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671 results for “Window”

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zenodo48/100

DGPS and Echosounder data for Glass Window Bridge, Eleuthera, Bahamas.

<p>Bathymetric and Differential GPS data collected on Eleuthera, Bahamas as collected by survey instruments. These data are used in Rovere et al., 2017 (PNAS, see references).</p> <p><strong>Bathymetry: </strong>data was acquired with an&nbsp;MX Biosonics Aquatic Habitat Echosounder (Depth accuracy 1.7cm&plusmn;0.2% of depth; DGPS positional accuracy: &lt;3m, 95%) mounted on a small boat. No tidal correction has been applied. No IMU corrections to take into account wave motion were applied.</p> <p><strong>GPS: </strong>GPS&nbsp;points and lines were measured with a Trimble Pro XRT GPS receiving real-time Omnistar HP corrections (2-sigma 95% accuracy of 10cm). Heights are referred to the ITRF Ellipsoid.</p> <p>All data is in .shp format.</p>

opencc-by-4.0Aug 2020View details →
zenodo48/100

Cathedral (Cathédrale Notre-Dame). Interior. West façade. The rose window. 2

<u>File Name</u>: PM_144133_F_Reims <br><u>Sublocation</u>: Cathédrale Notre-Dame <br><u>Location</u>: Reims <br><u>Province</u>: Grand Est, Marne <br><u>Country</u>: France <br><u>Header</u>: Intérieur, la façade ouest, vitrail la rose <br><u>Description</u>: Cathedral (Cathédrale Notre-Dame). Interior. West façade. The rose window. <br><u>Author</u>: Photo: Paul M.R. Maeyaert <br><u>Author Mail</u>: PMRMaeyaert@gmail.com <br><u>Copyright</u>: © Paul M.R. Maeyaert,pmrmaeyaert@gmail.com <br><u>Keywords</u>: Europe|France; Europe|France|Grand Est; Europe|France|Grand Est|Marne; Europe|France|Grand Est|Marne|Reims; Cultural heritage|Monuments|Cathedral; Cultural heritage|Techniques|Stained glass; Cultural heritage|Monuments; Cultural heritage|Techniques; Cultural heritage <br><u>Date of Generation</u>: 2022-04-28T13:08:02+02:00

opencc-by-4.0Mar 2024View details →
zenodo48/100

Cathedral (Cathédrale Notre-Dame). Interior. West façade. The rose window.

<u>File Name</u>: PM_144163_F_Reims <br><u>Sublocation</u>: Cathédrale Notre-Dame <br><u>Location</u>: Reims <br><u>Province</u>: Grand Est, Marne <br><u>Country</u>: France <br><u>Header</u>: Intérieur, la façade ouest, vitrail la rose <br><u>Description</u>: Cathedral (Cathédrale Notre-Dame). Interior. West façade. The rose window. <br><u>Author</u>: Photo: Paul M.R. Maeyaert <br><u>Author Mail</u>: PMRMaeyaert@gmail.com <br><u>Copyright</u>: © Paul M.R. Maeyaert,pmrmaeyaert@gmail.com <br><u>Keywords</u>: Europe|France; Europe|France|Grand Est; Europe|France|Grand Est|Marne; Europe|France|Grand Est|Marne|Reims; Cultural heritage|Monuments|Cathedral; Cultural heritage|Techniques|Stained glass; Cultural heritage|Monuments; Cultural heritage|Techniques; Cultural heritage <br><u>Date of Generation</u>: 2022-04-28T13:14:12+02:00

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

ForensicVM Windows 11 Virtualization Dataset: Cloud and Local Application Data Retrieval with Virtualization and Password Bypass Challenge

