MeshFIM enables local low-poly mesh editing by autoregressively filling target regions conditioned on context, using boundary markers, positional embeddings, and a gated geometry encoder to enforce attachment, topology, and region limits.
arXiv preprint arXiv:2005.01819 , year=
3 Pith papers cite this work. Polarity classification is still indexing.
years
2026 3representative citing papers
SubdivAR reformulates neural mesh subdivision as autoregressive next-scale vertex-offset prediction, reporting 18.8% lower Hausdorff and 14.2% lower Chamfer distance than NMR on closed meshes.
Blended Chart Surfaces create a compact explicit globally smooth surface by optimizing per-vertex polynomial maps on a proxy mesh and blending them via one-ring coordinates.
citing papers explorer
-
MeshFIM: Local Low-Poly Mesh Editing via Fill-in-the-Middle Autoregressive Generation
MeshFIM enables local low-poly mesh editing by autoregressively filling target regions conditioned on context, using boundary markers, positional embeddings, and a gated geometry encoder to enforce attachment, topology, and region limits.
-
SubdivAR: Autoregressive Next-Scale Prediction for Neural Mesh Subdivision
SubdivAR reformulates neural mesh subdivision as autoregressive next-scale vertex-offset prediction, reporting 18.8% lower Hausdorff and 14.2% lower Chamfer distance than NMR on closed meshes.
-
Blended Chart Surfaces: A Seamless Explicit Representation for Smooth Surface Fitting
Blended Chart Surfaces create a compact explicit globally smooth surface by optimizing per-vertex polynomial maps on a proxy mesh and blending them via one-ring coordinates.