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125 results for “Binder”

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zenodo52/100

Dataset of "Microporous electrode binders for anion exchange membrane water electrolyzers"

<p>Membranes made of SEBS/DABCO/PIM-1 blends were prepared and characterized. In the next step, the several blends were used as polymer binder's of the catalysts layers. Characterization of SEBS-DABCO/PIM-1 blends in the form of the catalyst layer revealed the significance of the catalyst layer porosity, which controls the permeation of gasses.</p>

opencc-by-4.0Apr 2024View details →
zenodo44/100

Walter Binder (b3820)

<b>-- <a href="https://doi.org/10.5281/zenodo.11582199">Documentation</a> --</b><br><br><u>Name</u>: Walter Binder<br><u>musiXplora-ID</u>: b3820<br><u>musiXplora-URI</u>: <a href="https://musixplora.de/mxp/b3820">https://musixplora.de/mxp/b3820</a><br><u>Gender</u>: m<br><u>First Mentioned</u>: 1886<br><u>Last Mentioned</u>: 1903<br><u>Sectors</u>: Instrumentenbau<br><u>Professions (Historical)</u>: Patentinhaber<br><u>Other Places of Activity</u>: Berlin, Hohen Neuendorf<br><br><br><u>Tradition:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>Interessensbereich</td><td>Interessensbereich</td><td>Archiv Norbert Kottenstede</td><td><a href="https://musixplora.de/mxp/3080538">3080538</a></td></tr></tbody></table><br><br><u>Changelog</u>:<br>&nbsp;&nbsp;- v0.0.1: Initial Upload.<br>

opencc-by-4.0Jun 2024View details →
zenodo44/100

Eugen Binder (b2156)

<b>-- <a href="https://doi.org/10.5281/zenodo.11582199">Documentation</a> --</b><br><br><u>Name</u>: Eugen Binder<br><u>musiXplora-ID</u>: b2156<br><u>musiXplora-URI</u>: <a href="https://musixplora.de/mxp/b2156">https://musixplora.de/mxp/b2156</a><br><u>Gender</u>: m<br><u>Date of Death</u>: 1957<br><u>Place of Death</u>: USA<br><u>First Mentioned</u>: 1895<br><u>Last Mentioned</u>: 1909<br><u>Sectors</u>: Instrumentenbau, Kirche<br><u>Professions (Musical)</u>: Orgelbauer<br><u>Other Places of Activity</u>: Regensburg<br><br><br><u>Herkunftsfamilie:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>Eltern</td><td>Sohn</td><td>Martin Binder</td><td><a href="https://musixplora.de/mxp/b2155">b2155</a></td></tr></tbody></table><br><u>Institutionen:</u><br><table><tbody><tr><th>Role</th><th>Title</th><th>mXp-ID</th></tr><tr><td>Related</td><td>Orgelbaufirma Martin Binder</td><td><a href="https://musixplora.de/mxp/3030449">3030449</a></td></tr><tr><td>Related</td><td>W. Siemann &amp; Co.</td><td><a href="https://musixplora.de/mxp/3030633">3030633</a></td></tr></tbody></table><br><u>Titel/Medien:</u><br><table><tbody><tr><th>Role</th><th>Sigel</th><th>Title</th><th>mXp-ID</th></tr><tr><td>Related</td><td>Bernhard 2003a</td><td>Orgeldatenbank Bayern</td><td><a href="https://musixplora.de/mxp/5001131">5001131</a></td></tr><tr><td>Related</td><td>Fischer &amp; Wohnhaas 1994</td><td>Lexikon süddeutscher Orgelbauer</td><td><a href="https://musixplora.de/mxp/5001133">5001133</a></td></tr></tbody></table><br><br><u>Changelog</u>:<br>&nbsp;&nbsp;- v0.0.1: Initial Upload.<br>

opencc-by-4.0Jun 2024View details →
zenodo44/100

Martin Binder (b2155)

