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FIGURE 7 in Ovummuridae (calcareous microfossils) from the Much Wenlock Limestone Formation, Shropshire, UK

FIGURE 7. (A) = Photomicrographs of Munneckella tribuscamera within the MWL Fm., these specimens are from Harton Hollow (A and B), Strefford Quarry (C) and Eaton Top (D). (A) = M. tribuscamera with two septum-like structures (ss) forming a three-chambered morphology consisting of a slightly larger central chamber (CC) and two smaller, often dome or cone-shaped peripheral chambers (PC). (B) = M. tribuscamera with three unequal sized chambers and varying wall thickness. An apical aperture is present in one of the peripheral chambers. (C) = Large specimen of M. tribuscamera with conical PC. (D) = M. tribuscamera. with slightly thickened thicker than normal walls. Sparitic matrix (sp); Biosparitic matrix (bsp). All scale bars equal 50 µm.

opencc-by-4.0Dec 2022View details →
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FIGURE 6 in Ovummuridae (calcareous microfossils) from the Much Wenlock Limestone Formation, Shropshire, UK

FIGURE 6. Photomicrographs of Natantesprifmata rogersi (A-D) and Hartonella oblonga (E-H) within the MWL Fm., these specimens are from Longville Stanway (A), Longville Stanway Track (B), Eaton Top (C), Moorwood Quarry (D) and Harton Hollow (E-H). (A) = N. rogersi with a prismatic dorsal chamber (DC) separated from the conical ventral chamber (VC) by a septum-like structure (ss). Apical aperture is present in the DC. (B) = N. rogersi with pyrite within the walls (pyw) of the test. Thickened walls (tw) are present around DC. Note quartz grains (qtz) within the DC infill. (C, D) = N. rogersi showing the typical kite-like shape. (E, F) = H. oblonga showing a large elongated dorsal chamber (DC) separated by a septum-like structure (ss) from its smaller globular ventral chamber. (G) H. oblonga with a pointed VC and a smoother, more oval DC. Bivalve fragment (bv) (top right). (H) An H. oblonga with a thicker than normal wall and elongated ss. Specimen of mg is neighbouring H. oblonga (bottom centre). Sparitic matrix (sp); Biosparitic matrix (bsp). All scale bars equal 50 µm.

opencc-by-4.0Dec 2022View details →
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FIGURE 3 in Ovummuridae (calcareous microfossils) from the Much Wenlock Limestone Formation, Shropshire, UK

FIGURE 3. Photomicrographs of Ovummurus duoportius within the MWL Fm. showing this species typical morphology and characteristic. These specimens are from: Longville Stanway (A and B) and Moorwood Quarry (C and D). (A) = Ovummurus duoportius exhibiting two chambers (C1 and C2) separated by a septal structure (ss) with an apical aperture (ap) present in C2. All specimens here are found within a sparitic (sp) grainstone matrix. (B) = O. duoportius with thickened. (C) = Longitudinal cross section showing the equal-sized chambers present within O. duoportius. (D) = O. duoportius specimen with pyrite growth within C2. All scale bars equal 50 µm.

opencc-by-4.0Dec 2022View details →
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FIGURE 4 in Ovummuridae (calcareous microfossils) from the Much Wenlock Limestone Formation, Shropshire, UK

FIGURE 4. Photomicrographs of Minourella gotlandica (A-D), Minourella wenlockensis (E-G) and Minorella cameroni (H) within the MWL Fm., these specimens are from Eaton Top (A, B and C), Longville Stanway Track (D and F), Moorwood Quarry (E and G) and Harton Hollow (H). (A) = M. gotlandica (mg) specimen near a bryozoan (bry) within a spiritic matrix (sp) highlighting the similarities in wall structure, (B) = M. gotlandica with a larger globular dorsal chamber (DC) separated from the smaller globular ventral chamber (VC) by a septum like structure (ss). Sparitic (sp) matrix. Specimen has a pyritic wall. (C) = M. gotlandica with an aperture (ap) within the VC. (D) = Thickened walls of the dorsal chamber with an apical aperture (ap). (E) = Sectional cut through M. wenlockensis highlighting the conical ventral chamber (VC) in contrast to the globular dorsal chamber (DC) separated by septum like structure (ss) within a sparitic (sp). (F) = Apertures present in both DC and VC. Note pyritic growth within the specimen walls. (G) = M. wenlockensis with an apical aperture (ap) within the DC. Matrix comprised of sparite. (H) = M. cameroni Longitudinal transverse sectional cut through M. cameroni exhibiting the conical nature of the test. Lateral dorsal chamber (LDC) is separated from the ventral chamber (VC) by a septum like structure (ss). Sparitic infill of the LDC and VC from the surrounding sparitic (sp) matrix. All scale bars equal 50 µm.

