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.
113
datasets available to search
ShareScore release 0.9.0
Dataset results
113 results for “composer”
docker-compose for neo4j with paradise papers data loaded: Release v0.1-43
<p><code>docker-compose</code> for neo4j with paradise papers data loaded</p>
Demonstration videos of Erkki Kurenniemi's DICO - a digitally controlled oscillator for composer Osmo Lindeman
<p>The set contains demonstration videos Erkki Kurenniemi's DICO - a dgitally controlled oscillator shot at the UHMRL - University of Helsinki Music Research Laboratory and Electronic Music Studio on May 20, 2012 by Mikko Ojanen.</p> <p>DICO is a twelve-step sequencer with digital memory custom-designed by FInnish electronic musical instrument designer Erkki Kurenniemi for composer Osmo Lindeman in 1969.</p> <p>See also: DICO - digitally controlled oscillator (1969) by Erkki Kurenniemi: a demo by Mikko Ojanen. <a href="https://vimeo.com/80931815">https://vimeo.com/80931815</a></p> <p> </p> <p>For more information about the DICO see:</p> <p>Ojanen, Mikko. (2020). User Stories of Erkki Kurenniemi's Electronic Musical Instruments, 1961–1978 (20201127_01) [Zenodo]. <a href="https://doi.org/10.5281/zenodo.4018719">https://doi.org/10.5281/zenodo.4018719</a></p> <p>Suominen, Jari (2021). The user manual of DIR-DICO. [Link to the online resource to be added]</p> <p> </p>
Data and Analysis Script for Cluster2022 Submission pap254: "Painless Transposition of Reproducible Distributed Environments with NixOS Compose"
<p>Data and Analysis Script for Cluster2022 Submission pap254: "Painless Transposition of Reproducible Distributed Environments with NixOS Compose"</p> <p>The experiments repository is available at: <a href="https://gitlab.inria.fr/nixos-compose/articles/cluster2022">https://gitlab.inria.fr/nixos-compose/articles/cluster2022</a></p>
Mechanisms of the Non-uniform Breach Morphology Evolution of Landslide Dams Composed of Unconsolidated Sediments During Overtopping Failure
<p>Data that can be used to replicate and validate the results presented here are available through the upload file.</p> <p>Data access will be available upon request prior to official publication of this work.</p>
EEG Data for: "Composing only by thought: novel application of the P300 brain-computer interface"
<p>EEG Data for: "Composing only by thought: novel application of the P300 brain-computer interface". See the file "Information about the Dataset.pdf" for further information.</p>
Docker compose files to analyze structural patterns of containerized microservice applications
<p>The dataset contains 137 docker-compose files found in publicly available repositories on Github. This dataset was used to analyze the structural patterns of containerized microservice applications to figure out how the structure of microservice applications in benchmarks could be improved to resemble more real world structures.</p> <p>For more information and citation please refer to our paper:</p> <p>Vladimir Podolskiy, Maria Patrou, Panos Patros, Michael Gerndt, and Kenneth B. Kent. 2020. The weakest link: revealing and modeling the architectural patterns of microservice applications. In <em>Proceedings of the 30th Annual International Conference on Computer Science and Software Engineering</em> (<em>CASCON '20</em>). IBM Corp., USA, 113–122. https://dl.acm.org/doi/10.1145/3132747.3132772 </p>
Composer Attribution of Renaissance Motets (Iberian Polyphony around 1500): MIDIs and Extracted Features