<b>-- <a href="https://doi.org/10.5281/zenodo.11582199">Documentation</a> --</b><br><br><u>Name</u>: Martin Binder<br><u>musiXplora-ID</u>: b2155<br><u>musiXplora-URI</u>: <a href="https://musixplora.de/mxp/b2155">https://musixplora.de/mxp/b2155</a><br><u>Gender</u>: m<br><u>Date of Birth</u>: 17 October 1849<br><u>Place of Birth</u>: Ilmmünster<br><u>Date of Death</u>: 01 August 1904<br><u>Place of Death</u>: Regensburg<br><u>First Mentioned</u>: 1875<br><u>Sectors</u>: Instrumentenbau, Kirche<br><u>Professions (Musical)</u>: Orgelbauer<br><u>Other Places of Activity</u>: Cham, Geiselhöring, Grafrath, Hahnbach, Nabburg, Pfaffenhofen, Regensburg<br><br><br><u>Herkunftsfamilie:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>Eltern</td><td>Vater</td><td>Eugen Binder</td><td><a href="https://musixplora.de/mxp/b2156">b2156</a></td></tr></tbody></table><br><u>Schwägerschaft:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>Schwiegereltern</td><td>Schwiegervater</td><td>Willibald Siemann</td><td><a href="https://musixplora.de/mxp/s1419">s1419</a></td></tr></tbody></table><br><u>Ausbildung:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>LehrerInnen und AusbilderInnen</td><td>Lehrer</td><td>Willibald Siemann</td><td><a href="https://musixplora.de/mxp/s1419">s1419</a></td></tr></tbody></table><br><u>Arbeitsumfeld:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>KollegInnen</td><td>Kollege</td><td>Willibald Siemann</td><td><a href="https://musixplora.de/mxp/s1419">s1419</a></td></tr></tbody></table><br><u>Persönlicher Umkreis:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>Netzwerk</td><td>Netzwerkpartner</td><td>Max Maerz</td><td><a href="https://musixplora.de/mxp/m1523">m1523</a></td></tr></tbody></table><br><u>Institutionen:</u><br><table><tbody><tr><th>Role</th><th>Title</th><th>mXp-ID</th></tr><tr><td>Related</td><td>Orgelbaufirma Martin Binder</td><td><a href="https://musixplora.de/mxp/3030449">3030449</a></td></tr></tbody></table><br><u>Titel/Medien:</u><br><table><tbody><tr><th>Role</th><th>Sigel</th><th>Title</th><th>mXp-ID</th></tr><tr><td>Related</td><td>Bernhard 2003a</td><td>Orgeldatenbank Bayern</td><td><a href="https://musixplora.de/mxp/5001131">5001131</a></td></tr><tr><td>Related</td><td>Fischer &amp; Wohnhaas 1994</td><td>Lexikon süddeutscher Orgelbauer</td><td><a href="https://musixplora.de/mxp/5001133">5001133</a></td></tr></tbody></table><br><br><u>Changelog</u>:<br>&nbsp;&nbsp;- v0.0.1: Initial Upload.<br>

opencc-by-4.0Jun 2024View details →
zenodo40/100

Dataset: Towards a two-step assessment of the chloride ingress behaviour of new cementitious binders

<p>Data and results to accompany the publication:</p> <p>&nbsp;</p> <p><strong>Towards a two-step assessment of the chloride ingress behaviour of new cementitious binders</strong></p> <p><strong>William Wilson<sup>a,b,</sup><sup>⁎</sup>, Fabien Georget<sup>a,c</sup>, Karen L. Scrivener<sup>a</sup></strong></p> <p><strong>Cement and Concrete Research, Volume 184, July 2024, 107594</strong></p> <p>&nbsp;</p> <p><sup>a</sup>Laboratory of Construction Materials, EPFL, Lausanne, Switzerland</p> <p><sup>b</sup>Universit&eacute; de Sherbrooke, Sherbrooke, Canada</p> <p><sup>c</sup>Institute of Building Materials Research, RWTH Aachen, Aachen, Germany</p> <p>&nbsp;</p> <p>*Corresponding author: william.wilson@usherbrooke.ca</p>

opencc-by-4.0Jul 2024View details →
zenodo40/100

Data for "Computational design of developable therapeutic antibodies: efficient traversal of binder landscapes and rescue of escape mutations"

Open the record for dataset details and reuse information.

opencc-by-4.0Oct 2024View details →
zenodo36/100

Umbrella simulation data of designed cyclic peptide as MDM2 binders

<p>Umbrella simulation data of designed cyclic peptide as MDM2 binders.</p> <p>Pulling simulation: start from bound MDM2/ligand to pull the ligand out</p> <p>Pushing simulation: start from unbound ligand&nbsp;to push it bind to MDM2</p> <p>Details of umbrella simulation parameters can be found in simulation set-up folders.</p>

opencc-by-4.0May 2020View details →
zenodo36/100

Assessment of Compatibility of Mineral Aggregates and Binders Used In Highway Construction and Maintenance Projects

<p>Stripping and delamination have been deemed as some of the major premature pavement distresses to most state Departments of Transportations (DOTs) and highway agencies including the Arkansas Department of Transportation (ARDOT). It is believed that the poor compatibility between asphalt binders and aggregates is one of the major reasons behind this. This study aims to analyze the compatibility of selected asphalt binders and aggregates used in Arkansas. Asphalt binders used in this study include PG 64-22, PG 70-22, and PG 76-22; each prepared from two different crude courses. Additionally, four different types of aggregates (sandstone, limestone, gravel, and dolomite) from four different quarries in Arkansas were evaluated in the laboratory. Selected physical and mechanical properties of the aggregates, rheological properties of the asphalt binders, surface free energy (SFE) measurements of the binders and aggregates, atomic force microscopy (AFM) analyses of binders, and limited laboratory and field performance of asphalt mixture samples were evaluated to determine the compatibility between the asphalt binders and aggregates. The findings of this study are expected to help pavement researchers and highway professionals to find suitable asphalt binder-aggregate combinations for constructing the durable pavements.</p>

opencc-by-4.0Sep 2020View details →
zenodo36/100

"Raw data for the publication entitled -Phase and microstructure evolutions in LC3 binders by multi-technique approach including synchrotron microtomography-"

<p>&quot;Raw data for the publication entitled -Phase and microstructure evolutions in LC3 binders by multi-technique approach including synchrotron microtomography-&quot; this includes: raw data for calorimetry, MIP, LXRPD, NMR,&nbsp;PSD and thermal analysis.</p> <p>&nbsp;</p>

opencc-by-4.0Feb 2021View details →
zenodo36/100

Structural models of BindCraft designed binders

<p>Structural models of binders designed against various targets described in the BindCraft manuscript.</p>

opencc-by-4.0Nov 2024View details →
zenodo36/100

Design of linear and cyclic peptide binders

<p>The data is compressed with zstd: https://github.com/facebook/zstd and tar. To uncompress do:&nbsp;</p> <p>tar --use-compress-program full/path/to/zstd -xvf file.tar.zst</p> <p>PDB files of predicted protein-peptide complexes from the design process:</p> <p>1.1G &nbsp; &nbsp;1ssc_untargeted_cyclic_afm.tar.zst <br>1.1G &nbsp; &nbsp;1ssc_untargeted_cyclic.tar.zst<br>1.1G &nbsp; &nbsp;1ssc_untargeted_linear_afm.tar.zst<br>1.1G &nbsp; &nbsp;1ssc_untargeted_linear.tar.zst</p> <p>Selected PDB files of predicted protein-peptide complexes from the design process:</p> <p>(440 KB each). 1ssc_adversarial_linear_sel, 1ssc_tp_cyclic_sel, 1ssc_tp_linear_sel</p> <p>Metrics:</p> <p>1ssc_cyclic_merged_with_solubility.csv &nbsp;- all cyclic design metriccs</p> <p>1ssc_linear_merged_with_solubility.csv - all linear design metriccs</p> <p>1ssc_linear_adversarial_sel.csv - adversarial selection for linear design</p> <p>1ssc_linear_tp_sel.csv - top selection for linear design</p> <p>spr_results.csv - SPR affinities (Kd)</p> <p>1ssc_cyclic_tp_sel.csv - top selection for cyclic design</p> <p>linear_top_adversarial_pae.csv - PAE scores for linear top and adversarial designs</p>

opencc-by-4.0Jun 2024View details →
zenodo36/100

Catalyst Regeneration of RAP-Binder in Asphalt

<p>Reclaimed Asphalt Pavement (RAP) binders are difficult to reuse because they often contain associated/aggregated molecules with very high molecular weights. This is due to the polarity gained during oxidative aging, causing the aggregation to occur. These high molecular weight components are responsible for RAP binder&rsquo;s increased viscosity and certain deteriorated rheological properties. One strategy to reuse RAP binder is to mix it with virgin asphalt binder and use this partially recycled mixture in asphalt. The RAP binder is usually improved before mixing by the addition of rejuvenators, softening agents, softer binders, and antioxidants to the asphalt binder mix to rebalance their rheological properties. The purpose of this research was to study effective ways to incorporate RAP content in asphalt mixtures using a novel approach of introducing a catalyst that can modify the binder&rsquo;s chemical composition; particularly to alter the oxidized molecules and reduce the number/content of aggregated structures. The use of a catalyst such as a Lewis acid to break the associated molecules in the RAP-binder is a new promising approach. The Lewis acids catalysts are known to catalyze the conversion of coal to liquid product, but the mechanism of action is not well understood. This report describes the result of our investigation into the effects of a Lewis acid catalyst such as Iron (III) chloride and Zinc chloride on the chemical composition of RAP-binder. The ultimate result is that Iron (III) chloride lowers the size of high molecular weight material when 2% w/w is used with RAP at 165 degrees Celsius for 30 minutes.</p>

opencc-by-4.0Nov 2021View details →
zenodo36/100

Raw data for "Enhancing fluidity and mechanical properties in LC3 binders with one-third Portland clinker content"

<p>Raw data for "Enhancing fluidity and mechanical properties in LC3 binders &nbsp;with one-third Portland clinker content"</p> <p>The raw data include thermal analysis, isothermal calorimetry, laboratory X-ray powder diffraction (LXRPD) and mercury intrusion porosimetry</p>

opencc-by-4.0Feb 2024View details →
zenodo36/100

Use of Nanoclays as Alternatives of Polymers Toward Improving Performance of Asphalt Binders

<p>Corresponding data set for Tran-SET Project No. 17BASU01. Abstract of the final report is stated below for reference:</p> <p>&quot;The main goal of this study is to assess the feasibility of the use of nanoclay as an alternative to commonly used polymers such as styrene-butadiene-styrene (SBS), which are used to modify the performance grade (PG) of asphalt binders. Three types of nanoclay and two types of neat binders were selected for laboratory investigation. Different amounts (1, 2, and 3%) of nanoclays were used. A blending protocol has been developed to mix the nanoclay with the asphalt binder. Rotational Viscosity (RV), Dynamic Shear Rheometer (DSR), Optical Contact Analyzer (OCA) and Atomic Force Microscope (AFM) were conducted to evaluate the properties of modified asphalt binders. Significant increases of viscosity and complex shear modulus were observed for nanoclay-modified binders because of nanoclay&rsquo;s nanoscale phenomena such as structural features, quantum effects, spatial confinement, high surface energy, and a large fraction of surface atoms. The maximum rutting resistance is expected for binders modified with the 1% Cloisite 11B. The OCA test results suggest that the modified asphalt binders possess higher surface free energy than the neat binder. Therefore, cohesive energy which is an indicator of moisture damage was increased for modified binders. From the AFM analysis, adhesion and deformation values decreased for modified asphalt binders. The minimum adhesion and deformation values were found for asphalt binder samples modified with the 1% Cloisite 10A.&quot;</p>

opencc-by-4.0Nov 2018View details →
zenodo36/100

Isothermal calorimetry data of seawater-mixed cement pastes produced with binary and ternary blended binder composition with fly ash, slag, metakaolin, and limestone

<p>The following file consists of data and its metadata from the published article Rathnarajan et al., (2024) Comprehensive evaluation of early-age hydration and compressive strength development in seawater-mixed binary and ternary cementitious systems published in Archives of Civil and Mechanical Engineering.&nbsp;</p> <p>Metadata file: metadata_calorimetry.xlsx consists of the details of file name, operator of equipment, test starting to completion time, number of hours, and notation of the mix-IDs according to the paper. &nbsp;</p> <p>In 11 data files in xlsx format, the heat flow and cumulative heat generated up to 7 days for the various binder combinations produced with CEM I, fly ash, metakaolin, slag, and limestone are presented. &nbsp;Along with that normalized heat flow and normalized cumulative heat with respec to time up to 7 days were included. &nbsp;The following are the data file names in .xlsx format included along with this zip file. &nbsp;</p> <p>P1-P8.xlsx<br>P9-P14.xlsx<br>P15-P18.xlsx<br>P19-P24.xlsx<br>P25-28.xlsx<br>P29-30-43-46.xlsx<br>P33_34-P39-41.xlsx<br>P47-P52.xlsx<br>P53-P58.xlsx<br>P59-P64.xlsx<br>P65-P70.xlsx</p> <p>The following files can be accessed with the pacakge Microsoft excel and data can be used for further analysis.&nbsp;</p>

opencc-by-4.0Apr 2024View details →
zenodo36/100

Mechanical Properties, Workability, and Experiments of Reinforced Composite Beams with Alternative Binder and Aggregate

<p><span>Arguably the most important element in the sustainability of concrete development is the discovery of an optimal sustainable binder and substitution for the increasingly depleted reserves of natural aggregates. Considerable interest has been shown in alkali-activated materials, which possess good characteristics and could be considered environmentally friendly because of their use of secondary materials in production. The aim of this study was the determination of the mechanical properties of three different mixtures based on the same locally accessible raw materials. The reference mixture contained Portland cement, the second mix contained a finely ground granulated blast furnace slag instead of cement, and the third mixture contained a portion of light artificial aggregate. The experiments focused on the testing and mutual comparison of the processability of the fresh mixture and mechanical characteristics (like compressive and flexural strength, as well as resistance to high temperatures and surface layer tear strength tests). Reinforced concrete beams without shear reinforcement and with three levels of reinforcement were also tested with a three-point bend test. The results show that, overall, the mechanical properties of all the tested mixtures were similar, but each had its own disadvantages. For example, the blast furnace slag-based mixture had a more vulnerable surface layer or a debatable loss of bulk density in the light aggregate mix at the expense of the mechanical properties. One of the main results of the research is that it was possible to technologically produce beams from the alkali-activated concrete (AAC) mixture. Then, the performed beam experiments verified the mechanism of damage, collapse, and load capacity. The obtained results are essential because they present the use of AAC not only in laboratory conditions but also for building elements. In beams without shear reinforcement, the typical tensile cracks caused by bending and shear cracks appeared under loading, where their character was affected depending on the degree of beam reinforcement and loading.</span></p>

opencc-by-4.0May 2024View details →
zenodo36/100

Dataset II related to the publication: In silico Evaluation of the Thr58-associated Conserved Water with KRAS Switch-II Pocket Binders

<p>Desmond trajectories of simulations conducted with TIP3P water model related to the publication:</p> <p>Leini R, Pantsar T: In Silico Evaluation of the Thr58-Associated Conserved Water with 2 KRAS Switch-II Pocket Binders. J. Chem. Inf. Model.&nbsp;[accepted]&nbsp;https://doi.org/10.1021/acs.jcim.2c01479</p> <ul> <li>Individual .zip files contain the Desmond trajectories and -out.cms -files.</li> </ul> <p>Related datasets:&nbsp;10.5281/zenodo.7656467 and&nbsp;10.5281/zenodo.7342311</p>

opencc-by-4.0Nov 2022View details →
zenodo36/100

Dataset III related to the publication: In silico Evaluation of the Thr58-associated Conserved Water with KRAS Switch-II Pocket Binders

<p>Desmond trajectories of simulations conducted with TIP4P water model related to the publication:</p> <p>Leini R, Pantsar T: In Silico Evaluation of the Thr58-Associated Conserved Water with 2 KRAS Switch-II Pocket Binders. J. Chem. Inf. Model.&nbsp;[accepted]&nbsp;https://doi.org/10.1021/acs.jcim.2c01479</p> <ul> <li>Individual .zip files contain the Desmond trajectories and -out.cms -files.</li> </ul> <p>Related datasets:&nbsp;10.5281/zenodo.7656467 and&nbsp;10.5281/zenodo.7341954</p>

opencc-by-4.0Nov 2022View details →
zenodo36/100

Combined in vitro and cell-based selection display method producing specific binders against IL-9 receptor in high yields

<p>The FEBS Journal FJ-22-0728</p> <p>Combined in vitro and cell-based selection display method producing specific binders against IL-9 receptor in high yields</p> <p>Maro&scaron; Huličiak, Lada Biedermanov&aacute;, Daniel Berd&aacute;r, &Scaron;těp&aacute;n Herynek, Lucie Kol&aacute;řov&aacute;,<br> Jakub Tomala, Pavel Mikuleck&yacute;, and Bohdan Schneider</p> <p><em>Institute of Biotechnology of the Czech Academy of Sciences,<br> Průmyslov&aacute; 595, 252 50 Vestec, Czech Republic</em></p> <p>Correspondence: Bohdan Schneider, Institute of Biotechnology of the Czech Academy of Sciences,<br> BIOCEV, CZ-252 50 Vestec, Czech Republic,<br> Tel: +420 728 303 566, e-mail: bohdan.schneider@ibt.cas.cz</p> <p>Abstract</p> <p>We combined cell-free ribosome display and cell-based yeast display selection to build specific protein binders to the extracellular domain of the human interleukin 9 receptor alpha (IL-9R&alpha;). The target, IL-9R&alpha;, is the receptor involved in the signaling pathway of IL-9, a pro-inflammatory cytokine medically important for its involvement in respiratory diseases. The successive use of modified protocols of ribosome and yeast displays allowed us to combine their strengths - the virtually infinite selection power of ribosome display and the production of (mostly) properly folded and soluble proteins in yeast display. The described experimental protocol is optimized to produce binders highly specific to the target, including selectivity to common proteins such as BSA, and proteins potentially competing for the binder such as receptors of other cytokines. The binders were trained from DNA libraries of two protein scaffolds called 57aBi and 57bBi developed in our laboratory. We show that the described unconventional combination of ribosome and yeast displays is effective in developing selective small protein binders to the medically relevant molecular target.</p>

opencc-by-4.0Jan 2023View details →
zenodo36/100

Dataset I related to the publication: In silico Evaluation of the Thr58-associated Conserved Water with KRAS Switch-II Pocket Binders

<p>WaterMaps results related to the publication:</p> <p>Leini R, Pantsar T: In Silico Evaluation of the Thr58-Associated Conserved Water with 2 KRAS Switch-II Pocket Binders. J. Chem. Inf. Model.&nbsp;[accepted]&nbsp;https://doi.org/10.1021/acs.jcim.2c01479</p> <ul> <li>Individual .zip files contain the WaterMap results for each structure.</li> </ul> <p><em>Additional notes: there is a typo in the 5v90 file name (it is the 5v9o structure).</em></p> <p>Related datasets:&nbsp;10.5281/zenodo.7341954 and&nbsp;10.5281/zenodo.7342311</p>

opencc-by-4.0Nov 2022View details →

ScienceDex guides

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record