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.
355
datasets available to search
ShareScore release 0.9.0
Dataset results
355 results for “northeast Atlantic”
Figure 8. Alvania micropilosa n in Rissoidae (Mollusca: Gastropoda) from northeast Atlantic seamounts
Figure 8. Alvania micropilosa n. sp. (A) Holotype (sh.) from Meteor seamount, DW152 (470 m), actual size 2.58 mm; (B, C) paratypes (sh.), same locality, actual sizes 2.74 and 2.56 mm; (D) protoconch of holotype; (E) detail of holotype, showing the minute periostracal hairs; (F, G) shells from Hyères seamount, DW182 (480 m), actual sizes 2.64 and 2.00 mm; (H) protoconch, same shell as (G). Scale bars: 100 Mm.
Figure 18 in Rissoidae (Mollusca: Gastropoda) from northeast Atlantic seamounts
Figure 18. Pseudosetia amydralox Bouchet and Warén, 1993. (A) Specimen from Josephine seamount, DW61 (200–205 m), actual size 1.90 mm; (B) shell, same locality, actual size 1.70 mm; (C) protoconch, same specimen as (A). Scale bar: 100 Mm.
Figure 20 in Rissoidae (Mollusca: Gastropoda) from northeast Atlantic seamounts
Figure 20. Pseudosetia azorica Bouchet and Warén, 1993. (A, B) Shells from Atlantis seamount, DW255 (340 m), actual size 1.57 and 1.50 mm; (C) protoconch, juvenile specimen from Atlantis seamount, TS270 (330 m); (D) shell from Cruiser seamount, DW237 (670 m), actual size 1.62 mm; (E) protoconch, same shell. Scale bars: 100 Mm.
Figure 9. Alvania elenae n in Rissoidae (Mollusca: Gastropoda) from northeast Atlantic seamounts
Figure 9. Alvania elenae n. sp. (A) Holotype (sh.) from Meteor seamount, DW152 (470 m), actual size 2.56 mm; (B) paratype, same locality, actual size 2.58 mm; (C) protoconch of the holotype; (D) shell from Hyères seamount, DW182 (480 m), actual size 2.60 mm; (E) protoconch, same shell; (F) microsculpture, same shell; (G, H) shells from Irving seamount, DW215 (275 m), actual sizes 1.82 and 2.00 mm; (I) protoconch, same shell as (H). Scale bars: 100 Mm.
Figure 2. Pusillina fuscapex n in Rissoidae (Mollusca: Gastropoda) from northeast Atlantic seamounts
Figure 2. Pusillina fuscapex n. sp. (A) Paratype (spm.) from Atlantis seamount, DW255 (340 m), actual size 1.82 mm; (B) paratype (sh.), same locality, actual size 1.82 mm; (C) protoconch of another paratype, same locality; (D) shell from Meteor seamount, DW143 (330 m), actual size 1.94 mm; (E) protoconch of a juvenile specimen from Meteor seamount, TS163 (290 m). Scale bars: 100 Mm.
Figure 23. Manzonia lusitanica n in Rissoidae (Mollusca: Gastropoda) from northeast Atlantic seamounts
Figure 23. Manzonia lusitanica n. sp. (A) Paratype (sh.) from Gorringe seamount, DW08 (470–485 m), actual size 1.78 mm; (B) holotype (sh.), same locality, actual size 2.16 mm; (C) protoconch of the holotype; (D, E) microsculpture of the holotype. Scale bars: 100 Mm (C); 50 Mm (D, E).
Fig. 5 in A new genus and species of Polynoidae (Annelida: Polychaeta) from the Canary Islands, and update on taxa present in the Northeast Atlantic
Fig. 5. Webbnesia maculata gen. et sp. nov., holotype (TFMCBM-AN/246). Distal part of neuropodium (posterior view), showing shorter rounded postchaetal lobe and elongate prechaetal acicular lobe with minute supra-acicular process (arrow). Scale bar = 70 µm.
Fig. 1 in A new genus and species of Polynoidae (Annelida: Polychaeta) from the Canary Islands, and update on taxa present in the Northeast Atlantic
Fig. 1. Map of the Canary Islands with type localities. Gran Canaria: 1. East coast, off Tufía (holotype, TFMCBM-AN/246). 2–3. South coast, off Castillo del Romeral (paratypes, TFMCBM-AN/247 and AN/248). Tenerife: 4. South coast, off Granadilla (paratype, SMF 32262).
Fig. 2 in A new genus and species of Polynoidae (Annelida: Polychaeta) from the Canary Islands, and update on taxa present in the Northeast Atlantic
Fig. 2. Webbnesia maculata gen. et sp. nov., holotype (TFMCBM-AN/246). A. Anterior end, elytra removed and left dorsal cirrus of segment 3 missing. B. Right elytron of segment 21. C. Right cirrigerous parapodium of segment 20, posterior view. D. Left elytragerous parapodium of segment 21, posterior view. E. Notochaetae. F. Upper, middle and lower neurochaetae. Scale bar: A= 1.3 mm; B = 1.9 mm; C–D = 0.4 mm; E–F = 40 µm.
