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3,145 results for “Well Being”

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zenodo40/100

Intentional Forgetting in Organizations: The Positive Effects of Decision Support Systems on Mental Resources and Well-being

<p>This dataset contains raw data collected in an experimental study at the University of Muenster, Germany. The study is part of a larger research project and examined &ldquo;intentional forgetting&rdquo; effects in a simulated sales planning scenario. Intentional forgetting was operationalized via computer-based decision support system that enabled users to forget decision-relevant background information. We assumed that such intentional forgetting not only enhances decision quality but also decreases strain of decision makers and releases memory capacities for additional tasks.</p>

opencc-by-4.0Apr 2018View details →
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3dpf zebrafish larvae, 96 well plate,Tg(wt1b:EGFP), dorsal view, ACQUIFER Imaging Machine

<p>Datasets originate from internal test runs at ACQUIFER on the Imaging Machine (see also application note on &quot;<a href="https://www.acquifer.de/downloads/Clicktoolappnote_ImagingMachine.pdf">The ACQUIFER PlateViewer: A tool for visualizing high content screening data and supervised feedback microscopy</a>&quot;)</p> <p>The datasets contain images acquired from 96 <em>Tg(wt1b:EGFP)</em> embryos at 3 dpf aligned in agarose cavities generated with 3d printed orientation&nbsp;tools (<a href="https://rdcu.be/byto9">Wittbrodt, Jonas N., Urban Liebel, and Jochen Gehrig. &quot;Generation of orientation tools for automated zebrafish screening assays using desktop 3D printing.&quot;&nbsp;<em>BMC biotechnology</em>&nbsp;14.1 (2014): 36.</a>):</p> <p>- 2x, 4x, 10x views</p> <p>- for each well (e.g. <em>A001</em>) a multi-color z-stack was acquired, with &nbsp;N z-slices (SL<em>NNN</em>) in two channels: BF (CO<em>6</em>) and GFP (CO<em>3</em>)</p> <p>Example file name containing metadata:&nbsp;-<strong><em>A001-</em></strong>-PO01--LO001--<em><strong>CO3</strong></em>--<em><strong>SL001</strong></em>--PX32500--PW0100--IN0100--TM281--X014580--Y011262--Z210710--T0200256066--WE00001.tif</p> <p>Used also as benchmark dataset for Multi-Template Matching by Thomas, LSV&nbsp;and Gehrig, J</p> <p>See implementation in Fiji&nbsp;<a href="https://github.com/LauLauThom/MultipleTemplateMatching">https://github.com/LauLauThom/MultipleTemplateMatching</a></p> <p>and in KNIME&nbsp;<a href="https://github.com/LauLauThom/MultipleTemplateMatching-KNIME">https://github.com/LauLauThom/MultipleTemplateMatching-KNIME</a></p> <p>Contact:</p> <p>j.gehrig(at)acquifer.de, l.thomas(at)acquifer.de</p> <p>&nbsp;</p> <p><strong>Ethic statement</strong></p> <p>The work presented does not involve work with animals according to German and European<br> legislation. All experiments have been performed at stages prior to the legal onset of animal life.<br> To obtain zebrafish embryos and larvae, fish were maintained in closed stocks at Heidelberg University.<br> Zebrafish husbandry and experiments are under the institutional control of the Universities animal<br> welfare agency. All the zebrafish husbandry and experimental procedures were performed in<br> accordance with the German animal welfare standards (Tierschutzgesetz &sect;11, Abs. 1, Nr. 1, husbandry<br> permit number 35-9185.64/BH Wittbrodt) and in accordance with German and European Union animal<br> welfare guidelines. The fish facility is under the supervision of the local representative of the animal<br> welfare agency.</p>

opencc-by-4.0Apr 2019View details →
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Data for the publication "A polarization-induced 2D hole gas in undoped gallium nitride quantum wells"

<p>This upload contains the data presented in the manuscript &quot;A polarization-induced 2D hole gas in undoped gallium nitride quantum wells&quot;, which reports the observation of a&nbsp; high conductivity 2DHG in an epitaxially grown GaN/AlN heterostructure.&nbsp;This upload&nbsp;contains 4 files :</p> <ul> <li>1_tabulated_raw_data.xlsx : Both the raw experimental data&nbsp;along with the simulation results used in the Figures 1A, 2B, 3, 4, S2 in the paper. The data is encapsulated in a Excel file, with separate sheets used for each figure.</li> <li>2_nextnano_GaN_AlN_band_diagram.in :&nbsp; Input file for nextnano software (<a href="https://www.nextnano.de/">https://www.nextnano.de/</a>) for generating the band diagrams in the paper.</li> <li>3_README_XRD_sim.txt : Readme file with instructions for the XRD simulation for Fig 2</li> <li>4_XRD_sim_run.py : Python script&nbsp;for running the XRD simulation</li> </ul>

opencc-by-4.0Jun 2019View details →
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Satgata सत्गता (Dist. Lalitpur, Uttar Pradesh). Collection of hero-stones at the site of a medieval step-well.

<p>Satgata सत्गता (Dist. Lalitpur, Uttar Pradesh). Collection of hero-stones at the site of a medieval step-well, the central one dated VS 1438 (CE 1381-82) thus during the rule of Fīroz Shāh Tugluq. &copy; U.P. State Archaeology Directorate</p> <p><strong>Coordinates: &nbsp;</strong><a href="http://wikimapia.org/#lang=en&amp;lat=24.824716&amp;lon=78.329172&amp;z=15&amp;m=bs&amp;show=/42114006/Satgata">24&deg;49&#39;30&quot;N&nbsp;78&deg;19&#39;54&quot;E</a></p> <p>Selected bibliography:</p> <ul> <li><a href="https://catalog.lib.uchicago.edu/vufind/Search/Results?lookfor=Tughlug+dynasty%2C--1320-1413.&amp;type=Subject">Tughlug dynasty, -- 1320-1413.</a></li> <li><a href="https://catalog.lib.uchicago.edu/vufind/Search/Results?lookfor=Fi%CC%84roz+Sha%CC%84h+Tug%CC%B2h%CC%B2laq%2C--Sultan+of+Delhi%2C---1388&amp;type=Subject">Fīroz Shāh Tug̲h̲laq, -- Sultan of Delhi, -- -1388</a>.</li> </ul>

opencc-by-4.0Aug 2019View details →
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Fig. 6 in Biozonation And Correlation Of Two Wells In Niger Delta Using Calcareous Nannofossils

Fig. 6 Correlation of the MAY-01 and MAY-02 wells based on calcareous nannofossil zones, MFS and SB.

opencc-by-4.0Jun 2016View details →
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Fig. 2 in Biozonation And Correlation Of Two Wells In Niger Delta Using Calcareous Nannofossils

Fig. 2 Stratigraphy and paleoenvironment of the Eocene-Pliocene interval of the Niger Delta (modified from Doust &amp; Omatsola, 1990)

opencc-by-4.0Jun 2016View details →
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Text-fig. 9. Sex estimation of Moča skull (Komárno district, southern Slovakia), linear discriminant analysis using Henke's Late Upper Palaeolithic and Mesolithic database (n = 129, f = 46, m = 83), as well as according to recent Howells's database (n = 2524, f = 1156, m = 1368) with variables M1 (GOL) and M45 (ZYB). in A Late Upper Palaeolithic Skull From Moča (The Slovak Republic) In The Context Of Central Europe

Text-fig. 9. Sex estimation of Moča skull (Komárno district, southern Slovakia), linear discriminant analysis using Henke's Late Upper Palaeolithic and Mesolithic database (n = 129, f = 46, m = 83), as well as according to recent Howells's database (n = 2524, f = 1156, m = 1368) with variables M1 (GOL) and M45 (ZYB).

opencc-by-4.0Aug 2011View details →
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Text-fig. 5. Scattered valves of Aulacoseira distans (EHRENBERG) SIMONSEN 1979, cracked valves of Ellerbeckia arenaria (MOORE) CRAWFORD 1988 and Tetracyclus ellipticus (EHRENBERG) GRUNOW 1862 as well as broken scleres of freshwater sponges (on the right hand) are lying in a clayish matrix. SEM-photograph, sample Sf 380, seam 4. in Siliceous Microfossils From The Oligocene Tripoli-Deposit Of Seifhennersdorf

Text-fig. 5. Scattered valves of Aulacoseira distans (EHRENBERG) SIMONSEN 1979, cracked valves of Ellerbeckia arenaria (MOORE) CRAWFORD 1988 and Tetracyclus ellipticus (EHRENBERG) GRUNOW 1862 as well as broken scleres of freshwater sponges (on the right hand) are lying in a clayish matrix. SEM-photograph, sample Sf 380, seam 4.

opencc-by-4.0Dec 2007View details →
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Figure 1 in Assessing population size and survival rate of Pelophylax bedriagae caralitanus, in a well-protected Nature Park in Türkiye

Figure 1. Location of Gölcük Nature Park Isparta, Türkiye and satellite view of Gölcük Lake, where Capture-Mark-Recapture studies were carried out.

opencc-by-4.0Apr 2024View details →
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Figure 4 in Assessing population size and survival rate of Pelophylax bedriagae caralitanus, in a well-protected Nature Park in Türkiye

Figure 4. Annual fluctuation in population size for Gölcük population of Pelophylax bedriagae caralitanus.

opencc-by-4.0Apr 2024View details →
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Figure 3 in Assessing population size and survival rate of Pelophylax bedriagae caralitanus, in a well-protected Nature Park in Türkiye

Figure 3. The dorsal pattern of Pelophylax bedriagae caralitanus that captured in different trapping occasions. Arrows of different colours indicate matches of dorsal patterns of the same individual.

opencc-by-4.0Apr 2024View details →
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Fig. 8. Sauropod ichnites with well preserved morphologies from the general track record. A–I in New sauropod trackways from the Middle Jurassic of Portugal

Fig. 8. Sauropod ichnites with well preserved morphologies from the general track record. A–I. sauropod manus prints (redrawn from Dalla Vecchia and Tarlao 2000). A. Polyonyx gomesi igen. et isp. nov. from the Middle Jurassic of Portugal. B. Polyonyx isp. from the Middle Jurassic of Portugal. C. left manus print of a quadrupedal dinosaur from the Upper Jurassic of Portugal. D. Unnamed print from the Lower Cretaceous of Italy. E. Titanosaurimanus nana from the Early Cretaceous of Croatia. F. Brontopodus birdi from the Lower Cretaceous of USA. G. Unnamed print from the Upper Cretaceous of Bolivia. H. Breviparopus taghbaloutensis from the Middle Jurassic of Morocco. I. Parabrontopodus mcintoshi from the Upper Jurassic of USA. J–N. Sauropod pes prints. J. Breviparopus taghbaloutensis from the Middle Jurassic of Morocco. K. Polyonyx gomesi igen. et isp. nov. from the Middle Jurassic of Portugal. L. Brontopodus birdi from the Lower Cretaceous of USA. M. Brontopodus aff. B. birdi from the Upper Jurassic of Portugal. N. Unnamed print from the Upper Jurassic of Asturias, Spain. A, B, K, after Santos et al. (1994); C, after Santos et al. (1995), Santos (2003); D, after Dalla Vecchia 1999; E, after Dalla Vecchia and Tarlao 2000; F, L, after Farlow at al. (1989); G, after Lockley et al. (2002); H, J, after Dutuit and Ouazzou (1980), Ishigaki (1989); I, after Lockley et al. 1994a; M, after Meyer et al. 1994, Santos 2003; N, after Lires 2000.

opencc-by-4.0Jul 2009View details →
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Dissolved noble gas abundances and inorganic carbon isotopes from Palouse Basin groundwater wells

<p>This data set (.xlsx) contains sampling details and geochemical measurements from 17 groundwater wells in the Palouse Basin (Washington and Idaho, USA). Below is an overview of what each individual tab within the Excel workbook contains:</p> <p>(1) Sample information (coordinates, name, sampling date, and temperature and pH recorded during sampling)</p> <p>(2) Dissolved noble gas abundances (neon, argon, krypon, and xenon)</p> <p>(3) Dissolved inorganic carbon (DIC), radiocarbon activity of DIC and apparent groundwater age, and stable carbon isotope ratio (d13C) of DIC</p> <p>&nbsp;</p> <p>Anyone is welcome (and encouraged) to use these data, but please cite the following publications:&nbsp;</p> <p>Tyne et al., Hidden flux of lithospheric volatiles in shallow groundwater. (submitted)</p> <p>Seltzer et al., Fossil groundwater reveals aquifer sensitivities to climate stress. (submitted).</p>

opencc-by-4.0Jul 2024View details →
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Fig. 8 in The Chinchilla Local Fauna: An exceptionally rich and well-preserved Pliocene vertebrate assemblage from fluviatile deposits of south-eastern Queensland, Australia

Fig. 8. Macropodids from Chinchilla Sand, Australia, Pliocene. A. Simosthenurus antiquus (Bartholomai, 1963), QM F2975, partial left maxilla of probable Chinchilla provenance. B. Sthenurus andersoni Marcus, 1962, QM F814, unspecified locality near Chinchilla, left juvenile dentary. C. Macropus agilis siva (de Vis, 1895), QM F4733, unspecified locality near Chinchilla, right mandibular fragment. D. Sthenurus notabilis Bartholomai, 1963, QM F3817, Chinchilla Rifle Range, right mandibular ramus. E. Troposodon gurar Flannery and Archer, 1983, QM F4609, unspecified locality near Chinchilla, right dentary of probable Chinchilla provenance. F. Protemnodon devisi Bartholomai, 1973, QM F4710, unspecified locality near Chinchilla, partial left mandibular ramus. G. Macropus dryas de Vis, 1895, QM F3582, partial right maxilla of probable Chinchilla provenance. H. Protemnodon chinchillaensis Bartholomai, 1973, QM F5246, unspecified locality near Chinchilla, partial right mandibular ramus. I. Bohra wilkinsonorum Dawson, 2004, QM F43277, Chinchilla Rifle Range, right maxillary fragment. J. Wallabia indra (de Vis, 1895), QM F3595, unspecified locality near Chinchilla, left mandibular ramus. K. Troposodon minor (Owen, 1877), QM F4389, Condamine River, "50 yards east of Chinchilla Rifle Range", right maxillary fragment. L. Prionotemnus palankarinnicus Stirton, 1955, QM F3589, partial right mandibular ramus of probable Chinchilla provenance. M. Silvaroo bila Dawson, 2004, QM F43276, Chinchilla Rifle Range, left maxillary fragment. N. Silvaroo sp., QM F43281, Chinchilla Rifle Range, right mandibular ramus. O. Macropus woodsi Bartholomai, 1975, QM F5465, Chinchilla Rifle Range, partial left maxilla. P. Macropus pan de Vis, 1895, QM F2925, partial right maxilla of probable Chinchilla provenance. Scale bars 10 mm.

opencc-by-4.0Dec 2013View details →
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Fig. 6 in The Chinchilla Local Fauna: An exceptionally rich and well-preserved Pliocene vertebrate assemblage from fluviatile deposits of south-eastern Queensland, Australia

Fig. 6. Mammal species of uncertain taxonomic identity from unspecified localities near Chinchilla, Australia, Pliocene. A. Koalemus ingens de Vis, 1889, QM F683, partial right fibula. B. Synaptodon aevorum de Vis, 1888, QM F811, right dentary fragment. C. Archizonurus securus de Vis, 1889, QM F682, proximal left scapula. D. Phalanger procuscus (de Vis, 1889), QM F687, right scapula. E. Chronozoon australe de Vis, 1883, QM F610, calvarium. F. Brachalletes palmeri de Vis, 1883, QM F3308, right femur. Scale bars 10 mm.

opencc-by-4.0Dec 2013View details →
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Fig. 7 in The Chinchilla Local Fauna: An exceptionally rich and well-preserved Pliocene vertebrate assemblage from fluviatile deposits of south-eastern Queensland, Australia

Fig. 7. Non-macropodid marsupials from Chinchilla Sand, Australia, Pliocene. A. Dasyurus dunmalli Bartholomai, 1971, QM F6579, Chinchilla Rifle Range, left mandibular ramus. B. Koobor notabilis (de Vis, 1889), QM F691, unspecified locality near Chinchilla, left maxillary fragment. C. Phascolarctidae gen. et sp. indet., QM F52287, Chinchilla Rifle Range, left dentary fragment. D. Phascolarctos?stirtoni Bartholomai, 1968, QM F52289, Chinchilla Rifle Range, isolated RM1, RM2 or RM3 fragment. E. Archerium chinchillaensis Wroe and Mackness, 2000, QM F39847, Chinchilla Rifle Range, left maxillary fragment. F. Thylacoleo crassidentatus Bartholomai, 1962, QM F3565, right mandibular ramus. G. Euryzygoma dunense (de Vis, 1888), QM F376, unspecified locality near Chinchilla, left mandible. H. Vombatus ursinus (Shaw, 1800), QM F743, unspecified locality near Chinchilla, proximal right tibia. I. Palorchestes parvus de Vis, 1895, QM F783, unspecified locality near Chinchilla, left mandibular fragment. J. Euowenia grata (de Vis, 1887), QM F519, north bank of Condamine River, mandible. K. Thylacinus cynocephalus (Harris, 1808), QM F9476, Chinchilla Rifle Range, right mandibular fragment.

opencc-by-4.0Dec 2013View details →
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Fig. 2 in The Chinchilla Local Fauna: An exceptionally rich and well-preserved Pliocene vertebrate assemblage from fluviatile deposits of south-eastern Queensland, Australia

Fig. 2. Part of the Chinchilla gully system in the Chinchilla Rifle Range, showing the dominant sedimentary units present.

opencc-by-4.0Dec 2013View details →
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Fig. 5 in The Chinchilla Local Fauna: An exceptionally rich and well-preserved Pliocene vertebrate assemblage from fluviatile deposits of south-eastern Queensland, Australia

Fig. 5. Birds from unspecified localities near Chinchilla, Australia, Pliocene. A. Aythya australis Eyton, 1838, QM F1124, left tibiotarsus. B. Leipoa gallinacean (de Vis, 1888), QM F1132, partial carpometacarpus. C. Biziura lobata Shaw, 1796, QM F1125, partial left humerus. D. Anas superciliosa Gmelin, 1789, QM F5550, left coracoid. E. Fulica atra Linneaus, 1758, QM F1129, proximal right humerus. F. Gallinula morterii du Bus, 1840, QM F1138, distal right humerus. G. Charadriiformes gen. et sp. indet., QM F5543, proximal left femur. H. Necrastur alecer de Vis, 1892, QM F1136, proximal right humerus. I. Microcarbo melanoleucos Vieillot, 1817, QM F1130, right humerus. J. Ciconia nana (de Vis, 1888), QM F1131, distal right tibiotarsus. K. Dromaius novaehollandiae (Latham, 1790), QM F56203, third trochlea of the tarsometatarsus. Scale bars 10 mm.

opencc-by-4.0Dec 2013View details →
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Fig. 3 in The Chinchilla Local Fauna: An exceptionally rich and well-preserved Pliocene vertebrate assemblage from fluviatile deposits of south-eastern Queensland, Australia

Fig. 3. Lungfish toothplates from unspecified locality near Chinchilla, Australia, Pliocene. A. Metaceratodus palmeri (Krefft, 1874), QM F10537. B. Neoceratodus forsteri (Krefft, 1870), QM F56224. Scale bars 10 mm.

opencc-by-4.0Dec 2013View details →
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Fig. 4 in The Chinchilla Local Fauna: An exceptionally rich and well-preserved Pliocene vertebrate assemblage from fluviatile deposits of south-eastern Queensland, Australia

Fig. 4. Reptiles from Chinchilla Sand, Australia, Pliocene. A.?Reptilia, QM F56197, Chinchilla Rifle Range, unidentified fragments (A 1 –A 3), showing the WPC registration numbers of Agamidae sp. indet. cited by Hutchinson and Mackness (2002). B. Varanus sp. QM F56189, "Wilkinson's Quarry" Chinchilla Rifle Range, dorsal vertebra. C. Quinkana sp., QM F10204, Chinchilla Rifle Range, isolated tooth. D. Trionychidae sp. indet. QM F9037, Fairymeadow, carapace fragment. E. Emydura sp., QM F7035, Middle Gully, Chinchilla Rifle Range, anterior half of carapace. F. Pallimnarchus pollens de Vis, 1886, QM F11612, "Sand Scree locality, 4'6" from top of bank of Condamine River", symphyseal portion of dentary. G. Varanus komodoensis Ouwens, 1912, QM F874, unspecified locality near Chinchilla, right maxilla. Scale bars 20 mm.

opencc-by-4.0Dec 2013View 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