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Heat Kernel Textures: the Geodesic Gaussians That Do Not Splat

Simone Foti, Caner Korkmaz, Stefanos Zafeiriou, Tolga Birdal

Latestcs.CLcs.LGcs.AIcs.CV
arXiv ID
2609.07557 v1
Category
Submitted
2026-09-07

Abstract

3D Gaussian Splatting has recently revolutionised novel view synthesis as well as many other 3D vision methods and applications. Drawing inspiration from this representation, we now rethink textures to overcome the main issues of UV mapping while considerably lowering their memory footprint. Heat Kernel Textures (HKTex) eliminate UV unwrapping as well as their persistent issues of wasted UV space, seams, distortions, vertex-duplication, and varying resolution. Grounded in discrete Riemannian geometry and intrinsically defined on any manifold surface discretised as a triangular mesh, HKTex uses anisotropic heat kernels as geodesic equivalents to Gaussians. Like our kernels, also the optimisation of their position and the adaptive densification strategies were redefined to operate on the surface of the object to be textureised. Our novel representation is also fully integrated with a physically based renderer and can be optimised either from existing textures or multi-view images. Our project page and code are available at circle-group.github.io/research/HeatKernelTextures.

Comment: ECCV 2026 (Long Oral)

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