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6,170 results for “european”
Figure 7 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 7. Scanning electron micrographs of Elysia spp. radular teeth. A, E. azorica sp. nov. (MNCN15.05/47823); B, E. rubeni (MNCN15.05/200080); C, D, E. viridis: C, MNCN15.05/90903; D, MNCN15.05/90912; E, E. flava (MNCN15.05/90929); F, E. timida (MNCN15.05/90933); G, E. gordanae (MNCN15.05/90843); H, E. gordanae (MNCN15.05/90836); I, J, K, E. margaritae: I, J, MNCN15.05/90817; K, MNCN15.05/94854; L, E. evelinae (MNCN15.05/90924). Scale bars = 10 μm.
Figure 8 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 8. Elysia azorica sp. nov. reproductive system (MNCN 15.05/47823), scale bar = 100 μm. Abbreviations: ag, albumen gland; am, ampulla; fmgc, female gland complex; fp, female pore; hf, hermaphroditic follicle; gr, genital receptacle; p, penis; sr, seminal receptacle; vd, vas deferens.
Figure 4 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 4. Living individuals of the species Elysia gordanae (A–F) and Elysia margaritae (G–H) used in this study. A, MNCN15.05/90861; B, MNCN15.05/90854; C, MNCN15.05/90855; D, MNCN15.05/90829; E, MNCN15.05/90841; F, MNCN15.05/90839; G, MNCN15.05/90816; H, MNCN15.05/90817. Photos taken by Fabio Vitale (A, G–H); Marina Poddubetskaia (B–C, E) and Alen Petani (D). Scale bars = 1 mm.
Figure 3 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 3. Molecular phylogeny of Atlantic and Mediterranean Elysia species rooted on genus Bosellia (not shown), based on the combined dataset (H3 + COI + 16S) inferred by Bayesian inference analysis. Numerals in parentheses indicate the number of specimens from the same locality. Bold branches represent the Elysia species present in European waters arranged in four subclades labelled from A to D. Significant support values are given as ML bootstrap percentages (below branch) and BI posterior probabilities (above branch). Not supported branches are not labelled. Abbreviations: EA, eastern Atlantic Ocean; MED, Mediterranean Sea; WA, western Atlantic Ocean.
Figure 1 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 1. Molecular phylogeny of worldwide Elysia species rooted on genus Bosellia (not shown). Topology is based on Bayesian inference analysis of concatenated dataset (H3 + COI + 16S + 28S). Only one specimen per species is shown according to species delimitation analyses. Bold red species names indicate the species sequenced in this study that are present in European waters. Significant support values are given as ML bootstrap percentages (BS, below branch) and BI posterior probabilities (PP, above branch). Asterisks indicate complete support (PP = 1.0, BS = 100%). Vertical grey bars indicate specimens grouped as species entities by ABGD, GMYC and bPTP methods based on the COI gene. Unfilled vertical bars indicate the specimens grouped as species based on the 16S gene.
Figure 2 in A global phylogeny of Elysia Risso, 1818 (Gastropoda: Heterobranchia): molecular systematic insights focusing on European taxa and description of a new species
Figure 2. Histogram of pairwise genetic COI distances (Kimura parameter) among 638 sequences including all available National Center for Bioinformatics (NCBI) sequences for Elysia, showing barcoding gap; the arrow indicates the threshold that allows to distinguish intraspecific (left) and interspecific (right) distances for the COI region, based on ABGD analyses.
