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6,059 results for “Journale”
Supplemental Data for the Journal Article Entitled The mechanistic origins of heterogeneous void growth during ductile failure accepted for publication by Acta Materialia
<p>This repository contains the Supplemental Data for the Journal Article Entitled The mechanistic origins of heterogeneous void growth during ductile failure accepted for publication by Acta Materialia.</p> <p>Authors: M.W. Vaughan<sup>a</sup>, H. Lim<sup>a</sup>, B. Pham<sup>a</sup>, R. Seede<sup>a</sup>, A. T. Polonsky<sup> a</sup>, K. Johnson<sup> a</sup>, P. J. Noell<sup>a,*</sup></p> <p>a: Sandia National Laboratories, Albuquerque, NM 87123</p> <p>Each folder contains a ReadMe.txt describing the files and their organization within each folder. </p> <p><br>Acknowledgements:<br><span>This work was supported by the Laboratory Directed Research and Development program at Sandia National Laboratories, a multimission laboratory managed and operated by National Technology and Engineering Solutions of Sandia LLC, a wholly owned subsidiary of Honeywell International Inc. for the U.S. Department of Energy’s National Nuclear Security Administration under contract DE-NA0003525. The views expressed in the article do not necessarily represent the views of the U.S. DOE or the United States Government. </span></p>
Metadata of the Top 40 Journals in Distance Education: A Bibliometric Analysis of Impact 2018-2022
<p>This file contains metadata from the 40 most impactful journals in the field of distance education, selected through a rigorous bibliometric analysis using the SCImago Journal Rank (SJR) indicator provided by SCImago. Two main criteria guided the selection: the first targeted journals ranked in Q1 and Q2 in the specific category of "e-learning" within the social sciences and education area, highlighting publications that demonstrate high impact and relevance in the academic community according to the selected indicator. The second criterion was based on keyword searches in the journal titles, selecting those that include terms like e-learning, online, Distance Education, Technology Learning, Communications in Information, and Information Education and their variants (e.g., plural), also positioned in Q1 or Q2.</p> <p>The metadata, extracted from the Scopus database, covers publications from the period 2018 to 2022 and includes vital information such as document type, authors' names, article title, journal name, publication year, pages, volume, and issue number. Additionally, each article is identified by a Digital Object Identifier (DOI) and URLs for direct access to the full text online, along with abstracts and keywords. These elements together provide a comprehensive and accessible view of the articles, facilitating bibliometric analyses and related academic research.</p> <p>This compilation serves as an essential resource for researchers and educators interested in understanding the dynamics and development of the field of distance education, offering a solid foundation for future investigations and the formulation of evidence-based educational policies.</p>
Source data for publication "A multimodal atlas of hepatocellular carcinoma reveals convergent evolutionary paths and 'bad apple' effect on clinical trajectory" in Journal of Hepatology
<p>Processed genomic and transcriptomic data for the publication <a href="https://doi.org/10.1016/j.jhep.2024.05.017">https://doi.org/10.1016/j.jhep.2024.05.017</a>.</p> <p>cnv_segmentation.tsv: CNV segmentation file from Sequenza.</p> <p>cnv_arm.tsv: Significant arm level CNV events called by GISTIC, from broad_values_by_arm.txt file.</p> <p>cnv_gene.tsv: Gene level CNV events called by GISTIC, from all_threshold_by_genes.txt file. </p> <p>RNA_raw_counts.tsv: Raw RNA-seq read counts from featureCounts.</p> <p>snv_indel.tsv: All SNV and Indel called with annotation from Funcotator.</p> <p> </p>
Forging the Path to FAIR Data Through Data Repository and Journal Publication Community Partnerships
Open the record for dataset details and reuse information.
Fig. 4 in The correlations between certain features of the journal Neotropical Ichthyology and its impact factor: a comparative analysis at the thematic and national levels
Fig. 4. Uncitedness rate of articles published in the Brazilian journals in Sample 2.
Fig. 1 in The correlations between certain features of the journal Neotropical Ichthyology and its impact factor: a comparative analysis at the thematic and national levels
Fig. 1. Brazilian journals and their corresponding self-cited rates between 2006 and 2011.
