Computer Science ›› 2025, Vol. 52 ›› Issue (3): 68-76.doi: 10.11896/jsjkx.240600063
• 3D Vision and Metaverse • Previous Articles Next Articles
JIANG Yiheng1, LI Yang1,2, LIU Chunyan1 , ZHAO Yunlong1
CLC Number:
| [1]TU H,WANG C,ZENG W.Voxelpose:Towards multi-camera 3d human pose estimation in wild environment[C]//ECCV 2020:16th European Conference,Glasgow,UK,August 23-28,2020,Proceedings,Part I 16.Springer,2020:197-212. [2]ZHANG J,CAI Y,YAN S,et al.Direct multi-view multi-person 3d pose estimation[J].Advances in Neural Information Proces-sing Systems,2021,34:153-164. [3]MARTINEZ J,HOSSAIN R,ROMERO J,et al.A simple yeteffective baseline for 3d human pose estimation[C]//Procee-dings of the IEEE International Conference on Computer Vision.2017:2640-2649. [4]GONG K,ZHANG J,FENG J.Poseaug:A differentiable pose augmentation framework for 3d human pose estimation[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2021:8575-8584. [5]SUN X,XIAO B,WEI F,et al.Integral human pose regression[C]//Proceedings of the European Conference on Computer Vision(ECCV).2018:529-545. [6]POPA A I,ZANFIR M,SMINCHISESCU C.Deep multitask architecture for integrated 2d and 3d human sensing[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.2017:6289-6298. [7]MEHTA D,SRIDHAR S,SOTNYCHENKO O,et al.with asingle rgb camera[J].ACM Transactions on Graphics,2017,36(4):1-14. [8]ZHAO L,PENG X,TIAN Y,et al.Semantic graph convolu-tional networks for 3d human pose regression[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2019:3425-3435. [9]HARTLEYR,ZISSERMAN A.Multiple view geometry in computer vision[M].Cambridge University Press,2003. [10]ISKAKOV K,BURKOV E,LEMPITSKY V,et al.Learnabletriangulation of human pose[C]//Proceedings of the IEEE/CVF International Conference on Computer Vision.2019:7718-7727. [11]QIU H,WANG C,WANG J,et al.Cross view fusion for 3d human pose estimation[C]//Proceedings of the IEEE/CVF International Conference on Computer Vision.2019:4342-4351. [12]PAVLAKOS G,ZHOU X,DERPANIS K G,et al.Harvesting multiple views for marker-less 3d human pose annotations[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.2017:6988-6997. [13]DONG J,JIANG W,HUANG Q,et al.Fast and robust multi-person 3d pose estimation from multiple views[J].IEEE Tran-sactions on Pattern Analysis and Machine Intelligence,2044,44(10):6981-6992. [14]WU S,JIN S,LIU W,et al.Graph-based 3d multi-person pose estimation using multi-view images[C]//Proceedings of the IEEE/CVF International Conference on Computer Vision.2021:148-157. [15]VASWANI A,SHAZEER N,PARMAR N,et al.Attention isall you need[C]//Proceedings of the 31st International Confe-rence on Neural Information Processing Systems December.2017:6000-6010. [16]DOSOVITSKIY A, BEYER L,KOLESNIKOV A,et al.Animage is worth 16x16 words:Transformers for image recognition at scale[J].arXiv:2010.11929,2020. [17]BELAGIANNIS V,AMIN S,ANDRILUKA M,et al.3d picto-rial structures for multiple human pose estimation[C]//Procee-dings of the IEEE Conference on Computer Vision and Pattern Recognition.2014:1669-1676. [18]HANBYUL J,LIU H,TAN L,et al.Panoptic studio:A mas-sively multiview system for social interaction capture[C]//2015 IEEE International Conference on Computer Vision.2016. [19]IONESCU C,PAPAVA D,OLARU V,et al.Human3.6m:Large scale datasets and predictive methods for 3d human sen-sing in natural environments[J].IEEE Transactions on Pattern Analysis and Machine Intelligence,2013,36(7):1325-1339. [20]CAI Z,REN D,ZENG A,et al.Humman:Multi-modal 4d human dataset for versatile sensing and modeling[C]//ECCV 2022.Springer,2022:557-577. [21]WANG J,YANG F,GOU W,et al.Freeman:Towards benchmarking 3d human pose estimation in the wild[J].arXiv:2309.05073,2023. [22]QIU L,ZHANG X,LI Y,et al.Peeking into occluded joints:A novel framework for crowd pose estimation[C]//ECCV 2020:16th European Conference,Glasgow,UK,August 23-28,2020,Proceedings,Part XIX 16.Springer,2020:488-504. [23]CI H,WANG C,MA X,et al.Optimizing network structure for 3d human pose estimation[C]//Proceedings of the IEEE/CVF International Conference on Computer Vision.2019:2262-2271. [24]TANG W,WU Y.Does learning specific features for relatedparts help human pose estimation?[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2019:1107-1116. [25]SUN Z Y,LI H Y,YE J Y.3D human joint point recognition based on weakly supervised migration network[J].Journal of Jilin University(Engineering and Technology Edition),2024,54(1):251-258. [26]MOON G,CHANG J Y,LEE K M.V2v-posenet:Voxel-to-vo-xel prediction network for accurate 3d hand and human pose estimation mfrom a single depth map[C]//Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition.2018:5079-5088. [27]ZHANG Y,WANG C,WANG X,et al.Voxeltrack:Multi-person 3d human pose estimation and tracking in the wild[J].IEEE Transactions on Pattern Analysis and Machine Intelligence,2022,45(2):2613-2626. [28]YE H, ZHU W,WANG C,et al.Faster voxelpose:Real-time 3d human pose estimation by orthographic projection[C]//ECCV 2022.Springer,2022:142-159. [29]LIN J,LEE J H.Multi-view multi-person 3d pose estimationwith plane sweep stereo[C]//Proceedings of the IEEE/CVF Conference on Computer Vision and Pattern Recognition.2021:11886-11895. [30]CHEN Y,GU R,HUANG O,et al.Vtp:volumetric transformer for multi-view multi-person 3d pose estimation[J].Applied Intelligence,2023,53(22)26568-26579. [31]LIU H,WU J,HE R.Center point to pose:Multiple views 3d human pose estimation for multi-person[J].Plos One,2022,17(9):e0274450. |
| [1] | WANG Cheng, JIN Cheng. KAN-based Unsupervised Multivariate Time Series Anomaly Detection Network [J]. Computer Science, 2026, 53(1): 89-96. |
| [2] | LI Shunyong, ZHENG Mengjiao, LI Jiaming, ZHAO Xingwang. Joint Spectrum Embedding Clustering Algorithm Based on Multi-view Diversity Learning [J]. Computer Science, 2026, 53(1): 104-114. |
| [3] | HU Hailong, XU Xiangwei, LI Yaqian. Drug Combination Recommendation Model Based on Dynamic Disease Modeling [J]. Computer Science, 2025, 52(9): 96-105. |
| [4] | DENG Jiayan, TIAN Shirui, LIU Xiangli, OUYANG Hongwei, JIAO Yunjia, DUAN Mingxing. Trajectory Prediction Method Based on Multi-stage Pedestrian Feature Mining [J]. Computer Science, 2025, 52(9): 241-248. |
| [5] | DING Zhengze, NIE Rencan, LI Jintao, SU Huaping, XU Hang. MTFuse:An Infrared and Visible Image Fusion Network Based on Mamba and Transformer [J]. Computer Science, 2025, 52(8): 188-194. |
| [6] | LIU Huayong, XU Minghui. Hash Image Retrieval Based on Mixed Attention and Polarization Asymmetric Loss [J]. Computer Science, 2025, 52(8): 204-213. |
| [7] | HUANG Xingyu, WANG Lihui, TANG Kun, CHENG Xinyu, ZHANG Jian, YE Chen. EFormer:Efficient Transformer for Medical Image Registration Based on Frequency Division and Board Attention [J]. Computer Science, 2025, 52(7): 151-160. |
| [8] | WANG Youkang, CHENG Chunling. Multimodal Sentiment Analysis Model Based on Cross-modal Unidirectional Weighting [J]. Computer Science, 2025, 52(7): 226-232. |
| [9] | WANG Jinfu, WANG Siwei, LIANG Weixuan, YU Shengju, ZHU En. Multi-view Clustering Based on Bipartite Graph Cross-view Graph Diffusion [J]. Computer Science, 2025, 52(7): 69-74. |
| [10] | LIU Yajun, JI Qingge. Pedestrian Trajectory Prediction Based on Motion Patterns and Time-Frequency Domain Fusion [J]. Computer Science, 2025, 52(7): 92-102. |
| [11] | LONG Xiao, HUANG Wei, HU Kai. Bi-MI ViT:Bi-directional Multi-level Interaction Vision Transformer for Lung CT ImageClassification [J]. Computer Science, 2025, 52(6A): 240700183-6. |
| [12] | CHEN Xianglong, LI Haijun. LST-ARBunet:An Improved Deep Learning Algorithm for Nodule Segmentation in Lung CT Images [J]. Computer Science, 2025, 52(6A): 240600020-10. |
| [13] | DU Yuanhua, CHEN Pan, ZHOU Nan, SHI Kaibo, CHEN Eryang, ZHANG Yuanpeng. Correntropy Based Multi-view Low-rank Matrix Factorization and Constraint Graph Learning for Multi-view Data Clustering [J]. Computer Science, 2025, 52(6A): 240900131-10. |
| [14] | WANG Xuejian, WANG Yiheng, SUN Xinpo, LIU Chuan, JIA Ming, ZHAO Chao, YANG Chao. Extraction of Crustal Deformation Anomalies Based on Transformer-Isolation Forest [J]. Computer Science, 2025, 52(6A): 240600155-6. |
| [15] | LI Yang, LIU Yi, LI Hao, ZHANG Gang, XU Mingfeng, HAO Chongqing. Human Pose Estimation Using Millimeter Wave Radar Based on Transformer and PointNet++ [J]. Computer Science, 2025, 52(6A): 240400169-9. |
|
||