Developing epidemiological preparedness for a probable plant disease invasion: modelling citrus huánglóngbìng in the European Union
<p>Video 1: Spread of the vector in a single simulation in Region A (Valencia). Corresponds to Fig S10 in supplementary material. Maps show the measure of vector density within each cell and light grey shows initial exposure.</p> <p>Video 2: Spread of the pathogen in a single simulation in Region A (Valencia). Corresponds to Fig 3 in main text. Both vector and pathogen are introduced simultaneously at t=0 into a single 1km x 1km cell. Maps showing the density of infected citrus host units (E+C+I) within each cell at different times after introduction.</p> <p>Video 3: Spread of the pathogen in a single simulation in Region A (Valencia) using baseline parameters for detection and control. Corresponds to Fig 6 in main text. Maps show densities of infected citrus (E+C+I) in each 1km x 1km cell</p> <p>Video 4: Spread of the vector in a single simulation in Region B (Andalusia). Corresponds to Fig S13 in supplementary material. Maps show the measure of vector density within each cell and light grey shows initial exposure.</p> <p>Video 5: Spread of the pathogen in a single simulation in Region B (Andalusia). Corresponds to Fig S14 in supplementary material. Both vector and pathogen are introduced simultaneously at t=0 into a single 1km x 1km cell. Maps showing the density of infected citrus host units (E+C+I) within each cell at different times after introduction.</p> <p>Video 6: Spread of the pathogen in a single simulation in Region B (Andalusia) using baseline parameters for detection and control. Corresponds to Fig S17 in supplementary material. Maps show densities of infected citrus (E+C+I) in each 1km x 1km cell</p>
Networks files of main scenarios analysed in "Distributed photovoltaics provides key benefits for a highly renewable European energy system"
<p>This repository contains the network files (.nc) of the main scenarios (A, B, C, and D) used for analysis in the paper. The code for reproducing these files plus other network files used for sensitivity analysis plus the Jupyter notebooks used for creating all the figures in the paper are available at: https://github.com/Parisra/Distributed-PV-paper </p>
Impact of Antibiotic Prophylaxis on Gut Microbiota in Colorectal Surgery: Insights from an Eastern European Stewardship Study - Dataset FASTQ files
<p>Dataset containing FASTQ files of the sequenced samples, generated by the Illumina MiSeq platform. </p> <p> </p>
Effects of European emissions trading on the transformation of primary steelmaking: Assessment of economic and climate impacts in a case study from Germany
<p>Supplementary Information 1: This supporting information provides information on the modeling of material and energy flows for conventional and low-carbon steelmaking in an integrated steel mill. To this end, the production activities (unit processes) are provided. Also, information on the assessment of economic and climate impacts is included.</p> <p>Supplementary Information 2: This supporting information provides information on the main mechanisms of the European emissions trading system. Thereby, a focus is laid on regulations for the free allocation of EU allowances toward companies from the sectors with a high risk of carbon leakage. Additionally, the assessment and optimization models for designing favorable transformation pathways of integrated steel mills are provided. Also, the main assumptions and complementary results are provided.</p>
Code and data for "Mapping the natural disturbance risk to protective forests across the European Alps"