Fig. 2 in The correlations between certain features of the journal Neotropical Ichthyology and its impact factor: a comparative analysis at the thematic and national levels
Fig. 2. Brazilian journals and their corresponding self-citing rates between 2006 and 2011.
The sharing of research raw data in journals indexed in the Cell & Tissue Engineering JCR category (2011-2015)
<p>The availability of research data sets is an important milestone since it can enhance the dynamics of research. This study aims to analyze the PubMed Central repository to determine the availability and type of raw data sets in Cell & Tissue Engineering journals indexed in the Journal Citation Reports. The number and types of files were registered. A search of the 21 journals from the Cell & Tissue Engineering category of the 2015 Journal Citation Reports was conducted. Information was collected from October to December 2016. A study of the supplementary material of the original articles published between 2011-2015 was performed through a search in the PubMed Central repository, which is the most used free full-text repository in biomedicine. Only articles with supplementary material were retrieved. The number and types of files were registered. In cases where a compressed file, such as a .zip or .rar file, was found, it was opened to check what kinds of files it contained.</p>
Dataset supplementing H. Kohler, B. Ojha, N. Illyaskutty, I. Hartmann, C. Thiel, K. Eisinger, M. Dambacher: In situ high-temperature gas sensors: continuous monitoring of the combustion quality of different wood combustion systems and optimization of combustion process, Journal of Sensors and Sensor Systems (JSSS), 2018
<p>Dataset supplementing H. Kohler, B. Ojha, N. Illyaskutty, I. Hartmann, C. Thiel, K. Eisinger, M. Dambacher: In situ high-temperature gas sensors: continuous monitoring of the combustion quality of different wood combustion systems and optimization of combustion process, Journal of Sensors and Sensor Systems (JSSS), 2018</p>
Dataset for journal JFS: "Near-wake characteristics of rigid and membrane wings in ground effect" 2018 by R.Bleischwitz, R.de Kat, B.Ganapathisubramani
<p>Complete Dataset for Journal of Fluids and Structures publication:</p> <p>"Near-wake characteristics of rigid and membrane wings in ground effect" (2018) by, R.Bleischwitz, R.de Kat, B.Ganapathisubramani<br> Written 01-04-2018<br> by Robert Bleischwitz (robert.bleischwitz@gmail.com)</p> <p>General Comments</p> <p>0.) This specific upload contains the full timeresolved dataset of the JFS-paper (~27GB of timeresolved MATLAB files)</p> <p>1.) The attached time-resolved-data relates to experimental windtunnel measurements on passive membrane wings for MAVs. The data was aquired between 2012-2016 at the University of Southampton, involving Robert Bleischwitz as PhD student, who was supervised by Roeland de Kat and Bharathram Ganapathisubramani.</p> <p>2.) The attached data is given time-resolved and time-synchronised at 800Hz over a imaging-period of 5000 images, involving load measurements via a 6-axis load-cell ATI Nano17 /25N, deformation measurements via Digitial Image Processing (high-speed DIC) and stereo flow measurements via two high-speed cameras (high-speed stereo PIV). </p> <p>3.) More setup and processing details can be found in the paper "Near-wake characteristics of rigid and membrane wings in ground effect" (2018) by the authors R. Bleischwitz, R. de Kat, B. Ganapathisubramani<br> Published in:</p> <p>-Journal of Fluids and Structures: <a href="https://doi.org/10.1016/j.jfluidstructs.2018.03.007">https://doi.org/10.1016/j.jfluidstructs.2018.03.007</a> </p> <p>- University of Southampton: <a href="http://doi.org/10.5258/SOTON/D0461">http://doi.org/10.5258/SOTON/D0461</a> </p> <p>4.) All load/deformation/flow folders contain a README.txt(Use 1st) and Instructions.m (Use 2nd) MATLAB-file, which give further supporting details how to illustrate the time-resolved-data</p> <p>5.) This specific upload contains the full time-resolved dataset, including:</p> <p>-Cases:</p> <p>a.) Rigid and Membrane wings</p> <p>b.) Height of ground(from trailing edge, in referecne to chord length): h/c=2, 0.25 and 0.1</p> <p>c.) Angle-of-attack: 