Non-indigenous seaweed records in the Northeast Atlantic Ocean, the Mediterranean Sea and Macaronesia
<p>This dataset accompanies the publication "Non-indigenous seaweeds in the Northeast Atlantic Ocean, the Mediterranean Sea and Macaronesia: a critical synthesis of diversity, spatial and temporal patterns" (van der Loos, Bafort, Bosch, et al. 2023). The dataset is a compilation of non-indigenous marine seaweed species records from three main regions, namely the Northeast Atlantic Ocean (excluding Greenland), the Mediterranean Sea and Macaronesia.</p> <p>A total of 19,724 records of non-indigenous seaweed records were collected dating from 1808 to 2022. </p> <p>For each record, this dataset contains the following information:</p> <p>SPECIES_SCIENTIFIC_NAME: Currently accepted scientific species name of the record (as of April 2023)</p> <p>ORIGINAL_RECORD_SCIENTIFIC_NAME: Scientific name that was originally used in the record</p> <p>YEAR: Year in which the specimen was recorded. Where possible, this date refers to the year the species was first observed rather than when the record was published. In the absence of such information the date refers to the year the first record was published.</p> <p>LATITUDE: Latitude</p> <p>LONGITUDE: Longitude</p> <p>AREA: Northeast Atlantic Ocean, Macaronesia, or the Mediterranean Sea</p> <p>COUNTRY: Country where the specimen was recorded</p> <p>LOCATION: Location where the specimen was recorded</p> <p>LIFE_STAGE: For some records the life stage (gametophyte, sporophyte, tetrasporophyte) has been recorded</p> <p>DRIFT: Records reported as drifting material are noted in this column as "drift"</p> <p>DATA_SOURCE: The data source (e.g., publication, project data, herbarium specimen, personal data)</p> <p>REFERENCE: The reference</p>
Northeast Atlantic species distribution shifts over the last two decades
Open the record for dataset details and reuse information.
Otolith annual growth increments for cod populations in the Northeast Atlantic
Open the record for dataset details and reuse information.
Fig. 5 in A new deepwater species of Calliopiidae, Halirages helgae (Crustacea, Amphipoda), with a synoptic table to Halirages species from the northeast Atlantic
Fig. 5. Halirages helgae sp. nov., holotype, ♀, 10 mm long. A. Gnathopod 1. B. Gnathopod 2.
Heat stress responses of the kelp Laminaria digitata (Phaeophyceae) across Northeast Atlantic populations: growth, biochemistry, chlorophyll fluorescence, pigments
<p>To understand the thermal plasticity of a coastal foundation species across its latitudinal distribution, we assess physiological responses to high temperature stress in the kelp <i>Laminaria digitata</i> in combination with population genetic characteristics and relate heat resilience to genetic features and phylogeography. We hypothesize that populations from Arctic and cold-temperate locations are less heat resilient than populations from warm distributional edges. Using meristems of natural <i>L. digitata</i> populations from six locations ranging between Kongsfjorden, Spitsbergen (79°N), and Quiberon, France (47°N), we performed a common-garden heat stress experiment applying 15°C to 23°C over eight days. We assessed growth, photosynthetic quantum yield, carbon and nitrogen storage, and xanthophyll pigment contents as response traits. Population connectivity and genetic diversity were analysed with microsatellite markers. Results from the heat stress experiment suggest that the upper temperature limit of <i>L. digitata</i> is nearly identical across its distribution range, but subtle differences in growth and stress responses were revealed for three populations from the species' ecological range margins. Two populations at the species' warm distribution limit showed higher temperature tolerance compared to other populations in growth at 19°C and recovery from 21°C (Quiberon, France), and photosynthetic quantum yield and xanthophyll pigment responses at 23°C (Helgoland, Germany). In <i>L. digitata</i> from the northernmost population (Spitsbergen, Norway), quantum yield indicated the highest heat sensitivity. Microsatellite genotyping revealed all sampled populations to be genetically distinct, with a strong hierarchical structure between southern and northern clades. Genetic diversity was lowest in the isolated population of the North Sea island of Helgoland and highest in Roscoff in the English Channel. All together, these results support the hypothesis of moderate local differentiation across <i>L. digitata</i>'s European distribution, whereas effects are likely too weak to ameliorate the species' capacity to withstand ocean warming and marine heatwaves at the southern range edge.</p>
Life history traits and abundance of Northeast Atlantic fish
