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Diffusion 3D Features (Diff3F): Decorating Untextured Shapes with Distilled Semantic Features

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arxiv 2311.17024 v2 pith:UHJ6E6U7 submitted 2023-11-28 cs.CV cs.GR

classification cs.CVcs.GR
keywords featuresshapesinputimagediff3fdiffusionproducesemantic
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We present Diff3F as a simple, robust, and class-agnostic feature descriptor that can be computed for untextured input shapes (meshes or point clouds). Our method distills diffusion features from image foundational models onto input shapes. Specifically, we use the input shapes to produce depth and normal maps as guidance for conditional image synthesis. In the process, we produce (diffusion) features in 2D that we subsequently lift and aggregate on the original surface. Our key observation is that even if the conditional image generations obtained from multi-view rendering of the input shapes are inconsistent, the associated image features are robust and, hence, can be directly aggregated across views. This produces semantic features on the input shapes, without requiring additional data or training. We perform extensive experiments on multiple benchmarks (SHREC'19, SHREC'20, FAUST, and TOSCA) and demonstrate that our features, being semantic instead of geometric, produce reliable correspondence across both isometric and non-isometrically related shape families. Code is available via the project page at https://diff3f.github.io/

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  1. DenseMatcher: Learning 3D Semantic Correspondence for Category-Level Manipulation from a Single Demo

    cs.RO 2024-12 conditional novelty 6.0 of 10

    DenseMatcher combines 2D image features with a 3D neural network and functional maps to compute dense semantic correspondences between textured 3D objects, enabling single-demo cross-category robot manipulation.

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