10,15,25deg</p> <p>d.) DATA available (Timeresolved and time-synchronised):</p> <p>-Loads in high speed (10 kHz)</p> <p>-Membrane deformations in high speed(800Hz)</p> <p>-Stereo Flow velocities in wake at high-speed (800Hz)</p> <p><strong><em>Abstract of Journal-publication:</em><br> Wind tunnel measurements are conducted at a Reynolds numbers of Re = 56,000 to examine the characteristics of<br> near-wake vortices of rigid flat-plates and membrane wings from free-flight into ground–effect conditions. Synchronised<br> high-speed load cell measurements, digital image correlation and particle image velocimetry are performed to<br> resolve lift, drag and pitch oscillations simultaneously with membrane deformation and flow dynamics. Flow measurements<br> are acquired in a crossflow-plane, one chord downstream of the trailing-edge, allowing the examination of<br> time evolution of the wake and its relationship to the forces and membrane deformation. Membrane wings are found<br> to delay ground–effect or high angles-of-attack induced tip-vortex break-down and result in larger tip-vortex push-out<br> (beyond the wing span) compared to rigid flat-plate wings. The leading-edge vortex appears to shed with streamwise<br> vorticity close to the root of the wing and this frequency of this shedding is found to match with the dominant frequency<br> observed in membrane fluctuations. In specific resonance conditions, membrane and flow fluctuations are found to<br> correlate well to the fluctuations in loads and moments.</strong></p>
Data supplementing the article "Boosting DNA metabarcoding for biomonitoring with phylogenetic estimation of OTUs' ecological profiles" F. Keck, V. Vasselon, F. Rimet, A. Bouchez, and M. Kahlert submitted to Molecular Ecology Resources journal
<p>These data supplement the article "Enhancing DNA metabarcoding for biomonitoring with phylogenetic estimation of OTUs' ecological profiles" F. Keck, V. Vasselon, F. Rimet, A. Bouchez, and M. Kahlert submitted to Molecular Ecology Resources journal</p> <p>The directory contains the following files:</p> <p><strong>278 (139 x 2 replicates) samples fastq files.rar </strong>- contains the 278 fastq files provided by the sequencing platform with demultiplexed and contig DNA reads corresponding to the 139 samples with 2 sequencing replicates (A and B).</p> <p><strong>Counts_diatoms.xlsx </strong>- contains the morphological inventories with species list (Omnidia code) and valve abundances for the 139 samples.</p> <p><strong>Sites_list.xlsx </strong>- contains information regarding the 139 samples, including: River name, GPS coordinates, code used for molecular analysis and corresponding to sequencing fastq names.</p>
Fig. 17. Zentamyia nigracinctus (Roberts, 1929), ♀ allotype (ANIC No. 29-009842): (a) dorsal; (b) lateral; (c) head, dorsal; (d) head, lateral; (e) wing; (f ) head, frontal; (g) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 17. Zentamyia nigracinctus (Roberts, 1929), ♀ allotype (ANIC No. 29-009842): (a) dorsal; (b) lateral; (c) head, dorsal; (d) head, lateral; (e) wing; (f ) head, frontal; (g) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 14. Eusurbus glossus sp. nov., ♂ holotype (QM T234845): (a) dorsal; (b) lateral; (c) head dorsal; (d) flagellum; (e) head, frontal; (f ) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/ journals/1876312x.
Fig. 14. Eusurbus glossus sp. nov., ♂ holotype (QM T234845): (a) dorsal; (b) lateral; (c) head dorsal; (d) flagellum; (e) head, frontal; (f ) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/ journals/1876312x.
Fig. 15. Eusurbus glossus sp. nov., ♂ paratype (QM T234850). Genitalia: (a) genital capsule, dorsal; (b) genital capsule, ventral; (c) genital capsule, lateral; (d) epandrium, dorsal; (e) epandrium, posterior; (f ) epandrium, lateral. Scale bars = 0.1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/ 1876312x.
Fig. 15. Eusurbus glossus sp. nov., ♂ paratype (QM T234850). Genitalia: (a) genital capsule, dorsal; (b) genital capsule, ventral; (c) genital capsule, lateral; (d) epandrium, dorsal; (e) epandrium, posterior; (f ) epandrium, lateral. Scale bars = 0.1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/ 1876312x.
Fig. 12. Eusurbus danielsi sp. nov. ♀ (ANIC No. 29-038691): (a) dorsal; (b) lateral; (c) flagellum; (d) head, frontal; (e) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 12. Eusurbus danielsi sp. nov. ♀ (ANIC No. 29-038691): (a) dorsal; (b) lateral; (c) flagellum; (d) head, frontal; (e) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 9. Eusurbus crassilabris Macquart, 1855. ♀ (QM): (a) dorsal; (b) lateral; (c) head, dorsal; (d) head, lateral; (e) head, frontal; (f ) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/ journals/1876312x.
Fig. 9. Eusurbus crassilabris Macquart, 1855. ♀ (QM): (a) dorsal; (b) lateral; (c) head, dorsal; (d) head, lateral; (e) head, frontal; (f ) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/ journals/1876312x.
Fig. 10. Eusurbus crassilabris Macquart, 1855. Genitalia (a–f (♂) ANIC No. 29-038671; g (♀) ANIC No. 29-038677): (a) genital capsule, dorsal; (b) genital capsule, ventral; (c) genital capsule, lateral; (d) epandrium, dorsal; (e) epandrium, posterior; (f ) epandrium, lateral; (g) genitalia and spermathecae. Scale bars = 0.1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 10. Eusurbus crassilabris Macquart, 1855. Genitalia (a–f (♂) ANIC No. 29-038671; g (♀) ANIC No. 29-038677): (a) genital capsule, dorsal; (b) genital capsule, ventral; (c) genital capsule, lateral; (d) epandrium, dorsal; (e) epandrium, posterior; (f ) epandrium, lateral; (g) genitalia and spermathecae. Scale bars = 0.1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 8. Eusurbus crassilabris Macquart, 1855. ♂ (QM): (a) dorsal; (b) lateral; (c) head, dorsal; (d) head, lateral; (e) flagellum; (f ) head, frontal; (g) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline. com/content/journals/1876312x.
Fig. 8. Eusurbus crassilabris Macquart, 1855. ♂ (QM): (a) dorsal; (b) lateral; (c) head, dorsal; (d) head, lateral; (e) flagellum; (f ) head, frontal; (g) head, profile. Scale bars = 1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline. com/content/journals/1876312x.
Fig. 18. Zentamyia nigracinctus (Roberts, 1929). Genitalia (a–f (♂) ANIC No. 29-038616; g (♀) ANIC No. 29-038617): (a) genital capsule, dorsal; (b) genital capsule, ventral; (c) genital capsule, lateral; (d) epandrium, dorsal; (e) epandrium, posterior; (f ) epandrium, lateral; (g) genitalia and spermathecae. Scale bars = 0.1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 18. Zentamyia nigracinctus (Roberts, 1929). Genitalia (a–f (♂) ANIC No. 29-038616; g (♀) ANIC No. 29-038617): (a) genital capsule, dorsal; (b) genital capsule, ventral; (c) genital capsule, lateral; (d) epandrium, dorsal; (e) epandrium, posterior; (f ) epandrium, lateral; (g) genitalia and spermathecae. Scale bars = 0.1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 7. Eusurbus collaris sp. nov. Genitalia (a–f (♂) ANIC No. 29-038643; g (♀) No. 29-038644): (a) genital capsule, dorsal; (b) genital capsule, ventral; (c) genital capsule, lateral; (d) epandrium, dorsal; (e) epandrium, posterior; (f ) epandrium, lateral; (g) genitalia and spermathecae. Scale bars = 0.1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http:// booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 7. Eusurbus collaris sp. nov. Genitalia (a–f (♂) ANIC No. 29-038643; g (♀) No. 29-038644): (a) genital capsule, dorsal; (b) genital capsule, ventral; (c) genital capsule, lateral; (d) epandrium, dorsal; (e) epandrium, posterior; (f ) epandrium, lateral; (g) genitalia and spermathecae. Scale bars = 0.1 mm. This figure is published in colour in the online edition of this journal, which can be accessed via http:// booksandjournals.brillonline.com/content/journals/1876312x.
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.