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49 results for “bibliographical data”
Bibliographic data and thesauraus files
<p><strong>Data for “Seeing beyond the frames we inherit: A challenge to tenacious conservation narratives” (published in <em>People and Nature</em>)</strong></p> <p>Stephen M. Chignell and Terre Satterfield</p> <p>-------------------------------------------------------------------------------------------------------------------------------</p> <p>This repository contains the following data files used in the above publication. Detailed information about how these data were collected and analyzed can be found at the journal website.</p> <ul> <li> <ul> <li>Bibliographic data downloaded from Web of Science (raw text file format)</li> <li>Can be imported directly into <em>bibliometrix/biblioshiny </em>or <em>VOSviewer </em>software</li> </ul> </li> </ul> <ul> <li> <ul> <li>Bibliographic data downloaded from Web of Science (Microsoft Excel format)</li> <li>Can be imported directly into <em>bibliometrix/biblioshiny </em>software</li> </ul> </li> </ul> <ul> <li> <ul> <li>“Thesaurus” file created to disambiguate author names in <em>VOSviewer</em> software</li> </ul> </li> </ul> <ul> <li> <ul> <li>“Thesaurus” file created to disambiguate publication keywords in <em>VOSviewer</em> software</li> </ul> </li> </ul> <ul> <li> <ul> <li>“Thesaurus” file created to disambiguate author organizations in <em>VOSviewer</em> software</li> </ul> </li> </ul>
Data for: Bibliographic synthesis of biodiversity-relevant criteria for solar energy siting
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IronRefs database of bibliographic data on remediation of contaminated environmental materials using zerovalent metals such as iron (ZVI)
<p>Database of bibliographic data for publications (journal articles, reports, patents, presentation abstracts, etc.) on the use of zerovalent metals (ZVMs)—especially zerovalent iron (ZVI)—for remediation or treatment of contaminated environmental materials (mainly groundwater, but also wastewater, soil, and sediment).</p> <p>The data were compiled and curated between 1996 and 2011 by members of the research group of Professor Paul G. Tratnyek at the Oregon Graduate Institute in Beaverton, Oregon, USA. At the beginning, the field was very small and most new work appeared first in gray-literature, so manual curation of the database made it a uniquely-valuable resource for the community.</p> <p>The original list of references was replaced with a searchable online database in 1998, which was named the “IronRefs” database and made available to all at <a href="http://cgr.ebs.ogi.edu/ironrefs/">http://cgr.ebs.ogi.edu/ironrefs/</a>. The database was updated periodically until 2011, by which time the field had grown so large that it was no longer practical to keep up with all of the new publications.</p> <p>The early development and impact of the IronRefs database was documented when it reached 500 records (Tratnyek, 2002) and when it reached 1000 records (Schneider et al., 2008). The former was published as an article in Groundwater Monitoring and Remediation (DOI: 10.1111/j.1745-6592.2002.tb00757.x) and the latter was given as a poster at the 6th International Conference on Chlorinated and Recalcitrant Compounds, Monterey, CA (PDF included here).</p> <p>In 2019, the server containing IronRefs was retired, so this unique resource became unavailable. In place of IronRefs, we provide here all of the data (2000+ records) in two tagged-field formats that are compatible with most bibliographic data management software: an EndNote compressed library (.enlx) and an RIS file (.ris). We also exported the data to a tab-delimited text file and provide that in .csv and .txt formats.</p> <p>Note that no new records were added to the IronRefs database after about mid-2011, so the value of the dataset provided here is largely historical. There are many newer publications that are relevant, and the literature on this topic continues to grow rapidly as of 2020.</p>
Bibliographic Data [Updated]: Mapping Global Research on Canon Law since 1896
<p>Updated Dataset studied in <br>Koutsoupias D., Kokovidou M. (2023). Mapping Global Research on Canon Law since 1896-Extracted-2023-04-23, Presented at the 11th Conference of the Greek Data Analysis Society, Univ of W Macedonia, GREECE</p>
Bibliographic data from Escola Regional de Engenharia de Software
<p>Dataset with title, authors and afiliation from papers published at Escola Regional de Engenharia de Software.</p>
Bibliographic Analysis Data for PLGA vs Liposomes Comparison Emphasizing on Material Informatics
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Bibliographic data from the GBIF literature tracking service
<p>This dataset is the result of a call to the GBIF resource API to gather bibliographic items citing GBIF or GBIF mobilised datasets, monitored through the GBIF literature tracking service.</p> <p>The zip contains a single JSON format datafile, which contains 9018 records.</p> <p>The URL used is: https://www.gbif.org/api/resource/search?contentType=literature&limit=10000</p> <p>It was accessed on: 2020-03-03.</p>
Figure 6 from: Bonello G, Grillo M, Cecchetto M, Giallain M, Granata A, Guglielmo L, Pane L, Schiaparelli S (2020) Distributional records of Ross Sea (Antarctica) planktic Copepoda from bibliographic data and samples curated at the Italian National Antarctic Museum (MNA): checklist of species collected in the Ross Sea sector from 1987 to 1995. ZooKeys 969: 1-22. https://doi.org/10.3897/zookeys.969.52334
Figure 6 Metridia gerlachei (Copepoda, Calanoida; female, MNA-12439) acquired with fluorescence microscopy (Congo Red, 1.5 mg/ml). This species is one of the most adapted species in the Antarctic region and can perform diel vertical migrations that highly influence the surrounding waters in terms of trophic relationships in Terra Nova Bay.
