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TextureDreamer: Image-guided Texture Synthesis through Geometry-aware Diffusion

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arxiv 2401.09416 v1 pith:LKIQBHSU submitted 2024-01-17 cs.CV cs.GR

classification cs.CVcs.GR
keywords texturetexturedreamerarbitraryimagessynthesistexturestransfercategories
verification ladder T0 review T1 audit T2 compute T3 formal
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We present TextureDreamer, a novel image-guided texture synthesis method to transfer relightable textures from a small number of input images (3 to 5) to target 3D shapes across arbitrary categories. Texture creation is a pivotal challenge in vision and graphics. Industrial companies hire experienced artists to manually craft textures for 3D assets. Classical methods require densely sampled views and accurately aligned geometry, while learning-based methods are confined to category-specific shapes within the dataset. In contrast, TextureDreamer can transfer highly detailed, intricate textures from real-world environments to arbitrary objects with only a few casually captured images, potentially significantly democratizing texture creation. Our core idea, personalized geometry-aware score distillation (PGSD), draws inspiration from recent advancements in diffuse models, including personalized modeling for texture information extraction, variational score distillation for detailed appearance synthesis, and explicit geometry guidance with ControlNet. Our integration and several essential modifications substantially improve the texture quality. Experiments on real images spanning different categories show that TextureDreamer can successfully transfer highly realistic, semantic meaningful texture to arbitrary objects, surpassing the visual quality of previous state-of-the-art.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. VideoMat: Extracting PBR Materials from Video Diffusion Models

    cs.GR 2025-06 conditional novelty 7.0 of 10

    VideoMat uses a finetuned video diffusion model, intrinsic decomposition, and differentiable path tracing to extract PBR material maps for known 3D geometry from text or image prompts.

  2. MARBLE: Material Recomposition and Blending in CLIP-Space

    cs.CV 2025-06 conditional novelty 6.0 of 10

    MARBLE performs material blending and parametric material-attribute control by manipulating CLIP image embeddings and injecting them into a specific U-Net block of a pre-trained diffusion model.

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