<p>Life history characteristics such as asymptotic length <i>L</i><sub><i>∞</i></sub>, growth rate<i> K</i>, the length at which 50% of the individuals have reached maturity <i>L</i><sub><i>mat</i></sub>, and natural mortality <i>M</i> are therefore often used to indicate the sensitivity of different species to fishing. When species-specific information is missing, an estimate of the maximum length<i> L<sub>max</sub></i> of a species can be used to infer asymptotic length, growth rate, natural mortality, and proportion mature at length. Here, we provide a data base containing life history parameters of 271 species along with the references of these values and gear efficiency estimates for all species. Further, we provide average annual catch indices within inhabitated areas for each species. </p> <p> </p> <p> </p>
Model data from GRL paper "Precipitation in Northeast Mexico Primarily Controlled by the Relative Warming of Atlantic SSTs"
<p>This folder includes monthly model data (Specified Chemistry version of the Whole Atmosphere Community Climate Model with CAM4 physics) of sea level pressure (SLP), zonal wind (U), meridional wind (V), convective precipitation rate (P), and vertical velocity (OMEGA) that were used in the Geophysical Research Letters paper "<strong>Precipitation in Northeast Mexico Primarily Controlled by the Relative Warming of Atlantic SSTs</strong>" by Wright et al. Boreal winter files include "DJFM" (December - March) in their title and boreal summer files include "JJAS" (June - September) in their title. Data from nine different experiments is included. These experiments were designed to isolate the large-scale atmospheric response to each combination of Atlantic Multidecadal sea surface temperature Variability (AMV) and Interdecadal Pacific sea surface temperature variability (IPV). Given that each climate mode can exist in a positive, negative, or neutral state, there are nine combinations of AMV and IPV. The first four letters of each filename denote the experiment ID with "A" referring to AMV, "I" referring to IPV, "C" referring to cold, "W" referring to warm, and "N" referring to neutral. For example, "ACIW_JJAS_SLP_1801-2000.nc" is the -AMV/+IPV sea level pressure during boreal summer. Vertical velocity data was lost for some experiments and we are providing what is left. Please refer to the manuscript by Wright et al. for further details on the experimental setup.</p>
Supplement to: Evidence for Low-pressure Crustal Anatexis During the Northeast Atlantic Break-up
<p>These are the supplementary files for <em>Evidence for Low-pressure Crustal Anatexis During the Northeast Atlantic Break-up,</em> submitted to AGU G-cubed on December 18, 2023. They include (1) a PDF file of all the supplementary figures (S1-S9) and references in the AGU, G-cubed journal format, and (2) an Excel file that includes all supplementary tables (S1-S7). </p>
Figure 2. – Clupea harengus. A in Range extension of the Atlantic herring Clupea harengus (Clupeiformes: Clupeidae) southern part of the Northeast Atlantic Ocean
Figure 2. – Clupea harengus. A: MHNUSC25163-1, 285 mm TL; B: MHNUSC25163-2, 300 mm TL.
Data on stock assessment and catches of blue whiting in Northeast Atlantic and adjacent waters 1981-2019
<p>Data on stock assessment and catches of blue whiting in Northeast Atlantic and adjacent waters 1981-2019 used for development of Climate Adaptation Plans (CAPs) in the Northeast Atlantic pelagic case study in the ClimeFish project </p>
Heterogeneous microgeographic genetic structure of the common cockle (Cerastoderma edule) in the Northeast Atlantic Ocean: biogeographic barriers and environmental factors
<p>Knowledge of genetic structure at the finest level is essential for conservation of genetic resources. Despite no visible barriers limiting gene flow, significant genetic structure has been shown in marine species. The common cockle (<em>Cerastoderma</em> <em>edule</em>) is a bivalve of great commercial and ecological value inhabiting the Northeast Atlantic Ocean. Previous population genomics studies demonstrated significant structure both across the Northeast Atlantic, but also within small geographic areas, highlighting the need to investigate fine-scale structuring. Here, we analysed two geographic areas that could represent opposite models of structure for the species: 1) the SW British Isles region, highly fragmented due to biogeographic barriers, and 2) Galicia (NW Spain), a putative homogeneous region. 9,250 SNPs genotyped by 2b-RAD on 599 individuals from 22 natural beds were used for the analysis. The entire SNP dataset mostly confirmed previous observations related to genetic diversity and differentiation, however, neutral and divergent SNP outlier datasets enabled disentangling physical barriers from abiotic environmental factors structuring both regions. While Galicia showed a homogeneous structure, the SW British Isles region was split into four reliable genetic regions related to oceanographic features and abiotic factors, such as sea surface salinity and temperature. The information gathered supports specific management policies of cockle resources in SW British and Galician regions also considering their particular socio-economic characteristics; further, these new data will be added to those recently reported in the Northeast Atlantic to define sustainable management actions across the whole distribution range of the species.</p>
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.