default search action
Rui Huang 0001
Person information
- affiliation: The Chinese University of Hong Kong, School of Science and Engineering, Shenzhen, China
- affiliation (former): Huazhong University of Science and Technology, School of Automation, Wuhan, China
- affiliation (former): NEC Laboratories China, Beijing, China
- affiliation (PhD 2008): Rutgers University, New Brunswick, NJ, USA
Other persons with the same name
- Rui Huang — disambiguation page
- Rui Huang 0002 — China University of Petroleum, College of Petroleum Engineering, Beijing, China
- Rui Huang 0003 — Wuhan University, State Key Laboratory of Information Engineering in Surveying, Mapping, and Remote Sensing, China
- Rui Huang 0004 — Shanghai University, School of Communication and Information Engineering, China (and 1 more)
- Rui Huang 0005 — University of York, UK
- Rui Huang 0006 — Civil Aviation University of China, College of Computer Science and Technology, Tianjin, China (and 1 more)
- Rui Huang 0007 — South China University of Technology, School of Automation Science and Engineering, Guangzhou, China
- Rui Huang 0008 — University of Electronic Science and Technology of China, School of Automation Engineering, Center for Robotics, Chengdu, China (and 1 more)
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j42]Yongquan Chen, Weiming Fan, Wenli Zheng, Rui Huang, Jiahui Yu:
Predicting Bird's-Eye-View Semantic Representations Using Correlated Context Learning. IEEE Robotics Autom. Lett. 9(5): 4718-4725 (2024) - [j41]Xu Wang, Junliang Li, Wenli Zheng, Huanliang Luo, Faping Wang, Yongquan Chen, Rui Huang:
A Sim-to-Real Instance Segmentation Framework for Densely Stacked Cartons. IEEE Robotics Autom. Lett. 9(6): 5775-5782 (2024) - [j40]Qi Song, Qingyong Hu, Chi Zhang, Yongquan Chen, Rui Huang:
Divide and Conquer: Improving Multi-Camera 3D Perception With 2D Semantic-Depth Priors and Input-Dependent Queries. IEEE Trans. Image Process. 33: 897-909 (2024) - [j39]Yong Zhang, Yingwei Pan, Ting Yao, Rui Huang, Tao Mei, Chang Wen Chen:
End-to-End Video Scene Graph Generation With Temporal Propagation Transformer. IEEE Trans. Multim. 26: 1613-1625 (2024) - [j38]Qi Song, Jie Li, Hao Guo, Rui Huang:
Denoised Non-Local Neural Network for Semantic Segmentation. IEEE Trans. Neural Networks Learn. Syst. 35(5): 7162-7174 (2024) - [i33]Chi Zhang, Qi Song, Feifei Li, Yongquan Chen, Rui Huang:
HybriMap: Hybrid Clues Utilization for Effective Vectorized HD Map Construction. CoRR abs/2404.11155 (2024) - [i32]Long Xu, Yongquan Chen, Rui Huang, Feng Wu, Shiwu Lai:
Structured Click Control in Transformer-based Interactive Segmentation. CoRR abs/2405.04009 (2024) - [i31]Laiyan Ding, Hualie Jiang, Jie Li, Yongquan Chen, Rui Huang:
Towards Cross-View-Consistent Self-Supervised Surround Depth Estimation. CoRR abs/2407.04041 (2024) - [i30]Long Xu, Shanghong Li, Yongquan Chen, Junkang Chen, Rui Huang, Feng Wu:
ClickAttention: Click Region Similarity Guided Interactive Segmentation. CoRR abs/2408.06021 (2024) - [i29]Qi Song, Qingyong Hu, Chi Zhang, Yongquan Chen, Rui Huang:
Divide and Conquer: Improving Multi-Camera 3D Perception with 2D Semantic-Depth Priors and Input-Dependent Queries. CoRR abs/2408.06901 (2024) - 2023
- [j37]Changjuan Tao, Difei Gu, Rui Huang, Ling Zhou, Zhiqiang Hu, Yuanyuan Chen, Xiaofan Zhang, Hongsheng Li:
Hippocampus segmentation after brain tumor resection via postoperative region synthesis. BMC Medical Imaging 23(1): 142 (2023) - [j36]Haitao Gan, Zhi Yang, Ran Zhou, Li Guo, Zhiwei Ye, Rui Huang:
Safe semi-supervised clustering based on Dempster-Shafer evidence theory. Eng. Appl. Artif. Intell. 123(Part B): 106334 (2023) - [j35]Jie Li, Qi Song, Xiaohu Yan, Yongquan Chen, Rui Huang:
From Front to Rear: 3D Semantic Scene Completion Through Planar Convolution and Attention-Based Network. IEEE Trans. Multim. 25: 8294-8307 (2023) - [j34]Yong Zhang, Yingwei Pan, Ting Yao, Rui Huang, Tao Mei, Chang Wen Chen:
Boosting Scene Graph Generation with Visual Relation Saliency. ACM Trans. Multim. Comput. Commun. Appl. 19(1): 8:1-8:17 (2023) - [c58]Yong Zhang, Yingwei Pan, Ting Yao, Rui Huang, Tao Mei, Chang Wen Chen:
Learning to Generate Language-Supervised and Open-Vocabulary Scene Graph Using Pre-Trained Visual-Semantic Space. CVPR 2023: 2915-2924 - [c57]Shenglong Ye, Feifei Li, Rui Huang:
Synthesizing a Large Scene with Multiple NeRFs. ICIG (5) 2023: 198-209 - [c56]Panwen Hu, Nan Xiao, Feifei Li, Yongquan Chen, Rui Huang:
A Reinforcement Learning-Based Automatic Video Editing Method Using Pre-trained Vision-Language Model. ACM Multimedia 2023: 6441-6450 - [c55]Laiyan Ding, Panwen Hu, Jie Li, Rui Huang:
Towards Balanced RGB-TSDF Fusion for Consistent Semantic Scene Completion by 3D RGB Feature Completion and a Classwise Entropy Loss Function. PRCV (2) 2023: 128-141 - 2022
- [j33]Yiwei Yang, Rui Huang, Guofeng Lv, Zhiqiang Hu, Guoping Shan, Jie Zhang, Xue Bai, Peng Liu, Hongsheng Li, Ming Chen:
Automatic segmentation of the clinical target volume and organs at risk for rectal cancer radiotherapy using structure-contextual representations based on 3D high-resolution network. Biomed. Signal Process. Control. 73: 103362 (2022) - [j32]Shutao Bai, Bingpeng Ma, Hong Chang, Rui Huang, Shiguang Shan, Xilin Chen:
SANet: Statistic Attention Network for Video-Based Person Re-Identification. IEEE Trans. Circuits Syst. Video Technol. 32(6): 3866-3879 (2022) - [c54]Shutao Bai, Bingpeng Ma, Hong Chang, Rui Huang, Xilin Chen:
Salient-to-Broad Transition for Video Person Re-identification. CVPR 2022: 7329-7338 - [c53]Yong Zhang, Yingwei Pan, Ting Yao, Rui Huang, Tao Mei, Chang Wen Chen:
Exploring Structure-aware Transformer over Interaction Proposals for Human-Object Interaction Detection. CVPR 2022: 19526-19535 - [c52]Kangfu Mei, Vishal M. Patel, Rui Huang:
Deep Semantic Statistics Matching (D2SM) Denoising Network. ECCV (7) 2022: 384-400 - [i28]Yong Zhang, Yingwei Pan, Ting Yao, Rui Huang, Tao Mei, Chang Wen Chen:
Exploring Structure-aware Transformer over Interaction Proposals for Human-Object Interaction Detection. CoRR abs/2206.06291 (2022) - [i27]Kangfu Mei, Vishal M. Patel, Rui Huang:
Deep Semantic Statistics Matching (D2SM) Denoising Network. CoRR abs/2207.09302 (2022) - [i26]Jiahui Zhang, Shitao Tang, Kejie Qiu, Rui Huang, Chuan Fang, Le Cui, Zilong Dong, Siyu Zhu, Ping Tan:
RenderNet: Visual Relocalization Using Virtual Viewpoints in Large-Scale Indoor Environments. CoRR abs/2207.12579 (2022) - 2021
- [j31]Wenhui Lei, Haochen Mei, Zhengwentai Sun, Shan Ye, Ran Gu, Huan Wang, Rui Huang, Shichuan Zhang, Shaoting Zhang, Guotai Wang:
Automatic segmentation of organs-at-risk from head-and-neck CT using separable convolutional neural network with hard-region-weighted loss. Neurocomputing 442: 184-199 (2021) - [j30]Yuanyuan Liu, Wei Dai, Fang Fang, Yongquan Chen, Rui Huang, Run Wang, Bo Wan:
Dynamic multi-channel metric network for joint pose-aware and identity-invariant facial expression recognition. Inf. Sci. 578: 195-213 (2021) - [j29]Yunhe Gao, Rui Huang, Yiwei Yang, Jie Zhang, Kainan Shao, Changjuan Tao, Yuanyuan Chen, Dimitris N. Metaxas, Hongsheng Li, Ming Chen:
FocusNetv2: Imbalanced large and small organ segmentation with adversarial shape constraint for head and neck CT images. Medical Image Anal. 67: 101831 (2021) - [j28]Hualie Jiang, Zhe Sheng, Siyu Zhu, Zilong Dong, Rui Huang:
UniFuse: Unidirectional Fusion for 360° Panorama Depth Estimation. IEEE Robotics Autom. Lett. 6(2): 1519-1526 (2021) - [j27]Yanwei Huang, Wei Xiao, Chuyang Wang, Hengli Liu, Rui Huang, Zhenglong Sun:
Towards Fully Autonomous Ultrasound Scanning Robot With Imitation Learning Based on Clinical Protocols. IEEE Robotics Autom. Lett. 6(2): 3671-3678 (2021) - [j26]Yucheng Chen, Rui Huang, Hong Chang, Chuanqi Tan, Tao Xue, Bingpeng Ma:
Cross-Modal Knowledge Adaptation for Language-Based Person Search. IEEE Trans. Image Process. 30: 4057-4069 (2021) - [j25]Ran Gu, Guotai Wang, Tao Song, Rui Huang, Michael Aertsen, Jan Deprest, Sébastien Ourselin, Tom Vercauteren, Shaoting Zhang:
CA-Net: Comprehensive Attention Convolutional Neural Networks for Explainable Medical Image Segmentation. IEEE Trans. Medical Imaging 40(2): 699-711 (2021) - [c51]Hualie Jiang, Laiyan Ding, Junjie Hu, Rui Huang:
PLNet: Plane and Line Priors for Unsupervised Indoor Depth Estimation. 3DV 2021: 741-750 - [c50]Qi Song, Kangfu Mei, Rui Huang:
AttaNet: Attention-Augmented Network for Fast and Accurate Scene Parsing. AAAI 2021: 2567-2575 - [c49]Panwen Hu, Xinyu Zhou, Rui Huang:
Discriminative Clue Alignment Network for Both Image- and Video-Based Person Re-Identification. BMVC 2021: 395 - [c48]Shitao Tang, Chengzhou Tang, Rui Huang, Siyu Zhu, Ping Tan:
Learning Camera Localization via Dense Scene Matching. CVPR 2021: 1831-1841 - [c47]Ruibing Hou, Hong Chang, Bingpeng Ma, Rui Huang, Shiguang Shan:
BiCnet-TKS: Learning Efficient Spatial-Temporal Representation for Video Person Re-Identification. CVPR 2021: 2014-2023 - [c46]Panwen Hu, Jiazhen Liu, Tianyu Cao, Rui Huang:
Reinforcement Learning Based Automatic Personal Mashup Generation. ICME 2021: 1-6 - [c45]Kangfu Mei, Shenglong Ye, Rui Huang:
SDAN: Squared Deformable Alignment Network for Learning Misaligned Optical Zoom. ICME 2021: 1-6 - [c44]Jie Li, Laiyan Ding, Rui Huang:
IMENet: Joint 3D Semantic Scene Completion and 2D Semantic Segmentation through Iterative Mutual Enhancement. IJCAI 2021: 793-799 - [c43]Ran Gu, Jingyang Zhang, Rui Huang, Wenhui Lei, Guotai Wang, Shaoting Zhang:
Domain Composition and Attention for Unseen-Domain Generalizable Medical Image Segmentation. MICCAI (3) 2021: 241-250 - [i25]Wenhui Lei, Haochen Mei, Zhengwentai Sun, Shan Ye, Ran Gu, Huan Wang, Rui Huang, Shichuan Zhang, Shaoting Zhang, Guotai Wang:
