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1,563 results for “Tradition”

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zenodo36/100

Figure 2 in Detection of enteropathogens and research of pesticide residues in Lactuca sativa from traditional and agroecological fairs

Figure 2. Difenoconazole calibration curve.

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

El Sec shipwreck (Mallorca-Spain). 2021-2022 missions. Evidences of a Punic shipbuilding tradition in Classical period

<p>Comunicaci&oacute;n sobre las campa&ntilde;as de excavaci&oacute;n de El Sec (Calvi&agrave;, Mallorca) de los a&ntilde;os 2022 y 2023 en la s<span><span>esi&oacute;n ARQUEOLOG&Iacute;A SUBMARINA Y NAVEGACI&Oacute;N del X Congreso Internacional de Estudios Fenicios y P&uacute;nicos - Eivissa, 17-21 Octubre de 2022</span></span></p> <p><span><span>Organizan: Direcci&oacute; General de Cultura del GOIB - Consell Insular d'Eivissa - MAEF. Session UNDERWATER ARCHEOLOGY AND NAVIGATION of the 10th International Congress of Phoenician and Punic Studies - Ibiza 2022. Organizers: Direcci&oacute; General de Cultura del GOIB - Consell Insular d'Eivissa - MAEF.&nbsp;</span></span></p> <div></div> <div> <div> <div></div> </div> </div>

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

Fig. 7. Reconstructed denticles shapes using a in Geometric morphometric on a new species of Trichodinidae. A tool to discriminate trichodinid species combined with traditional morphology and molecular analysis

Fig. 7. Reconstructed denticles shapes using a range of 20 harmonic.

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

Fig. 6 in Geometric morphometric on a new species of Trichodinidae. A tool to discriminate trichodinid species combined with traditional morphology and molecular analysis

Fig. 6. Fourier harmonic power spectrum based on Elliptical Fourier analysis.

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

Time Allocation for Disinfecting 50 L of Water Over a Traditional Fire vs the InStove Water Purifier in Mbale, Uganda

<p>A chronological time-allocation comparison of tasks performed while disinfecting 50 L of water over a traditional open fire vs the InStove Water Purifier</p>

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

Figure 1 in Reproductive cycle of the traditionally exploited sea cucumber Holothuria tubulosa (Holothuroidea: Aspidochirotida) in Pagasitikos Gulf, western Aegean Sea, Greece

Figure 1. Map of the study area with the sampling location.

opencc-by-4.0Mar 2014View details →
zenodo36/100

Prevalence and Factors Associated with the Use of Traditional Medicine in Individuals with Hypercholesterolemia, Hyperglycaemia, and Arterial Hypertension in Ecuador: Results from a Population-based Study in Two Health Districts

Open the record for dataset details and reuse information.

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

Integrating Local and Traditional Ecological Knowledge into Anadromous Waters Cataloging and Fish Inventories of select drainages of the Tanana and Yukon rivers 2021-2023

