CVPR 20260 citations

LaS-Comp: Zero-shot 3D Completion with Latent-Spatial Consistency

Weilong Yan, Haipeng Li, Hao Xu, Nianjin Ye, Yihao Ai, Shuaicheng Liu, Jingyu Hu

Abstract

This paper introduces LaS-Comp, a zero-shot and category-agnostic approach that leverages the rich geometric priors of 3D foundation models to enable 3D shape completion across diverse types of partial observations. Our contributions are threefold: First, LaS-Comp harnesses these powerful generative priors for completion through a complementary two-stage design: (i) an explicit replacement stage that preserves the partial observation geometry to ensure faithful completion; and (ii) an implicit refinement stage ensures seamless boundaries between the observed and synthesized regions. Second, our framework is training-free and compatible with different 3D foundation models. Third, we introduce Omni-Comp, a comprehensive benchmark combining real-world and synthetic data with diverse and challenging partial patterns, enabling a more thorough and realistic evaluation. Both quantitative and qualitative experiments demonstrate that our approach outperforms previous state-of-the-art approaches. Code and data will be released upon acceptance.

BibTeX
@inproceedings{cvpr2026_lascompzeroshot3,
  title = {LaS-Comp: Zero-shot 3D Completion with Latent-Spatial Consistency},
  author = {Weilong Yan and Haipeng Li and Hao Xu and Nianjin Ye and Yihao Ai and Shuaicheng Liu and Jingyu Hu},
  booktitle = {CVPR 2026},
  year = {2026}
}
LaS-Comp: Zero-shot 3D Completion with Latent-Spatial Consistency · CVPR 2026