default search action
Hongjiang Wei
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j25]Ming Zhang, Ruimin Feng, Zhenghao Li, Jie Feng, Qing Wu, Zhiyong Zhang, Chengxin Ma, Jinsong Wu, Fuhua Yan, Chunlei Liu, Yuyao Zhang, Hongjiang Wei:
A subject-specific unsupervised deep learning method for quantitative susceptibility mapping using implicit neural representation. Medical Image Anal. 95: 103173 (2024) - [j24]Yawen Sun, Wentao Hu, Ying Hu, Yage Qiu, Yuewei Chen, Qun Xu, Hongjiang Wei, Yongming Dai, Yan Zhou:
Exploring cognitive related microstructural alterations in normal appearing white matter and deep grey matter for small vessel disease: A quantitative susceptibility mapping study. NeuroImage 298: 120790 (2024) - [j23]Mingxing Chen, Yiqing Wang, Yuting Shi, Jie Feng, Ruimin Feng, Xiaojun Guan, Xiaojun Xu, Yuyao Zhang, Cheng Jin, Hongjiang Wei:
Brain Age Prediction Based on Quantitative Susceptibility Mapping Using the Segmentation Transformer. IEEE J. Biomed. Health Informatics 28(2): 1012-1021 (2024) - [j22]Ruimin Feng, Qing Wu, Jie Feng, Huajun She, Chunlei Liu, Yuyao Zhang, Hongjiang Wei:
IMJENSE: Scan-Specific Implicit Representation for Joint Coil Sensitivity and Image Estimation in Parallel MRI. IEEE Trans. Medical Imaging 43(4): 1539-1553 (2024) - [c12]Shuyang Lai, Xuanyu Tian, Qing Wu, Chenhe Du, Xiaojun Xu, Hongjiang Wei, Xiaojun Guan, Yuyao Zhang:
Reconstructing Knee CT Volumes from Biplanar X-Rays Via Self-Supervised Neural Field. ISBI 2024: 1-5 - [c11]Xiyue Lin, Chenhe Du, Qing Wu, Xuanyu Tian, Jingyi Yu, Yuyao Zhang, Hongjiang Wei:
Zero-Shot Low-Field MRI Enhancement via Denoising Diffusion Driven Neural Representation. MICCAI (7) 2024: 775-785 - [i19]Chenhe Du, Xiyue Lin, Qing Wu, Xuanyu Tian, Ying Su, Zhe Luo, Hongjiang Wei, S. Kevin Zhou, Jingyi Yu, Yuyao Zhang:
DPER: Diffusion Prior Driven Neural Representation for Limited Angle and Sparse View CT Reconstruction. CoRR abs/2404.17890 (2024) - [i18]Qing Wu, Xu Guo, Lixuan Chen, Dongming He, Hongjiang Wei, Xudong Wang, S. Kevin Zhou, Yifeng Zhang, Jingyi Yu, Yuyao Zhang:
Unsupervised Density Neural Representation for CT Metal Artifact Reduction. CoRR abs/2405.07047 (2024) - [i17]Xuanyu Tian, Zhuoya Dong, Xiyue Lin, Yue Gao, Hongjiang Wei, Yanhang Ma, Jingyi Yu, Yuyao Zhang:
Zero-Shot Image Denoising for High-Resolution Electron Microscopy. CoRR abs/2406.14264 (2024) - [i16]Jiayue Chu, Chenhe Du, Xiyue Lin, Yuyao Zhang, Hongjiang Wei:
Highly Accelerated MRI via Implicit Neural Representation Guided Posterior Sampling of Diffusion Models. CoRR abs/2407.02744 (2024) - [i15]Qing Wu, Chenhe Du, Xuanyu Tian, Jingyi Yu, Yuyao Zhang, Hongjiang Wei:
Moner: Motion Correction in Undersampled Radial MRI with Unsupervised Neural Representation. CoRR abs/2409.16921 (2024) - 2023
- [j21]Zhenghao Li, Ruimin Feng, Qiangqiang Liu, Jie Feng, Guoyan Lao, Ming Zhang, Jun Li, Yuyao Zhang, Hongjiang Wei:
APART-QSM: An improved sub-voxel quantitative susceptibility mapping for susceptibility source separation using an iterative data fitting method. NeuroImage 274: 120148 (2023) - [j20]Qing Wu, Ruimin Feng, Hongjiang Wei, Jingyi Yu, Yuyao Zhang:
Self-Supervised Coordinate Projection Network for Sparse-View Computed Tomography. IEEE Trans. Computational Imaging 9: 517-529 (2023) - [j19]Qing Wu, Yuwei Li, Yawen Sun, Yan Zhou, Hongjiang Wei, Jingyi Yu, Yuyao Zhang:
An Arbitrary Scale Super-Resolution Approach for 3D MR Images via Implicit Neural Representation. IEEE J. Biomed. Health Informatics 27(2): 1004-1015 (2023) - [c10]Ruimin Feng, Qing Wu, Yuyao Zhang, Hongjiang Wei:
A Scan-Specific Unsupervised Method for Parallel MRI Reconstruction Via Implicit Neural Representation. ISBI 2023: 1-5 - [c9]Jiangjie Wu, Lixuan Chen, Zhenghao Li, Lihui Wang, Rongpin Wang, Hongjiang Wei, Yuyao Zhang:
ASSURED: A Self-Supervised Deep Decoder Network for Fetus Brain MRI Reconstruction. ISBI 2023: 1-5 - [c8]Qing Wu, Xin Li, Hongjiang Wei, Jingyi Yu, Yuyao Zhang:
Joint Rigid Motion Correction and Sparse-View CT via Self-Calibrating Neural Field. ISBI 2023: 1-5 - [c7]Haonan Zhang, Yuhan Zhang, Qing Wu, Jiangjie Wu, Zhiming Zhen, Feng Shi, Jianmin Yuan, Hongjiang Wei, Chen Liu, Yuyao Zhang:
Self-Supervised Arbitrary Scale Super-Resolution Framework for Anisotropic MRI. ISBI 2023: 1-5 - [c6]Qing Wu, Lixuan Chen, Ce Wang, Hongjiang Wei, S. Kevin Zhou, Jingyi Yu, Yuyao Zhang:
Unsupervised Polychromatic Neural Representation for CT Metal Artifact Reduction. NeurIPS 2023 - [i14]Jie Feng, Ruimin Feng, Qing Wu, Zhiyong Zhang, Yuyao Zhang, Hongjiang Wei:
Spatiotemporal implicit neural representation for unsupervised dynamic MRI reconstruction. CoRR abs/2301.00127 (2023) - [i13]Haonan Zhang, Yuhan Zhang, Qing Wu, Jiangjie Wu, Zhiming Zhen, Feng Shi, Jianmin Yuan, Hongjiang Wei, Chen Liu, Yuyao Zhang:
Self-supervised arbitrary scale super-resolution framework for anisotropic MRI. CoRR abs/2305.01360 (2023) - [i12]Qing Wu, Lixuan Chen, Ce Wang, Hongjiang Wei, S. Kevin Zhou, Jingyi Yu, Yuyao Zhang:
Unsupervised Polychromatic Neural Representation for CT Metal Artifact Reduction. CoRR abs/2306.15203 (2023) - [i11]Lixuan Chen, Xuanyu Tian, Jiangjie Wu, Ruimin Feng, Guoyan Lao, Yuyao Zhang, Hongjiang Wei:
JSMoCo: Joint Coil Sensitivity and Motion Correction in Parallel MRI with a Self-Calibrating Score-Based Diffusion Model. CoRR abs/2310.09625 (2023) - [i10]Ruimin Feng, Qing Wu, Jie Feng, Huajun She, Chunlei Liu, Yuyao Zhang, Hongjiang Wei:
IMJENSE: Scan-specific Implicit Representation for Joint Coil Sensitivity and Image Estimation in Parallel MRI. CoRR abs/2311.12892 (2023) - 2022
- [j18]Qiangqiang Liu, Junjie Wang, Changquan Wang, Fang Wei, Chencheng Zhang, Hongjiang Wei, Xiao-Lai Ye, Jiwen Xu:
FreeSurfer and 3D Slicer-Assisted SEEG Implantation for Drug-Resistant Epilepsy. Frontiers Neurorobotics 16: 848746 (2022) - [j17]Yuting Shi, Ruimin Feng, Zhenghao Li, Jie Zhuang, Yuyao Zhang, Hongjiang Wei:
Towards in vivo ground truth susceptibility for single-orientation deep learning QSM: A multi-orientation gradient-echo MRI dataset. NeuroImage 261: 119522 (2022) - [j16]Xiaojun Guan, Tao Guo, Cheng Zhou, Jingjing Wu, Qingze Zeng, Kaicheng Li, Xiao Luo, Xueqin Bai, Haoting Wu, Ting Gao, Luyan Gu, Xiaocao Liu, Zhengye Cao, Jiaqi Wen, Jingwen Chen, Hongjiang Wei, Yuyao Zhang, Chunlei Liu, Zhe Song, Yaping Yan, Jiali Pu, Baorong Zhang, Xiaojun Xu, Minming Zhang:
Altered brain iron depositions from aging to Parkinson's disease and Alzheimer's disease: A quantitative susceptibility mapping study. NeuroImage 264: 119683 (2022) - [j15]Yuting Shi, Steven Cao, Xu Li, Ruimin Feng, Jie Zhuang, Yuyao Zhang, Chunlei Liu, Hongjiang Wei:
Regularized Asymmetric Susceptibility Tensor Imaging in the Human Brain in Vivo. IEEE J. Biomed. Health Informatics 26(9): 4508-4518 (2022) - [c5]Lixuan Chen, Jiangjie Wu, Qing Wu, Hongjiang Wei, Yuyao Zhang:
Continuous Longitudinal Fetus Brain Atlas Construction via Implicit Neural Representation. PIPPI@MICCAI 2022: 38-47 - [c4]Xuanyu Tian, Qing Wu, Hongjiang Wei, Yuyao Zhang:
Noise2SR: Learning to Denoise from Super-Resolved Single Noisy Fluorescence Image. MICCAI (6) 2022: 334-343 - [i9]Qing Wu, Ruimin Feng, Hongjiang Wei, Jingyi Yu, Yuyao Zhang:
Self-Supervised Coordinate Projection Network for Sparse-View Computed Tomography. CoRR abs/2209.05483 (2022) - [i8]Xuanyu Tian, Qing Wu, Hongjiang Wei, Yuyao Zhang:
Noise2SR: Learning to Denoise from Super-Resolved Single Noisy Fluorescence Image. CoRR abs/2209.06411 (2022) - [i7]Lixuan Chen, Jiangjie Wu, Qing Wu, Hongjiang Wei, Yuyao Zhang:
Continuous longitudinal fetus brain atlas construction via implicit neural representation. CoRR abs/2209.06413 (2022) - [i6]Ruimin Feng, Qing Wu, Yuyao Zhang, Hongjiang Wei:
A scan-specific unsupervised method for parallel MRI reconstruction via implicit neural representation. CoRR abs/2210.10439 (2022) - [i5]Qing Wu, Xin Li, Hongjiang Wei, Jingyi Yu, Yuyao Zhang:
Joint Rigid Motion Correction and Sparse-View CT via Self-Calibrating Neural Field. CoRR abs/2210.12731 (2022) - 2021
- [j14]Ruimin Feng, Jiayi Zhao, He Wang, Baofeng Yang, Jie Feng, Yuting Shi, Ming Zhang, Chunlei Liu, Yuyao Zhang, Jie Zhuang, Hongjiang Wei:
MoDL-QSM: Model-based deep learning for quantitative susceptibility mapping. NeuroImage 240: 118376 (2021) - [j13]Jiangjie Wu, Taotao Sun, Boliang Yu, Zhenghao Li, Qing Wu, Yutong Wang, Zhaoxia Qian, Yuyao Zhang, Ling Jiang, Hongjiang Wei:
Age-specific structural fetal brain atlases construction and cortical development quantification for chinese population. NeuroImage 241: 118412 (2021) - [c3]Yonghang Guan, Xiaojun Guan, Jingjing Xu, Hongjiang Wei, Xiaojun Xu, Yuyao Zhang:
DeepQSMSeg: A Deep Learning-based Sub-cortical Nucleus Segmentation Tool for Quantitative Susceptibility Mapping. EMBC 2021: 3676-3679 - [c2]Qing Wu, Yuwei Li, Lan Xu, Ruiming Feng, Hongjiang Wei, Qing Yang, Boliang Yu, Xiaozhao Liu, Jingyi Yu, Yuyao Zhang:
IREM: High-Resolution Magnetic Resonance Image Reconstruction via Implicit Neural Representation. MICCAI (6) 2021: 65-74 - [i4]Ruimin Feng, Jiayi Zhao, He Wang, Baofeng Yang, Jie Feng, Yuting Shi, Ming Zhang, Chunlei Liu, Yuyao Zhang, Jie Zhuang, Hongjiang Wei:
MoG-QSM: Model-based Generative Adversarial Deep Learning Network for Quantitative Susceptibility Mapping. CoRR abs/2101.08413 (2021) - [i3]Qing Wu, Yuwei Li, Lan Xu, Ruiming Feng, Hongjiang Wei, Qing Yang, Boliang Yu, Xiaozhao Liu, Jingyi Yu, Yuyao Zhang:
IREM: High-Resolution Magnetic Resonance (MR) Image Reconstruction via Implicit Neural Representation. CoRR abs/2106.15097 (2021) - [i2]Qing Wu, Yuwei Li, Yawen Sun, Yan Zhou, Hongjiang Wei, Jingyi Yu, Yuyao Zhang:
An Arbitrary Scale Super-Resolution Approach for 3-Dimensional Magnetic Resonance Image using Implicit Neural Representation. CoRR abs/2110.14476 (2021)
2010 – 2019
- 2019
- [j12]Yuyao Zhang, Jingjing Shi, Hongjiang Wei, Victor Han, Wen-Zhen Zhu, Chunlei Liu:
Neonate and infant brain development from birth to 2 years assessed using MRI-based quantitative susceptibility mapping. NeuroImage 185: 349-360 (2019) - [j11]Xu Li, Lin Chen, Kwame S. Kutten, Can Ceritoglu, Yue Li, Ningdong Kang, John T. Hsu, Ye Qiao, Hongjiang Wei, Chunlei Liu, Michael I. Miller, Susumu Mori, David M. Yousem, Peter C. M. van Zijl, Andreia V. Faria:
Multi-atlas tool for automated segmentation of brain gray matter nuclei and quantification of their magnetic susceptibility. NeuroImage 191: 337-349 (2019) - [j10]Hongjiang Wei, Steven Cao, Yuyao Zhang, Xiaojun Guan, Fuhua Yan, Kristen W. Yeom, Chunlei Liu:
Learning-based single-step quantitative susceptibility mapping reconstruction without brain extraction. NeuroImage 202 (2019) - [i1]Hongjiang Wei, Steven Cao, Yuyao Zhang, Xiaojun Guan, Fuhua Yan, Kristen W. Yeom, Chunlei Liu:
Learning-based Single-step Quantitative Susceptibility Mapping Reconstruction Without Brain Extraction. CoRR abs/1905.05953 (2019) - 2018
- [j9]Yuyao Zhang, Lihui Wang, Xiaojun Guan, Hongjiang Wei:
Illumination Normalization for Face Recognition via Jointly Optimized Dictionary-Learning and Sparse Representation. IEEE Access 6: 66632-66640 (2018) - [j8]Yuyao Zhang, Hongjiang Wei, Matthew J. Cronin, Naying He, Fuhua Yan, Chunlei Liu:
Longitudinal atlas for normative human brain development and aging over the lifespan using quantitative susceptibility mapping. NeuroImage 171: 176-189 (2018) - [j7]Hongjiang Wei, Peng Cao, Antje Bischof, Roland G. Henry, Peder E. Z. Larson, Chunlei Liu:
MRI gradient-echo phase contrast of the brain at ultra-short TE with off-resonance saturation. NeuroImage 175: 1-11 (2018) - 2017
- [j6]Yuyao Zhang, Hongjiang Wei:
Atlas construction of cardiac fiber architecture using a multimodal registration approach. Neurocomputing 259: 219-225 (2017) - [j5]Matthew J. Cronin, Nian Wang, Kyle Decker, Hongjiang Wei, Wen-Zhen Zhu, Chunlei Liu:
Exploring the origins of echo-time-dependent quantitative susceptibility mapping (QSM) measurements in healthy tissue and cerebral microbleeds. NeuroImage 149: 98-113 (2017) - 2016
- [j4]Kimberly L. H. Carpenter, Wei Li, Hongjiang Wei, Bing Wu, Xue Xiao, Chunlei Liu, Gordon Worley, Helen Link Egger:
Magnetic susceptibility of brain iron is associated with childhood spatial IQ. NeuroImage 132: 167-174 (2016) - [j3]Hongjiang Wei, Luke Xie, Russell Dibb, Wei Li, Kyle Decker, Yuyao Zhang, G. Allan Johnson, Chunlei Liu:
Imaging whole-brain cytoarchitecture of mouse with MRI-based quantitative susceptibility mapping. NeuroImage 137: 107-115 (2016) - [c1]Yue Gao, Weizhi Nie, Anan Liu, Yuting Su, Qionghai Dai, Le An, Fuhai Chen, Liujuan Cao, Shuilong Dong, Yu De, Zan Gao, Jiayun Hao, Rongrong Ji, Haisheng Li, Mingxia Liu, Lili Pan, Yu Qiu, Liwei Wei, Zhao Wang, Hongjiang Wei, Yuyao Zhang, Jun Zhang, Yan Zhang, Yali Zheng:
3D Object Retrieval with Multimodal Views. 3DOR@Eurographics 2016 - 2015
- [j2]Hongjiang Wei, Magalie Viallon, Bénédicte M. A. Delattre, Kevin Moulin, Feng Yang, Pierre Croisille, Yue Min Zhu:
Free-Breathing Diffusion Tensor Imaging and Tractography of the Human Heart in Healthy Volunteers Using Wavelet-Based Image Fusion. IEEE Trans. Medical Imaging 34(1): 306-316 (2015) - 2013
- [b1]Hongjiang Wei:
In vivo diffusion tensor imaging (DTI) for the human heart under free-breathing conditions. (Tenseur de diffusion d'imagerie (DTI) in vivo pour le cœur de l'homme dans des conditions de libre respiration). Institut national des sciences appliquées de Lyon, Lyon - Villeurbanne, France, 2013 - [j1]Hongjiang Wei, Magalie Viallon, Bénédicte M. A. Delattre, Lihui Wang, Vinay M. Pai, Han Wen, Hui Xue, Christoph Guetter, Pierre Croisille, Yuemin Zhu:
Assessment of Cardiac Motion Effects on the Fiber Architecture of the Human Heart In Vivo. IEEE Trans. Medical Imaging 32(10): 1928-1938 (2013)
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 2024-10-30 21:30 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint