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Geometry-Aware Diffusion Models for Multiview Scene Inpainting

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arxiv 2502.13335 v2 pith:A6GZUSA4 submitted 2025-02-18 cs.CV

Geometry-Aware Diffusion Models for Multiview Scene Inpainting

classification cs.CV
keywords inpaintingmethodsimageimagesacrossapproachblurrycaptured
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this paper, we focus on 3D scene inpainting, where parts of an input image set, captured from different viewpoints, are masked out. The main challenge lies in generating plausible image completions that are geometrically consistent across views. Most recent work addresses this challenge by combining generative models with a 3D radiance field to fuse information across a relatively dense set of viewpoints. However, a major drawback of these methods is that they often produce blurry images due to the fusion of inconsistent cross-view images. To avoid blurry inpaintings, we eschew the use of an explicit or implicit radiance field altogether and instead fuse cross-view information in a learned space. In particular, we introduce a geometry-aware conditional generative model, capable of multi-view consistent inpainting using reference-based geometric and appearance cues. A key advantage of our approach over existing methods is its unique ability to inpaint masked scenes with a limited number of views (i.e., few-view inpainting), whereas previous methods require relatively large image sets for their 3D model fitting step. Empirically, we evaluate and compare our scene-centric inpainting method on two datasets, SPIn-NeRF and NeRFiller, which contain images captured at narrow and wide baselines, respectively, and achieve state-of-the-art 3D inpainting performance on both. Additionally, we demonstrate the efficacy of our approach in the few-view setting compared to prior methods.

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Cited by 2 Pith papers

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

  1. GENA3D: Generative Amodal 3D Modeling by Bridging 2D Priors and 3D Coherence

    cs.CV 2025-11 conditional novelty 5.0

    A generative model reconstructs complete, occlusion-free 3D objects from sparse unposed views by combining 2D amodal inpainting with stereo-point-cloud-conditioned cross-attention.

  2. SplatFill: 3D Scene Inpainting via Depth-Guided Gaussian Splatting

    cs.CV 2025-09 conditional novelty 5.0

    A depth-guided Gaussian Splatting inpainting method with soft depth clustering and selective guided refinement achieves modest quality gains and 24.5% faster training over GScream on SPIn-NeRF.