<p>A Windows 11 Pro dataset designed in VirtualBox, complete with local and cloud apps, is to be virtually analyzed for crucial evidence. Bypassing the straightforward 'Bart' password is essential for access, yet original passwords should remain unchanged for others to attempt the same challenge. The task involves determining the password's nature, Bart's motives, identifying involved cloud applications, and extracting data both offline and online. The viability of dead box forensics for complete data retrieval is questioned, alongside what additional information network access could unveil. The challenge includes identifying two financial applications, extracting their data, and gathering cryptocurrency-related information, presented as an engaging forensicVM showcase by Nuno Mourinho, Mario Candeias, and Rogerio Bravo (Escola Superior de Tecnologia e Gestão de Beja, Instituto Politécnico de Beja).</p>

opencc-by-4.0Nov 2023View details →
zenodo44/100

Moving window optimization IHTP

<p>bulk.txt - bulk temperature at times given in time.txt</p> <p>hflux.txt - calculated values of heat flux on rocket skin</p> <p>hflux0.txt - initial (guess) values of heat flux on rocket skin</p> <p>movingwindow.py - Python 2.7 script performing moving window optimization solving Inverse Heat Transfer Problem</p> <p>rx.mac - Ansys APDL script solving Direct Heat Transfer Problem</p> <p>temp_bulkhead.csv - raw temperature data</p> <p>temperatura.txt - calculated values of temperature from Ansys</p> <p>time.txt - time stamps for heat flux</p>

opencc-by-4.0Apr 2019View details →
zenodo44/100

More social species live longer, have longer generation times, and longer reproductive windows

<p>Data and scripts required to reproduce the results of the manuscript "More social species live longer, have longer generation times, and longer reproductive windows"</p>

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

Dataset: Time-dependent source apportionment of submicron organic aerosol for a rural site in an alpine valley using a rolling positive matrix factorisation (PMF) window

<p>Uploaded igor pxp files are the data to generate&nbsp;all figures of the results from our publication in Atmospheric Chemistry and Physics with the name of <em>&quot;Time dependent source apportionment of submicron organic aerosol for a rural site in an alpine valley using a rolling PMF window&quot;</em>&nbsp;by Chen et al.&nbsp;(2021).</p> <p>This study deployed a novel and advanced source apportionment technique on a dataset measured in Magadino. Rolling PMF allows retrieving more realistic, time-dependent and detailed information of the organic aerosol sources. This work highlights the strength of the rolling PMF mechanism by comparing it with the results derived from conventional seasonal PMF. Overall, this comprehensive interpretation of chemical speciation monitor (ACSM) data could be a role model for similar analyses.</p>

opencc-by-4.0Jul 2021View details →
zenodo44/100

Data for "Climate change is shifting and narrowing prescribed fire windows in the Western United States"

<p><strong>The data archived here represent two types of information used in the publication &ldquo;Climate change is shifting and narrowing prescribed fire windows in the Western United States&rdquo;&nbsp;by Swain et al. 2023:</strong></p> <p>1) The meteorological and vegetation dryness/fuel moisture data (as described within the file) extracted from prescribed fire burn plans around the Western United States (drawn from entities such as the U.S. Forest Service, U.S. National Park Service, and The Nature Conservancy) between 2002 and 2022. This data is provided in tabular form, both as an .xlsx file and a .csv file for the convenience of the user. In addition to the specific values from each burn plan, summaries of median values for forested and non-forested landscapes are provided as well.</p> <p>2) The number of days on which environmental conditions (i.e., weather and vegetation fuel moistures) are acceptable for prescribed fire according to the composite metric described in Swain et al. 2023 (known as &ldquo;RxDays&rdquo;). Underlying RxDay definitions are different for forest and non-forested landscapes. This data is provided in geospatially explicit (gridded) form as NetCDF files, which are a self-describing file format. Each file is provided as a single 3-dimensional hypercube (i.e., dimensions of time, latitude, and longitude, respectively; units and details described within the file) corresponding to the number of RxDays per calendar month.</p> <p>One file is provided for each climate model iteration (as identified in each filename); these represent projected RxDays at monthly scale between 1981 and 2060 using an RCP 4.5 climate forcing trajectory. An additional file (rx_gridMET.nc) is provided that represents the same values from an atmospheric reanalysis dataset, which represents a best estimate of observed RxDay values (1981-2020).</p>

opencc-by-4.0Dec 2022View details →
edi44/100

PRW01 Fine root density and turnover based on root window observations

Eight root windows (40cm x 40cm) were used to measure fine root production and decay over three years in a 2 factor-factorial experiment (Burning, Mowing). Root lengths were traced every two weeks during the growing season. Production, disappearance and standing crops (lengths) were calculated by 10 cm increments.