<p><br> This distribution includes MIDI files used in the experiments described in the "Composer Attribution of Renaissance Motets: A Case Study Using Statistical Features and Machine Learning" chapter of the book The Anatomy of Iberian Polyphony around 1500. Multi-part motets have been separated out into separate MIDI files. We edited the files for consistency, which included adjusting elements that could interfere with encoding rhythm consistently (e.g. standardized rhythmic value rates, eliminating fermatas, etc.).</p> <p>The MIDI files in the nonIb_noMB group were taken from the Josquin Research Project (JRP), who have kindly granted us permission to re-publish them here with our modifications. These are redistributed with a "CC BY-SA 4.0" license: https://github.com/josquin-research-project/jrp-scores/blob/master/LICENSE.txt. The Iberian MIDI files were produced from editions created by The Anatomy of Late 15th- and Early 16th-Century Iberian Polyphonic Music project (https://iberianpolyphonicmusic.wordpress.com), and are included here after our modifications, with permission. We digitised the nonIb_MBonly MIDI files ourselves using Sibelius. All these files are distributed under a "CC BY-SA 4.0" license" license (https://creativecommons.org/licenses/by-sa/4.0/). The included "Catalogue.pdf" file outlines the contents of this corpus in its entirety.</p> <p>This distribution also includes the "Renaissance-safe" features extracted using jSymbolic 2.2 (http://jmir.sourceforge.net) from the MIDI encodings included here. Details on all the features extracted with the software are available in the jSymbolic manual (http://jmir.sourceforge.net/manuals/jSymbolic_manual/home.html). These are presented as follows:</p> <p>- FeatureDefinitions.xml: Descriptions of all extracted features, encoded in ACE XML 1.0, as output directly by jSymbolic. This file does not include any feature values (these are found in the FeatureValues.xml file).</p> <p>- FeatureValues.xml: Extracted feature values, encoded in ACE XML 1.0, as output directly by jSymbolic. The features are described in the FeatureDefinitions.xml file. Class values are implied by the folder containing each MIDI file.</p> <p>- FeatureValues_BasicCSV: Extracted feature values encoded in a CSV file, as output directly by jSymbolic (with complete file paths truncated). Class values are implied by the folder containing each MIDI file.</p> <p>- FeatureValues_HumanReadable.xlsx: Extracted features formatted into a human-readable Microsoft Excel file. Group averages and standard deviations have been added to the bottom, and the "Length_In_Breves" feature is added in a column at the right (it is included separately because it is not calculated directly by jSymbolic 2.2).</p> <p>- FeatureValues_WekaReady.csv: Extracted feature values encoded in a CSV file in a format readable by Weka (https://www.cs.waikato.ac.nz/ml/weka/). Class values have been added in a column on the right, and file paths have been removed, as required by Weka.</p>
FIGURE 8. Alona azorica Frenzel & Alonso 1989 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 8. Alona azorica Frenzel & Alonso 1989 from Laguna de Marzagón Huelva, Spain. A–E, adult parthenogenetic female: A–B, lateral view; C, head shield; D, head pores; E, postabdomen. F, postabdomen of adult male. Scale bars 0.1 mm for A–C, 0.05 mm for D–F.
FIGURE 7 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 7. Population dynamics of Alona anastasia sp. nov. in the ponds: (a) Lavajo de Abajo during the wet phases of two years differing in spring pluviosity and (b) Bassa del Cavall in two discontinuous wet phases of the same year. Densities, expressed in individuals/L, are the averages of samples taken in two sampling points. Pond depth at the time of sampling and daily rainfall from the nearby meteorological stations is also indicated. Additionaly in Bassa del Cavall, water and air temperature are indicated. In the two bottom graphs the seasonal variation of body size of A. anastasia sp. nov population from Bassa del Cavall is showed: mean size of the whole population (grey circle) with its standard deviation and size at first maturity (SFM, black circle)
FIGURE 6 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 6. Distance between head pores in relation to body size in two populations of Alona azorica (Antela, Marzagón) and two populations of A. anastasia sp. nov. (Monreal, Cucharas).
FIGURE 3 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 3. Alona anastasia sp. nov. Laguna de Cucharas, Villamayor de Calatrava, Ciudad Real, Spain. Parthenogenetic female: A, lateral view; B, posteroventral angle of valve; C, head pores; D, postabdomen; E, postabdominal claw; F, antenna.
