vesuvius-challenge
Here are 19 public repositories matching this topic...
Winning Solution for Vesuvius Challenge First Title. Custom MiniUNETR 3D architecture for ink detection in carbonized scrolls.
-
Updated
Nov 23, 2025 - Python
Unveiling the secrets of an ancient library buried by Mount Vesuvius, this Kaggle competition, supported by the Vesuvius Challenge organization, tasked participants with detecting ink from 3D X-ray scans of charred scrolls preserved in a Roman villa in Herculaneum.
-
Updated
Feb 18, 2024 - Jupyter Notebook
Extended implementation of the Vesuvius Challenge 2023 Grand Prize winner. This project features extra functionality compared to the original ink detection script, giving users fine control over the layers they perform inference on.
-
Updated
Jan 3, 2025 - Python
3 Fragments 1 Hour >94% F1
-
Updated
Apr 27, 2026
Agent-assisted open-source toolkit for detecting and reviewing suspicious regions in reconstructed papyrus surfaces
-
Updated
Aug 1, 2026 - Python
Vesuvius Challenge - Surface Detection (Kaggle) · 🥈 Silver Medal · nnUNetv2 + MONAI 3D-SegM baselines
-
Updated
Jul 21, 2026 - Jupyter Notebook
Vesuvius challenge topological and geometric analysis of scrolls and fragments
-
Updated
Apr 21, 2026 - Jupyter Notebook
Machine learning pipeline for the Vesuvius Challenge an open research effort to read carbonised Herculaneum scrolls without unrolling them. Uses PyTorch convolutional models on 3D X-ray micro-CT data to segment ink signatures from charred papyrus, contributing to the recovery of ancient texts
-
Updated
Jul 1, 2026 - Jupyter Notebook
3D surface segmentation of ancient Herculaneum papyrus scrolls from micro-CT scans. Dual-pipeline architecture: V1 (CE+Dice, clDice) and V2 (Focal Loss, Deep Supervision, Skeleton Recall). Built for the Vesuvius Challenge $200K Kaggle competition. CC BY-NC 4.0.
-
Updated
May 22, 2026 - Python
ONNX C/C++ Runtime to detect ink in Vesuvius scrolls
-
Updated
Apr 14, 2024 - C++
Direct surface detection from raw CT sinogram (projection) data for Herculaneum papyrus scrolls, bypassing the traditional reconstruct-then-segment pipeline. Explores whether discriminative signal lost during filtered back-projection can improve detection of tightly compressed, low-contrast papyrus layers. Built for the Vesuvius Challenge.
-
Updated
Jul 4, 2026 - Python
Optimize segmentation for Vesuvius Project
-
Updated
Apr 24, 2025 - Python
Certified topology auditing and transverse-clean tifxyz outputs for a five-scroll corpus. Report-only by default; finds where a traced surface passes through itself.
-
Updated
Aug 2, 2026 - Python
Calibration benchmark for winding constraint generators, sealed criteria, human-annotation ground truth
-
Updated
Aug 1, 2026 - Python
Trace-quality reports for Vesuvius Challenge scroll segments — flags likely segmentation errors from an ink-detection prediction (CPU-only).
-
Updated
Jun 12, 2026 - Python
SUBIT-INK replaces the standard binary ink classifier with a four-valued Belnap bilattice, enabling the model to express epistemic states beyond a simple yes/no decision.
-
Updated
Jul 6, 2026 - Jupyter Notebook
Registered human ground-truth ink evaluation for the open Vesuvius Challenge SOTA scroll data
-
Updated
Jul 31, 2026 - Python
Label-free local layer-separability diagnostics for Vesuvius Challenge CT volumes
-
Updated
Jul 27, 2026 - Python
Improve this page
Add a description, image, and links to the vesuvius-challenge topic page so that developers can more easily learn about it.
Add this topic to your repo
To associate your repository with the vesuvius-challenge topic, visit your repo's landing page and select "manage topics."