SAI3D: Segment any Instance in 3D Scenes
Yingda Yin, Yuzheng Liu, Yang Xiao, Daniel Cohen-Or, Jingwei Huang, Baoquan Chen
Abstract
Advancements in 3D instance segmentation have tra-ditionally been tethered to the availability of annotated datasets, limiting their application to a narrow spectrum of object categories. Recent efforts have sought to har-ness vision-language models like CLIP for open-set semantic reasoning, yet these methods struggle to distinguish between objects of the same categories and rely on specific prompts that are not universally applicable. In this paper, we introduce SAI3D, a novel zero-shot 3D instance segmentation approach that synergistically leverages geometric priors and semantic cues derived from Segment Any-thing Model (SAM). Our method partitions a 3D scene into geometric primitives, which are then progressively merged into 3D instance segmentations that are consistent with the multi-view SAM masks. Moreover, we design a hierarchi-cal region-growing algorithm with a dynamic thresholding mechanism, which largely improves the robustness of fine-grained 3D scene parsing. Empirical evaluations on Scan-Net, Matterport3D and the more challenging ScanNet++ datasets demonstrate the superiority of our approach. No-tably, SAI3D outperforms existing open-vocabulary base-lines and even surpasses fully-supervised methods in class-agnostic segmentation on ScanNet++. Our project page is at https://yd-yin.github.io/SAI3D.
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 54844985-c21c-4d62-b4fa-c1b535a6fbcdCited by top-tier papers43
- Segment Any 3D GaussiansJiazhong Cen, Jiemin Fang, Chen Yang, Lingxi Xie et al.AAAI 2025 · 175 citations
- PartField: Learning 3D Feature Fields for Part Segmentation and BeyondMing-Yu Liu, Mikaela Angelina Uy, Donglai Xiang, Hao Su et al.ICCV 2025 · 103 citations
- Open3DIS: Open-Vocabulary 3D Instance Segmentation with 2D Mask GuidancePhuc D. A. Nguyen, Tuan Duc Ngo, Evangelos Kalogerakis, Chuang Gan et al.CVPR 2024 · 45 citations
- MaskClustering: View Consensus Based Mask Graph Clustering for Open-Vocabulary 3D Instance SegmentationMi Yan, Jiazhao Zhang, Yan Zhu, He WangCVPR 2024 · 22 citations
- Online Segment Any 3D Thing as Instance TrackingHanshi Wang, Zijian Cai, Jin Gao, Yiwei Zhang et al.NeurIPS 2025 · 6 citations
Builds on19
- Learning Transferable Visual Models From Natural Language SupervisionAlec Radford, Jong Wook Kim, Chris Hallacy, Aditya Ramesh et al.ICML 2021 · 47,906 citations
- KPConv: Flexible and Deformable Convolution for Point CloudsHugues Thomas, Charles R. Qi, Jean-Emmanuel Deschaud, Beatriz Marcotegui et al.ICCV 2019 · 3,193 citations
- Open-vocabulary Object Detection via Vision and Language Knowledge DistillationXiuye Gu, Tsung-Yi Lin, Weicheng Kuo, Yin CuiICLR 2022 · 1,274 citations
- ScanNet++: A High-Fidelity Dataset of 3D Indoor ScenesChandan Yeshwanth, Yueh-Cheng Liu, Matthias Nießner, Angela DaiICCV 2023 · 659 citations
- LERF: Language Embedded Radiance FieldsJustin Kerr, Chung Min Kim, Ken Goldberg, Angjoo Kanazawa et al.ICCV 2023 · 620 citations
Related papers
- MV3DIS: Multi-View Mask Matching via 3D Guides for Zero-Shot 3D Instance SegmentationYibo Zhao, Yigong Zhang, Jin XieCVPR 2026 · 1 citation
- SA3DIP: Segment Any 3D Instance with Potential 3D PriorsXi Yang, Xu Gu, Xingyilang Yin, Xinbo GaoNeurIPS 2024 · 3 citations
- SAM2Object: Consolidating View Consistency via SAM2 for Zero-Shot 3D Instance SegmentationJihuai Zhao, Junbao Zhuo, Jiansheng Chen, Huimin MaCVPR 2025
- OpenMask3D: Open-Vocabulary 3D Instance SegmentationAyça Takmaz, Elisabetta Fedele, Robert W. Sumner, Marc Pollefeys et al.NeurIPS 2023 · 389 citations
- Open-YOLO 3D: Towards Fast and Accurate Open-Vocabulary 3D Instance SegmentationMohamed El Amine Boudjoghra, Angela Dai, Jean Lahoud, Hisham Cholakkal et al.ICLR 2025 · 3 citations