<p>This repository holds the code and output data for the publication entitled "Mapping the natural disturbance risk to protective forests across the European Alps",<br>accepted in the Journal of Environmental Management, see <a title="Persistent link using digital object identifier" href="https://doi.org/10.1016/j.jenvman.2024.121659" target="_blank" rel="noreferrer noopener"><span>https://doi.org/10.1016/j.jenvman.2024.121659</span></a></p> <p>The output maps can be viewed online here: <a href="https://risiko-gebirgswald.shinyapps.io/maps/">https://risiko-gebirgswald.shinyapps.io/maps/ </a></p> <ul> <li><strong>lib</strong>: scripts used for data processing and analysis</li> <li><strong>Alps</strong>: output data (hazard, vulnerability and risk maps) for the European Alps</li> <li><strong>Bayern</strong>: output data (hazard, vulnerability and risk maps) for the Bavarian Alps</li> </ul> <p>All of the data used in this study are publicly available:</p> <ul> <li>GEDI Level 2A and 2B products can be downloaded at<a href="https://lpdaac.usgs.gov/products/gedi02_av002/"> https://lpdaac.usgs.gov/products/gedi02_av002/ </a>and <a href="https://lpdaac.usgs.gov/products/gedi02_bv002/">https://lpdaac.usgs.gov/products/gedi02_bv002/</a>, respectively. </li> <li>The European disturbance map (Senf & Seidl, 2021) is available at <a href="https://doi.org/10.5281/zenodo.3924381">https://doi.org/10.5281/zenodo.3924381 </a></li> <li>The attribution of disturbance agents for the disturbance map is available at <a href="../records/4607230">https://zenodo.org/records/4607230</a></li> <li>CHELSA climate data is available at <a href="https://www.chelsa-climate.org">www.chelsa-climate.org</a></li> <li>The Copernicus DEM can be downloaded from <a href="https://land.copernicus.eu/imagery-in-situ/eu-dem/eu-dem-v1.1.">https://land.copernicus.eu/imagery-in-situ/eu-dem/eu-dem-v1.1.</a></li> <li>Wind data were obtained from <a href="https://map.neweuropeanwindatlas.eu/">https://map.neweuropeanwindatlas.eu/</a></li> <li>Soil data were obtained from <a href="https://esdac.jrc.ec.europa.eu/content/european-soil-database-v20-vector-and-attribute-data.">https://esdac.jrc.ec.europa.eu/content/european-soil-database-v20-vector-and-attribute-data. </a></li> <li>The boundary of the Alpine convention is available at <a href="https://www.atlas.alpconv.org/layers/geonode_data:geonode:Alpine_Convention_Perimeter_2018_v2">https://www.atlas.alpconv.org/layers/geonode_data:geonode:Alpine_Convention_Perimeter_2018_v2 </a></li> </ul>
Analysis of The Influence of Country Sustainability Performance on Stock Returns in The Top 5 Asian and European Countries
<p>This paper aims to investigate the influence of a country's sustainability performance on yearly stock returns in the top 5 Asian and European countries from 2019 to 2022. Sustainability performance is proxied by four variables: ESG score, green bonds, air quality index (AQI), and energy consumption. Stock returns are measured using stock prices from the stock exchange of the respective country. The study employs quantitative research methods, using multiple regression analysis with STATA software to test the hypotheses concerning the relationship between dependent and independent variables, with a total of 40 observations. The results reveal a significant positive relationship between ESG score and AQI with yearly stock returns, whereas energy consumption shows an insignificant positive relationship. In contrast, Green bonds have an insignificant negative relationship with yearly stock returns. These findings are useful for international investors and governments in making informed overseas stock investment decisions and understanding the importance of sustainability performance in improving the stock market condition.</p>
Research data for journal article: Balancing Environmental and Economic Impacts in the rapidly evolving European EV Battery Value Chain
Open the record for dataset details and reuse information.
CLDF Dataset derived from Starostin's "Indo-European files in DBV/VAR" from 2005
<p>Cite the source of the dataset as:</p> <blockquote> <p>Starostin, S. A. (2005): Indo-European files in DBF/VAR. Moscow.</p> </blockquote>
Figs 1–4 in A new species and new records of dance flies of the subgenus Empis s.str. (Diptera: Empididae) from European Russia
Figs 1–4. Empis (Empis) mediorossica sp.n., male: 1 — habitus, lateral view, holotype; 2, 3 — postabdomen, lateral view; 4 — terminalia, lateral view. Abbreviations: cerc — cercus; ej apod — ejaculatory apodeme; epand — epandrium; hypd — hypandrium; ph — phallus; S7 — sternite 7; S8 — sternite 8. Scale bar: 0.1 mm. Рис. 1–4. Empis (Empis) mediorossica sp.n., самец: 1 — габитус, сбоку, голотип; 2, 3 — постабдомен, сбоку; 4 — терминалии, сбоку. СокраЩениЯ: cerc — церк; ej apod — ЭЯкулЯторнаЯ аподема; epand — Эпандрий; hypd — гипандрий; ph — фаллус; S7 — 7- й стернит; S8 — 8-й стернит. МасШтаб: 0,1 мм.
