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    Du er her:Home » From pathology to geosciences: The evolution of Avatara-p
    Olje og gass

    From pathology to geosciences: The evolution of Avatara-p

    Av Redaksjonenmai 3, 2023
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    The NPD has digitized tens of thousands of palynological slides through the Avatara-p project. The public archive is the first of its kind, making valuable information available to the industry and academia.

    Detail of a digital palynology slide. Photo: NPD

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    Nominated for The Prize

    This project has been nominated for the Exploration Innovation Prize 2023.

    Read more about the prize and be sure to vote for your favourite nominee by May 10th.

    Earlier this year, the Norwegian Petroleum Directorate (NPD) announced that more than 30 000 digital palynological slides from 284 released wells have so far been made available on the Norwegian National Data Repository for Petroleum Data DISKOS.

    To understand why 57 terabytes’ (and counting) worth of pictures of microfossils matter to the petroleum industry, we must first understand what microfossils can tell us.

    The layers upon layers of sediments on the Norwegian continental shelf (NCS) are packed with the remains of microorganisms that lived millions of years ago.

    Resistant to almost anything diagenesis can throw at them, fossil microplankton, pollen, and spores are sometimes more abundant and better preserved than their descendants deposited on the seabed today.

    The microfossils’ abundance in the sedimentary record and their sensitivity to changes in their environment, make them excellent for determining a sediment’s age of deposition and its environment of deposition.

    Microfossils are thus a major part of the biostratigraphic analysis in petroleum exploration.

    It was NPD senior geologist Robert Williams that first came up with the idea that the glass slides should be digitized. The reasons: Greatly improving the availability of the palynological data, making sure they wouldn’t get destroyed or lost during shipment, and making them available for future machine learning analysis.

    He was prompted to consider which other professional groups are frontrunners in recognizing and interpreting images. In 2018, Williams found his way to a congress within medicine (digital pathology).

    The pathologists were improving their diagnoses of diseased tissue by using digital slide analysis and machine learning. Williams quickly realized that this way of working was easily transferable to the field of palynology.

    He reached out to experts in the field to explore whether their methods could be applied to his images and help him diagnose and interpret them more efficiently.

    Geologist Robert W. Williams identifies and annotates fossil microplankton on a digital palynology slide. Behind him is the machine that digitizes the Norwegian Petroleum Directorate’s vast archive of microplankton, pollen, and spores from exploration and production wells on the continental shelf. Photo: Arne Bjørøen / NPD

    The NPD digitalization project Avatara-p was born. It is the world’s first public archive of digital palynological preparations that shed light on Norway’s geological, geographical, and environmental history.

    The project is still ongoing, and every week, new digital palynological slides are added to the DISKOS database, helping its members to better correlate and understand what kind of sediments they are dealing with in their wells and prospects. Follow-up industry digitalization projects based on palynological data sets recently presented impressive results by Equinor and APT at the DIGEX 2023 conference.

    In this article on GEO ExPro, Williams tells the story of how scanning technology initially applied to aerospace and pathology has now made its way to geosciences.

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