opencc-by-4.0Dec 2022View details →
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FIGURE 2 in Ovummuridae (calcareous microfossils) from the Much Wenlock Limestone Formation, Shropshire, UK

FIGURE 2. The original measurements taken by Munnecke et al. (2000) from each individual specimen of Ovummuridae based on Minourella gotlandica (left) and modified measurements for Ovummurus duoportius (right). The measurements recorded are: overall height (H) and width (w) of the specimen, height (H1 and H2) and width (w1 and w2) of both internal chambers, the thickness of the wall in three loci: overall thickness of the wall (th1), thickness of the septum separating the two chambers (th3) and the thickness between the wall and the chamber (th2) and finally the size of the aperture (ap). (After Munnecke et al., 2000).

opencc-by-4.0Dec 2022View details →
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FIGURE 1 in Ovummuridae (calcareous microfossils) from the Much Wenlock Limestone Formation, Shropshire, UK

FIGURE 1. Area of study. A – Highlights the position of Wenlock Edge within the English Midlands and Welsh Marches. B – Shows the Off-Reef tract where thin samples studied in this paper originate from. C – Inset in A, highlights the exposures of the Much Wenlock Limestone Formation in the English Midlands and Welsh Marches.

opencc-by-4.0Dec 2022View details →
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FIGURE 5 in Ovummuridae (calcareous microfossils) from the Much Wenlock Limestone Formation, Shropshire, UK

FIGURE 5. Photomicrographs of Arouxina pluricellata (A-F) and Samtlebenella circumcamerata (G-H) within the MWL Fm., these specimens are from Longville Stanway Track (A), Moorwood Quarry (B, C, E and H), Harton Hollow (D and G) and Strefford Quarry (H). (A) = Sectional cut through A. pluricellata highlighting the multiple hemispherical chambers (HC) surrounding the globular dorsal chamber (DC) and ventral chamber (VC). HC can form concentrically. Occasional apical apertures (ap) are observed within the DC.The bulbous growth are associated with several walls. (B) = Thickened A. pluricellata specimen with six HC surrounding the central DC and VC. Note the presence of pyrite within a few of the HC. Matrix comprised solely of sparite. (C) = An elongate A. pluricellata test with three HC. (D) = Specimen of A. pluricellata highlighting the disjointed nature of the surrounding HC. (E) = A. pluricellata with a single HC chamber but exhibits an ap within both VC and DC. (F) = A. pluricellata specimen with thinner walled HC compared to the walls surrounding the DC and VC. (G) = S. circumcamerata resembling Darth Vader's helmet. Presence of HC within the walls surrounding the DC. (H) = Thick walled specimen of S. circumcamerata with a partially preserved VC and two chambers (c) are visible within the walls surrounding the DC. Sparitic matrix = (sp). All scale bars equal 50 µm.

opencc-by-4.0Dec 2022View details →
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FIGURE 7 in Teganium (Porifera, Hexactinellida) from the Middle Ordovician Castle Bank fauna of Avalonia (Wales, UK)

FIGURE 7. Palaeogeographic distributions of species of Teganium (all species in B originally assigned to Teganiella). A, Ordovician (Sandbian, 458 Ma). B, Carboniferous (Visean, 340 Ma). Map constructed using GPlates (Müller et al. 2018) using data from Torsvik & Cocks (2016). Does not include unconfirmed taxa listed by Ruedemann (1925b, 1934, 1942).

opencc-by-4.0Dec 2023View details →
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FIGURE 6 in Teganium (Porifera, Hexactinellida) from the Middle Ordovician Castle Bank fauna of Avalonia (Wales, UK)

FIGURE 6. Teganium sp., from the Middle Ordovician Castle Bank Biota, Wales. A, NMW.2021.3G.76i and ii, overall view, with positions of detail images indicated by boxes (all rotated). B, apex of NMW.2021.3G.76i, apex of sponge showing extensive marginalia; C, detail of body wall showing characteristic texture (boxed area enlarged inset); D, apex of NMW.2021.3G.76ii, with oscular margin and trace of marginalia. Scale bars: A equals 10 mm; B–D equal 1 mm.

opencc-by-4.0Dec 2023View details →
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FIGURE 5 in Teganium (Porifera, Hexactinellida) from the Middle Ordovician Castle Bank fauna of Avalonia (Wales, UK)

FIGURE 5. Cut-away reconstruction of Teganium avalonensis sp. nov., with detail of wall structure on the right; dermal/hypodermal skeleton in lower part, and choanosomal layer with exhalent canals in upper part.

