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4,404 results for “Digitization”
The Collection Management System Collection - Crowd-sourcing a list of digital repository options
<p><strong>The Collection Management System Collection - Crowd-sourcing a list of digital repository options</strong></p> <p>This dataset contains a list of digital repository options for collection management systems. It has been started and complited by Ashley Blewer.<br> The data set contains:</p> <ul> <li>a PDF capture of the blog describing motivation and background, columns of the spreadsheet and further resources; originally published at https://bits.ashleyblewer.com/blog/2017/08/09/collection-management-system-collection/</li> <li>The dataset / spreadsheet of The Collection Management System Collection, originally published at https://docs.google.com/spreadsheets/d/1cXOug3qM0pNNeD_wssiVEv9c0W1Y5I1VDTnSPTk7fb4/<br> The data was exported from the google spreadsheet on November 14th 2020 into the following formats: <ul> <li>PDF</li> <li>XLSX</li> <li>CSV</li> <li>TSV</li> </ul> </li> </ul> <p>The list contains basic information, administration considerations, interface considerations, technical considerations and social considerations for 70 different repository systems.</p>
Can digital platforms be regulated? A Dialogue Between The European Union and México
<p>Can digital platforms be regulated? A Dialogue Between The European Union and México</p> <p>This video presentation was produced as a Digital Knowledge Product for the Horizon 2020 MSCA RISE project, Promoting Research on Digitalisation in Emerging Powers and Europe towards Sustainable Development (PRODIGEES, GA #873119).</p> <p>The original publishing agency is Instituto Mora EN VIVO 1. The original publishing platform is YouTube. The link: https://www.youtube.com/watch?v=VY5A8GdIjy4</p>
High Resolution Digital Terrain Models of Mercury
<p>Supplementary material of the article:<br> Tenthoff, M.; Wohlfarth, K.; Wöhler, C. High Resolution Digital Terrain Models of Mercury. <em>Remote Sens.</em> <strong>2020</strong>, <em>12</em>, 3989.</p> <p><br> Abstract:<br> We refined our Shape from Shading (SfS) algorithm, which has previously been used to<br> create digital terrain models (DTMs) of the Lunar and the Martian surface, to generate high-resolution<br> DTMs of Mercury from MESSENGER imagery. To adapt the reconstruction procedure to the specific<br> conditions of Mercury and the available imagery, we introduced two methodic innovations. First, we<br> extended the SfS algorithm to enable the 3D-reconstruction from image mosaics. Because most mosaic<br> tiles were acquired at different times and under various illumination conditions, the brightness of<br> adjacent tiles may vary. Brightness variations that are not fully captured by the reflectance model may<br> yield discontinuities at tile borders. We found that the relaxation of the constraint for a continuous<br> albedo map improves the topographic results of an extensive region removing discontinuities at<br> tile borders. The second innovation enables the generation of accurate DTMs from images with<br> substantial albedo variations, such as hollows. We employed an iterative procedure that initializes the<br> SfS algorithm with the albedo map that was obtained by the previous iteration step. This approach<br> converges and yields a reasonable albedo map and topography. With these approaches, we generated<br> DTMs of several science targets such as the Rachmaninoff basin, Praxiteles crater, fault lines, and<br> several hollows. To evaluate the results, we compared our DTMs with stereo DTMs and laser altimeter<br> data. In contrast to coarse laser altimetry tracks and stereo algorithms, which tend to be affected by<br> interpolation artifacts, SfS can generate DTMs almost at image resolution. The root mean squared<br> errors (RMSE) at our target sites are below the size of the lateral image resolution. For some targets,<br> we could achieve an effective resolution of less than 10 m/pixel, which is the best resolution of<br> Mercury to date. We critically discuss the limitations of the evaluation methodology.<br> <br> </p>
Revealing, examining, and critical understanding in the digital age
<p>During the second Project Presentation Session on <strong>Friday</strong> 20.07.2018 the following 3 projects were presented:</p> <ul> <li><strong>Rasa Kasperienė</strong> (Vytautas Magnus University, Kaunas, Lithuania): "Application of Social Network & Content Analysis Methods for Facebook Groups Dynamics"</li> <li><strong>Jeffrey Allan Kelly Lowenstein</strong> (Grand Valley State University, USA): "Gaming the Lottery: Anatomy of a Global Investigation"</li> <li><strong>Erik Radisch</strong>, Gernot Howanitz, Bernhard Bermeitinger (University of Passau, Germany): "Contextualizing Bandera: A Distant Watching Approach"</li> </ul>
Closure of the 9th European Summer University in Digital Humanities "Culture & Technology"
<p>Closure of the 9th European Summer University in Digital Humanities "Culture & Technology"</p>
Opening of the 9th European Summer University in Digital Humanities "Culture & Technology"
<p>Opening of the 9th European Summer University in Digital Humanities "Culture & Technology"</p>
Digital orthoimagery for fractional vegetation cover at site Alpha from Morgan et al Kuiseb River study
<p>Contains high-resolution digital orthoimagery (RGB and NIR) and derived products for site Alpha, from the following manuscript:</p> <p>Morgan et al. (in prep), Spatiotemporal analysis of vegetation cover change in a large ephemeral river: multi-sensor fusion of unmanned aerial vehicle (UAV) and Landsat imagery.</p>
Digitized patient level time to event data of overall survival
<p>This dataset contains digitized patient level time to event data for overall survival of patients with locally advanced and metastatic (stage IIIB/IV) Non-small cell lung cancer (NSCLC). The data can be used to recreate the original Kaplan-Meier survival curves that were published in randomized controlled trials, in order to perform secondary analysis on the survival data. In order to recreate a survival curve, you need two csv.files per trial arm that are in this <br> database: (1) starting with 'surv_', containing the individual patient level time to event data, and (2) starting with 'natrisk_', containing the corresponding numbers at risk table. For the methodology and r-code that can be used for this purpose we refer to article that is linked to this dataset. </p>
The Elusive Book, or the Digitization of the Materiality[-ies] of Books
<p>13<sup>th</sup> Annual Schoenberg Symposium on Manuscript Studies in the Digital Age: <em>invited</em> <em>presentation - online delivery, ‘The Elusive Book, </em><em>or the Digitization of the Materiality[-ies] of Books’</em> (18/11/2020)</p> <p>Abstract</p> <p>The digitization of books is generally understood as the capture of the page contents through photography and imaging. Not all features of books can be digitally acquired in this manner— we will refer to these as <em>untransferable</em> characteristics— and models and descriptive metadata are necessary steps to computerize important information about the structure and materiality of documents. Digitization, in fact, can do much more than reproducing books as texts to be read, and books are much more than flat sequences of pages: there is much information in books that has been largely ignored— so far. Among these, we find the physical form of books (e.g., bindings, the form and materials of its pages, inks, decorations, usage accretions, stains, and so on). While digitization tends to concentrate on the remediation of the content of books, we argue for an increased interest in the transmediation of the materiality of books. This digital representation and manipulation of an object’s materiality is achieved through a number of means, metadata designation being one of the most established processes to bring these <em>untransferable</em> features into the digital. Digital surrogates created in this manner have the potency to be more than mere replacements of the original objects. Instead, when the transformative nature of the digitization process is more fully harnessed, they can become digital cultural objects: digital objects that transcend the originals, work in synergy with them, and make them something more.</p> <p>Bio</p> <p>Alberto Campagnolo trained as a book conservator at the European Course for Conservators/Restorers of Book Materials (1998-2001) in Spoleto, Italy and has worked in that capacity in various institutions, amongst which the National Museum Wales, London Metropolitan Archives, St. Catherine’s Monastery (Egypt), and the Vatican Library. He studied Conservation of Library and Archive Materials (2001-2006) at Ca’ Foscari University Venice, Italy and then read for an MA in Digital Culture and Technology (2007-2009) at King’s College London. He pursued a PhD (2010-2015) on an <a href="http://ualresearchonline.arts.ac.uk/8749/">automated visualization of historical bookbinding structures</a> at the <a href="https://www.ligatus.org.uk/">Ligatus Research Centre</a> (University of the Arts, London). He is an adjunct professor of Digital Humanities at the University of Udine, Italy (2018-ongoing). Alberto has been collaborating (2013-ongoing) with Dot Porter (Schoenberg Institute for Manuscript Studies, University of Pennsylvania) on <a href="https://viscoll.org/">VisColl</a>, a modelling and visualization tool for the gathering structure of books in codex format. Since 2018 he has been an acting member of the <a href="https://iada-home.org/">IADA</a> board. He has been part of the Editorial board of the <a href="https://www.tandfonline.com/toc/yjpc20/current">Journal of Paper Conservation</a> since 2016, and he is now co-editor in-Chief with Aurélie Martin.</p>
A Digital Humanities Approach to Textual Emendations with a Special Focus on Ἰουδαίαν in Acts 2:9
<p>The original documents of almost all ancient writings have been lost, and the writings of the New Testament form no exception. Therefore, before any interpretation of a New Testament text, a researcher first must face the challenge of establishing its original wording by critically evaluating the differences in the existing manuscripts. The discipline of textual criticism provides criteria for systematic evaluation of such texts. Besides identified differences, there are texts where the different manuscripts do correspond, but where the content of the text puzzles the researcher. In these cases, some researchers assume a corruption of the text, which could have been caused by a variety of intentional and unintentional errors, and therefore emend the text by conjecture.<br> Any conjecture starts with an observation on the text, in which a critic is guided by some preunderstanding that leads to the detection of an oddity. After the detection of the textual problem, the critic needs to suggest an alternative that (1) fits the grammatical function of the disputed reading, (2) makes sense in the internal logic of the text, and (3) solves the assumed difficulties. Therefore, the credibility of a conjecture is restricted by grammar, semantics, and its historical, cultural, and geographical suitedness. Finally, the critic must also explain how the attested reading or readings could have originated from the proposed conjecture. Usually, a very early corruption during the transcription process is assumed, which could have been caused by palaeographic or phonetic confusion of letters.<br> This research proposes a method to estimate the probability of palaeographic confusion to explain the origination of conjectural emendations. Therefore, it introduces the confusion distance, a quantitative metric that indicates the relative proximity in orthography of alternative readings. This metric is based on the Levenshtein edit distance but is here expanded to account for the probability of confusion of a particular combination of (adjacent) letters and functionality has been added to evaluate three additional operations to mimic more sophisticated character confusion.<br> The resulting distances between the conjectured emendations and the manuscript readings are subsequently translated to a two-dimensional non-geographical space utilizing Multi-Dimensional Scaling and analyzed spatially to evaluate the probability of the originality of variant readings or textual emendations.<br> The remainder of the presentation will apply this method to the case of Ἰουδαίαν in Acts 2:9. Therefore, it will first present the issues which have challenged exegetes over time. Next, it will provide a short diachronic overview of the suggestions to overcome these challenges and finally it will approach the issue by testing whether reverse engineering might provide a suitable alternative to Ἰουδαίαν.<br> After presenting the case study its outcomes will be evaluated to assess the method’s viability to aid New Testament interpretation.</p> <p><br> van Altena, Vincent, Jan Krans, Henk Bakker, Balász Dukai, and Jantien Stoter. “Spatial Analysis of New Testament Textual Emendations Utilizing Confusion Distances.” OT 5.1 (2019): 44–65.<br> van Altena, Vincent, Jan Krans, Henk Bakker, and Jantien Stoter. “Ἰουδαίαν in Acts 2:9: A Diachronic Overview of Its Conjectured Emendations.” OT 6.1 (2020): 306–318.<br> van Altena, Vincent, Jan Krans, Henk Bakker, and Jantien Stoter. “Ἰουδαίαν in Acts 2:9: Reverse Engineering Textual Emendations.” OT 6.1 (2020): 378–391.</p>
Leveraging on Digital Signage Networks to Bring Connectivity to IoT Devices
<p>This dataset contains the open data related to the research paper:</p> <p><br /> J. David de Hoz, Jose Saldana, Julián Fernández-Navajas, José Ruiz-Mas, Rebeca Guerrero Rodríguez, Félix de Jesús Mar Luna, Raúl Iván Herrera González, "Leveraging on Digital Signage Networks to Bring Connectivity to IoT Devices," Telcon UNI 2015, Lima, Peru, Oct. 2015.</p> <p><br /> This work has been partly financed by CONACYT (PEI 682/2014); Servicios d TI de Durango S.A. de C.V.; Ateire S.A.C., and de ER H2020 Wi 5 project (Grant Agreement no: 644262). </p> <p><br /> The name of each of the files indicates the figure of the paper: for example, "figure_15.csv" includes the information used to generate the figure 15. In some cases, ".csv" and ".xlsx" files are provided, but they include the same information.</p> <p><br /> In the "measurements" folder, the results are provided, and also the scripts used to obtain them.</p>
CIS OCR Workshop v1.0: OCR and postcorrection of early printings for digital humanities
<p>The 2-day CIS OCR Workshop on "OCR and postcorrection of early printings for digital humanities" originally held at LMU, Munich 14/15 September 2015 (see http://www.cis.lmu.de/ocrworkshop).</p> <p>Release date: 2016-02-25</p> <p><br /> CIS OCR Workshop by Uwe Springmann, Florian Fink is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.</p>
Open Digital Science Study - Scenarios
<p>Narrative scenarios about envisaged future use of ODS exemplifying ODS semantics, implications, trends and thus providing the necessary level of concreteness for detailed discussions with experts and general public.</p> <p>ODS concept and vision refinement are pursued using scenarios of potential future ODS usage as a proxy. The scenarios assist in communicating the vision, explore future trends, discuss options for measuring ODS uptake and impact and generally stimulate the discussion with a broad community. </p> <p>The different aspectsof ODS are difficult to embrace in a single definition or description. We therefore propose to facilitate the ODS vision validation using future ODS scenarios as an intermediary conceptual step. These scenarios about the future of ODS help to communicate the ideas, discuss trends and their implications, understand issues and collect policy needs. Scenario-based exploratory techniques have proven useful for strategic forecasting of technical trends [Geschka & Hanenwald 13, Mieke 07, Lizaso et al. 04] and more recently for research and technology policy [Prem et al. 14, Prem 14]. </p> <p>Open online discussions (facilitated by study team members and supported by the imagery of future ODS scenarios) play a central element of the ODS methodology. </p> <p>The scenarios facilitate communication of different ODS vision aspects and the expert and open community assessment. </p>
Lipschitz quaternions in the range [−10, 10]^4, which do not induce bijective 3D digitized rotations
<p>The file contains Lipschitz quaternions in the range [−10, 10]^4, such that they do not induce bijective 3D digitized rotations. For a list of the Lipschitz quaternions from the range which do induce bijective 3D digitized rotations, please, see : https://doi.org/10.5281/zenodo.814552 </p> <p>It is a comma-separated values file format such that each line contains a different quaternion. The quaternions were certified by the algorithm described in:</p> <p>Pluta K., Romon P., Kenmochi Y., Passat N. (2016) Bijectivity Certification of 3D Digitized Rotations. In: Bac A., Mari JL. (eds) Computational Topology in Image Context. CTIC 2016. Lecture Notes in Computer Science, vol 9667. Springer, pp 30-41, doi:10.1007/978-3-319-39441-1_4</p>
Digitized Copies of the Zurich Overnight Visitor Logs ("Nachtzedel") after 1780
<div> <div>This dataset contains digital copies - image files and metadata - of the "Zürcher Nachtzedel" (overnight visitor logs = Fremdenliste, 1780 to 1784).</div> </div>
TEI-XML-Datenset der Tagebücher, Briefe, Dokumente, Forschungsbeiträge, Chronologieeinträge und Register der edition humboldt digital
<p>Das Datenset enthält alle edierten Texte (Tagebücher, Briefe und weitere Dokumente) sowie Paratexte (Forschungsbeiträge, Einträge der Chronologie zu Alexander von Humboldts Leben, Register und Glossar) der Version 11 der <a href="https://edition-humboldt.de">edition humboldt digital</a>, die am 4. Juni 2025 erschienen ist. Das Datenset enthält gegenüber der HTML-Version technische Fehlerkorrekturen, daher wird es als Version 11.0.1 veröffentlicht.</p> <p>Die Editionsrichtlinien stehen auf <a href="https://edition-humboldt.de/richtlinien/index.html">edition-humboldt.de</a> zur Vefügung. Das Datenmodell ist in drei verschiedene ODDs aufgeteilt (für edierte Texte, Registereinträge und Forschungsbeiträge). Dem Datenset liegen die drei RNG-Schemata bei, die ODD-Ursprungsdateien sind im GitHub-Repository <a href="https://github.com/telota/ediarum.AVHR.data-model/">ediarum.AVHR.data-model</a> zu finden. Beachten Sie bitte, dass es für das Pflanzenregister derzeit noch kein Schema gibt, da dieses aus dem Tagging automatisch erstellt wird.</p> <p>Weitere Hinweise zur digitalen Methodik finden sich in <a href="https://edition-humboldt.de/H0016212">Dumont 2024</a> und zum Editionsvorhaben im Allgemeinen in <a href="https://doi.org/10.25365/wdr-01-03-02">Kraft/Dumont 2020</a>.</p> <p>Dieses Datenset ist auch auf <a href="https://github.com/telota/edition-humboldt-digital">GitHub</a> zugänglich.</p>
Dataset for Review and Agenda of Digital Forensics Education and Training
<p>This repository has four .bib files encompassing 49 primary study entries, and one .CSV file with data extracted from such studies.</p> <p><strong>The authors gratefully acknowledge the support of the Technology in Forensic Sciences project (Instituto Nacional de Ciência e Tecnologia em Ciências Forenses - \textbf{INCT Forense}, Grant \#465450/2014-8) for funding this work. </strong></p> <p><strong>We also thank the \textbf{Araucária Funding Agency of Paraná} for their financial and institutional support, as well as \textbf{NAPI - Public Security and Forensic Science} for research funding (Grant \#22.632.926-9). </strong></p> <p><strong>This work is also supported by CAPES Pro-Defesa (Grant \# V3084362P).</strong></p> <p><strong>Avelino Zorzo thanks \textbf{CNPq/Brazil} Grant \#306250/2021-7. </strong></p> <p><strong>Edson OliveiraJr thanks \textbf{CNPq/Brazil} Grant \#311503/2022-5. </strong></p>
Digital Elevation Models of Hunga Volcano, Tonga, from the MAX2201 voyage, July-August 2022
<p>This dataset contains digital elevation models (DEM) of the Hunga Volcano complex, These DEM are from the MAX2201 voyage of the USV <i>Maxlimer</i> which surveyed the volcano July-August 2022.</p><p>Hunga Volcano is a volcanic complex near the island of Tongatapu in the Kingdom of Tonga. The volcano rises from ~2,500 m depth, a caldera at its summit, and two islands, Hunga Tonga and Hunga-Ha'apai, at the on the rim of the caldera. An eruption during December 2014-January 2015 was centered between the islands and combined them into one larger structure named Hunga Tonga – Hunga Ha'apai (HTHH). HTHH erupted violently on 15th January 2022, sending large clouds of ash into the atmosphere, triggering a tsunami, and reducing the size of the islands of Hunga Tonga and Hunga Ha'apai. </p><p>As a result of this event, the NIWA-Nippon Foundation Tonga Eruption Seabed Mapping Project (<strong>TESMaP</strong>) is a multidisciplinary research plan involving geological, oceanographic and biological studies that centered around three objectives: </p><ol><li>To determine the impacts of volcanic ash on ocean productivity, species composition, and biogeochemical cycling in the water column.</li><li>To determine the immediate nature and extent of the impact of ash fall/turbidity flows on deep-sea sediments and benthic ecosystems.</li><li>To determine the recovery potential of the deep-sea ecosystem.</li></ol><p>This project involved two survey voyages of the volcano and its surrounding waters. The first was carried out from <i>RV Tangaroa </i>(TAN2206) in April and May 2022 (Mackay et al., 2022) on the flanks of Hunga volcano and its surrounds; and the second was carried out over the summit of Hunga volcano by the <i>USV Maxlimer</i> (MAX2201) in August 2022.</p><p>TESMaP was funded from a combination of sources including The Nippon Foundation, Japan; the Natural Environmental Research Council, UK, Japan Agency for Marine Earth Science and Technology, the Tangaroa Reference Group (TRG) for ship time and the NIWA Oceans Centre. Support was given by The Nippon Foundation Seabed 2030 project and by GEBCO Alumni.</p>
Database for article: "Privacy Perceptions in Digital Games: A Study with Information Technology (IT) Undergraduates"
<p>This database is an addendum to the article "<strong>Privacy Perceptions in Digital Games: A Study with Information Technology (IT) Undergraduates</strong>" to provide information regarding the anonymously collected data.</p><p><strong>Abstract of the article</strong></p><p>This study explores the perceptions and practices of undergraduates in Information Technology (IT) regarding privacy issues in digital games. This topic becomes relevant in the current scenario where artificial intelligence (AI) is increasingly integrated into digital games, providing an enhanced experience for players. However, this integration poses security and privacy challenges, the understanding of which is crucial for both players and developers.<br>The primary objective of this research is to comprehend the participants' perceptions and understandings of privacy in digital games. We employed a qualitative and quantitative methodology to address our research inquiries. Through an online form of data collection, we obtained 61 responses. Among the obtained information, we observed that 40\% of the students are interested in pursuing a career in game development, and 49.18% would consider this possibility. Noteworthy among the identified issues is the necessity for companies to devise more effective means of communicating their privacy policies to players/users, adapting the language to their target audience. Participants reported attacks related to online multiplayer games and expressed concerns about the security of personal data.</p>
Data availability. Multivariate data analysis. Validation of an instrument for the evaluation of teaching digital competence.
<p><strong>Data availability</strong>. Multivariate data analysis. Validation of an instrument for the evaluation of teaching digital competence. </p><ul><li>SPSS DATA. Multivariate data analysis. Validation of an instrument for the evaluation of teaching digital competence (spss data.sav). The data presented in this file contains the data imported wiyh the Software IBM SPSS Statistics, versión 28.0.1.1(15).</li><li>EXCEL DATA. Multivariate data analysis. Validation of an instrument for the evaluation of teaching digital competence (spss data.sav). The data presented in this file contains the data imported wiyh the Software IBM SPSS Statistics, versión 28.0.1.1(15).</li><li>Data of Project factorial.xlsx (The data presented in this file contains the results of the statistical analysis carried out with the Software Microsoft Excel).</li><li>Data Project reliability.xlsx (The data presented in this file contains the results of the statistical analysis carried out with the Software Microsoft Excel).</li><li>FIGURES. Multivariate data analysis. Validation of an instrument for the evaluation of teaching digital competence (Figure 1.jpeg, Figure 2.jpeg, Figure 3 and Figure 4.jpeg).</li></ul>
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.