VoteHMR: Occlusion-Aware Voting Network for Robust 3D Human Mesh Recovery from Partial Point Clouds
Guanze Liu, Yu Rong, Lu Sheng
Abstract
3D human mesh recovery from point clouds is essential for various tasks, including AR/VR and human behavior understanding. Previous works in this field either require high-quality 3D human scans or sequential point clouds, which cannot be easily applied to low-quality 3D scans captured by consumer-level depth sensors. In this paper, we make the first attempt to reconstruct reliable 3D human shapes from single-frame partial point clouds. To achieve this, we propose an end-to-end learnable method, named VoteHMR. The core of VoteHMR is a novel occlusion-aware voting network that can first reliably produce visible joint-level features from the input partial point clouds, and then complete the joint-level features through the kinematic tree of the human skeleton. Compared with holistic features used by previous works, the joint-level features can not only effectively encode the human geometry information but also be robust to noisy inputs with self-occlusions and missing areas. By exploiting the rich complementary clues from the joint-level features and global features from the input point clouds, the proposed method encourages reliable and disentangled parameter predictions for statistical 3D human models, such as SMPL. The proposed method achieves state-of-the-art performances on two large-scale datasets, namely SURREAL and DFAUST. Furthermore, VoteHMR also demonstrates superior generalization ability on real-world datasets, such as Berkeley MHAD.
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.
Cited by top-tier papers10
- You Only Hypothesize Once: Point Cloud Registration with Rotation-equivariant DescriptorsHaiping Wang, Yuan Liu, Zhen Dong, Wenping WangACM MM 2022 · 143 citations
- 3DJCG: A Unified Framework for Joint Dense Captioning and Visual Grounding on 3D Point CloudsDaigang Cai, Lichen Zhao, Jing Zhang, Lu Sheng et al.CVPR 2022 · 80 citations
- Generalizing Neural Human Fitting to Unseen Poses With Articulated SE(3) EquivarianceHaiwen Feng, Peter Kulits, Shichen Liu, Michael J. Black et al.ICCV 2023 · 19 citations
- Gait Recognition in Large-scale Free Environment via Single LiDARXiao Han, Yiming Ren, Peishan Cong, Yujing Sun et al.ACM MM 2024 · 10 citations
- Dynamic Mesh Recovery from Partial Point Cloud SequenceHojun Jang, Minkwan Kim, Jinseok Bae, Young Min KimICCV 2023 · 5 citations
Builds on14
- Deep Hough Voting for 3D Object Detection in Point CloudsCharles R. Qi, Or Litany, Kaiming He, Leonidas J. GuibasICCV 2019 · 1,467 citations
- PIFu: Pixel-Aligned Implicit Function for High-Resolution Clothed Human DigitizationShunsuke Saito, Zeng Huang, Ryota Natsume, Shigeo Morishima et al.ICCV 2019 · 1,411 citations
- Learning to Reconstruct 3D Human Pose and Shape via Model-Fitting in the LoopNikos Kolotouros, Georgios Pavlakos, Michael J. Black, Kostas DaniilidisICCV 2019 · 1,139 citations
- AMP: adversarial motion priors for stylized physics-based character controlXue Bin Peng, Ze Ma, Pieter Abbeel, Sergey Levine et al.SIGGRAPH 2021 · 392 citations
- DeepHuman: 3D Human Reconstruction From a Single ImageZerong Zheng, Tao Yu, Yixuan Wei, Qionghai Dai et al.ICCV 2019 · 367 citations
Related papers
- Self-Supervised Human Mesh Recovery from Partial Point Cloud via a Self-Improving LoopChang Su, Beihong Jin, Fusang Zhang, Siheng Li et al.ACM MM 2025
- Sequential 3D Human Pose and Shape Estimation From Point CloudsKangkan Wang, Jin Xie, Guofeng Zhang, Lei Liu et al.CVPR 2020
- Skeleton-Aware 3D Human Shape Reconstruction From Point CloudsHaiyong Jiang, Jianfei Cai, Jianmin ZhengICCV 2019 · 75 citations
- PC-HMR: Pose Calibration for 3D Human Mesh Recovery from 2D Images/VideosTianyu Luan, Yali Wang, Junhao Zhang, Zhe Wang et al.AAAI 2021 · 45 citations
- Weakly Supervised Adversarial Learning for 3D Human Pose Estimation from Point CloudsZihao Zhang, Lei Hu, Xiaoming Deng, Shihong XiaIEEE VR 2020 · 51 citations
