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[Unlocking the Past: How AI and Computer Science are Deciphering Ancient Scrolls]-[Ep. 11: How a Computer Scientist Uses AI to Read Lost Literature]

NVIDIA AI Podcast · B2 · 2017-02-28

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📋 Summary

Unlocking the Past: The Convergence of AI and Archaeology

In a fascinating episode of NVIDIA’s AI Podcast, Dr. Brent Seales, chair of the University of Kentucky’s Computer Science Department, discusses his groundbreaking work in applying artificial intelligence and advanced computational methods to reveal the contents of ancient, unreadable scrolls. Often described as the "Indiana Jones of the computer world," Seales explains how his background in digital libraries evolved into a pioneering mission to read the "unreadable."

From Digital Libraries to Antiquities

Seales’ journey began in the 1990s with the digitization of libraries. He quickly realized that the most valuable historical artifacts are often the most fragile. "I discovered in building digital libraries... that some things are actually really hard to make digital," he notes, explaining that many items are too damaged to even be photographed. This challenge forced him to move beyond standard digital photography and look toward non-invasive imaging technologies, specifically computed tomography (CT scanning), to examine the internal structures of artifacts without causing further physical degradation.

The Herculaneum Challenge: Virtual Unrolling

One of the most significant projects Seales discusses involves the Herculaneum scrolls—carbonized papyri buried by the eruption of Mount Vesuvius in 79 CE. These artifacts, which Seales describes as resembling "charcoal briquettes," are incredibly "friable," meaning they would shatter like glass if handled improperly.

To address this, Seales employs a technique often referred to as "virtual unrolling." Because the scrolls are three-dimensional structures, the process involves:

  1. Tomographic Imaging: Using X-rays to capture the internal geometry of the scroll.
  2. 3D Computer Vision: Recognizing the internal layers, which Seales likens to "potato chips" that must be "flattened and then put together like a jigsaw puzzle."
  3. Machine Learning Algorithms: Training a supervised network to follow these delicate layers through the volume, distinguishing between the papyrus surface and the surrounding void.

The Role of AI in Detecting Subtle Ink

Beyond structural reconstruction, the most difficult task is identifying the ink. Seales explains that the effect of ancient ink in an X-ray is "much more subtle than anything else." To solve this, his team uses another layer of machine learning to "amplify what ink probably looks like inside that volume." By treating the writing as a secondary, subtle signal within the fibers of the papyrus, the algorithm can successfully isolate characters that are invisible to the naked eye.

Historical Significance and Future Potential

Seales emphasizes that this work is not merely a technical exercise but a duty to humanity. The Herculaneum library is the only one of its kind to survive from antiquity, and with hundreds of intact scrolls awaiting analysis, the potential for historical discovery is immense. Reflecting on his career, Seales notes that his work on the Dead Sea Scrolls was a "pinnacle" moment, as it bridged his personal interests in history and biblical archaeology with his professional expertise in computer science.

As AI continues to advance, the techniques developed by Seales—specifically in making tomographic evidence more sensitive and identifying complex structures within massive data sets—are having a ripple effect, even contributing to fields like tumor detection in medicine. By marrying modern machine learning with the remnants of the ancient world, Seales is effectively turning the impossible into a readable reality, ensuring that the lost voices of history can finally be heard.

🎯Key Sentences

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That's what got me started
2
it's never simple.
3
as simple as that
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we started narrowing that gap
5
straightforward business
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📝Key Phrases

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narrow the gap
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bring to bear
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fall into one's wheelhouse
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proof of concept
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in situ
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📖 Transcript

Thank you. Welcome to NVIDIA's AI podcast.
Today, we're going to talk about archaeology for computer science.
And we're going to do it with the guy who's been described as somebody who can read the unreadable, the Indiana Jones of... of the computer world.
And he is the chair of the University of Kentucky Computer Science Department and a professor there, Brent Seals.
Brent, welcome. Thanks so much. It's great to be here.
So what you have been doing, and this is fascinating, has been applying artificial intelligence to the task of reading English. ancient scrolls.

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