WildSeg3D: Segment Any 3D Objects in the Wild from 2D Images
Yansong Guo, Jie Hu, Yansong Qu, Liujuan Cao
Abstract
Recent advances in intuitive 3D segmentation from 2D images have demonstrated impressive performance. However, current models typically require extensive scene-specific training to accurately reconstruct and segment objects, which limits their applicability in real-time scenarios. In this paper, we introduce WildSeg3D, an efficient approach that enables the segmentation of arbitrary 3D objects across diverse environments using a feed-forward mechanism. A key challenge of this feed-forward approach lies in the accumulation of 3D alignment errors across multiple views, which can lead to inaccurate 3D segmentation results. To address this issue, we propose Dynamic Global Aligning (DGA), a technique that improves the accuracy of global multi-view alignment by focusing on difficult-to-match 3D points across images, using a dynamic adjustment function. Additionally, for real-time intuitive segmentation, we introduce Multi-view Group Mapping (MGM), a method that utilizes an object mask cache to integrate multi-view segmentations and respond rapidly to user prompts. WildSeg3D demonstrates robust generalization across arbitrary scenes, thereby eliminating the need for scene-specific training. Specifically, WildSeg3D not only attains the accuracy of state-of-the-art (SOTA) methods but also achieves a speedup compared to existing SOTA models. Code will be released at https://github.com/Ethan16162/WildSeg3D.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 7f866ae4-4389-4f0c-bd90-a3a2817287b2Cited by top-tier papers5
- PE3R: Perception-Efficient 3D ReconstructionJie Hu, Shizun Wang, Xinchao WangCVPR 2026 · 9 citations
- XSpecMesh: Quality-Preserving Auto-Regressive Mesh Generation Acceleration via Multi-Head Speculative DecodingDian Chen, Yansong Qu, Xinyang Li, Ming Li et al.ICML 2026 · 5 citations
- Seg-Wild: Interactive Segmentation based on 3D Gaussian Splatting for Unconstrained Image CollectionsYongtang Bao, Chengjie Tang, Yuze Wang, Haojie LiACM MM 2025 · 2 citations
- Taking Language Embedded 3D Gaussian Splatting into the WildYuze Wang, Junyi Wang, Yue QiIEEE VR 2026
- AnomalyPainter: Vision-Language-Diffusion Synergy for Realistic and Diverse Unseen Industrial Anomaly SynthesisZhangyu Lai, Yilin Lu, Xinyang Li, Jianghang Lin et al.AAAI 2026
Builds on36
- Learning Transferable Visual Models From Natural Language SupervisionAlec Radford, Jong Wook Kim, Chris Hallacy, Aditya Ramesh et al.ICML 2021 · 47,906 citations
- Segment AnythingAlexander Kirillov, Eric Mintun, Nikhila Ravi, Hanzi Mao et al.ICCV 2023 · 13,211 citations
- Emerging Properties in Self-Supervised Vision TransformersMathilde Caron, Hugo Touvron, Ishan Misra, Hervé Jégou et al.ICCV 2021 · 8,921 citations
- 3D Gaussian Splatting for Real-Time Radiance Field RenderingBernhard Kerbl, Georgios Kopanas, Thomas Leimkühler, George DrettakisSIGGRAPH 2023 · 5,687 citations
- NeuS: Learning Neural Implicit Surfaces by Volume Rendering for Multi-view ReconstructionPeng Wang, Lingjie Liu, Yuan Liu, Christian Theobalt et al.NeurIPS 2021 · 2,500 citations
Related papers
- Generalizable Sparse-View 3D Reconstruction from Unconstrained ImagesVinayak Gupta, Chih-Hao Lin, Shenlong Wang, Anand Bhattad et al.CVPR 2026 · 1 citation
- PanSt3R: Multi-View Consistent Panoptic SegmentationLojze Zust, Yohann Cabon, Juliette Marrie, Leonid Antsfeld et al.ICCV 2025 · 5 citations
- Wild3A: Novel View Synthesis from Any Dynamic Images in SecondsMingrui Li, Shuhao Zhai, Zibing Zhao, Luyue Sun et al.ACM MM 2025 · 3 citations
- Segment Anything in 3D with NeRFsJiazhong Cen, Zanwei Zhou, Jiemin Fang, Chen Yang et al.NeurIPS 2023 · 255 citations
- OmniSeg3D: Omniversal 3D Segmentation via Hierarchical Contrastive LearningHaiyang Ying, Yixuan Yin, Jinzhi Zhang, Fan Wang et al.CVPR 2024 · 32 citations
