The slides of my talk with Jacques-Olivier Lachaud « Introduction to Digital Geometry » (Discrete Geometry and Mathematical Morphology 2024) are available https://t.co/ho9ur9o5Hl
Generic discrete differential estimators on polygonal meshes from [de Goes, Butts, Desbrun, @siggraph 2020] are now available in @libdgtal 🎉. Great for geometry processing of primal/dual or regularized digital surfaces (aka boundary of voxel objects) https://t.co/QJNdwpwiQU
In case you missed it, there was a course on Digital Geometry and @libdgtal at @GeometryProcess 2021 Graduate School (https://t.co/lRLISEtk4c). Slides, video, codes and more: https://t.co/kxpPG1LHzQ
Happening now! Learning about @libdgtal, a C++ library for geometry tools that specialize in processing voxel data! This won the SGP software award in 2016!
If you want to learn more about digital/voxel geometry processing (among many other cool stuff), join the Graduate School of @GeometryProcess 2021 (https://t.co/bLqxXWrmB1)
Super proud of the release 1.2 of @libdgtal 🎉🎉
TL;DR: bugfixes, new stuff, and a new partial python binding! 🚀
blog post: https://t.co/6fBBAF5FBv
Changelog: https://t.co/d3mkRkxZtY
A while ago, I wrote a lecture note (+code) on the exact, separable, multithread, linear in time distance field / Voronoi map computation algorithm on grids. https://t.co/oddoTo7GuZ (for extensions, cf @libdgtal, https://t.co/29D3GM2N71) #DigitalGeometry