FIGURE 2 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 2. Alona anastasia sp. nov. Laguna de Cucharas, Villamayor de Calatrava, Ciudad Real, Spain. A–C, parthenogenetic female: A, lateral view; B, outline in dorsal view; C, head pores; D, ephippial female; E, adult male. Scale bars 0.1 mm for A–B, D–E; 0.05 mm for C.
FIGURE 1 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 1. Alona anastasia sp. nov. from Bassa del Cavall pond, Valencia, Spain. A–С, juvenile female of instar II: A, lateral view; B, head shield; C, head pores. D–L adult parthenogenetic female: D, lateral view; E, posteroventral angle of valve; F–H, head shields; I–J, head pores; K–L, labrum; M, ephippial female; N–O, juvenile males of instars I and II; P, adult male. Scale bars 0.1 mm for A–B, D, F–H, M–P; 0.05 mm for C, E, I–L.
FIGURE 10. Alona azorica Frenzel & Alonso 1989 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 10. Alona azorica Frenzel & Alonso 1989 from Laguna de Marzagón, Huelva, Spain. A–D labrum and thoracic limbs of parthenogenetic female: A, labrum; B, limb I; C–D, ODL and IDL of limb I; E, limb II; F, exopodite of limb III; G–H, exopodite and inner portion of limb IV; I, limb V. Scale bar 0.05 mm.
FIGURE 5 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 5. Alona anastasia sp. nov. from from Bassa del Cavall pond, Valencia, Spain. A–D, thoracic limbs of parthenogenetic female: A, limb I; B, IDL of limb I; C, limb II; D–E, exopodite and inner portion of limb III; F–G, exopodite and inner portion of limb IV; H, limb V; I, limb I of juvenile male of instar II; J–K, limb I of adult male. Scale bar 0.05 mm.
FIGURE 4 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 4. Alona anastasia sp. nov. from from Bassa del Cavall pond, Valencia, Spain. A–D, parthenogenetic female: A–B, postabdomen; C, antennule; D, antenna. E–F, juvenile male of instar II: E, postabdomen; F, antennule. G – I, adult male: G–H, postabdomen; I, antennule. Scale bar 0.05 mm.
FIGURE 9. Alona azorica Frenzel & Alonso 1989 in The West Mediterranean Alona azorica Frenzel & Alonso, 1988 (Cladocera: Anomopoda: Chydoridae) is composed of two species
FIGURE 9. Alona azorica Frenzel & Alonso 1989 from Laguna de Marzagón, Huelva, Spain. Parthenogenetic female: A, lateral view; B, posteroventral angle of valve; C–D, head pores; E–F, postabdomen.
Core SNP multiple alignments composed by L. garvieae, L. lactis, Streptococcus and Enterococcus strains.
<p>Core SNP multiple alignments composed by L. garvieae, L. lactis, Streptococcus and Enterococcus strains.</p>
Text-fig. 12. Ranges of the length of the dp4 based on data from the literature. Vertical scale in Ma, the samples are from the Siwaliks (black) and Turkey, Greece and Arabia (red). Type localities of species are indicated with an asterisk. The Y and Z sites are from Baskin (1996), its size ranges are composed of data from several localities and the vertical arrowed broken line indicates the age range of these sites. in An Exceptional Large Sample Of The Early Miocene Ctenodactyline Rodent Sayimys Giganteus, Specific Variation And Taxonomic Implications
Text-fig. 12. Ranges of the length of the dp4 based on data from the literature. Vertical scale in Ma, the samples are from the Siwaliks (black) and Turkey, Greece and Arabia (red). Type localities of species are indicated with an asterisk. The Y and Z sites are from Baskin (1996), its size ranges are composed of data from several localities and the vertical arrowed broken line indicates the age range of these sites.
The Effect of a 12-week Self-composed Vegan Diet With or Without Concurrent Resistance Exercise on Thigh Muscle Volume in Older Adults
ClinicalTrials.gov study NCT05809466. IPD Sharing: UNDECIDED. Countries: 1. Publications: 1.
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.