Supplementary material 2 from: van Nieukerken EJ, Lees DC, Doorenweerd C, Koster S(JC), Bryner R, Schreurs A, Timmermans MJTN, Sattler K (2018) Two European Cornus L. feeding leafmining moths, Antispila petryi Martini, 1899, sp. rev. and A. treitschkiella (Fischer von Röslerstamm, 1843) (Lepidoptera, Heliozelidae): an unjustified synonymy and overlooked range expansion. Nota Lepidopterologica 41(1): 39-86. https://doi.org/10.3897/nl.41.22264
Figure S1. Cornus species, details of leaf underside. a C. sanguinea subsp. sanguinea, fresh leaf, Netherlands, Leiden, 26.ix.2017. b C. sanguinea subsp. australis, dried leaf, Greece, RMNH.INS.41827. c C. mas, fresh leaf, Netherlands, Leiden, 26.ix.2017. d C. sericea, dried leaf, Netherlands, RMNH.INS.41493. e C. officinalis, dried leaf, UK, Wisley 1996, Wisley herbarium. Figure S2. NJ tree of barcodes, from BOLD. : Explanation note: Tree topology for the phylogenetic hypothesis adopted, to be used as input in applications reading nexus (requires some slight previous edition).
FIGURES 7–14 in Redescription of immature stages of central European fireflies, Part 2: Lamprohiza splendidula (Linnaeus, 1767) larva, pupa and notes on its life cycle and behaviour (Coleoptera: Lampyridae)
FIGURES 7–14. Lamprohiza splendidula. Detail of head in anterior (7); ventral (8) and dorsal (9, framed area enlarged in Fig. 14) views; detail of clypeolabrum in ventral view with epipharynx (10); detail of head with hypopharynx, after removal of maxillolabial complex, in ventral view (11); right maxilla in dorsal view (12); right mandible in dorsal view (13); detail of stemmal area (14). Abbreviations: bp—blunt protuberance on mandible; dsg—distal segment of galea; ep—epipharynx; fafrontal arms; ha—hyaline appendage; hp—hypopharynx; pe—penicillus; st—stemma; sts—spot behind stemma. Scale bars: 0.25 mm.
FIGURES 21–23 in Redescription of immature stages of central European fireflies, Part 2: Lamprohiza splendidula (Linnaeus, 1767) larva, pupa and notes on its life cycle and behaviour (Coleoptera: Lampyridae)
FIGURES 21–23. Lamprohiza splendidula. SEM image of antenna in general view (21); detail of sensorium and third antennomere (22); anterior view (23). Abbreviations: a3—third antennomere; as—antennal sensorium; cp1–3—cuticular projections 1–3; fs—flat seta lying on surface; les—long erect seta; tes—thin erect seta.
FIGURES 30–37 in Redescription of immature stages of central European fireflies, Part 2: Lamprohiza splendidula (Linnaeus, 1767) larva, pupa and notes on its life cycle and behaviour (Coleoptera: Lampyridae)
FIGURES 30–37. Lamprohiza splendidula. General habitus of male pupa in ventral (30); dorsal (31); and lateral (32) views. Glowing male pupa in ventral (33) and lateral (34) views. General habitus of glowing female pupa in ventral (35); dorsal (36) and lateral (37) views. Abbreviations: mp—male photic organ. Scale bars: 5 mm.
FIGURES 18–20 in Redescription of immature stages of central European fireflies, Part 2: Lamprohiza splendidula (Linnaeus, 1767) larva, pupa and notes on its life cycle and behaviour (Coleoptera: Lampyridae)
FIGURES 18–20. Lamprohiza splendidula. SEM image of maxillolabial complex in anterior (18) and dorsal (19) views; detail of mandibles (20). Abbreviations: dpg—distal part of galea; ha—hyaline appendage; lp1, lp2—labial palpus 1, 2; mp1–3— maxillary palpus 1–3; pf—maxillary palpifer; ses—sensory slot.
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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.
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.