<p>***Funded by the Alaska Sustainable Salmon Fund #54007, a part of the Pacific Coastal Salmon Recovery Fund</p> <p><strong>Synopsis</strong></p> <p>During 2021 and 2022, staff from the Alaska Department of Fish and Game (ADF&amp;G), Division of Sport Fish, Alaska Freshwater Fish Inventory (AFFI) program and the Yukon River Drainage Fisheries Association (YRDFA) will collaborate to integrate Local and Traditional Ecological Knowledge (LTK) ethnographic interviews into a rapid systematic inventory of fish communities and associated habitats in select drainages of the lower Tanana River and Upper Yukon River in the area of Tanana and Fairbanks. First, in 2021, LTK surveys in the communities of Tanana, Manley Hot Springs and Nenana will locate important subsistence areas that will be overlain on our GIS-selected target streams to assist in filling gaps in coverage of the State of Alaska's Catalog of Waters Important for the Spawning, Rearing or Migration of Anadromous Fishes (AWC) in freshwater habitats expected to support anadromous fish populations likely to be impacted by human activities. Then, in 2022, this project will seasonally sample target streams and record observations in the Alaska Freshwater Fish Inventory database (AFFID), nominate water bodies to the AWC when anadromous fish are observed, and provide publicly available data via the AFFID internet mapping service. Anticipated benefits of this project are multiple hundreds of kilometers and/or dozens of water bodies added to the AWC as well as a broader understanding of the importance of this region&rsquo;s fish species to local human communities.</p> <p><span><span>1.<span>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span></span><u>Introduction</u></p> <p>In Alaska, habitats that support migrating, spawning, or rearing anadromous fish are protected under multiple administrative jurisdictions, including state, federal, and local habitat protection standards. Alaska Statute (AS) 16.05.871 (the Anadromous Fish Act) is a keystone statutory protection for freshwater habitats of anadromous fish in Alaska, requiring the ADF&amp;G to "specify the various rivers, lakes, and streams or parts of them" of the state that are important to the spawning, rearing, or migration of anadromous fish.<span>&nbsp; </span>The resulting atlas is known as the Anadromous Waters Catalog (AWC) which is adopted as regulation under 5 AAC 95.011. Under the Anadromous Fish Act, activities and uses conducted in or otherwise affecting water bodies specified in the AWC require permitting from the ADF&amp;G Habitat Section. Many other federal, state, and local government policies specify additional protections for anadromous fish habitat in Alaska. To be listed in the AWC, water bodies must have site-specific, direct, unambiguous observations of anadromous fish by a qualified observer. This is a major reason the AFFI program targets areas with high potential to add water bodies to the AWC.</p> <p>Beginning in spring 2021, YRDFA and AFFI staff will conduct LTK interviews and mapping in the communities of Tanana, Manley Hot Springs, and Nenana. By spring 2022, the LTK contributions will be mapped and added to our site selection criteria prior to field work. Based on seasonality of some fishes in this area, we will establish certain seasonal site locations that are road accessible to determine spatiotemporal patterns in the fish community used by area residents. This will include target streams sampled in June, the main summer season (see following paragraph), and September.</p> <p>From July 10 to August 1, 2022, 4 crews, each with 2 members, will sample fish communities using AFFI protocols in selected streams draining into the Tanana and Yukon rivers within a general area upstream of the Kokrines (a historical settlement downstream of Tanana) and downstream of the city of Fairbanks. Target sites will include wadeable headwater streams and un-wadeable streams. Summer surveys will maximize detection of juvenile and spawning Chinook salmon, juvenile coho salmon, as well as spawning summer chum salmon. More opportunistic seasonal sampling for 5 days, tentatively in late-spring (e.g., early June) and fall (September or October), could enhance the likelihood of detecting multiple life history stages of rearing, migrating, or spawning whitefishes, Chinook salmon, coho salmon, and chum salmon.</p> <p><span>&nbsp;</span>Given the size and remoteness of the Yukon and Tanana river drainages, this AFFI proposal is for years 3 and 4 of a multiyear effort to sample the region and provides enough funding to conduct spring, summer, and fall sampling. AFFI staff will pursue additional funding sources to conduct more surveys if possible. Before this proposed study, AKSSF funded AFFI to survey the upper Yukon and Tanana River drainages in 2019 and 2020 (AKSSF projects 44375 and 53013, respectively). For example, 2019 surveys in the upper Yukon and Tanana river drainages documented &gt;40 streams previously unlisted in the AWC for Chinook salmon.</p> <p><span><span>2.<span>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span></span><u>Location(s)</u></p> <p>Sampling will be done in select drainages of the Yukon and Tanana rivers bounded downstream near the old Yukon River village of Kokrines (N 64.9376, W -154.6944) and upstream to the Tanana River tributary Willow Creek (N 64.6719, W -148.2027). This includes the area and tributaries around the confluence of the Yukon and Tanana rivers (N 65.1682, W -151.9982) between the villages of Tanana and Manley Hot Springs.</p> <p><strong><span><span>I.<span>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span></span></strong><strong>Objectives</strong></p> <p>Objective 1: To maximize the spatial increase of documented anadromous fish habitats depicted in the AWC within the study area (sampling a minimum 80 headwater target streams, and 12 un-wadeable target streams)<span> </span>not including repeat sampling of select sites to document seasonal presence of some anadromous species.</p> <p>Objective 2: To use LTK to maximize the spatial increase of documented anadromous fish habitats depicted in the AWC within the study area while also corroborating and verifying the LTK with field surveys<span>.</span></p> <p>Objective 3:<span>&nbsp; </span>To record characteristics, using established protocols, of aquatic habitats (including riparian zone) at each sampling location.</p> <p>Objective 4:<span>&nbsp; </span>To provide the fish distribution and associated aquatic habitat information to State &amp; Federal agencies, participating communities, and the public.</p> <p><strong><span><span>II.<span>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span></span></strong><strong>Methods</strong></p> <p><span>This collaborative project is designed to contribute to the AWC using social and biological methods. Prior to field work, a YRDFA anthropologist and ADF&amp;G staff will contact the Tribal Councils of Tanana, Manley Hot Springs, and Nenana to schedule community meetings (in-person or online, as able) and ethnographic interviews between late spring 2021 and spring 2022. These interviews and mapping activities will establish what is known about the timing and distribution of resident and anadromous fishes and create maps that can be overlain on the AWC with other AFFI site selection criteria to identify streams to sample the following year. </span><span>The next year, project staff will seek to verify LTK surveys and add to the AWC through seasonal sampling. The proposed study area for 2020 has a road system along the Tanana River which will allow access via truck and boat to certain streams during 5 days each in spring (June) and fall (September).&nbsp;This will likely raise the number of sites this project can sample while avoiding excess helicopter expenses. Additionally, this will allow better seasonal sampling efforts to maximize the ability to document seasonally variable fish distributions such as summer salmon spawning and fall whitefish spawning seasons. Summer sampling will be more expansive and follow ADF&amp;G's AFFI protocols (Giefer and Cathcart 2019) where 4 crews, each with 2 members, will use helicopters to sample fish communities in selected study stream reaches for approximately 21 days in summer of 2022. Target survey sites will include wadeable headwater streams sampled with a backpack electrofisher, and un-wadeable streams sampled with a raft-mounted electrofisher. Sites within the study area that are identified as being anadromous fish rearing from LTK surveys and currently unlisted in the AWC will be prioritized for verification. <span>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span></p> <p><span><em>Study area selection</em></span></p> <p><span>The long-term goal of the AFFI program is to complete a statewide baseline inventory of fish assemblages and associated aquatic and riparian habitats. At its inception, the AFFI program developed a systematic approach to rank and prioritize Alaska&rsquo;s 139 subbasin level hydrologic units. At the time of this proposal, the AFFI program has surveyed 81 of the 139 subbasins that were originally prioritized. This project&rsquo;s 99,099 square kilometer study area includes subbasins of the lower Tanana River between the city Fairbanks and the mouth of the Tanana River, tributaries draining the south side of the Tanana upstream of Fairbanks but west of Clear Creek, and in select subbasins of the Yukon River near the community of Tanana but upstream of Kokrines.<span>&nbsp; </span></span></p> <p><span><em>Target stream selection</em></span></p> <p><span>Target stream selection will be performed by integrating LTK survey information with our conventional method of using GIS to identify previously unsampled (or not rigorously sampled) streams that can be safely accessed while maximizing potential additions to the AWC. The number of headwater streams in the study area will exceed the project&rsquo;s limited sampling effort capacity; therefore, a subset of streams comprising the longest stream segments not listed in the AWC will be selected as targets. The headwater team will sample approximately six to eight headwater streams per day and, when operating, the raft or riverboat team will float and sample one un-wadeable stream per day. Based on past AFFI projects, it is estimated that a minimum of 80 headwater target streams will be sampled, and 12 un-wadeable target streams could be rafted and sampled during the 21 field days (not including the 5 field days in each of June and September).<span>&nbsp; </span>However, these estimates are contingent upon weather and logistics.</span></p> <p><span>Reference sites for seasonal sampling will be prioritized depending on spatial and temporal observations from LTK surveys where we will select road or boat accessible locations to target fishes in spring, summer, and fall. We will seek to access all LTK-identified subbasins for subsistence fishes but they will be prioritized according to logistics (i.e., fuel and time needed to reach location) and potential addition to the AWC.</span></p> <p><span><em>Sampling methods</em></span></p> <p><span>Ideally, the fish community and habitat will be sampled with standardized methods per AFFI protocols. Fish will be collected by single-pass electrofishing standardized by stream width (i.e., 40 or 120 wetted-channel-widths in wadeable and un-wadeable target streams, respectively). Captured fish will be identified, measured, and released. Other gear types (such as beach seines, angling, or minnow traps) may be deployed if conditions prohibit electrofishing. Standard water chemistry, channel morphology, and riparian habitat parameters will be recorded at each sample site in addition to longer-term water temperature or eDNA sampling efforts in reference streams. <span>&nbsp;</span></span></p> <p><strong><span><span>III.<span>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span></span></strong><strong>Benefits</strong></p> <p>Updated and more comprehensive AWC coverage will be the primary regulatory or fish habitat benefit of this project toward sustaining salmon habitat. Enhanced communication and partnerships with tribal communities will be established through interviews to gather LTK. Based on summer AFFI sampling since 2016, sampling at least 80 headwater target streams and 12 un-wadeable target streams, this project will add many (likely &gt;300) previously unlisted kilometers of salmon habitat among several distinct streams to the AWC. Only anadromous fish habitat listed in the AWC receives protection under the Anadromous Fish Act and various other policies that provide additional protections to specified anadromous fish habitat. Also, providing more complete (e.g., seasonal) and accessible fish community and habitat information will benefit ADF&amp;G, as well as help other federal, state, and local resource agencies better implement their respective fish habitat management, protection, and research missions.<span>&nbsp; </span>Better protection and management of salmon habitat will benefit salmon fisheries and the communities they sustain by safeguarding critical salmon habitat thereby ensuring the long-term productivity of habitats and salmon populations.</p>

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

Persian-English Traditional Architecture Terms

<p>Bilingual Persian-English traditional architecture terms and the definitions for each term. These data are beneficial in understanding Persian documents about Iranian architecture, traditional construction techniques, and cultural heritage.&nbsp;</p>

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

Life-Cycle Inventory (LCI) For the comparative Life-Cycle Assessment of a restoration and renovation of a traditional Danish farmer house

<p>This document provides the Life-Cycle Inventory of the study comparing the environmental performance of the restoration (Scenario 1, also mentioned as &quot;S1&quot;) or renovation (Scenario 2, &quot;S2&quot;) of a traditional Danish farmer house. The LCI is used as input for the life-cycle impact assessment phase in the LCA where the inputs and outputs of elementary flows in the LCI are characterized as potential impacts on the environment. The LCI is based on primary data from the &quot;Apprentices&#39; House&quot; combined with secondary data from materials specific environmental product declaration and the large LCI database ecoinvent v3.</p> <p>&nbsp;</p> <p>The file contains several spreadsheets organized as follows:</p> <p>Thicknesses,S1 - Reports the materials and their corresponding thicknesses used for walls, ceilings, floors and insulation in S1</p> <p>Thicknesses, S1b - Reports the materials and their corresponding thicknesses used for walls, ceilings, floors and insulation in S1b</p> <p>Thicknesses, S1c - Reports the materials and their corresponding thicknesses used for walls, ceilings, floors and insulation in S1c</p> <p>Thicknesses, S2 - Reports the materials and their corresponding thicknesses used for walls, ceilings, floors and insulation in S2</p> <p>Surfaces - Reports the area of all surfaces of the house (walls, ceilings, floors) for all scenarios.&nbsp;</p> <p>Bill of materials - Sums up the list and quantity of all the materials used in all scenarios, providing details as to the quantity kept from the actual house, as well as the new input and output of materials during the restoration/renovation</p> <p>Heat loss, S1 - Provides details for the calculation of heat loss through the building envelope of the house in Scenario 1</p> <p>Heat loss, S1b - Provides details for the calculation of heat loss through the building envelope of the house in Scenario 1b</p> <p>Heat loss, S1c - Provides details for the calculation of heat loss through the building envelope of the house in Scenario 1c</p> <p>Heat loss, S2 - Provides details for the calculation of heat loss through the building envelope of the house in Scenario 2</p> <p>Parameters - Describes the main parameters used in the LCI and their corresponding uncertainty</p> <p>LCI Materials - Provides the full breakdown of the processes created and used for the LCI modelling on OpenLCA</p> <p>LCI Building - Provides the full breakdown of the processes created and used for the LCI modelling on OpenLCA</p>

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

Dataset Literature Review on Cyberlaw and Traditional crime

<p>Merupakan data dari literature review tentang hukum cyber dan traditional crime&nbsp;</p>

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

Utilizing traditional and remote sensing techniques to assess Colorado potato beetle host preference in the Columbia Basin -- Derived data 2020 & 2021

<p>This is derived data from a remote sensing experiment&nbsp;performed in 2020 and 2021.&nbsp;This repository&nbsp;contains&nbsp;.csv and .R files that can be used to replicate the analysis presented here:</p> <p><a href="https://zenodo.org/record/6859791#.Y-K6ky-B1z8">https://zenodo.org/record/6859791#.Y-K6ky-B1z8</a></p> <p>If you have any questions or comments regarding this dataset please contact Dr. Max Feldman via email: max.feldman@usda.gov</p>

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

Utilizing traditional and remote sensing techniques to assess Colorado potato beetle host preference in the Columbia Basin -- 2020 Data

<p>This is a remote sensing dataset collected in 2020&nbsp;that contains&nbsp;orthomosaic images, shape files, analysis scripts, and derived numerical data from each plot. Data was collected using the protocol described here:</p> <p><a href="https://www.protocols.io/view/usda-ars-potato-genetics-lab-drone-data-collection-bp2l6148dvqe/v1">https://www.protocols.io/view/usda-ars-potato-genetics-lab-drone-data-collection-bp2l6148dvqe/v1</a></p> <p>Provided are &quot;field map&quot; files that denote the location and contents of each plot, a folder from each date&nbsp;that contains the 5&nbsp;band&nbsp;orthomosiac, surface model image, a cropped and rotated image, shape files indicating the location of each plot, and derived data. The analysis can be replicated by following along with workflow listed in file named: rondon_cpb_2020.R. Derived data from this experiment can be found it the file named: &quot;Rondon_CPB_data_2020_UAS_all.csv&quot;<br> <br> If you have any questions or comments regarding this dataset please contact Dr. Max Feldman via email: max.feldman@usda.gov</p>

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

Supporting Data for "Does a Machine-Learned Potential Perform Better Than an Optimally Tuned Traditional Force Field? A Case Study on Fluorohydrins"

<p>Supporting Data for &quot;Does a Machine-Learned Potential Perform Better Than an Optimally Tuned Traditional Force Field? A Case Study on Fluorohydrins&quot;</p>

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

Traditional knowledge of wild plant species used in the southern part of Wadi Araba desert in South-West Jordan

<p>This data set provides&nbsp;documentation of traditional knowledge of using native plants in the Wadi Araba desert. The uses for grazing, firewood, food, and medicine. The information was obtained using a survey.&nbsp;</p>

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

Code for 'Reconstructing settlement histories in the Papua New Guinea Highlands through ceramic analysis and oral traditions'

<p>This dataset contains the data and code for the sherd macro-appearance model, LA-ICPMS and p-XRF analysis. The code is for R. The LA-ICPMS samples were&nbsp;separated using LAtools. The pXRF data was first processed with ARTAX. The ARTAX result files are provided. The XRFn.txt derives from further processing of the data in Excel.&nbsp;</p>

opencc-by-4.0Dec 2023View details →
dryad36/100

Data from: Plant-derived environmental DNA complements diversity estimates from traditional arthropod monitoring methods but outperforms them detecting plant-arthropod interactions

<p>Our limited knowledge about the ecological drivers of global arthropod decline highlights the urgent need for more effective biodiversity monitoring approaches. Monitoring of arthropods is commonly performed using passive trapping devices, which reliably recover diverse communities, but provide little ecological information on the sampled taxa. Especially the manifold interactions of arthropods with plants are barely understood. A promising strategy to overcome this shortfall is environmental DNA (eDNA) metabarcoding from plant material on which arthropods have left DNA traces through direct or indirect interactions. However, the accuracy of this approach has not been sufficiently tested. In four experiments, we exhaustively test the comparative performance of plant-derived eDNA from surface washes of plants and homogenized plant material against traditional monitoring approaches. We show that the recovered communities of plant-derived eDNA and traditional approaches only partly overlap, with eDNA recovering various additional taxa. This suggests eDNA as a useful complementary tool to traditional monitoring. Despite the differences in recovered taxa, estimates of community α- and β-diversity between both approaches are well correlated, highlighting the utility of eDNA as a broad scale tool for community monitoring. Last, eDNA outperforms traditional approaches in the recovery of plant-specific arthropod communities. Unlike traditional monitoring, eDNA revealed fine-scaled community differentiation between individual plants and even within plant compartments. Especially specialized herbivores are better recovered with eDNA. Our results highlight the value of plant derived eDNA analysis for large-scale biodiversity assessments that include information about community level interactions.</p>

opencc-zeroSep 2023View details →
zenodo36/100

Korean traditional vase

Scanning resource from https://www.youtube.com/watch?v=0ebnCCbl42M&amp;t Source: Objaverse 1.0 / Sketchfab

opencc-byFeb 2022View details →
zenodo36/100

Traditional Ukrainian Bread

[![](https://blog.sketchfab.com/scripts/assets/weekly.png)](https://sketchfab.com/blogs/community/sketchfab-weekly/?ref=sfb) ...in particular a misterious palianytsia : ) Update 25.04.2022: better topology and textures Source: Objaverse 1.0 / Sketchfab

opencc-byApr 2022View details →
zenodo36/100

Low Poly Japanese Traditional Store

A low poly model of japanese traditional store for your japanese theme need. It really is just a facade. Source: Objaverse 1.0 / Sketchfab

opencc-byJul 2022View details →

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Allen Brain Atlas

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Last verified 2026-04-30Open record

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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.

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

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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