openCC0Jan 2023View details →
zenodo40/100

Figure 2 in Forest monkeys and Pleistocene refugia: a phylogeographic window onto the disjunct distribution of the Chlorocebus lhoesti species group

Figure 2. All possible patterns of relationships among the lhoesti group species. A, topology consistent with a vicariant scenario in which the distribution of a widespread common ancestor fragments into three segments – nearly simultaneously – as the result of habitat deterioration associated with a Pleistocene glacial cycle. B, topology consistent with an alternative vicariant scenario, in which ancestral populations of Chlorocebus preussi and Chlorocebus solatus remain in contact for a short time after the divergence of Chlorocebus lhoesti, because the former two stocks range within the same Pleistocene refuge. C, tree consistent with a dispersal hypothesis in which early C. preussi populations (following divergence from C. solatus) migrate along the northern rim of the Congo Basin, and found a new lineage (C. lhoesti) in the Albertine region (see Fig. 1). D, tree consistent with a dispersal hypothesis in which early C. solatus populations (following divergence from C. preussi) conduct a similar transcontinental migration, but along the southern rim of the Congo Basin (see Fig. 1).

opencc-by-4.0Oct 2008View details →
zenodo40/100

FIGURE 4 Average values for eight environmental variables over 17 windows that follow the Bufo bufo – B in Environmental correlates of the European common toad hybrid zone

FIGURE 4 Average values for eight environmental variables over 17 windows that follow the Bufo bufo – B. spinosus hybrid zone from the Atlantic coast (window 1) to the Mediterranean (window 17). Variables shown are those selected by a logistic regression analysis, with 'species' as dependent variable and explanatory variables available for selection as in table 1. Units are as in table 1; see also Hijmans et al. (2005). Values for B. bufo and B. spinosus are shown by small and large dots, respectively. Grey areas indicate that values for B. bufo are lower than for B. spinosus. The graph at the top left provides AUC model fit values along with major topographical references. Rectangles indicate stretches of the species contact for which the environmental models have good fit (AUC&gt; 0.8), with consistent results indicated by green shadings. For the other windows with less than good model fit, signals are likely to be absent or void, either from poor sampling (window 1), the presence of rivers (windows 5–9, 13–14), or a thin or absent species' contact (windows 16–17) (see fig. 3).

opencc-by-4.0Jun 2020View details →
zenodo40/100

Bottom of DR1 tank, the sides of the module are fitted with glass panels which allow natural light from a window to enter the tank, and the observer to view the behaviour of the broodstock. This device ensures easy viewing and checking of the broodstock, facilitates management of feeding and allows effective monitoring of reproduction. in Reproduction of Zingel asper (Linnaeus, 1758) in controlled conditions: an assessment of the experiences realized since 2005 at the Besançon Natural History Museum

Bottom of DR1 tank, the sides of the module are fitted with glass panels which allow natural light from a window to enter the tank, and the observer to view the behaviour of the broodstock. This device ensures easy viewing and checking of the broodstock, facilitates management of feeding and allows effective monitoring of reproduction.

opencc-by-4.0Feb 2019View details →
zenodo40/100

Solution-processed PbS quantum dot infrared laser with room-temperature tuneable emission in the optical telecommunications window - Open Data

<p>This is a supplementary upload attached to the paper titled &quot;Solution-processed PbS quantum dot infrared laser with room-temperature tuneable emission in the optical telecommunications window&quot;&nbsp;10.1038/s41566-021-00878-9.</p> <p><strong>Figures</strong></p> <p>All figure data from the publication can be obtained from the original MATLAB .fig files. If one does not have access to MATLAB the&nbsp;figures can be opened using the open source software GNU Octave.</p> <p><strong>FDFD Simulation</strong></p> <p>Also in the upload is the original matlab code used to perform the simulations&nbsp;presented in the paper.</p> <p>&quot;FDFD_2D_Ez_Hz_DFB_laser_UPLOAD&quot; - Variable gain FDFD solver is uploaded as .mat and .pdf files.</p> <p>To run the code the functions &quot;Dgen&quot; and &quot;gen2xDFB&quot; are required and the .mat files containing the refractive indices &quot;PbS1520&quot; and &quot;Al2O3&quot;.</p> <p>Parameters to vary can be found in the &quot;DASHBOARD&quot; section of the code. The uploaded code solves for the out-of-plane electric field (Ez Mode).</p>

opencc-by-4.0Jul 2021View details →
dryad40/100

Female reproductive fluid increases the opportunities for post-mating sexual selection by prolonging egg fertilization window

<p>Female reproductive fluid, the fluid that surrounds the eggs, has attracted increasing attention for its role in fertilization and post-mating sexual selection through its effects on sperm traits. Surprisingly, however, only a few studies have investigated the effects of female reproductive fluid on the eggs. Yet, these effects might offer great potential to affect fertilization dynamics by, for example, increasing the opportunities for post-mating sexual selection. Here, we determined whether, by extending the egg fertilization window (time available for egg fertilization), the female reproductive fluid could also increase the opportunities for multiple paternity. Using the Zebrafish Danio rerio we first tested the prediction that female reproductive fluid increases the egg fertilization window, and then, using a split-brood design with sperm of two males added at different times after eggs activation, we tested whether the degree of multiple paternity varies in presence or absence of female reproductive fluid. Our results reveal the potential of the female reproductive fluid to increase multiple paternity throughout its effects on the egg fertilization window thus broadening our knowledge of the mechanisms females in externally fertilizing species affect post-mating sexual selection.</p>

opencc-zeroApr 2022View details →
zenodo40/100

Correlated k coefficients for H2-He atmospheres; 196 spectral windows and 1060 pressure-temperature points

<p>There are 72 correlated k-coefficients datasets, using the naming convention&nbsp;m-xxx_coyyy.data.196.tar.zip, where xxx is the metallicity in dex relative to solar, and yyy is the C/O ratio relative to solar, as a multiplication factor. For example a metallicity of 0.0 and a C/O ratio of 1.0 indicates solar abundances. There are an additional 5 datasets that do not include the TiO and VO opacities, as indicated by the "_noTiOVO" designation in the file name.&nbsp;We use the Lodders et al. 2010 value for the solar C/O=0.458.&nbsp;The spectral windows are listed in the file 196_windows.txt (intervals defined as starting at&nbsp;lambda1 and ending at&nbsp;lambda2), and the k-coefficients can be read in and checked using the script in the IDL code read_k_coefficients.pro. The k-coefficients are calculated for a grid of 1060 pressure-temperature points listed in the file PT_list_1060.</p> <p>The correlated-k coefficients are calculated using pre-mixed opacities, where the abundances for each metallicity-C/O combination have been calculated using equilibrium chemistry, as described in Marley et al. 2021. There are 12 Fe/H values: 0.0, 0.5, 0.7, 1.0, 1.5, 1.5, 1.7, 2.0, -0.25, -0.3, -0.5, -0.75, and -1.0; and 6 C/O values: 0.25, 0.5, 1.0, 1.5, 2.0 and 2.5.</p> <p>&nbsp;The opacity sources included in the calculations are: C2H2,&nbsp;C2H4,&nbsp;C2H6,&nbsp;CH4,&nbsp;CO,&nbsp;CO2,&nbsp;CrH,&nbsp;FeH,&nbsp;H2O,&nbsp;H2S,&nbsp;HCN,&nbsp;LiCl,&nbsp;MgH,&nbsp;N2, &nbsp;NH3,&nbsp;OCS,&nbsp;PH3,&nbsp;SiO,&nbsp;TiO, and&nbsp;VO, in addition to alkali metals (Li, Na, K, Rb, Cs). The references for the line lists and broadening parameters used in these opacity calculations can also be found in Marley et al 2021, and are included here for convenience in the file Table_2_Marley_et.al.2021.png</p> <p>Each dataset contains the following files:</p> <p>ascii_data: the correlated k coefficients file in ascii format. This can be read by the included IDL code.</p> <p>binary_data:&nbsp;the correlated k coefficients file in binary&nbsp;format</p> <p>cp_all: contains the mean molecular weight for each layer. The head capacity values do&nbsp;not include the proper H2 heat capacity and should not be used.</p> <p>full_abunds: the relative abundances for all the species from the chemistry files, on the 1060-point pressure-temperature grid.</p> <p>sum_in_atoms: relative abundances for the alkali metals</p> <p>sum_in_cia: relative abundances for the species&nbsp;that could be used for calculating collision-induced absorption (CIA)</p> <p>sum_in_layer: relative abundances for all molecules included in the correlated k-coefficients calculations</p> <p><em>Resources supporting this work were provided by the NASA High-End Computing (HEC) Program through the NASA Advanced Supercomputing (NAS) Division at Ames Research Center.</em></p>

opencc-by-4.0May 2021View details →
zenodo40/100

Correlated k coefficients for H2-He atmospheres; 11 spectral windows and 1060 pressure-temperature points

<p>There are 72 correlated k-coefficients datasets, using the naming convention&nbsp;m-xxx_coyyy.data.11.tar.zip, where xxx is the metallicity in dex relative to solar, and yyy is the C/O ratio relative to solar, as a multiplication factor. For example a metallicity of 0.0 and a C/O ratio of 1.0 indicates solar abundances. There are an additional 10 datasets that do not include the TiO and VO opacities, as indicated by the "_noTiOVO" designation in the file name.&nbsp;We use the Lodders et al. 2010 value for the solar C/O=0.458.&nbsp;The spectral windows are listed in the file 11_windows.txt (intervals defined as starting at&nbsp;lambda1 and ending at&nbsp;lambda2), and the k-coefficients can be read in and checked using the script in the IDL code read_k_coefficients.pro. The k-coefficients are calculated for a grid of 1060 pressure-temperature points listed in the file PT_list_1060.</p> <p>The correlated-k coefficients are calculated using pre-mixed opacities, where the abundances for each metallicity-C/O combination have been calculated using equilibrium chemistry, as described in Marley et al. 2021. There are 12 Fe/H values: 0.0, 0.5, 0.7, 1.0, 1.5, 1.5, 1.7, 2.0, -0.25, -0.3, -0.5, -0.75, and -1.0; and 6 C/O values: 0.25, 0.5, 1.0, 1.5, 2.0 and 2.5.</p> <p>&nbsp;The opacity sources included in the calculations are: C2H2,&nbsp;C2H4,&nbsp;C2H6,&nbsp;CH4,&nbsp;CO,&nbsp;CO2,&nbsp;CrH,&nbsp;FeH,&nbsp;H2O,&nbsp;H2S,&nbsp;HCN,&nbsp;LiCl,&nbsp;MgH,&nbsp;N2, &nbsp;NH3,&nbsp;OCS,&nbsp;PH3,&nbsp;SiO,&nbsp;TiO, and&nbsp;VO, in addition to alkali metals (Li, Na, K, Rb, Cs). The references for the line lists and broadening parameters used in these opacity calculations can also be found in Marley et al 2021, and are included here for convenience in the file Table_2_Marley_et.al.2021.png</p> <p>Each dataset contains the following files:</p> <p>ascii_data: the correlated k coefficients file in ascii format. This can be read by the included IDL code.</p> <p>binary_data:&nbsp;the correlated k coefficients file in binary&nbsp;format</p> <p>cp_all: contains the mean molecular weight for each layer. The head capacity values do&nbsp;not include the proper H2 heat capacity and should not be used.</p> <p>full_abunds: the relative abundances for all the species from the chemistry files, on the 1060-point pressure-temperature grid.</p> <p>sum_in_atoms: relative abundances for the alkali metals</p> <p>sum_in_cia: relative abundances for the species&nbsp;that could be used for calculating collision-induced absorption (CIA)</p> <p>sum_in_layer: relative abundances for all molecules included in the correlated k-coefficients calculations</p> <p><em>Resources supporting this work were provided by the NASA High-End Computing (HEC) Program through the NASA Advanced Supercomputing (NAS) Division at Ames Research Center.</em></p>

opencc-by-4.0May 2021View details →
dryad40/100

Differential changes in lifecycle-event phenology provide a window into regional population declines

<p class="MsoNormal"><span>Climate change affects the phenology of annual lifecycle events of organisms, such as reproduction and migration. Shifts in the timing of these events could have important population implications directly, or provide information about the mechanisms driving population trajectories, especially if they differ between lifecycle event. We examine if such shifts occur in a declining migratory passerine bird (Willow Warbler, <em>Phylloscopus trochilus</em>), which exhibits latitudinally diverging population trajectories. We find evidence of phenological shifts in breeding initiation, breeding progression and moult that differ across geographic and spring temperature gradients. Moult initiation following warmer springs advances faster in the south than in the north, resulting in proportionally shorter breeding seasons, reflecting higher nest failure rates in the south and in warmer years. Tracking shifts in multiple lifecycle events allowed us to identify points of failure in the breeding cycle in regions where the species has negative population trends, thereby demonstrating the utility of phenology analyses for illuminating mechanistic pathways underlying observed population trajectories.</span></p>

opencc-zeroAug 2022View details →
zenodo40/100

Text-fig. 5. Plant fragments from Govone with evidence of preserved cuticle. a: Decussate pair of leaves of "Thuja" saviana (C.T.GAUDIN) C.T.GAUDIN with a window (arrow) opened in the brownish cuticle, showing the yellowish mesophyll cells and some possible resin canals (dark), MGPT-PU141094. b: Angiosperm leaf fragment (from sample MGPT-PU141017) under the stereomicroscope, showing the blackish compressed mesophyll on the right and patches of cleaned, yellowish cuticle at the top (arrow). Scale bar 1 mm. in Remains Of A Subtropical Humid Forest In A Messinian Evaporitebearing Succession At Govone, Northwestern Italy - Preliminary Results

Text-fig. 5. Plant fragments from Govone with evidence of preserved cuticle. a: Decussate pair of leaves of "Thuja" saviana (C.T.GAUDIN) C.T.GAUDIN with a window (arrow) opened in the brownish cuticle, showing the yellowish mesophyll cells and some possible resin canals (dark), MGPT-PU141094. b: Angiosperm leaf fragment (from sample MGPT-PU141017) under the stereomicroscope, showing the blackish compressed mesophyll on the right and patches of cleaned, yellowish cuticle at the top (arrow). Scale bar 1 mm.

opencc-by-4.0Aug 2022View details →
zenodo40/100

Figure 4. Hamming Window applied to each frame-Development an Automatic Speech to Facial Animation Conversion for Improve Deaf Lives

<p>Use of speech spectrum for modifying work domain on signals from time to frequency is<br> made possible using Fourier coefficients. At such applications the rapid and practical way of<br> estimating the spectrum is use of rapid Fourier changes.</p>

opencc-by-4.0May 2011View details →
zenodo40/100

Рис. 1. Птицы, погибшие от стоΛкновений с оконными стекΛами в г. Уссурийске осенью 2019 г. Фото Δ. А. БеΛяева Fig. 1. Birds that died as a result of window collisions in Ussuriysk in the autumn of 2019. Photo by D. A. Belyaev in Deaths Resulting From Bird Window Collisions In Ussuriysk (Primorsky Krai)

Рис. 1. Птицы, погибшие от стоΛкновений с оконными стекΛами в г. Уссурийске осенью 2019 г. Фото Δ. А. БеΛяева Fig. 1. Birds that died as a result of window collisions in Ussuriysk in the autumn of 2019. Photo by D. A. Belyaev

opencc-by-4.0Feb 2020View details →

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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