opencc-by-4.0Dec 2023View details →
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FIGURE 3 in Teganium (Porifera, Hexactinellida) from the Middle Ordovician Castle Bank fauna of Avalonia (Wales, UK)

FIGURE 3. Teganium avalonensis sp. nov. A, paratype NMW.2021.3G.74; apical part with marginalia, imaged with directed light (from right) to highlight texture of body wall; B, paratype NMW.2021.3G.98, with low-angle light to highlight diagnostic texture of body wall (boxed area enlarged inset); C–F, paratype NMW.2021.3G.82, partial specimen with the boxes in C indicating positions of D, E and F; D, lateral detail to show reticulate skeletal grid (plane-polarised light); E, detail showing scale of minute triaxon spicules within the same area; centres of several spicules arrowed; F, detail of central part of specimen in cross-polarised light (contrast enhanced) to highlight the small circular cavities within choanosomal (internal) layer of body wall. Scale bars: A, B, D, F equal 1 mm; C equals 5 mm; E equals 0.1 mm.

opencc-by-4.0Dec 2023View details →
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FIGURE 2 in Teganium (Porifera, Hexactinellida) from the Middle Ordovician Castle Bank fauna of Avalonia (Wales, UK)

FIGURE 2. Teganium avalonensis sp. nov., from the Middle Ordovician Castle Bank Biota, Wales. A–B: paratype slab NMW.2021.3G.72, with pair of sponges in A, plane-polarised light, and B, cross-polarised; C, E, holotype NMW.2021.3G.71: C, overall view, with box indicating area enlarged in E; E, detail of basal region showing projecting basalia; D, paratype NMW.2021.3G.73, overall view. Scale bars: A–D equal 5 mm; E equals 1 mm.

opencc-by-4.0Dec 2023View details →
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FIGURE 4 in Teganium (Porifera, Hexactinellida) from the Middle Ordovician Castle Bank fauna of Avalonia (Wales, UK)

FIGURE 4. Paratypes of Teganium avalonensis sp. nov. A, NMW.2021.3G.77; B, NMW.2021.3G.98 in cross-polarised light (boxed area enlarged in Figure 3B); C, NMW.2021.3G.78 with pair of specimens, the right-hand one with marginalia; D, NMW.2021.3G.79; E, NMW.2021.3G.81 with multiple specimens, in cross-polarised light; F, NMW.2021.3G.80. Scale bars equal 1 mm.

opencc-by-4.0Dec 2023View details →
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FIGURE 1 in Teganium (Porifera, Hexactinellida) from the Middle Ordovician Castle Bank fauna of Avalonia (Wales, UK)

FIGURE 1. Locality map (left) and local stratigraphy of the Castle Bank locality, showing occurrence of Teganium avalonensis sp. nov. within the Castle Bank sequence (mainly siltstone, with shading representing colour of sediment; v: volcanic ash layers). Exact locality information is deposited with the specimens.

opencc-by-4.0Dec 2023View details →
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UK Climate Projections (UKCP18): Weather Patterns

<p>Provided here are the data files for the weather patterns generated for the <a href="https://www.metoffice.gov.uk/research/approach/collaboration/ukcp">2018 UK Climate Projections</a> (UKCP or UKCP18) Global ensemble (sometimes referred to as the land-gcm). The weather patterns are the same weather patterns as used in <a href="https://rmets.onlinelibrary.wiley.com/doi/10.1002/met.1563">Neal et al. (2016)</a> and used the same code to generate the weather patterns for the ensemble members. A historical equivalent of this dataset based on ERA5 can be found in <a href="https://doi.pangaea.de/10.1594/PANGAEA.942896">Neal, (2022)</a>.</p> <p>The UKCP Global model dataset features two ensembles:<br>The PPE-15 : A 15 member perturbed parameter ensemble of the HadGEM3.05 model<br>The CMIP5-13: A sub-selection of 13 members from the CMIP5 ensemble.</p> <p>The PPE-15 data is available using the RCP 2.6 and RCP 8.5 scenarios and the CMIP5-13 is available only using the RCP 8.5 scenario.</p> <p>When using these weather patterns please cite: <a href="https://doi.org/10.1007/s00382-021-06031-0">Pope et al., 2022</a>, Investigation of future climate change over the British Isles using weather patterns. Climate Dynamics.&nbsp;</p>

opencc-by-4.0Jul 2024View details →
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Exploiting the potential of neutron imaging measurements for life sciences applications at the neutron spallation source, ISIS, UK - Crabs X-ray CT

<p>A ZIP file containing slices (in TIFF format) from a X-ray CT scan of crabs from the Eocene of Spain. Specimen was scanned&nbsp;on a Nikon Metrology HMX ST 225 system at the Natural History Museum, London, using a 1.0 mm thick copper filter, 225 kV voltage and 180 &mu;A current, giving a tomographic dataset with a voxel size of 46 &micro;m.</p>

opencc-by-4.0Feb 2018View details →
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geochemical data from UK and US produced water batch experiments

<p>Geochemical data set from batch experiments of UK and US shale gas produced water</p>

opencc-by-4.0Jul 2018View details →
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Photos of the barcoded strains from the UK-Barcoding

<p>This project (Kelly et al., 2018), funded by the Environment Agency, England&rsquo;s environmental regulator, aimed to develop a DNA metabarcoding approach to ecological assessment based on diatoms using HTS of a fragment of the <em>rbc</em>L gene. It aimed to ensure continuity with microscopical methods while, at the same time, complying with the EU Water Framework Directive, which refers to &lsquo;taxonomic composition&rsquo;. The twin foundations for this study were a calibration dataset of samples, analyzed by both microscopy and HTS approaches, along with a reference database of <em>rbc</em>L DNA barcodes which link to Linnaean taxonomy.</p> <p>You can find in this zip file a selection of photos of the diatom strains isolated in the framework of the project UK-barcoding. This project was funded by the UK Environment Agency</p> <p>&nbsp;</p> <p>Reference :</p> <p>Kelly, M. G., N. Boonham, S. Juggins, P. Kille, D. G. Mann, D. Pass, D. Sapp, S. Sato, &amp; R. Glover, 2016. A DNA based diatom metabarcoding approach for Water Framework Directive classification of rivers. Bristol, UK: 1&ndash;94.</p> <p>&nbsp;</p>

opencc-by-4.0Jan 2019View details →
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CATCH-EyoU Processes in Youth's Construction of Active EU Citizenship Cross-national Wave 1 Questionnaires Italy, Sweden, Germany, Greece, Portugal, Czech Republic, UK, and Estonia - EXTRACT

<p>The dataset was generated within the research project Constructing AcTive CitizensHip with European Youth: Policies, Practices, Challenges and Solutions (CATCH-EyoU) funded by European Union, Horizon 2020 Programme - Grant Agreement No 649538&nbsp; <a href="http://www.catcheyou.eu/">http://www.catcheyou.eu/</a>.&nbsp;</p> <p>The data set consists of:</p> <ul> <li>1 data file saved in .sav format</li> </ul> <p>&ldquo;CATCH-EyoU Processes in Youth&rsquo;s Construction of Active EU Citizenship Cross-national Wave 1 Questionnaires Italy, Sweden, Germany, Greece, Portugal, Czech Republic, UK, and Estonia - EXTRACT.sav&rdquo;</p> <ul> <li>1 README file</li> </ul> <p>The file was generated through IBM SPSS software. Discrete missing values: 88, 99. The .sav file (SPSS) can be processed using &ldquo;R&rdquo; (library &ldquo;foreign&rdquo;): <a href="https://cran.r-project.orgv/">https://cran.r-project.org</a></p> <p>This dataset relates to following paper:&nbsp;</p> <p>Ekaterina Enchikova, Tiago Neves, Sam Mejias, Veronika Kalmus, Elvira Cicognani,&nbsp; Pedro Ferreira (2019) Civic and Political Participation of European Youth: fair measurement in different cultural and social contexts. Frontiers in Education.</p> <p>Data Set Contact Person: Ekaterina Enchikova [UP-CIIE]; mail: enchicova@gmail.com&nbsp;&nbsp;&nbsp;&nbsp;</p> <p>Data Set License: this data set is distributed under a Creative Commons Attribution (CC-BY) <a href="http://creativecommons.org/licenses">http://creativecommons.org/licenses</a></p> <p>&nbsp;</p>

opencc-by-4.0Dec 2016View details →
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Multicrystal data of proteinase K collected on the VMXi beamline at the Diamond Light Source, UK

<p>These are a series of datasets which have been collected on the VMXi beamline at the Diamond Light Source, UK. They were collected <em>in-situ</em> at room temperature using a Dectris 2X 4M detector. The datasets were collected in unattended mode using samples preselected using the SynchWeb interface to ISPyB. Each dataset is a 60 degree wedge of data, collected using 1% DMM (double multilayer monochromator) beam (at a wavelength of 0.979A) with an exposure time of 0.002 secs/ frame. These data were merged and have been used in the deposition of a structure to the protein databank.</p>

opencc-by-4.0Jun 2019View details →

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Allen Brain Atlas

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

Annotated Behaviour and Observability Dataset (ABODe)

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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