赵星
职称:教授
邮箱:zhaoxing_1999@126.com
个人简介
赵星,首都师范大学教授,博士生导师,检测成像北京高等学校工程研究中心主任。南方科技大学双聘教授,深圳国家应用数学中心CT成像工程实验室副主任。2005年入选北京市科技新星计划;2013年入选北京市青年拔尖人才计划。研究方向为计算机断层成像(CT)、计算机图形学。近年来主持国家自然科学基金重大仪器项目等4项国家自然科学基金项目。另外还承担了科技部重点研发计划、科技部重大仪器项目、国家863计划项目、国家自然科学基金重点项目等多项国家重大重点项目的课题。在国内外重要刊物和学术会议上发表50余篇论文,包括IEEE TMI、Inverse Problems、Medical Physics、PMB、SCANNING等国际知名期刊。2010年获得中国体视学会第四届CT和三维成像科技新进展奖,2014年获得英国无损检测协会颁发的The Ron Halmshaw Award奖,2018年获得教育部科技进步二等奖。
研究领域
计算机断层成像(CT)、计算机图形学
代表论文
[1] Weibin Zhang, Shusen Zhao, Huiying Pan, Yunsong Zhao, Xing Zhao*. An Iterative Reconstruction Method Based on Monochromatic Images for Dual Energy CT, Medical Physics, DOI: 10.1002/mp.15200, 2021.
[2] Genwei Ma, Yinghui Zhang, Xing Zhao*, Tong Wang and Hongwei Li*. A neural network with encoded visible edge prior for limited-angle computed tomography reconstruction, Medical Physics, DOI: 10.1002/mp.15205, 2021.
[3] Shusen Zhao, Dimeng Xia, Xing Zhao*. Fast image reconstruction method for planar objects CT inspired by differential properties of Fourier transform (DPFT), Inverse problems, https://doi.org/10.1088/1361-6420/abff79, 2021.
[4] Shusen Zhao, Huiying Pan, Weibin Zhang, Dimeng Xia and Xing Zhao*. An oblique projection modification technique (OPMT) for fast multispectral CT reconstruction,Physics in Medicine & Biology 66, 065003, 2021.
[5] Xiaojuan Deng, Xing Zhao, Mengfei Li and Hongwei Li*. Limited-angle CT reconstruction with generalized shrinkage operators as regularizers. Inverse Problems and Imaging, doi:10.3934/ipi.2021019, 2021.
[6] Wenjuan Shen, Xing Zhao*, Mengfei li. A sequential regularization based image reconstruction method for limited-angle spectral CT, Physics in Medicine & Biology 65 235038, https://doi.org/10.1088/1361-6560/ab9771, 2020.
[7] Genwei Ma, Yining Zhu*, and Xing Zhao*. Learning Image From Projection: A Full-Automatic Reconstruction (FAR) Net for Computed Tomography, VOLUME 8, 219400-219414, IEEE ACCESS, 2020.
[8] Yinghui Zhang, Xiaojuan Deng, Xing Zhao and Hongwei Li. A Restricted Linearised Augmented Lagrangian Method for Euler’s Elastica Model,East Asian Journal on Applied Mathematics,doi: 10.4208/eajam.200520.191020, 2020.
[9] Chang Liu, San Gao, Xing Zhao and Jun Qiu, "All-in-focus Sweep Imaging Based on Wigner Distribution Function," in IEEE Access. doi: 10.1109/ACCESS. 2878056, 2018.
[10] Shu-sen, Zhao, Wen-juan Sheng, Xing Zhao*. A Frame of 3D Printing Data Generation Method Extracted from CT data. International Journal of Sensing and Imaging, Springer. vol. 19, no. 12, pp. 1-13, 2018.
[11] Jing-Jing Hu, Xing Zhao. A practical material decomposition method for x-ray dual spectral computed tomography. Journal of X-Ray Science and Technology 24(3) (2016) 407-425.
[12] Jingjing Hu, Xing Zhao, Feng Wang. An extended simultaneous algebraic reconstruction technique (E-SART) for X-ray dual spectral computed tomography, Scanning. Volume 38, Issue 6 November/December, 599–611, 2016.
[13] Jingjing Hu, Xing Zhao, Huitao Zhang, A GPU-based multi-resolution approach to iterative reconstruction algorithms in x-ray 3D dual spectral computed tomography, Neurocomputing, 215, 26, 71–81, 2016.
[14] Luo T, Shi C, Zhao Xing*, et al. Automatic Synthesis of Panoramic Radiographs from Dental Cone Beam Computed Tomography Data[J]. Plos One, 11(6), 2016.
[15] Xing Zhao*, Jing-Jing Hu, Yun-Song Zhao, Hui-Tao Zhang and Peng Zhang. Iterative dual energy material decomposition from spatial mismatched raw data sets. Journal of X-Ray Science and Technology 22, 745–762, 2014.
[16] Xing Zhao*, Jing-jing Hu, Yun-song Zhao, Hui-tao Zhang. Insight, A novel iterative reconstruction method for dual-energy computed tomography based on polychromatic forward-projection calibration, Insight - Non-Destructive Testing and Condition Monitoring vol. 56, No.10,541-548, 2014.
[17] Yun-Song Zhao, Xing Zhao and Peng Zhang*. An extended algebraic reconstruction technique (E-ART) for dual spectral CT. IEEE Transactions on Medical Imaging, 34, NO. 3, 761-768, 2015.
[18] Xing Zhao*, Jing-jing Hu, Tao Yang. GPU based iterative cone-beam CT reconstruction using empty space skipping technique. Journal of X-Ray Science and Technology, 21(1) 53–69, 2013.
[19] Xing Zhao*, Jing-jing Hu, Feng Wang. An accelerated RAMLA reconstruction algorithm for X-ray cone-beam CT. Insight - Non-Destructive Testing and Condition Monitoring, 55 No 5 May 2013.
[20] Yining Zhu, Yunsong Zhao, Xing Zhao*. A multi-thread scheduling method for 3D CT image reconstruction using multi-GPU. Journal of X-Ray Science and Technology, 20: 187-197, 2012.
获奖情况及荣誉
[1] 发明专利: 一种基于有理分式拟合多能投影曲线的X射线能谱估计方法. 发明专利授权号: ZL 201711201563.7.
[2] 发明专利:一种X射线多能谱CT有限角扫描模式和图像迭代重建方法. 专利号: ZL 201711261688.9
[3] 发明专利:一种X射线双能谱CT成像的基材料分解方法. 专利号: ZL 201711261636.1
[4] 发明专利:一种双能谱CT图像迭代重建方法. 专利号: ZL 201310576885.5
[5] 发明专利:一种基于投影估计的多能谱CT图像重建方法. 专利号: ZL 201310581204.4.
[6] 发明专利: 一种基于方程正交化修正的能谱CT多基材料快速迭代分解方法. 专利号: 202010777292.5.
[7] 发明专利: 一种基于倾斜投影修正技术的多能谱CT快速迭代重建方法.专利号, ZL 202010885189.2.
[8] 发明专利: 基于深度学习的CT图像分块重建方法及系统. 专利号, ZL201910848292.7
[9] 发明专利:一种从三维牙科锥形束CT数据中提取全景图的方法. 专利号:ZL 201510954620.3
[10] 发明专利:一种3D打印数字模型剖切及接口设计方法及应用. 专利号: ZL 201710818264.1
[11] 发明专利:用图形处理器加速体CT重建的实现方法. 专利号: ZL 200810113846.0
近年承担的科研项目:
[1] 科技部国家重点研发计划,变革性技术关键科学问题专项, 医学成像中的关键数学问题及其产业应用, 2020YFA0712200. 2020-2025.
[2] 科技部国家重大仪器设备开发专项:X射线三维显微成像检测系统的研制与应用开发(2011YQ030112),2012-2015.
[3] 国家自然科学基金, 重大科研仪器研制项目:临床前骨骼专用三维高分辨定量能谱CT的研制与应用(61827809), 2019-2023.
[4] 国家自然科学基金,面上项目:双能谱CT迭代重建算法研究(61371195),2014 -2017.
[5] 国家自然科学基金,面上项目:基于图形处理器的锥束CT快速迭代算法研究(60972140),2010 -2012.
[6] 国家自然科学基金, 青年项目:基于PC机的锥束CT大规模体数据可视化研究(60502031), 2006 -2007.
[7] 国家自然科学基金, 科学仪器专项:双能谱显微CT研究与开发(61127003), 2012-2015.
[8] 国家自然科学基金, 重点项目: X射线三维CT成像理论及应用基础研究(60532080), 2005 -2008.
[9] 国家863计划项目:植物三形态的参数化设计及动画生成的研究与开发(2008AA10Z218),2008 -2010.
[10] 北京市自然科学基金, 面上项目:圆轨道锥束CT的三维图像快速迭代重建研究(3102009),2010-2012.
[11] 北京市自然科学基金, 重点项目:X射线锥束CT及其应用研究(4051002),2005-2007.
[12] 北京市科委,科技新星项目:超大规模体数据集的高质量实时可视化研究(2005B49),2005-2008.
[13] 北京市青年拔尖人才计划项目:X射线双能谱CT图像重建方法研究,2013-2015.
[14] 北京市留学归国人员科技择优项目:X射线椎束CT研制中几项关键技术的研究,2005 -2007.
[15] 北京市教委,面上项目:锥束CT成像的关键算法及其快速实现研究(KM201010028001),2010-2012.
[16] 北京市教育委员会,市属高校创新能力提升计划项目:电子封装检测设备的研发及应用(TSJHG201510028009) , 2015-2017.
[17] 天津市科技计划项目:石油/地质专用X光三维显微成像检测技术及设备,