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The Importance of Open Access to Chronological Information

The IntChron Initiative

Bibliographic Data

ID9242514
AuthorsChristopher B Ramsey (0000-0002-8641-9309), Martijn Blaauw (0000-0002-5680-1515), Rebecca Kearney (0000-0001-8997-6808), Richard A Staff (0000-0002-8634-014X)
Year2019
Volume61
Issue5
Pages1121-1131
Publication date2019-10-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueRadiocarbon (JOURNAL)
Journal identifiersISSN: 0033-8222 • E-ISSN: 1945-5755
PublisherCambridge University Press (CUP) (PUBLISHER)
DOI10.1017/rdc.2019.21
OpenAlexW2936682254
LanguageEN
Citations received8
References cited11

The development of chronologies relies on integrating information from a number of different sources. In addition to direct dating evidence, such as radiocarbon dates, researchers will have contextual information which might be an environmental sequence or the context in an archaeological site. This information can be combined through Bayesian or other types of age-model. Once a chronology has been developed, this information can be used to estimate, for example, chronological uncertainties, rates of change, or the age of material which has not been directly dated. Dealing with the information associated with chronology building is complicated and re-evaluation of chronologies often requires structured information which is hard to access. Although there are many databases with primary dating information, these often do not contain all of the information needed for a chronology. The Chronological Query Language (CQL) developed for OxCal was intended to be a convenient way of pulling such information together for Bayesian analysis. However, even this does not include much of the associated information required for reusing data in other analyses. The IntChron initiative builds on the framework set up for the INTIMATE (Integrating Ice core, Marine and Terrestrial Records) chronological database (Bronk Ramsey et al. 2014) and is primarily an information exchange format and data visualization tool which enables users to pull together the types of information needed for chronological analysis. It is intended for use with multiple dating methodologies and while it will be integrated with OxCal, is intended to be an open format suitable for use with other software tools. The file format is JSON which is easily readable in software such as R, Python and MatLab. IntChron is not primarily intended to be a data depository but rather an index of sites where information is stored in the relevant format. As an initial step, databases of radiocarbon dates from the Oxford Radiocarbon Accelerator Unit (including those for the NERC radiocarbon facility), the RESET tephra database, the INTIMATE chronological database and regional radiocarbon databases for Egypt and Southern Africa are all linked. The intention is that users of OxCal will also be able to make published data accessible to others and to store working data, visible only to the user, to be used with the associated analysis tools. The IntChron site allows data from third party sources to be accessed through a representational state transfer (REST) application programming interface (API) in a number of different formats (JSON, csv, txt, oxcal) and associated bibliographic information in BibTeX format. The aim of the IntChron initiative is to make it easy for users to provide data (in the single JSON format with limited minimum requirements) as well as to access data and tools, while promoting robust chronologies including realistic estimates of uncertainties. It is hoped that this will help to bring the chronological research communities to a point where data access is as easy as it is in some other fields. This is particularly important for Early Career Researchers and for those seeking to use large datasets in novel ways

Archaeology · Chronology · Data science · Database · Geography · Information retrieval · Radiocarbon dating · Archaeology and ancient environmental studies · Computer Science · Geology and Paleoclimatology Research · Image Processing and 3D Reconstruction

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    Open Access•E Hallinan•Journal of Open Archaeology Data•2026

  • C-based absolute chronology of the Malice culture reassessed

    Open Access•Tomasz J Chmielewski, Tomasz Chmielewski et al.•Sprawozdania Archeologiczne•2024

  • Radiocarbon, Big Data and International Heritage

    Open Access•Griffith, Lisa Brown et al.•Radiocarbon•2024

  • Latin American radiocarbon in web databases and datasets

    Open Access•A Alcántara, Igor Pedroza•Radiocarbon•2025

  • A View From the Countryside

    Open Access•Xiaojian Li, Wei Liu et al.•Radiocarbon•2023

  • Development of the Intcal Database

    Open Access•Christopher B Ramsey, Florian Adolphi et al.•Radiocarbon•2024

  • The IntCal20 Northern Hemisphere Radiocarbon Age Calibration Curve (0–55 cal kBP)

    Open Access•Paula J Reimer, William E N Austin et al.•Radiocarbon•2020

  • Magdalenian and Epimagdalenian chronology and palaeoenvironments at Kůlna Cave, Moravia, Czech Republic

    Open Access•Hazel Reade, Sonja B Grimm et al.•Archaeological and Anthropological…•2021

  • Deposition models for chronological records

    Open Access•Christopher B Ramsey•Quaternary Science Reviews•2008

  • Flexible paleoclimate age-depth models using an autoregressive gamma process

    Open Access•Martijn Blaauw, Maarten Blaauw et al.•Bayesian Analysis•2011

  • Recent and Planned Developments of the Program OxCal

    Open Access•Christopher B Ramsey, Sharen Lee•Radiocarbon•2013

  • Conventions for Reporting Radiocarbon Determinations

    Open Access•Andrew R Millard•Radiocarbon•2014

  • Bayesian Analysis of Radiocarbon Dates

    Open Access•Christopher B Ramsey•Radiocarbon•2009

  • Discussion Reporting of 14 C Data

    Open Access•Minze Stuiver, Henry A Polach•Radiocarbon•1977

  • An archaeological radiocarbon database for southern Africa

    Open Access•Emma Loftus, Peter Mitchell et al.•Antiquity•2019

Unique citing works8
Citations per year1,33
Citation span2020 - 2026 (7)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 8
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