TSGCNet: Discriminative Geometric Feature Learning With Two-Stream Graph Convolutional Network for 3D Dental Model Segmentation
Lingming Zhang, Yue Zhao, Deyu Meng, Zhiming Cui, Chenqiang Gao, Xinbo Gao, Chunfeng Lian, Dinggang Shen
Abstract
The ability to segment teeth precisely from digitized 3D dental models is an essential task in computer-aided orthodontic surgical planning. To date, deep learning based methods have been popularly used to handle this task. State-of-the-art methods directly concatenate the raw attributes of 3D inputs, namely coordinates and normal vectors of mesh cells, to train a single-stream network for fully-automated tooth segmentation. This, however, has the drawback of ignoring the different geometric meanings provided by those raw attributes. This issue might possibly confuse the network in learning discriminative geometric features and result in many isolated false predictions on the dental model. Against this issue, we propose a two-stream graph convolutional network (TSGCNet) to learn multiview geometric information from different geometric attributes. Our TSGCNet adopts two graph-learning streams, designed in an input-aware fashion, to extract more discriminative high-level geometric representations from coordinates and normal vectors, respectively. These feature representations learned from the designed two different streams are further fused to integrate the multi-view complementary information for the cell-wise dense prediction task. We evaluate our proposed TSGCNet on a real-patient dataset of dental models acquired by 3D intraoral scanners, and experimental results demonstrate that our method significantly outperforms state-of-the-art methods for 3D shape segmentation.
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Install the CLIlune papers fulltext c55e5227-8bf5-4a47-b37c-89032262e439Cited by top-tier papers5
- DArch: Dental Arch Prior-assisted 3D Tooth Instance Segmentation with Weak AnnotationsLiangdong Qiu, Chongjie Ye, Pei Chen, Yunbi Liu et al.CVPR 2022 · 34 citations
- Teeth-SEG: An Efficient Instance Segmentation Framework for Orthodontic Treatment Based on Multi-Scale Aggregation and Anthropic Prior KnowledgeBo Zou, Shaofeng Wang, Hao Liu, Gaoyue Sun et al.CVPR 2024 · 9 citations
- 3DTeethSAM: Taming SAM2 for 3D Teeth SegmentationZhiguo Lu, Jianwen Lou, Mingjun Ma, Hairong Jin et al.AAAI 2026 · 1 citation
- 3D Dental Model Segmentation with Geometrical Boundary PreservingShufan Xi, Zexian Liu, Junlin Chang, Hongyu Wu et al.CVPR 2025
- Photo-Guided Tooth Segmentation on 3D Oral Scan ModelShaojie Zhuang, Guangshun Wei, Jiangxin He, Yuanfeng ZhouCVPR 2026
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