Automatic Segmentation of Organs-at-Risk from Head-and-Neck CT using Separable Convolutional Neural Network with Hard-Region-Weighted Loss. CoRR abs/2102.01897 (2021) - [i24]Hualie Jiang, Zhe Sheng, Siyu Zhu, Zilong Dong, Rui Huang:
UniFuse: Unidirectional Fusion for 360° Panorama Depth Estimation. CoRR abs/2102.03550 (2021) - [i23]Qi Song, Kangfu Mei, Rui Huang:
AttaNet: Attention-Augmented Network for Fast and Accurate Scene Parsing. CoRR abs/2103.05930 (2021) - [i22]Kejie Qiu, Shenzhou Chen, Jiahui Zhang, Rui Huang, Le Cui, Siyu Zhu, Ping Tan:
Compact 3D Map-Based Monocular Localization Using Semantic Edge Alignment. CoRR abs/2103.14826 (2021) - [i21]Rui Huang, Chuan Fang, Kejie Qiu, Le Cui, Zilong Dong, Siyu Zhu, Ping Tan:
AR Mapping: Accurate and Efficient Mapping for Augmented Reality. CoRR abs/2103.14846 (2021) - [i20]Shitao Tang, Chengzhou Tang, Rui Huang, Siyu Zhu, Ping Tan:
Learning Camera Localization via Dense Scene Matching. CoRR abs/2103.16792 (2021) - [i19]Kangfu Mei, Shenglong Ye, Rui Huang:
SDAN: Squared Deformable Alignment Network for Learning Misaligned Optical Zoom. CoRR abs/2104.00848 (2021) - [i18]Yunhe Gao, Rui Huang, Yiwei Yang, Jie Zhang, Kainan Shao, Changjuan Tao, Yuanyuan Chen, Dimitris N. Metaxas, Hongsheng Li, Ming Chen:
FocusNetv2: Imbalanced Large and Small Organ Segmentation with Adversarial Shape Constraint for Head and Neck CT Images. CoRR abs/2104.01771 (2021) - [i17]Ruibing Hou, Hong Chang, Bingpeng Ma, Rui Huang, Shiguang Shan:
BiCnet-TKS: Learning Efficient Spatial-Temporal Representation for Video Person Re-Identification. CoRR abs/2104.14783 (2021) - [i16]Jie Li, Laiyan Ding, Rui Huang:
IMENet: Joint 3D Semantic Scene Completion and 2D Semantic Segmentation through Iterative Mutual Enhancement. CoRR abs/2106.15413 (2021) - [i15]Hualie Jiang, Laiyan Ding, Zhenglong Sun, Rui Huang:
Unsupervised Monocular Depth Perception: Focusing on Moving Objects. CoRR abs/2108.13062 (2021) - [i14]Ran Gu, Jingyang Zhang, Rui Huang, Wenhui Lei, Guotai Wang, Shaoting Zhang:
Domain Composition and Attention for Unseen-Domain Generalizable Medical Image Segmentation. CoRR abs/2109.08852 (2021) - [i13]Hualie Jiang, Laiyan Ding, Junjie Hu, Rui Huang:
PLNet: Plane and Line Priors for Unsupervised Indoor Depth Estimation. CoRR abs/2110.05839 (2021) - 2020
- [c42]Jiwei Chen, Yubao Sun, Qingshan Liu, Rui Huang:
Learning Memory Augmented Cascading Network for Compressed Sensing of Images. ECCV (22) 2020: 513-529 - [c41]Hualie Jiang, Laiyan Ding, Zhenglong Sun, Rui Huang:
DiPE: Deeper into Photometric Errors for Unsupervised Learning of Depth and Ego-motion from Monocular Videos. IROS 2020: 10061-10067 - [c40]Rui Huang, Yuanjie Zheng, Zhiqiang Hu, Shaoting Zhang, Hongsheng Li:
Multi-organ Segmentation via Co-training Weight-Averaged Models from Few-Organ Datasets. MICCAI (4) 2020: 146-155 - [i12]Hualie Jiang, Laiyan Ding, Rui Huang:
DiPE: Deeper into Photometric Errors for Unsupervised Learning of Depth and Ego-motion from Monocular Videos. CoRR abs/2003.01360 (2020) - [i11]Kangfu Mei, Yao Lu, Qiaosi Yi, Haoyu Wu, Juncheng Li, Rui Huang:
Disentangle Perceptual Learning through Online Contrastive Learning. CoRR abs/2006.13511 (2020) - [i10]Rui Huang, Yuanjie Zheng, Zhiqiang Hu, Shaoting Zhang, Hongsheng Li:
Multi-organ Segmentation via Co-training Weight-averaged Models from Few-organ Datasets. CoRR abs/2008.07149 (2020) - [i9]Ran Gu, Guotai Wang, Tao Song, Rui Huang, Michael Aertsen, Jan Deprest, Sébastien Ourselin, Tom Vercauteren, Shaoting Zhang:
CA-Net: Comprehensive Attention Convolutional Neural Networks for Explainable Medical Image Segmentation. CoRR abs/2009.10549 (2020) - [i8]Panwen Hu, Jiazhen Liu, Rui Huang:
Concentrated Multi-Grained Multi-Attention Network for Video Based Person Re-Identification. CoRR abs/2009.13019 (2020)
2010 – 2019
- 2019
- [j24]Haitao Gan, Yingle Fan, Zhizeng Luo, Rui Huang, Zhi Yang:
Confidence-weighted safe semi-supervised clustering. Eng. Appl. Artif. Intell. 81: 107-116 (2019) - [j23]Shan Zeng, Zhiyong Wang, Rui Huang, Ling Chen, David Feng:
A study on multi-kernel intuitionistic fuzzy C-means clustering with multiple attributes. Neurocomputing 335: 59-71 (2019) - [c39]Kangfu Mei, Juncheng Li, Jiajie Zhang, Haoyu Wu, Jie Li, Rui Huang:
HighEr-Resolution Network for Image Demosaicing and Enhancing. ICCV Workshops 2019: 3441-3448 - [c38]Andrey Ignatov, Juncheng Li, Jiajie Zhang, Haoyu Wu, Jie Li, Rui Huang, Muhammad Haris, Greg Shakhnarovich, Norimichi Ukita, Yuzhi Zhao, Lai-Man Po, Radu Timofte, Tiantian Zhang, Zongbang Liao, Xiang Shi, Yujia Zhang, Weifeng Ou, Pengfei Xian, Jingjing Xiong, Chang Zhou, Wing Yin Yu, Yubin Yubin, Sung-Jea Ko, Bingxin Hou, Bumjun Park, Songhyun Yu, Sangmin Kim, Jechang Jeong, Seung-Wook Kim, Kwang-Hyun Uhm, Seo-Won Ji, Sung-Jin Cho, Jun-Pyo Hong, Kangfu Mei:
AIM 2019 Challenge on RAW to RGB Mapping: Methods and Results. ICCV Workshops 2019: 3584-3590 - [c37]Hualie Jiang, Rui Huang:
High Quality Monocular Depth Estimation Via A Multi-Scale Network And A Detail-Preserving Objective. ICIP 2019: 1920-1924 - [c36]Panwen Hu, Zizheng Yan, Rui Huang, Feng Yin:
How Effectively can Indoor Wireless Positioning Relieve Visual Tracking Pains: A Cramer-Rao Bound Viewpoi. ICIP 2019: 3083-3087 - [c35]Yunhe Gao, Rui Huang, Ming Chen, Zhe Wang, Jincheng Deng, Yuanyuan Chen, Yiwei Yang, Jie Zhang, Chanjuan Tao, Hongsheng Li:
FocusNet: Imbalanced Large and Small Organ Segmentation with an End-to-End Deep Neural Network for Head and Neck CT Images. MICCAI (3) 2019: 829-838 - [c34]Jie Li, Huan Liu, Zhenglong Sun, Rui Huang:
Real Time Obstacle Estimation Based on Dense Stereo Vision for Robotic Lawn Mowers. ROBIO 2019: 1186-1191 - [c33]Hualie Jiang, Rui Huang:
Hierarchical Binary Classification for Monocular Depth Estimation. ROBIO 2019: 1975-1980 - [i7]Panwen Hu, Zizheng Yan, Rui Huang, Feng Yin:
How Effectively Can Indoor Wireless Positioning Relieve Visual Tracking Pains: A Camera-Rao Bound Viewpoint. CoRR abs/1903.03736 (2019) - [i6]Yunhe Gao, Rui Huang, Ming Chen, Zhe Wang, Jincheng Deng, Yuanyuan Chen, Yiwei Yang, Jie Zhang, Chanjuan Tao, Hongsheng Li:
FocusNet: Imbalanced Large and Small Organ Segmentation with an End-to-End Deep Neural Network for Head and Neck CT Images. CoRR abs/1907.12056 (2019) - [i5]Kangfu Mei, Juncheng Li, Jiajie Zhang, Haoyu Wu, Jie Li, Rui Huang:
HighEr-Resolution Network for Image Demosaicing and Enhancing. CoRR abs/1911.08098 (2019) - 2018
- [j22]Haitao Gan, Zhenhua Li, Wei Wu, Zhizeng Luo, Rui Huang:
Safety-aware Graph-based Semi-Supervised Learning. Expert Syst. Appl. 107: 243-254 (2018) - [j21]Haitao Gan, Rui Huang, Zhizeng Luo, Xugang Xi, Yunyuan Gao:
On using supervised clustering analysis to improve classification performance. Inf. Sci. 454-455: 216-228 (2018) - [c32]Jun Xiang, Guoshuai Zhang, Nong Sang, Rui Huang, Jianhua Hou:
Multiple Object Tracking by Learning Feature Representation and Distance Metric Jointly. BMVC 2018: 139 - [i4]Jun Xiang, Guoshuai Zhang, Jianhua Hou, Nong Sang, Rui Huang:
Multiple Target Tracking by Learning Feature Representation and Distance Metric Jointly. CoRR abs/1802.03252 (2018) - 2017
- [j20]Changxin Gao, Feifei Chen, Jin-Gang Yu, Rui Huang, Nong Sang:
Robust Visual Tracking Using Exemplar-Based Detectors. IEEE Trans. Circuits Syst. Video Technol. 27(2): 300-312 (2017) - [j19]Jin Wang, Zheng Wang, Changxin Gao, Nong Sang, Rui Huang:
DeepList: Learning Deep Features With Adaptive Listwise Constraint for Person Reidentification. IEEE Trans. Circuits Syst. Video Technol. 27(3): 513-524 (2017) - [j18]Wei Zhang, Bingpeng Ma, Kan Liu, Rui Huang:
Video-Based Pedestrian Re-Identification by Adaptive Spatio-Temporal Appearance Model. IEEE Trans. Image Process. 26(4): 2042-2054 (2017) - 2016
- [j17]Haitao Gan, Zhizeng Luo, Yao Sun, Xugang Xi, Nong Sang, Rui Huang:
Towards designing risk-based safe Laplacian Regularized Least Squares. Expert Syst. Appl. 45: 1-7 (2016) - [j16]Haitao Gan, Rui Huang, Zhizeng Luo, Yingle Fan, Farong Gao:
Towards a probabilistic semi-supervised Kernel Minimum Squared Error algorithm. Neurocomputing 171: 149-155 (2016) - [j15]Shan Zeng, Rui Huang, Haibing Wang, Zhen Kang:
Image retrieval using spatiograms of colors quantized by Gaussian Mixture Models. Neurocomputing 171: 673-684 (2016) - [j14]Changxin Gao, Nong Sang, Rui Huang:
Spatial multi-scale gradient orientation consistency for place instance and Scene category recognition. Inf. Sci. 372: 84-97 (2016) - [j13]Wei Zhang, Chenfei Qu, Lin Ma, Jingwei Guan, Rui Huang:
Learning structure of stereoscopic image for no-reference quality assessment with convolutional neural network. Pattern Recognit. 59: 176-187 (2016) - [j12]Jun Xiang, Nong Sang, Jianhua Hou, Rui Huang, Changxin Gao:
Hough Forest-based Association Framework with Occlusion Handling for Multi-Target Tracking. IEEE Signal Process. Lett. 23(2): 257-261 (2016) - [j11]Jun Xiang, Nong Sang, Jianhua Hou, Rui Huang, Changxin Gao:
Multitarget Tracking Using Hough Forest Random Field. IEEE Trans. Circuits Syst. Video Technol. 26(11): 2028-2042 (2016) - [j10]Xiaodan Liang, Liang Lin, Qingxing Cao, Rui Huang, Yongtian Wang:
Recognizing Focal Liver Lesions in CEUS With Dynamically Trained Latent Structured Models. IEEE Trans. Medical Imaging 35(3): 713-727 (2016) - [c31]Jin Wang, Junkang Zhu, Zheng Wang, Changxin Gao, Nong Sang, Rui Huang:
Contextual Similarity Regularized Metric Learning for person re-identification. ICPR 2016: 2048-2053 - 2015
- [j9]Bingpeng Ma, Rui Huang, Lei Qin:
VoD: A novel image representation for head yaw estimation. Neurocomputing 148: 455-466 (2015) - [j8]Yan Ouyang, Nong Sang, Rui Huang:
Accurate and robust facial expressions recognition by fusing multiple sparse representation based classifiers. Neurocomputing 149: 71-78 (2015) - [c30]Kan Liu, Bingpeng Ma, Wei Zhang, Rui Huang:
A Spatio-Temporal Appearance Representation for Viceo-Based Pedestrian Re-Identification. ICCV 2015: 3810-3818 - [i3]Zhujin Liang, Xiaolong Wang, Rui Huang, Liang Lin:
An Expressive Deep Model for Human Action Parsing from A Single Image. CoRR abs/1502.00501 (2015) - [i2]Xiaodan Liang, Qingxing Cao, Rui Huang, Liang Lin:
Recognizing Focal Liver Lesions in Contrast-Enhanced Ultrasound with Discriminatively Trained Spatio-Temporal Model. CoRR abs/1502.00750 (2015) - 2014
- [j7]Shan Zeng, Rui Huang, Zhen Kang, Nong Sang:
Image segmentation using spectral clustering of Gaussian mixture models. Neurocomputing 144: 346-356 (2014) - [c29]Changxin Gao, Feifei Chen, Jin-Gang Yu, Rui Huang, Nong Sang:
Exemplar-based linear discriminant analysis for robust object tracking. ICIP 2014: 388-392 - [c28]Zhujin Liang, Xiaolong Wang, Rui Huang, Liang Lin:
An expressive deep model for human action parsing from a single image. ICME 2014: 1-6 - [c27]Shan Zeng, Jun Bai, Rui Huang:
Image retrieval based on color-spatial histograms. ICSAI 2014: 780-784 - [c26]Xiaodan Liang, Qingxing Cao, Rui Huang, Liang Lin:
Recognizing focal liver lesions in contrast-enhanced ultrasound with discriminatively trained spatio-temporal model. ISBI 2014: 1184-1187 - [c25]Yuanlu Xu, Bingpeng Ma, Rui Huang, Liang Lin:
Person Search in a Scene by Jointly Modeling People Commonness and Person Uniqueness. ACM Multimedia 2014: 937-940 - [i1]Changxin Gao, Feifei Chen, Jin-Gang Yu, Rui Huang, Nong Sang:
Exemplar-based Linear Discriminant Analysis for Robust Object Tracking. CoRR abs/1402.5697 (2014) - 2013
- [j6]Haitao Gan, Nong Sang, Rui Huang, Xiaojun Tong, Zhiping Dan:
Using clustering analysis to improve semi-supervised classification. Neurocomputing 101: 290-298 (2013) - [j5]Shan Zeng, Xiaojun Tong, Nong Sang, Rui Huang:
A study on semi-supervised FCM algorithm. Knowl. Inf. Syst. 35(3): 585-612 (2013) - [c24]Haitao Gan, Nong Sang, Rui Huang, Xi Chen:
Manifold Regularized Gaussian Mixture Model for Semi-supervised Clustering. ACPR 2013: 361-365 - 2012
- [c23]Changxin Gao, Nong Sang, Rui Huang:
Online Transfer Boosting for object tracking. ICPR 2012: 906-909 - 2011
- [j4]Rui Huang, Nong Sang, Dapeng Luo, Qiling Tang:
Image segmentation via coherent clustering in L*a*b* color space. Pattern Recognit. Lett. 32(7): 891-902 (2011) - [j3]Leyuan Liu, Nong Sang, Saiyong Yang, Rui Huang:
Real-time skin color detection under rapidly changing illumination conditions. IEEE Trans. Consumer Electron. 57(3): 1295-1302 (2011) - [j2]Chunming Li, Rui Huang, Zhaohua Ding, Chris Gatenby, Dimitris N. Metaxas, John C. Gore:
A Level Set Method for Image Segmentation in the Presence of Intensity Inhomogeneities With Application to MRI. IEEE Trans. Image Process. 20(7): 2007-2016 (2011) - [c22]Rui Huang, Nong Sang, Vladimir Pavlovic, Dimitris N. Metaxas:
A Belief Propagation algorithm for bias field estimation and image segmentation. ICIP 2011: 37-40 - [c21]Yonggang He, Nong Sang, Rui Huang:
Local Binary Pattern histogram based Texton learning for texture classification. ICIP 2011: 841-844 - 2010
- [c20]Rui Huang, Nong Sang, Leyuan Liu, Qiling Tang:
Saliency Based on Multi-scale Ratio of Dissimilarity. ICPR 2010: 13-16 - [c19]Rui Huang, Nong Sang, Dapeng Luo, Xiaojun Tong:
Enhancing low-contrast image by separately processing illuminance and reflectance. Visual Information Processing 2010: 77010 - [c18]Dapeng Luo, Nong Sang, Rui Huang, Xiaojun Tong:
A novel online learning method for head detection in video sequences. Visual Information Processing 2010: 77010 - [c17]Dapeng Luo, Nong Sang, Rui Huang, Xiaojun Tong:
Improve online boosting algorithm from self-learning cascade classifier. Visual Information Processing 2010: 77010
2000 – 2009
- 2009
- [c16]Rui Huang, Nong Sang, Qiling Tang:
Segmentation via Incremental Transductive Learning. ICIG 2009: 213-216 - 2008
- [c15]Rui Huang, Nong Sang, Qiling Tang:
Approximation of salient contours in cluttered scenes. ICPR 2008: 1-4 - [c14]Chunming Li, Rui Huang, Zhaohua Ding, Chris Gatenby, Dimitris N. Metaxas, John C. Gore:
A Variational Level Set Approach to Segmentation and Bias Correction of Images with Intensity Inhomogeneity. MICCAI (2) 2008: 1083-1091 - 2007
- [c13]Rui Huang, Vladimir Pavlovic, Dimitris N. Metaxas:
Embedded Profile Hidden Markov Models for Shape Analysis. ICCV 2007: 1-8 - [c12]Zhen Qian, Rui Huang, Dimitris N. Metaxas, Leon Axel:
A Novel Tag Removal Technique for Tagged Cardiac Mri and Its Applications. ISBI 2007: 364-367 - [c11]Rui Huang, Vladimir Pavlovic, Dimitris N. Metaxas:
Shape Analysis Using Curvature-Based Descriptors and Profile Hidden Markov Models. ISBI 2007: 1220-1223 - [p1]Rui Huang, Vladimir Pavlovic, Dimitris N. Metaxas:
A Graphical Model Framework for Image Segmentation. Applied Graph Theory in Computer Vision and Pattern Recognition 2007: 43-63 - 2006
- [c10]Dimitris N. Metaxas, Zhen Qian, Xiaolei Huang, Rui Huang, Ting Chen, Leon Axel:
Hybrid Deformable Models for Medical Segmentation and Registration. ICARCV 2006: 1-6 - [c9]Rui Huang, Vladimir Pavlovic, Dimitris N. Metaxas:
A Profile Hidden Markov Model Framework for Modeling and Analysis of Shape. ICIP 2006: 2121-2124 - [c8]Rui Huang, Vladimir Pavlovic, Dimitris N. Metaxas:
A tightly coupled region-shape framework for 3D medical image segmentation. ISBI 2006: 426-429 - 2005
- [c7]Rui Huang, Vladimir Pavlovic, Dimitris N. Metaxas:
A Hybrid Framework for Image Segmentation Using Probabilistic Integration of Heterogeneous Constraints. CVBIA 2005: 82-92 - [c6]Xiaolei Huang, Zhen Qian, Rui Huang, Dimitris N. Metaxas:
Deformable-Model Based Textured Object Segmentation. EMMCVPR 2005: 119-135 - 2004
- [c5]Rui Huang, Vladimir Pavlovic, Dimitris N. Metaxas:
A Graphical Model Framework for Coupling MRFs and Deformable Models. CVPR (2) 2004: 739-746 - [c4]Rui Huang, Dimitris N. Metaxas, Vladimir Pavlovic:
A Hybrid Face Recognition Method using Markov Random Fields. ICPR (3) 2004: 157-160 - 2003
- [j1]Qingshan Liu, Rui Huang, Hanqing Lu, Songde Ma:
Kernel-Based Nonlinear Discriminant Analysis for Face Recognition. J. Comput. Sci. Technol. 18(6): 788-795 (2003) - 2002
- [c3]Qingshan Liu, Rui Huang, Hanqing Lu, Songde Ma:
Face Recognition Using Kernel Based Fisher Discriminant Analysis. FGR 2002: 197-201 - [c2]Rui Huang, Qingshan Liu, Hanqing Lu, Songde Ma:
Solving the Small Sample Size Problem of LDA. ICPR (3) 2002: 29-32 - [c1]Qingshan Liu, Rui Huang, Hanqing Lu, Songde Ma:
Kernel-Based Optimized Feature Vectors Selection and Discriminant Analysis for Face Recognition. ICPR (2) 2002: 362-365
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-11-15 19:31 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint