教授

赵星

  • 职称(Positional titles):

  • 教授

  • 所在部门(Department):

  • 数学与交叉学科教研室

  • 研究方向(Research direction):

  • 数学与信息技术

  • 办公室(Office):

  • 教二楼 824

  • E-mail :

  • zhaoxing_1999 AT 126.com

  • 个人主页(Personal home page):

个人简介 论文出版物 教学经历 科研项目及会议 获奖情况 Personal profile


职称: 教授、博导
学位: 博士
毕业院校: 中国科技大学,法国INRIA博士后、日本岩手大学特聘研究员、美国芝加哥大学访问学者
研究方向:CT成像,数学与信息技术,计算机图形学
办公室:本部教二楼824
所在部门: 数学与交叉学科教研室主任
职 务: 北京检测成像工程中心主任
电 话:
电子邮件: zhaoxing_1999@126.com


1、 Genwei Ma, Xing Zhao*, Yining Zhu, Huitao Zhang. Projection-to-image transform frame: a lightweight block reconstruction network (LBRN) for computed tomography, Physics in Medicine & Biology, 67(3) 035010, 2022 ​
2、 Weibin Zhang, Shusen Zhao, Huiying Pan, Yunsong Zhao, Xing Zhao*. An Iterative Reconstruction Method Based on Monochromatic Images for Dual Energy CT, Medical Physics, 48(10), 6437-6452, 2021
3、 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, 48(10):6464-6481, 2021,
4、 Shusen Zhao, Dimeng Xia, Xing Zhao*. Fast image reconstruction method for planar objects CT inspired by differential properties of Fourier transform (DPFT), Inverse Problems, 37(7) 075001, 2021,
5、 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(06), 065003, 2021,
6、 Xiaojuan Deng, Xing Zhao,Mengfei Li,Hongwei Li, Limited-angle CT reconstruction with generalized shrinkage operators as regularizers, Inverse Problems and Imaging, 15(6), 1287-1306, 2021,
7、 Yinghui Zhang, Xiaojuan Deng, Xing Zhao, Hongwei Li,Restricted Linearized Augmented Lagrangian Method for Euler’s Elastica Model, East Asian Journal Applied Mathematics, Vol.11, No.2, pp.276-300, 20 on 21.
8、 Wenjuan Shen, Xing Zhao*, Mengfei li. A sequential regularization based image reconstruction method for limited-angle spectral CT, Physics in Medicine & Biology 65(23) 235038, December, 2020,
9、 Genwei Ma, Yining Zhu*, and Xing Zhao*. Learning Image From Projection: A Full-Automatic Reconstruction (FAR) Net for Computed Tomography, IEEE ACCESS, VOLUME 8, 219400-219414, 2020,
10、 Chang Liu, San Gao, Xing Zhao and Jun Qiu, All-in-focus Sweep Imaging Based on Wigner Distribution Function, IEEE Access, 2878056, 2018.
11、 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,
12、 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,
13、 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 2016, 599–611,
14、 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 November 2016, Pages 71–81,
15、 Luo T, Shi C, Zhao Xing*, et al. Automatic Synthesis of Panoramic Radiographs from Dental Cone Beam Computed Tomography Data, Plos One, 2016, 11(6),
16、 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 (2014) 745–762,
17、 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,
18、 Yun-Song Zhao, Xing Zhao and Peng Zhang. An extended algebraic reconstruction technique (E-ART) for dual spectral CT, IEEE Transactions on Medical Imaging, 2014,34(3), 2015, 761-768
19、 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, 2013, 21(1) 53–69,
20、 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, 2013, Vol 55 No 5 May 2013, 1-6 ,
21、 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, 2012, 20 : 187-197,
22、 Xing Zhao, Jingjing Hu, and Peng Zhang. GPU-Based 3D Cone-Beam CT Image Reconstruction for Large Data Volume. International Journal of Biomedical Imaging, International Journal of Biomedical Imaging. Vol. 2009, Article ID 149079. 2009,
23、 赵树森,潘慧莹,赵星,一种考虑散射光子影响的X射线能谱估计方法, 发明专利申请号,2021105686258,
24、 朱溢佞,张慧滔,赵星,李文斌,基于分类分支的CT图像细小裂缝分割装置和方法, 发明专利申请号,2021107582234,
25、 朱溢佞,邓世沃,张慧滔,张朋,赵星,首都师范大学,一种基于相位CT的材料分解与识别方法, 发明专利申请号,2021100196820,
26、 朱溢佞,周海川,张慧滔,赵星,首都师范大学,一种多尺度带孔密集重建网络及其有限角CT成像方法, 发明专利申请号,2021101192009,
27、 赵树森,赵星,潘慧莹,首都师范大学,一种低剂量X射线CT图像的多尺度去噪方法, 发明专利申请号,2019111081151,
28、 潘慧莹,赵树森,赵星,首都师范大学,一种慢电压切换下的能谱CT多基材料快速迭代分解方法, 发明专利申请号,2020107772925,
29、 张慧滔,朱溢佞,杨枫,赵星,侯贺晟,首都师范大学,一种岩芯三维数字化扫描系统 , 发明专利申请号:202010499959X,
30、 赵星,基于深度学习的CT图像分块重建方法及系统 , 发明专利申请号:201910848292.7 ,
31、 潘慧莹,赵星,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, 发明专利申请号: 202010777292.5,
32、 朱溢佞,廖苏豫,张慧滔,赵星,张超,一种基于同轴CT的相位-吸收反演和材料定量成像方法, 发明专利申请号:2020110146429 ,
33、 赵树森,夏迪梦,赵星,一种基于傅里叶变换微分性质的板状物CT图像快速重建方法 , 发明专利申请号,2020110773641 ,
34、 赵树森,赵星,一种用于X射线计算机分层扫描成像系统的板状物图像迭代重建方法, 发明专利申请号:2020112117473,
35、 罗婷,赵星,一种从三维牙科锥形束CT数据中提取全景图的方法, 发明专利授权号:ZL 201510954620.3,
36、 赵星,一种基于投影估计的多能谱CT图像重建方法, 发明专利专利号: ZL 201310581204.4,
37、 赵星,一种双能谱CT图像迭代重建方法, , 发明专利专利号: ZL 201310576885.5,
38、 赵星,一种X射线双能谱CT成像的基材料分解方法, 发明专利专利号: ZL 201711261636.1 ,
39、 赵星,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, 发明专利专利号:ZL 201711261688.9,
40、 张慧滔,张敬娜,朱溢佞,朱佩平,赵星, X射线微分相移CT的一种感兴趣区域重建方法, 发明专利申请号:2020112961024,
41、 赵云松,罗婷,赵星,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,
42、 赵树森,潘慧莹,赵星,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 , 发明专利申请号,2020108851892 ,
43、 盛文娟,赵星,一种3D打印数字模型剖切及接口设计方法及应用, 发明专利申请号, ZL 201710818264.1,
44、 朱溢佞,邓世沃,张慧滔,张朋,赵星,一种基于相位CT 的材料分解和识别方法, 发明专利,申请号:202110019682.0,
45、 张慧滔,徐文峰,朱溢佞,邓世沃,赵星,微纳米CT 投影数据的中心切片对齐方法, 发明专利,申请号:202011094025.4,
46、 张慧滔,徐文峰,朱溢佞,邓世沃,赵星,微纳米CT 系统转台误差的频域校正方法, 发明专利,申请号:202011094107.9,
47、 张慧滔,徐文峰,刘晓燕,朱溢佞,邓世沃,赵星,微纳米CT 投影图像的二次投影配准方法, 发明专利,申请号:202011094107.9


秋季学期, 数字信号处理, 本科生
秋季学期 , 计算机1(C语言), 本科生
秋季学期, 锥束CT成像理论, 博士生
春季学期, 计算机2(数据结构), 本科生
春季学期, 计算机图形学与图像处理, 硕士生
春季学期, CT理论与算法, 硕士生
春季学期, 科学计算可视化, 博士生


科研项目:
2020-12-01, 2025-12-01, 医学成像中的关键数学问题及其产业应用(2020YFA0712200), 科技部国家重点研发计划(课题负责人)
2019-01-01, 2023-12-31, 临床前骨骼专用三维高分辨定量能谱CT的研制与应用(61827809), 国家自然科学基金重大科研仪器研制项目(项目主持人)
2014-01-01, 2017-12-31, 双能谱CT迭代重建算法研究(61371195), 国家自然科学基金面上项目 (项目主持人)
2010-01-01, 2012-12-31, 基于图形处理器的锥束CT快速迭代算法研究(60972140), 国家自然科学基金面上项目 (项目主持人)
2006-01-01, 2007-12-31, 基于PC机的锥束CT大规模体数据可视化研究(60502031), 国家自然科学基金青年项目 (项目主持人)
2012-01-01, 2015-12-31, 双能谱显微CT研究与开发(61127003), 国家自然科学基金仪器专项 (课题负责人)
2014-01-01, 2017-12-31, 植物三形态的参数化设计及动画生成的研究与开发(2008AA10Z218), 国家863计划项目(项目副组长)
2010-01-01, 2012-12-31, 圆轨道锥束CT的三维图像快速迭代重建研究(3102009), 北京市自然科学基金面上项目 (项目主持人)
2005-01-01, 2008-12-31, 超大规模体数据集的高质量实时可视化研究(2005B49), 北京市科技新星项目(项目主持人)
2013-01-01, 2015-12-31, X射线双能谱CT图像重建方法研究, 北京市青年拔尖人才计划项目(项目主持人)
2013-01-01, 2015-12-31, X射线椎束CT研制中几项关键技术的研究, 北京市留学归国人员科技择优项目(项目主持人)
2010-01-01, 2012-12-31, 锥束CT成像的关键算法及其快速实现研究 (KM201010028001), 北京市教委面上项目(项目主持人)
2012-01-01, 2015-12-31, X射线三维显微成像检测系统的研制与应用开发(2011YQ030112), 科技部国家重大仪器设备开发专项(课题负责人)
2015-01-01, 2017-12-31, 电子封装检测设备的研发及应用(TSJHG201510028009), 北京市教育委员会市属高校创新能力提升计划项目(课题负责人)
2004-01-01, 2007-12-31, X射线三维CT成像理论及应用基础研究(60532080), 国家自然科学基金重点项目 (参与)
2005-01-01, 2007-12-31, X射线锥束CT及其应用研究(4051002), 北京市自然科学基金重点项目 (参与)
2019-08-01, 2020-12-31, 基于几何拓扑理论的战场环境三维重构方法, 中央军委科学技术委员会(参与)
2015-08-01, 2017-12-31, 石油/地质专用X光三维显微成像检测技术及设备, 天津市科技计划项目(参与)


2019, 首都师范大学第三界“师者如兰”突出贡献师门
2018, “CT成像关键技术创新及其应用“, 国家教育部科技进步二等奖
2014, 英国无损检测协会,The Ron Halmshaw Award奖
2013, 首都师范大学师德先进集体
2013, 北京市优秀人才资助计划青年拔尖人才计划
2010, 工业CT成像的关键技术研究,国家一级学会中国体视学会, CT和三维成像科技新进展奖
(国科奖社证字第011号)
2005, 北京市科技新星计划

社会工作:
2021-至今, 中国体视学学会, 理事
2018-至今, 中国体视学学会CT学会, 常委
2021-至今, 智能成像学会, 常委
2008-至今, 《CT理论与应用研究》, 编委
2010-至今, 《中国体视学与图像分析》, 编委

ZHAO Xing, received the Ph.D degree in Computer science from University of Science & Technology of China, HeFei, China. He is currently a professor in the school of Mathematical Sciences of CNU, Beijing, China, and the director of Beijing Higher Institution Engineering Research Center of Testing and Imaging. He was shortlisted for the Science and Technology New Star Program in 2005 and Beijing Excellent Young Talent Program in 2013. His research interests are in the areas of X-ray CT imaging theory and technology and computer graphics. As the project leader he has undertaken four NSFC projects, including a National Key Scientific Instrument and Equipment Development Project of NSFC. He has published more than 60 papers in related fields and applied for 28 national invention patents. The CT team of CNU pays attention to the development and application of CT equipment, including the industrial cone-beam CT (2004), the Micro dual energy CT (in 2014), the Micro-nano-CT (in 2014), the rock core CT (in 2016), the dental CT (in 2016), the multiscale Micro-nano-CT (in 2017), The computed laminography system (in 2018), and so on. These CTs provided important technical support and services for the development of industry, medicine and other fields. He won the award for Science and Technology new Progress of CT and 3D imaging from Chinese Society for Stereology in 2010, the Ron Halmshaw Award from British organization for Non-destructive Evaluation in 2014, and the participated project "Key technology innovation and application of CT imaging" won the Second Prize for Science & technology Development of the Ministry of Education in 2018. Since 2004, 65 graduate students have been trained, and 8 doctoral students are trained now. In 2013, he won the fourth advanced group of teachers' ethics of Capital Normal University, and in 2019, he won the third "outstanding contribution Teacher Award" of the third teacher Rulan - my mentor - my teacher's highest award.