Figure 1 from: Bonello G, Grillo M, Cecchetto M, Giallain M, Granata A, Guglielmo L, Pane L, Schiaparelli S (2020) Distributional records of Ross Sea (Antarctica) planktic Copepoda from bibliographic data and samples curated at the Italian National Antarctic Museum (MNA): checklist of species collected in the Ross Sea sector from 1987 to 1995. ZooKeys 969: 1-22. https://doi.org/10.3897/zookeys.969.52334
Figure 1 Sampling stations for IIIrd (yellow), Vth (blue), and Xth (red) expedition a overview of spatial extent in Antarctica b sampling stations in the Western Ross Sea c focus on Terra Nova Bay sampling stations. This map was produced using the collection of datasets "Quantarctica" (Matsuoka et al. 2017) and QGIS (QGIS Development Team 2020).
Figure 5 from: Bonello G, Grillo M, Cecchetto M, Giallain M, Granata A, Guglielmo L, Pane L, Schiaparelli S (2020) Distributional records of Ross Sea (Antarctica) planktic Copepoda from bibliographic data and samples curated at the Italian National Antarctic Museum (MNA): checklist of species collected in the Ross Sea sector from 1987 to 1995. ZooKeys 969: 1-22. https://doi.org/10.3897/zookeys.969.52334
Figure 5 Paraeuchaeta exigua (Copepoda, Calanoida; female, MNA-12333) acquired with scanning electron microscopy (SEM). This is one of the most common species in the coastal area of Terra Nova Bay. It plays a key role in the neritic trophic chain and highly contributes to the total mesozooplanktic biomass.
Data from: Widespread misperception about a major East Asian biogeographic boundary exposed through bibliographic survey and biogeographic meta-analysis
<p><strong>Aim</strong></p> <p>The Watase line, a major biogeographic boundary between Palearctic and Oriental realms in East Asia, is generally drawn between Akuseki and Kodakara Islands of the Northern Ryukyu archipelago, Japan. However, no evidence can be found to support the positioning of the boundary between these two tiny volcanic islands. This study aimed to confirm whether and where the biogeographical boundary should be drawn.</p> <p><strong>Location</strong></p> <p>East Asia</p> <p><strong>Taxon </strong></p> <p>Land snail, ant, dragonfly, butterfly, amphibian, reptile, bird, plant</p> <p><strong>Methods</strong></p> <p>A bibliographic survey was carried out to revisit an original definition of the Watase line and its usage. Biogeographic and meta-analyses were also performed using a Simpson dissimilarity index calculated from published distribution data to test whether and where any biogeographic boundary exists. To ensure the validity of the study design, similar surveys and analyses were conducted in another region of Southern Ryukyu, where a reliable biogeographic boundary has been proposed as a positive control.</p> <p><strong>Results</strong></p> <p>The bibliographic survey showed that the Watase line had been described without specifying the precise position. No revised definition has been proposed for the boundary to date. Biogeographic analyses do not support the existence of a boundary between Akuseki and Kodakara Islands. Meanwhile, the presence of a boundary in Southern Ryukyu was endorsed by both the bibliographic survey and biogeographic analyses, supporting the validity of this study's design.</p> <p><strong>Main conclusions</strong></p> <p>This study revealed that the major biogeographic boundary is widely used with deviations from the original definition. Presumably, ideas based on inappropriate evidence, such as the distribution of a symbolic species and unpublished data, have been referred to without being questioned and led to the current widespread misunderstanding. Misunderstandings like these could occur at any biogeographic boundaries around the world, and thus, systematic reviews of all boundaries are needed for an appropriate understanding of biodiversity. </p>
considered that it was present. Due to the lack of recent data and the limited information sup- plied by previous authors for Angolan specimens, the presence of L. viridis in Angola is questionable. MAP 74. Distribution of Leptopelis viridis in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
considered that it was present. Due to the lack of recent data and the limited information sup- plied by previous authors for Angolan specimens, the presence of L. viridis in Angola is questionable. MAP 74. Distribution of Leptopelis viridis in Angola.
Norte Pronvice. Cabinda: "Chinchoxo" [-5.10000, 12.10000] (Peters 1877a:615; Bocage 1895a:81); "Cabinda" [-5.55000, 12.18333] (Frade 1963:252). Lunda Norte: "Dundo" [-7.36667, 20.83333] (Laurent 1954:43; Thys van den Audenaerde 1966:32). Taxonomic and distributional notes: Kelly et al. (2011) provided molecular phylogenetic data to support the inclusion of this taxon along with the B. fuliginosus complex within a monophyletic Boaedon, separate from Lamprophis sensu stricto. MAP 289. Distribution of Boaedon olivaceus in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
Norte Pronvice. Cabinda: "Chinchoxo" [-5.10000, 12.10000] (Peters 1877a:615; Bocage 1895a:81); "Cabinda" [-5.55000, 12.18333] (Frade 1963:252). Lunda Norte: "Dundo" [-7.36667, 20.83333] (Laurent 1954:43; Thys van den Audenaerde 1966:32). Taxonomic and distributional notes: Kelly et al. (2011) provided molecular phylogenetic data to support the inclusion of this taxon along with the B. fuliginosus complex within a monophyletic Boaedon, separate from Lamprophis sensu stricto. MAP 289. Distribution of Boaedon olivaceus in Angola.
Peruvian Nursing bibliographic data
<p>Peruvian Nursing bibliographic data from Scopus and Web of Science</p>
Data from: Widespread misperception about a major East Asian biogeographic boundary exposed through bibliographic survey and biogeographic meta-analysis
Open the record for dataset details and reuse information.
Figure 4 from: Bonello G, Grillo M, Cecchetto M, Giallain M, Granata A, Guglielmo L, Pane L, Schiaparelli S (2020) Distributional records of Ross Sea (Antarctica) planktic Copepoda from bibliographic data and samples curated at the Italian National Antarctic Museum (MNA): checklist of species collected in the Ross Sea sector from 1987 to 1995. ZooKeys 969: 1-22. https://doi.org/10.3897/zookeys.969.52334
Figure 4 Taxonomic diversity for museum vouchers.
Figure 3 from: Bonello G, Grillo M, Cecchetto M, Giallain M, Granata A, Guglielmo L, Pane L, Schiaparelli S (2020) Distributional records of Ross Sea (Antarctica) planktic Copepoda from bibliographic data and samples curated at the Italian National Antarctic Museum (MNA): checklist of species collected in the Ross Sea sector from 1987 to 1995. ZooKeys 969: 1-22. https://doi.org/10.3897/zookeys.969.52334
Figure 3 Taxonomic diversity for data report analysis.
Figure 2 from: Bonello G, Grillo M, Cecchetto M, Giallain M, Granata A, Guglielmo L, Pane L, Schiaparelli S (2020) Distributional records of Ross Sea (Antarctica) planktic Copepoda from bibliographic data and samples curated at the Italian National Antarctic Museum (MNA): checklist of species collected in the Ross Sea sector from 1987 to 1995. ZooKeys 969: 1-22. https://doi.org/10.3897/zookeys.969.52334
Figure 2 Flowchart representing all stages in dataset development and publishing.
Figure 7 from: Sahib S, Driauach O, Belqat B (2020) New data on the hoverflies of Morocco (Diptera, Syrphidae) with faunistic and bibliographical inventories. ZooKeys 971: 59-103. https://doi.org/10.3897/zookeys.971.49416
Figure 7 Merodon unguicornis, female, lateral view.
Figure 6 from: Sahib S, Driauach O, Belqat B (2020) New data on the hoverflies of Morocco (Diptera, Syrphidae) with faunistic and bibliographical inventories. ZooKeys 971: 59-103. https://doi.org/10.3897/zookeys.971.49416
Figure 6 Habitat of Eumerus obliquus: Oued El Khemis environment.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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