default search action
Wen Zhang 0008
Person information
- affiliation (since 2018): Huazhong Agricultural University, College of Informatics, Wuhan, China
- affiliation (2009-2018): Wuhan University, School of Computer Science, China
- affiliation (PhD 2009): Wuhan University, School of Computer Science, China
Other persons with the same name
- Wen Zhang — disambiguation page
- Wen Zhang 0001 — Beijing University of Chemical Technology, Research Center on Data Sciences, China (and 2 more)
- Wen Zhang 0002 — Northwestern Polytechnical University, School of Marine Science and Technology, Xi'an, China (and 3 more)
- Wen Zhang 0003 — Chinese Center for Disease Control and Prevention, Beijing, China
- Wen Zhang 0004 — Tianjin University, State Key Laboratory of Precision Measurement Technology and Instrument, China
- Wen Zhang 0005 — Chinese Academy of Sciences, LAPC, Institute of Atmospheric Physics, Beijing, China
- Wen Zhang 0006 — Shandong University, Key Laboratory of Power System Intelligent Dispatch and Control, Jinan, China
- Wen Zhang 0007 — Wuhan University, School of Geodesy and Geomatics, China (and 1 more)
- Wen Zhang 0009 — Tencent Technology (Beijing) Co., Ltd., China (and 1 more)
- Wen Zhang 0010 — Arizona State University, Tempe, AZ, USA
- Wen Zhang 0011 — Wuhan University, School of Remote Sensing and Information Engineering, Wuhan, China (and 2 more)
- Wen Zhang 0012 — University of Waterloo, Waterloo, ON, Canada
- Wen Zhang 0013 — Hunan University of Technology and Business, Changsha, Hunan, China (and 1 more)
- Wen Zhang 0014 — University of Bristol, UK (and 3 more)
- Wen Zhang 0015 — Zhejiang University, College of Computer Science and Technology, Hangzhou, China
- Wen Zhang 0016 — Academy of Military Sciences, Strategic Evaluation and Consultation Center, Beijing, China (and 1 more)
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j52]Zishan Xu, Linlin Song, Shichao Liu, Wen Zhang:
DeepCRBP: improved predicting function of circRNA-RBP binding sites with deep feature learning. Frontiers Comput. Sci. 18(2): 182907 (2024) - [j51]Yuhang Xia, Yongkang Wang, Zhiwei Wang, Wen Zhang:
A comprehensive review of molecular optimization in artificial intelligence-based drug discovery. Quant. Biol. 12(1): 15-29 (2024) - [j50]Xinyue Li, Zhankun Xiong, Wen Zhang, Shichao Liu:
Deep learning for drug-drug interaction prediction: A comprehensive review. Quant. Biol. 12(1): 30-52 (2024) - [j49]Huan Wang, Ziwen Cui, Yinguang Yang, Baijing Wang, Lida Zhu, Wen Zhang:
A Network Enhancement Method to Identify Spurious Drug-Drug Interactions. IEEE ACM Trans. Comput. Biol. Bioinform. 21(5): 1335-1347 (2024) - [j48]Menglu Li, Zhiwei Wang, Luotao Liu, Xuan Liu, Wen Zhang:
Subgraph-Aware Graph Kernel Neural Network for Link Prediction in Biological Networks. IEEE J. Biomed. Health Informatics 28(7): 4373-4381 (2024) - [c30]Yongkang Wang, Xuan Liu, Feng Huang, Zhankun Xiong, Wen Zhang:
A Multi-Modal Contrastive Diffusion Model for Therapeutic Peptide Generation. AAAI 2024: 3-11 - [c29]Zhiwei Wang, Yongkang Wang, Wen Zhang:
Improving Paratope and Epitope Prediction by Multi-Modal Contrastive Learning and Interaction Informativeness Estimation. IJCAI 2024: 6053-6061 - [c28]Ziyan Wang, Zhankun Xiong, Feng Huang, Xuan Liu, Wen Zhang:
ZeroDDI: A Zero-Shot Drug-Drug Interaction Event Prediction Method with Semantic Enhanced Learning and Dual-modal Uniform Alignment. IJCAI 2024: 6071-6079 - [c27]Kexin Zhang, Feng Huang, Luotao Liu, Zhankun Xiong, Hongyu Zhang, Yuan Quan, Wen Zhang:
Heterogeneous Causal Metapath Graph Neural Network for Gene-Microbe-Disease Association Prediction. IJCAI 2024: 6161-6169 - [i10]Zhengyi Li, Menglu Li, Lida Zhu, Wen Zhang:
Improving PTM Site Prediction by Coupling of Multi-Granularity Structure and Multi-Scale Sequence Representation. CoRR abs/2401.10211 (2024) - [i9]Feng Huang, Wen Zhang:
Coefficient Decomposition for Spectral Graph Convolution. CoRR abs/2405.03296 (2024) - [i8]Kexin Zhang, Feng Huang, Luotao Liu, Zhankun Xiong, Hongyu Zhang, Yuan Quan, Wen Zhang:
Heterogeneous Causal Metapath Graph Neural Network for Gene-Microbe-Disease Association Prediction. CoRR abs/2406.19156 (2024) - [i7]Ziyan Wang, Zhankun Xiong, Feng Huang, Xuan Liu, Wen Zhang:
ZeroDDI: A Zero-Shot Drug-Drug Interaction Event Prediction Method with Semantic Enhanced Learning and Dual-Modal Uniform Alignment. CoRR abs/2407.00891 (2024) - 2023
- [j47]Shen Han, Haitao Fu, Yuyang Wu, Ganglan Zhao, Zhenyu Song, Feng Huang, Zhongfei Zhang, Shichao Liu, Wen Zhang:
HimGNN: a novel hierarchical molecular graph representation learning framework for property prediction. Briefings Bioinform. 24(5) (2023) - [j46]Xuan Liu, Wen Zhang:
A subcomponent-guided deep learning method for interpretable cancer drug response prediction. PLoS Comput. Biol. 19(8) (2023) - [j45]Shichao Liu, Yang Zhang, Yuxin Cui, Yang Qiu, Yifan Deng, Zhongfei Zhang, Wen Zhang:
Enhancing Drug-Drug Interaction Prediction Using Deep Attention Neural Networks. IEEE ACM Trans. Comput. Biol. Bioinform. 20(2): 976-985 (2023) - [j44]Haitao Fu, Cecheng Zhao, Xiaohui Niu, Wen Zhang:
DRLM: A Robust Drug Representation Learning Method and its Applications. IEEE ACM Trans. Comput. Biol. Bioinform. 20(6): 3451-3460 (2023) - [c26]Zhankun Xiong, Shichao Liu, Feng Huang, Ziyan Wang, Xuan Liu, Zhongfei Zhang, Wen Zhang:
Multi-Relational Contrastive Learning Graph Neural Network for Drug-Drug Interaction Event Prediction. AAAI 2023: 5339-5347 - [c25]Wenting Ye, Chen Li, Yang Xie, Wen Zhang, Hong-Yu Zhang, Bowen Wang, Debo Cheng, Zaiwen Feng:
Causal Intervention for Measuring Confidence in Drug-Target Interaction Prediction. BIBM 2023: 395-400 - [c24]Luotao Liu, Feng Huang, Xuan Liu, Zhankun Xiong, Menglu Li, Congzhi Song, Wen Zhang:
Multi-view Contrastive Learning Hypergraph Neural Network for Drug-Microbe-Disease Association Prediction. IJCAI 2023: 4829-4837 - [i6]Yongkang Wang, Xuan Liu, Feng Huang, Zhankun Xiong, Wen Zhang:
A Multi-Modal Contrastive Diffusion Model for Therapeutic Peptide Generation. CoRR abs/2312.15665 (2023) - 2022
- [j43]Yifan Deng, Yang Qiu, Xinran Xu, Shichao Liu, Zhongfei Zhang, Shanfeng Zhu, Wen Zhang:
META-DDIE: predicting drug-drug interaction events with few-shot learning. Briefings Bioinform. 23(1) (2022) - [j42]Menglu Li, Wen Zhang:
PHIAF: prediction of phage-host interactions with GAN-based data augmentation and sequence-based feature fusion. Briefings Bioinform. 23(1) (2022) - [j41]Xuan Liu, Congzhi Song, Feng Huang, Haitao Fu, Wenjie Xiao, Wen Zhang:
GraphCDR: a graph neural network method with contrastive learning for cancer drug response prediction. Briefings Bioinform. 23(1) (2022) - [j40]Guangzhan Zhang, Menglu Li, Huan Deng, Xinran Xu, Xuan Liu, Wen Zhang:
SGNNMD: signed graph neural network for predicting deregulation types of miRNA-disease associations. Briefings Bioinform. 23(1) (2022) - [j39]Hongzhun Wang, Feng Huang, Zhankun Xiong, Wen Zhang:
A heterogeneous network-based method with attentive meta-path extraction for predicting drug-target interactions. Briefings Bioinform. 23(4) (2022) - [j38]Haitao Fu, Feng Huang, Xuan Liu, Yang Qiu, Wen Zhang:
MVGCN: data integration through multi-view graph convolutional network for predicting links in biomedical bipartite networks. Bioinform. 38(2): 426-434 (2022) - [j37]Xuan Liu, Congzhi Song, Shichao Liu, Menglu Li, Xionghui Zhou, Wen Zhang:
Multi-way relation-enhanced hypergraph representation learning for anti-cancer drug synergy prediction. Bioinform. 38(20): 4782-4789 (2022) - [j36]Zhaoyang Chu, Feng Huang, Haitao Fu, Yuan Quan, Xionghui Zhou, Shichao Liu, Wen Zhang:
Hierarchical graph representation learning for the prediction of drug-target binding affinity. Inf. Sci. 613: 507-523 (2022) - [j35]Xiangan Chen, Shuai Liu, Wen Zhang:
Predicting Coding Potential of RNA Sequences by Solving Local Data Imbalance. IEEE ACM Trans. Comput. Biol. Bioinform. 19(2): 1075-1083 (2022) - [j34]Yang Qiu, Yang Zhang, Yifan Deng, Shichao Liu, Wen Zhang:
A Comprehensive Review of Computational Methods For Drug-Drug Interaction Detection. IEEE ACM Trans. Comput. Biol. Bioinform. 19(4): 1968-1985 (2022) - [j33]Zhankun Xiong, Feng Huang, Ziyan Wang, Shichao Liu, Wen Zhang:
A Multimodal Framework for Improving in Silico Drug Repositioning With the Prior Knowledge From Knowledge Graphs. IEEE ACM Trans. Comput. Biol. Bioinform. 19(5): 2623-2631 (2022) - [j32]Shuai Liu, Xinran Xu, Zhihao Yang, Xiaohan Zhao, Shichao Liu, Wen Zhang:
EPIHC: Improving Enhancer-Promoter Interaction Prediction by Using Hybrid Features and Communicative Learning. IEEE ACM Trans. Comput. Biol. Bioinform. 19(6): 3435-3443 (2022) - [c23]Ziyan Wang, Chengzhi Hong, Xuan Liu, Zhankun Xiong, Feng Liu, Wen Zhang:
Predicting drug transcriptional response similarity using Signed Graph Convolutional Network. BIBM 2022: 340-345 - [c22]Yuzhuo Dai, Shilong Zhang, Yue Tang, Wolfgang Mayer, Jixiang Li, Hongyu Li, Zhonghao Zhang, Haiqin Li, Ying Wang, Wen Zhang, Qin Jiang, Hong-Yu Zhang, Bing Li, Zaiwen Feng:
GMFQP: An Ontology-mediated Gut Microbiota Federated Query Platform. BIBM 2022: 730-735 - [i5]Zhaoyang Chu, Shichao Liu, Wen Zhang:
Hierarchical Graph Representation Learning for the Prediction of Drug-Target Binding Affinity. CoRR abs/2203.11458 (2022) - 2021
- [j31]Feng Huang, Xiang Yue, Zhankun Xiong, Zhouxin Yu, Shichao Liu, Wen Zhang:
Tensor decomposition with relational constraints for predicting multiple types of microRNA-disease associations. Briefings Bioinform. 22(3) (2021) - [j30]Zhouxin Yu, Feng Huang, Xiaohan Zhao, Wenjie Xiao, Wen Zhang:
Predicting drug-disease associations through layer attention graph convolutional network. Briefings Bioinform. 22(4) (2021) - [j29]Xuan Liu, Wenbo Chen, Yu Fang, Siqi Yang, Liuping Chang, Xingyu Chen, Haidong Ye, Xinyu Tang, Shan Zhong, Wen Zhang, Zhiqiang Dong, Leng Han, Chunjiang He:
ADEIP: an integrated platform of age-dependent expression and immune profiles across human tissues. Briefings Bioinform. 22(6) (2021) - [j28]Hua Chen, Sheng Sheng, Chong-Yu Xu, Zhiyu Li, Wen Zhang, Shaowen Wang, Shenglian Guo:
A spatiotemporal estimation method for hourly rainfall based on F-SVD in the recommender system. Environ. Model. Softw. 144: 105148 (2021) - [j27]Wen Zhang, Zhishuai Li, Wenzheng Guo, Weitai Yang, Feng Huang:
A Fast Linear Neighborhood Similarity-Based Network Link Inference Method to Predict MicroRNA-Disease Associations. IEEE ACM Trans. Comput. Biol. Bioinform. 18(2): 405-415 (2021) - [c21]Shilong Zhang, Yue Tang, Jing Yan, Linye Li, Tong Li, Jixiang Li, Peilin Xie, Yuanshuai Gu, Jiakang Xu, Zaiwen Feng, Wen Zhang, Jingbo Xia, Wolfgang Mayer, Hong-Yu Zhang, Guang-Cun He, Keqing He:
A Graph-based Approach for Integrating Biological Heterogeneous Data Based on Connecting Ontology. BIBM 2021: 600-607 - [c20]Haorui Wang, Shahanavaj Khan, Shichao Liu, Fang Zheng, Wen Zhang:
Predicting Drug-miRNA Resistance with Layer Attention Graph Convolution Network and Multi Channel Feature Extraction. BIBM 2021: 1083-1089 - [c19]Chengshuai Zhao, Shuai Liu, Feng Huang, Shichao Liu, Wen Zhang:
CSGNN: Contrastive Self-Supervised Graph Neural Network for Molecular Interaction Prediction. IJCAI 2021: 3756-3763 - [i4]Hongzhun Wang, Feng Huang, Wen Zhang:
HampDTI: a heterogeneous graph automatic meta-path learning method for drug-target interaction prediction. CoRR abs/2112.08567 (2021) - 2020
- [j26]Guangyan Zhang, Ziru Liu, Jichen Dai, Zilan Yu, Shuai Liu, Wen Zhang:
ItLnc-BXE: A Bagging-XGBoost-Ensemble Method With Comprehensive Sequence Features for Identification of Plant lncRNAs. IEEE Access 8: 68811-68819 (2020) - [j25]Xiang Yue, Zhen Wang, Jingong Huang, Srinivasan Parthasarathy, Soheil Moosavinasab, Yungui Huang, Simon M. Lin, Wen Zhang, Ping Zhang, Huan Sun:
Graph embedding on biomedical networks: methods, applications and evaluations. Bioinform. 36(4): 1241-1251 (2020) - [j24]Yifan Deng, Xinran Xu, Yang Qiu, Jingbo Xia, Wen Zhang, Shichao Liu:
A multimodal deep learning framework for predicting drug-drug interaction events. Bioinform. 36(15): 4316-4322 (2020) - [j23]Haorui Wang, Xiaochan Wang, Zhouxin Yu, Wen Zhang:
Graph embedding and ensemble learning for predicting gene-disease associations. Int. J. Data Min. Bioinform. 23(4): 360-379 (2020) - [j22]Jiang Li, Yawen Xue, Muhammad Talal Amin, Yanbo Yang, Jiajun Yang, Wen Zhang, Wenqian Yang, Xiaohui Niu, Hong-Yu Zhang, Jing Gong:
ncRNA-eQTL: a database to systematically evaluate the effects of SNPs on non-coding RNA expression across cancer types. Nucleic Acids Res. 48(Database-Issue): D956-D963 (2020)
2010 – 2019
- 2019
- [j21]Wen Zhang, Chenglin Yu, Xiaochan Wang, Feng Liu:
Predicting CircRNA-Disease Associations Through Linear Neighborhood Label Propagation Method. IEEE Access 7: 83474-83483 (2019) - [j20]Yuchong Gong, Yanqing Niu, Wen Zhang, Xiaohong Li:
A network embedding-based multiple information integration method for the MiRNA-disease association prediction. BMC Bioinform. 20(1): 468:1-468:13 (2019) - [j19]Wen Zhang, Kanghong Jing, Feng Huang, Yanlin Chen, Bolin Li, Jinghao Li, Jing Gong:
SFLLN: A sparse feature learning ensemble method with linear neighborhood regularization for predicting drug-drug interactions. Inf. Sci. 497: 189-201 (2019) - [c18]Shichao Liu, Ziyang Huang, Yang Qiu, Yi-Ping Phoebe Chen, Wen Zhang:
Structural Network Embedding using Multi-modal Deep Auto-encoders for Predicting Drug-drug Interactions. BIBM 2019: 445-450 - [c17]Zeming Liu, Feng Liu, Chengzhi Hong, Meng Gao, Yi-Ping Phoebe Chen, Shichao Liu, Wen Zhang:
Detection of Cell Types from Single-cell RNA-seq Data using Similarity via Kernel Preserving Learning Embedding. BIBM 2019: 451-457 - [c16]Xiaochan Wang, Yuchong Gong, Jing Yi, Wen Zhang:
Predicting gene-disease associations from the heterogeneous network using graph embedding. BIBM 2019: 504-511 - [c15]Yanzhen Xu, Xiaohan Zhao, Shuai Liu, Shichao Liu, Yanqing Niu, Wen Zhang, Leyi Wei:
LncPred-IEL: A Long Non-coding RNA Prediction Method using Iterative Ensemble Learning. BIBM 2019: 555-562 - [c14]Shuang Zhou, Xiang Yue, Xinran Xu, Shichao Liu, Wen Zhang, Yanqing Niu:
LncRNA-miRNA interaction prediction from the heterogeneous network through graph embedding ensemble learning. BIBM 2019: 622-627 - [c13]Shichao Liu, Shuangfei Zhai, Lida Zhu, Fuxi Zhu, Zhongfei (Mark) Zhang, Wen Zhang:
Efficient Network Representations Learning: An Edge-Centric Perspective. KSEM (2) 2019: 373-388 - [i3]Xiang Yue, Zhen Wang, Jingong Huang, Srinivasan Parthasarathy, Soheil Moosavinasab, Yungui Huang, Simon M. Lin, Wen Zhang, Ping Zhang, Huan Sun:
Graph Embedding on Biomedical Networks: Methods, Applications, and Evaluations. CoRR abs/1906.05017 (2019) - [i2]Guangyan Zhang, Ziru Liu, Jichen Dai, Zilan Yu, Shuai Liu, Wen Zhang:
PtLnc-BXE: Prediction of plant lncRNAs using a Bagging-XGBoost-ensemble method with multiple features. CoRR abs/1911.00185 (2019) - [i1]Feng Huang, Zhankun Xiong, Guan Zhang, Zhouxin Yu, Xinran Xu, Wen Zhang:
Predicting microRNA-disease associations from knowledge graph using tensor decomposition with relational constraints. CoRR abs/1911.05584 (2019) - 2018
- [j18]Wen Zhang, Weitai Yang, Xiaoting Lu, Feng Huang, Fei Luo:
The Bi-Direction Similarity Integration Method for Predicting Microbe-Disease Associations. IEEE Access 6: 38052-38061 (2018) - [j17]Wen Zhang, Xiang Yue, Weiran Lin, Wenjian Wu, Ruoqi Liu, Feng Huang, Feng Liu:
Predicting drug-disease associations by using similarity constrained matrix factorization. BMC Bioinform. 19(1): 233:1-233:12 (2018) - [j16]Guifeng Tang, Jingwen Shi, Wenjian Wu, Xiang Yue, Wen Zhang:
Sequence-based bacterial small RNAs prediction using ensemble learning strategies. BMC Bioinform. 19-S(20): 13-23 (2018) - [j15]Wen Zhang, Qianlong Qu, Yunqiu Zhang, Wei Wang:
The linear neighborhood propagation method for predicting long non-coding RNA-protein interactions. Neurocomputing 273: 526-534 (2018) - [j14]Wen Zhang, Xinrui Liu, Yanlin Chen, Wenjian Wu, Wei Wang, Xiaohong Li:
Feature-derived graph regularized matrix factorization for predicting drug side effects. Neurocomputing 287: 154-162 (2018) - [j13]Wen Zhang, Yanlin Chen, Dingfang Li, Xiang Yue:
Manifold regularized matrix factorization for drug-drug interaction prediction. J. Biomed. Informatics 88: 90-97 (2018) - [j12]Wen Zhang, Xiang Yue, Guifeng Tang, Wenjian Wu, Feng Huang, Xining Zhang:
SFPEL-LPI: Sequence-based feature projection ensemble learning for predicting LncRNA-protein interactions. PLoS Comput. Biol. 14(12) (2018) - [c12]Wen Zhang, Guifeng Tang, Siman Wang, Yanlin Chen, Shuang Zhou, Xiaohong Li:
Sequence-derived linear neighborhood propagation method for predicting lncRNA-miRNA interactions. BIBM 2018: 50-55 - [c11]Wen Zhang, Feng Huang, Xiang Yue, Xiaoting Lu, Weitai Yang, Zhishuai Li, Feng Liu:
Prediction of Drug-Disease Associations and Their Effects by Signed Network-Based Nonnegative Matrix Factorization. BIBM 2018: 798-802 - [c10]Wen Zhang, Xiaoting Lu, Weitai Yang, Feng Huang, Binlu Wang, Alan Wang, Qi Zhao:
HNGRNMF: Heterogeneous Network-based Graph Regularized Nonnegative Matrix Factorization for predicting events of microbe-disease associations. BIBM 2018: 803-807 - 2017
- [j11]Wen Zhang, Yanlin Chen, Feng Liu, Fei Luo, Gang Tian, Xiaohong Li:
Predicting potential drug-drug interactions by integrating chemical, biological, phenotypic and network data. BMC Bioinform. 18(1): 18:1-18:12 (2017) - [j10]Wen Zhang, Xiaopeng Zhu, Yu Fu, Junko Tsuji, Zhiping Weng:
Predicting human splicing branchpoints by combining sequence-derived features and multi-label learning methods. BMC Bioinform. 18(S-13): 464:1-464:11 (2017) - [j9]Wen Zhang, Xiang Yue, Feng Liu, Yanlin Chen, Shikui Tu, Xining Zhang:
A unified frame of predicting side effects of drugs by using linear neighborhood similarity. BMC Syst. Biol. 11(6): 23-34 (2017) - [c9]Wen Zhang, Xiang Yue, Yanlin Chen, Weiran Lin, Bolin Li, Feng Liu, Xiaohong Li:
Predicting drug-disease associations based on the known association bipartite network. BIBM 2017: 503-509 - [c8]Wen Zhang, Jingwen Shi, Guifeng Tang, Wenjian Wu, Xiang Yue, Dingfang Li:
Predicting small RNAs in bacteria via sequence learning ensemble method. BIBM 2017: 643-647 - 2016
- [j8]Dingfang Li, Longqiang Luo, Wen Zhang, Feng Liu, Fei Luo:
A genetic algorithm-based weighted ensemble method for predicting transposon-derived piRNAs. BMC Bioinform. 17: 329 (2016) - [j7]Wen Zhang, Hua Zou, Longqiang Luo, Qianchao Liu, Weijian Wu, Wenyi Xiao:
Predicting potential side effects of drugs by recommender methods and ensemble learning. Neurocomputing 173: 979-987 (2016) - [c7]Wen Zhang, Xiaopeng Zhu, Yu Fu, Junko Tsuji, Zhiping Weng:
The prediction of human splicing branchpoints by multi-label learning. BIBM 2016: 254-259 - [c6]Wen Zhang, Yanlin Chen, Shikui Tu, Feng Liu, Qianlong Qu:
Drug side effect prediction through linear neighborhoods and multiple data source integration. BIBM 2016: 427-434 - [c5]Ruichu Cai, Zhenjie Zhang, Srinivasan Parthasarathy, Anthony K. H. Tung, Zhifeng Hao, Wen Zhang:
Multi-Domain Manifold Learning for Drug-Target Interaction Prediction. SDM 2016: 18-26 - 2015
- [j6]Wen Zhang, Feng Liu, Longqiang Luo, Jingxia Zhang:
Predicting drug side effects by multi-label learning and ensemble learning. BMC Bioinform. 16: 365:1-365:11 (2015) - 2013
- [c4]Wen Zhang, Juan Liu, Yi Xiong, Meng Ke, Ke Zhang:
Predicting immunogenic T-cell epitopes by combining various sequence-derived features. BIBM 2013: 4-9 - 2012
- [j5]Wen Zhang, Juan Liu, Meng Zhao, Qingjiao Li:
Predicting linear B-cell epitopes by using sequence-derived structural and physicochemical features. Int. J. Data Min. Bioinform. 6(5): 557-569 (2012) - 2011
- [j4]Wen Zhang, Yi Xiong, Meng Zhao, Hua Zou, Xinghuo Ye, Juan Liu:
Prediction of conformational B-cell epitopes from 3D structures by random forest with a distance-based feature. BMC Bioinform. 12: 341 (2011) - [c3]Yi Xiong, Wen Zhang, Tao Zeng, Juan Liu:
Prediction of Heme Binding Sites in Heme Proteins Using an Integrative Sequence Profile Coupling Evolutionary Information with Physicochemical Properties. BIBM 2011: 143-146 - 2010
- [j3]Wen Zhang, Juan Liu, Yanqing Niu:
Quantitative prediction of MHC-II binding affinity using particle swarm optimization. Artif. Intell. Medicine 50(2): 127-132 (2010)
2000 – 2009
- 2009
- [j2]Wen Zhang, Juan Liu, Yanqing Niu:
Quantitative prediction of MHC-II peptide binding affinity using relevance vector machine. Appl. Intell. 31(2): 180-187 (2009) - 2008
- [j1]Wen Zhang, Juan Liu, Yanqing Niu, Lian Wang, Xihao Hu:
A Bayesian regression approach to the prediction of MHC-II binding affinity. Comput. Methods Programs Biomed. 92(1): 1-7 (2008) - [c2]Wen Zhang, Juan Liu, Yanqing Niu, Lian Wang, Zhi Zhang:
Quantitative Prediction of MHC-II Peptide Binding Affinity Using Global Description of Peptide Sequences. BMEI (1) 2008: 352-356 - 2006
- [c1]Dingfang Li, Wen Zhang:
Gene Selection Using Rough Set Theory. RSKT 2006: 778-785
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 2024-11-20 22:00 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint