个人简介
张谊坤,博士,讲师,硕士生导师。 2023 年于东南大学计算机科学与工程学院获得博士学位, 师从 陈阳教授 ,同年加入东南大学计算机科学与工程 学院影像科学与技术实验室工作。研究方向为智能医学图像重建、处理与分析,在医学影像领域国际知名期刊/会议累计发表论文50余篇(其中第一作者 / 通讯作者论文 20篇)。受理/授权专利10余项。担任IEEE TMI/JBHI/TCI、IF、PR、CMIG、CMPB等领域内权威期刊审稿人。 招生需求:硕士生3-5名/年。
教育经历
2022.03–2023.03, University of Kansas Medical Center,Visiting PhD Student,Supervisor: Assoc. Prof. Hao Gao.
2019.09–2023.06, 东南大学计算机科学与工程学院,博士研究生,导师: 陈阳教授 .
工作经历
2023.11 至今 , 东南大学计算机科学与工程学院, 讲师 .
科研项目
1.国自然青年科学基金项目,数据-模型联合驱动的优质4D-CBCT成像方法研究,2025.01 ~ 2027.12,30万元,在研,负责人。
2.国家重点研发计划课题,高分辨率心血管血流动态成像技术研究,2024.12 ~ 2027.11,80万元,在研,课题骨干(子任务负责人)。
3.国际(地区)合作与交流项目,基于双能移动CBCT的神经外科导航关键技术研究,2026.01~2029.12,100万元,在研,项目骨干。
4.校企合作项目,XXX稀疏重建算法开发及优化,2025.03 ~ 2025.12,在研,负责人。
获奖情况
1. 电子学会科技进步一等奖。
2. 江苏省科技进步一等奖。
研究领域
智能医学图像重建、处理与分析,人工智能及其交叉应用
近期论文
查看导师新发文章
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1. Zhang Y .# , Liu G. , Liu Y., Xie S., Gu J.*, Liu J., Huang Z. , Ji X., Lyu T.*, Xi Y., Zhu S., Yang J., Chen Y.* (2025). GDP-Net: Global dependency-enhanced Dual-domain Parallel Network for Ring Artifact Removal . IEEE Transactions on Medical Imaging , 44(6), 2718-2731 .
2. Hu D.# , Zhang C. , Fei X., Yao Y., Xi Y., Liu J., Zhang Y.* , Gouenou C., Jean Louis C., Chen Y.* (2024). DPI-MoCo: Deep Prior Image Constrained Motion Compensation Reconstruction for 4D CBCT. IEEE Transactions on Medical Imaging , 44(3), 1243-1256 .
3. Zhang Y.# , Hu D.*, Li W., Zhang W., Chen G., Chen R. C., Chen Y., Gao H . (2025). 2V-CBCT: Two-Orthogonal-Projection based CBCT Reconstruction and Dose Calculation for Radiation Therapy using Real Projection Data. IEEE Transactions on Medical Imaging , 44(1), 284-296.
4. Zang S.#, Zhang Y.* , Hu D., ..., Yang C.* , ..., & Chen Y . (2024). Coarse-to-fine learning for planning CT-enhanced limited-angle CBCT reconstruction. IEEE Transactions on Instrumentation and Measurement, 73, 1–15.
5. Tao Y.#, Zhang Z., Hu D., ..., Zhang Y.* , Xie S., Yao Y., Chen Y . ( 2024 ). Prior image-constrained iterative reconstruction with adaptive step size for limited-angle CBCT. IEEE Transactions on Instrumentation and Measurement, 73, 1–13.
6. Ji X.# , Lu Y., Zhuo X., Zhang Y.* , Zhu S., & Chen Y.* (2023). A geometrical calibration method for C-arm CT based on a nonlinear registration model. IEEE Transactions on Instrumentation and Measurement, 72, 1–13.
7. Zhang Y.# , Hu D., Yan Z., Zhao Q., Quan G., Luo S., ... & Chen Y.* (2023). TIME-Net: Transformer-integrated multi-encoder network for limited-angle artifact removal in dual-energy CBCT. Medical Image Analysis, 83, 102650.
8. Zhang Y.# , Hu D., Hao S., Liu J., Quan G., Zhang Y., ... & Chen Y. * (2022). DREAM-Net: Deep residual error iterative minimization network for sparse-view CT reconstruction. IEEE Journal of Biomedical and Health Informatics, 27(1), 480-491.
9. Zhang Y.# , Hu D., Lyu T., Quan G., Xiang J., Coatrieux G., ... & Chen Y.* (2022). SPIE-DIR: Self-Prior Information Enhanced Deep Iterative Reconstruction Using Two Complementary Limited-Angle Scans for DECT. IEEE Transactions on Instrumentation and Measurement, 72, 1-12.
10. Zhang Y.# , Hu D., Lyu T., Zhu J.*, Quan G., Xiang J., ... & Chen Y.* (2022). PIE-ARNet: Prior Image Enhanced Artifact Removal Network for Limited-Angle DECT. IEEE Transactions on Instrumentation and Measurement, 72, 1-12.
11. Zhang Y.# , Hu D., Zhao Q., Quan G., Liu J., Liu, Q., ... & Yu H. (2021). CLEAR: comprehensive learning enabled adversarial reconstruction for subtle structure enhanced low-dose CT imaging. IEEE Transactions on Medical Imaging, 40(11), 3089-3101.
12. Zhang Y.# , Lyu T., Ge R., Zhao Q., Hu D., Zhang L., ... & Chen Y.* (2021). CD-Net: Comprehensive domain network with spectral complementary for DECT sparse-view reconstruction. IEEE Transactions on Computational Imaging, 7, 436-447.
13. He Z.#, Zhang Y.# , Guan Y., Guan B., Niu S., Zhang Y., ... & Liu, Q.* (2022). Iterative reconstruction for low-dose CT using deep gradient priors of generative model. IEEE Transactions on Radiation and Plasma Medical Sciences, 6(7), 741-754.
14. Zhang Y.# , Su T., ..., Chen Y., Zheng H., Liang D., & Ge Y.* (2020). Dual-energy CT reconstruction using deep mutual-domain knowledge for basis decomposition and denoising. SPIE Medical Imaging, 2020, Houston, Texas, United States.
学术兼职
担任IEEE TMI/JBHI/TCI、IF、PR、CMIG、CMPB等领域内权威期刊审稿人。