href="https://zenodo.org/record/6997317/files/Codes_Trapline.docx?download=1">Codes_Trapline.docx</a>, codes of trap lines.</p>
A map collection of the Paleolithic of the Swabian Jura
<p>This is a collection of maps for publications and presentations. The newest version and further information is available at <a href="https://github.com/sommergeo/swabian_jura">https://github.com/sommergeo/swabian_jura</a>. The project consits of</p> <ul> <li>The original dataset with a QGIS project file</li> <li>Maps with different extents for <ul> <li>Print</li> <li>Screen presentation</li> </ul> </li> <li>A first draft of a interactive web map</li> </ul> <p>All data and maps are provided and can be accessed and edited with Open Source tools, namely <a href="http://qgis.org/">QGIS</a>, <a href="http://inkscape.org/">Inkscape</a> and <a href="https://leafletjs.com">Leaflet</a>. Provided by <a href="https://www.sommergeo.com">C. Sommer</a>.</p>
Vulnerability tools - Swiss Jura (Switzerland)
<p><span>The MOVING project has developed accessible <strong>tools </strong>designed to assess susceptibility and vulnerability within the region, ready to be used by both experts and the general audience. This document synthesises crucial information for the Swiss Jura Region, particularly focusing on the Participatory Vulnerability Matrix and the Spatial Vulnerability Map. Furthermore, it includes <strong>supplementary maps and figures </strong>detailing various aspects such as the delineation of Reference Landscape, distribution of land systems, areas affected by wildfires, susceptibility to floods across different return periods, severity of forest disturbances, rainfall erosivity, and more.</span></p>
Fig. 1. a in Conocephalus dorsalis (Latreille, 1804) à 1000 mètres d'altitude dans la chaîne du Jura (Orthoptera: Tettigoniidae)
Fig. 1. a) Femelle adulte de Conocephalus dorsalis, Bois des Lattes (NE), juillet 2018. b) Habitat occupÉ par Conocephalus dorsalis au Bois des Lattes (NE), 997 m, juillet 2018. (Photos Christian Monnerat)
Carbon and energy Eddy-covariance fluxes dataset collected at Frasne peatland (192ha, Jura Mountains, France)
<p>luxes and energy data measured by Eddy-covariance at Frasne peatland (ec1). Measurements start on 20-07-2018 and are regularly updated with new data. Data include carbon dioxide fluxes (CO2, µmol/m²/s), methane fluxes (CH4, µmol/m²/s), sensible heat fluxes (H, W/m²), latent heat fluxes (LE, W/m²) and evapotranspiration (ETR, mm/h).</p> <p>Zip file contain :</p> <ul> <li>metadata file (TOUR_en.json) which describe stations, sensors, variables and process</li> <li>csv file contain time series data for all variables by station</li> </ul> <p>Additional information on the measurement can be found in this website : <a href="https://data-snot.cnrs.fr/data-access/">https://data-snot.cnrs.fr/data-access/</a></p> <p>We also recommend to contact sno-tourbieres to talk about data acquisition and use : <a href="mailto:contact.sno-tourbieres@cnrs-orleans.fr">contact.sno-tourbieres@cnrs-orleans.fr</a></p>
Fig. 1 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 1: Geographische Situation. 1: Tongrube Liesberg Amtil BL, 2: Graitery Vieille Cooperie BE, 3: Les Grangettes W Les Rangiers JU, 4: Côte de la Rise W les Forges zwischen Berlincourt und Undervelier JU. (Koordinaten der Lokalitäten sind bei den Figuren 3-5 angegeben).
Fig. 4 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 4: Lithostratigraphisches Profil durch das Herznach-Member im Steinbruch Liesberg Amtil, abgeändert nach Gründel & Hostettler (2012). (Koordinaten 598 625/250 100).
Fig. 10 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 10: Terebratellidinen. a: Antiptychina bivallata (Eud.-Desl.), Tunnel du Graitery, frühes Callovien, Herveyi-Zone (FPJ 5053); b: Aulacothyris pala (Buch), Tunnel du Graitery, frühes Callovien, Herveyi-Zone (FPJ 5054); c: Aulacothyris hypocirta (Eud.- Desl.), Graitery (Combe d'Eschert), mittleres Callovien, Coronatum-Zone (FPJ 5055); d: Digonella cf. pseudoantiplecta (Choffat), zwei Exemplare, Graitery (Combe d'Eschert), mittleres Callovien, Coronatum-Zone (oben FPJ 5056, unten FPJ 5057); e: Rugitela? solodurina (Rollier), zwei Exemplare, Tunnel du Graitery, frühes Callovien, Herveyi-Zone (oben FPJ 5058, unten FPJ 5059); f: Ornithella? microlagenalis (Rollier), zwei Exemplare, Tunnel du Graitery, mittleres Callovien, Coronatum-Zone (oben FPJ 5060, unten FPJ 5061); g: Ornithella? cf. biappendiculata (Eud.-Desl.), zwei Exemplare, Liesberg Amtil, frühes Callovien, Herveyi-Zone (oben FPJ 5062, unten FPJ 5063); h: "Zeilleria" sp., Graitery (Combe d'Eschert), mittleres Callovien, Coronatum-Zone (FPJ 5064). Massstäbe: 1 cm.
Fig. 7 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 7: Transversalschliffe von Ivanoviella oxoniensis. Exemplar von 21.5 mm Länge, 21.5 mm Breite und 21.5 mm Dicke. Massstab: 1 cm.
Fig. 9 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 9: Transversalschliffe von Dorsoplicathyris flexuosa. Exemplar von 26.8 mm Länge, 20.2 mm Breite und 14.5 mm Dicke. Massstab: 1 cm.
Fig. 3 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 3: Ausschnitt aus dem lithostratographischen Profil, Bollement-Member südlich Côte de la Rise (Koordinaten 582 750/240 275).
Fig. 12 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 12: Transversalschliffe von Digonella cf. pseudoantiplecta. Exemplar von 22.2 mm Länge, 15.3 mm Breite und 11.4 mm Dicke. Massstab: 1 cm.
Fig. 13 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 13: Transversalschliffe von Rugitela? solodurina. Exemplar von 9.6 mm Länge, 7.2 mm Breite und 6.0 mm Dicke. Massstab: 1 cm.
Fig. 8 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 8: Terebratulidinen. a: Dictyothyris smithi (Oppel), unten: kleines Exemplar in Ventralansicht, Graitery (Combe d'Eschert), mittleres Callovien, Coronatum-Zone (FPJ 5046); b: Dorsoplicathyris ex gr. dorsoplicata (Suess in Eud.-Desl.), Tunnel du Graitery, mittleres Callovien, Coronatum-Zone (FPJ 5047); c: Dorsoplicathyris flexuosa (Boullier), Col de la Croix, spätes Callovien, Athleta-Zone (FPJ 5048); d: Morrisithyris eggensis (Rollier), Tunnel du Graitery, frühes Callovien, Herveyi-Zone (FPJ 5049); e: Aromasithyris cf. haasi (Rollier), Liesberg Amtil, spätes Callovien, Lamberti-Zone (FPJ 5050); f: Tegulithyris bentley (Morris in Dav.), im Sediment (links Dorsal-, rechts Lateralansicht), Graitery, frühes Callovien, Herveyi-Zone (FPJ 5051), g: Tegulithyris bentley (Morris in Dav.), juveniles Exemplar, Liesberg Amtil, frühes Callovien, Calloviense-Zone (FPJ 5052). Massstäbe: 1 cm.
Fig. 5 in Die Brachiopoden des Callovien im zentralen Nordwestschweizer Jura
Fig. 5: Lithostratigraphisches Profil, Graitery-Member, La Vieille Copérie (Combe d'Eschert). (Koordinaten 597 250/233 650).
Fig. 15 in Middle Jurassic cyclostome bryozoans from the Polish Jura
Fig. 15. Cerioporine cyclostome bryozoan Ceriocava sp. from the Middle Bathonian of Bugaj, Polish Jura. A. NHM Bz 5612(1). A1, centre of cone−like subcolonies; A2, autozooidal apertures; A3, elongated and curved gonozooid. B. NHM BZ 5613, centre of cone−like subcolonies. C. NHM BZ 5614. C1, centre of flabellotrypiform colony; C2, pseudopores. Scale bars 300 µm (B), 200 µm (A1, A3, C1), 100 µm (A2), 20 µm (C2). BSE SEM images of uncoated specimens.
Fig. 13 in Middle Jurassic cyclostome bryozoans from the Polish Jura
Fig. 13. Plagioeciid cyclostome bryozoan Hyporosopora aff. sauvagei (Gregory, 1896) from the Middle Jurassic ore−bearing clays of the Polish Jura. A. Middle Bathonian, Bugaj, GIUS 8−3509−22. A1, colony view; A2, autozooids; A3, boomerang−like gonozooid, ooeciopore arrowed; A4, heart−shaped gonozooid, ooeciopore arrowed; A5, pseudopores. B. Middle Bathonian, Bugaj, NHM BZ 5612(2), subtriangular gonozooid, ooeciopore arrowed. Scale bars: 1 mm (A1), 100 µm (A2–A4, B), 20 µm (A5). BSE SEM images of uncoated specimens.
Fig. 12 in Middle Jurassic cyclostome bryozoans from the Polish Jura
Fig. 12. Plagioeciid cyclostome bryozoan Hyporosopora tenera (Reuss, 1867) from the Middle Jurassic ore−bearing clays of the Polish Jura, GIUS 8−3509−12. A. Colony view. B. Marginal autozooids. C. Gonozooid with ooeciopore (arrowed). D. Pseudopores. Scale bars: 300 µm (A), 100 µm (B, C), 30 µm (D). BSE SEM images of uncoated specimens.
Fig. 8 in Middle Jurassic cyclostome bryozoans from the Polish Jura
Fig. 8. Multisparsid cyclostome bryozoan Reptomultisparsa harae sp. nov. from the Middle Jurassic Inferior Oolite of England and ore−bearing clays of the Polish Jura. A. Holotype NHM D52832, Upper Bajocian, Shipton Gorge, Dorset, UK. A1, colony with gonozooids; A2, close−up of a gonozooid; A3, autozooids, some of which have terminal diaphragms; A4, pseudopores. B. Paratype, GIUS 8−3509−16, Middle Bathonian, Bugaj, Polish Jura. B1, autozooids and worn gonozooid; B2, pseudopores. Scale bars 1 mm (A1), 200 µm (A2), 100 µm (A3, B1), 20 µm (A4, B2). BSE SEM images of uncoated specimens.
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.