Patents by Inventor Yuxiang Xing

Yuxiang Xing has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 7881424
    Abstract: A method for calibrating a dual-energy CT system and an image reconstruction method are disclosed to calculate images of atomic number and density of a scanned object as well as its attenuation coefficient images at any energy level. The present invention removes the effect from a cupping artifact due to X-ray beam hardening. The method for calibrating a dual-energy CT system is provided comprising steps of selecting at least two different materials, detecting penetrative rays from dual-energy rays penetrating said at least two different materials under different combinations of thickness to acquire projection values, and creating a lookup table in a form of correspondence between said different combinations of thickness and said projection values.
    Type: Grant
    Filed: March 11, 2008
    Date of Patent: February 1, 2011
    Assignees: Tsinghua University, Nuctech Company Limited
    Inventors: Li Zhang, Zhiqiang Chen, Gnowei Zhang, Jianping Cheng, Yuanjing Li, Yinong Liu, Yuxiang Xing, Ziran Zhao, Yongshun Xiao
  • Publication number: 20100284514
    Abstract: Disclosed are a method and a device for security-inspection of liquid articles with dual-energy CT imaging. The method comprises the steps of obtaining one or more CT images including physical attributes of liquid article to be inspected by CT scanning and a dual-energy reconstruction method; acquiring the physical attributes of each liquid article from the CT image; and determining whether the inspected liquid article is dangerous based on the physical attributes. The CT scanning can be implemented by a normal CT scanning technique, or a spiral CT scanning technique. In the normal CT scanning technique, the scan position can be preset, or set by the operator with a DR image, or set by automatic analysis of the DR image.
    Type: Application
    Filed: September 26, 2008
    Publication date: November 11, 2010
    Inventors: Li Zhang, Zhiqiang Chen, Xuewu Wang, Haifeng Hu, Hongxin Wu, Yuanjing Li, Yinong Liu, Ziran Zhao, Yuxiang Xing, Hu Tang, Yumin Yi, Jinyu Zhang
  • Patent number: 7760852
    Abstract: An X-CT scan system includes a base, an object rotary support, an X-ray generation device and a data acquisition system, wherein one side of the detector is leveled to or beyond the prolong line of the connecting line between the X-ray source of the X-ray generation device and the center of the object rotary support, the length of the beyond portion is less than the radius of the imaging field. The advantage of the invention is in that the invention can reconstruct the entire image of the object by means of X-ray projection data which only covers half of the area of the object. Compared with the traditional CT scan system, half of the detector size can be saved at most. The X-CT scan system is simplified and the projection data amount for scan and computation amount for image reconstruction are also reduced with the reconstructed image quality guaranteed.
    Type: Grant
    Filed: December 14, 2006
    Date of Patent: July 20, 2010
    Assignees: Tsinghua University, Nuctech Company Limited
    Inventors: Zhiqiang Chen, Kejun Kang, Li Zhang, Haifeng Hu, Yuxiang Xing, Liang Li, Yongshun Xiao, Ziran Zhao, Yuanjing Li, Yinong Liu
  • Patent number: 7689055
    Abstract: A method of image information enhancement in radiography relates to image information processing techniques in radiography.
    Type: Grant
    Filed: June 21, 2006
    Date of Patent: March 30, 2010
    Assignees: Nuctech Company Limited, Tsinghua University
    Inventors: Li Zhang, Zhiqiang Chen, Yuxiang Xing, Yuanjing Li, Yinong Liu, Ziran Zhao, Yongshun Xiao
  • Patent number: 7672427
    Abstract: It is disclosed an imaging system comprising: radiation generating means including at least one radiation source for generating radiations; data acquiring means including an detector matrix faced the radiation source for obtaining projection data by receiving radiations penetrated through an object to be inspected; transporting means for making the object to be inspected between the radiation source and the detector matrix linearly moving relative to the radiation source and the detector matrix; and controlling and image processing means for controlling the radiation generating means, the data acquiring means and the transporting means, and for reconstructing an image of the object to be inspected from the projection data. The imaging system according to the present invention achieves a real stereoscopic radiography by using straight-line trajectory scan and reconstructing a tomographic or stereoscopic image through a straight-line filtered back-projection algorithm.
    Type: Grant
    Filed: October 10, 2006
    Date of Patent: March 2, 2010
    Assignees: Tsinghua University, Nuctech Company Limited
    Inventors: Zhiqiang Chen, Li Zhang, Hewei Gao, Kejun Kang, Jianping Cheng, Yuanjing Li, Yinong Liu, Yuxiang Xing, Ziran Zhao, Yongshun Xiao
  • Publication number: 20100040192
    Abstract: Disclosed is an image reconstruction method in a high-energy dual-energy CT system. The method comprises steps of scanning an objection with high-energy dual-energy rays to obtain high-energy dual-energy projection values, calculating projection values of base material coefficients corresponding to the dual-energy projection values on the basis of a pre-created lookup table or by analytically solving a set of equations, and obtaining an image of base material coefficient distribution based on the projection values of base material coefficients. The method provides a solution for reconstruction with high-energy dual energy CT technology and thus a more effective approach for substance identification and contraband inspection, thereby bringing a significant improvement on accuracy and efficiency in security inspection.
    Type: Application
    Filed: July 27, 2009
    Publication date: February 18, 2010
    Applicant: Tsinghua University
    Inventors: Li Zhang, Zhiqiang Chen, Kejun Kang, Haifeng Hu, Yuxiang Xing, Xinhui Duan, Yuanjing Li, Yinong Liu, Qingping Huang
  • Publication number: 20090262891
    Abstract: In a linear track scanning imaging system and method, the imaging system may include: a ray generating unit having a plurality of ray sources that emit beams alternately, only one ray source at a time; an actuating arrangement causing an object under examination to move with respect to the linear track scanning imaging system along a linear track, leading the object to pass through a scanning area of the linear track scanning imaging system; a data collecting unit that collects projection data of the object for each ray source; an imaging unit that reconstructs an image of the object under examination based on the projection data collected for each ray source; and a display unit for displaying the reconstructed image.
    Type: Application
    Filed: April 7, 2009
    Publication date: October 22, 2009
    Inventors: Li ZHANG, Yinong LIU, Zhiqiang CHEN, Yuanjing LI, Hewei GAO, Yuxiang XING, Ziran ZHAO, Yongshun XIAO
  • Patent number: 7570737
    Abstract: A cargo security inspection method and system based on spiral scanning, the method including: spirally scanning an inspected object at a first precision to obtain the transmission projection data; judging whether there is a suspect area in the inspected area; scanning at least one slice of the suspect area at a second precision wherein the second precision is greater than the first precision; reconstructing a tomographic image of the at least one slice; and using the reconstructed tomographic image to judge whether there is any dangerous article in the suspect area.
    Type: Grant
    Filed: May 8, 2007
    Date of Patent: August 4, 2009
    Assignees: Tsinghua University, Nuctech Company Limited
    Inventors: Kejun Kang, Li Zhang, Zhiqiang Chen, Haifeng Hu, Yuanjing Li, Yinong Liu, Guowei Zhang, Ziran Zhao, Yuxiang Xing, Yongshun Xiao
  • Publication number: 20090110143
    Abstract: An inspection system is disclosed. The system comprises a CT apparatus. The CT apparatus includes a gantry, a radiation source connected with the gantry, a detection device connected with the gantry substantially opposite the radiation source, and a transfer device for transferring an object under inspection. The detection device comprises N rows of detectors arranged at predetermined intervals, where N is an integer greater than 1. With the inspection system according to the present invention, the CT apparatus can perform scanning imaging at a high rate to enable the CT apparatus and an scanning imaging device for obtaining a two-dimensional image of an object under inspection to simultaneously operate, thereby compensating each other's insufficiency.
    Type: Application
    Filed: October 20, 2008
    Publication date: April 30, 2009
    Inventors: Li ZHANG, Zhiqiang CHEN, Haifeng HU, Yuanjing LI, Yinong LIU, Shangmin SUN, Wenyu ZHANG, Yuxiang XING
  • Publication number: 20090092220
    Abstract: Disclosed are a method and a device for security-inspection of liquid articles with dual-energy CT imaging. The method comprises the steps of obtaining one or more CT images including physical attributes of liquid article to be inspected by CT scanning and a dual-energy reconstruction method; acquiring the physical attributes of each liquid article from the CT image; and determining whether there are drugs concealed in the inspected liquid article based on the difference between the acquired physical attributes and reference physical attributes of the inspected liquid article. The CT scanning can be implemented by a normal CT scanning technique, or a spiral CT scanning technique. In the normal CT scanning technique, the scan position can be preset, or set by the operator with a DR image, or set by automatic analysis of the DR image.
    Type: Application
    Filed: September 29, 2008
    Publication date: April 9, 2009
    Inventors: Zhiqiang Chen, Li Zhang, Xuewu Wang, Haifeng Hu, Hongxin Wu, Yuanjing Li, Yinong Liu, Ziran Zhao, Yuxiang Xing, Hu Tang, Yumin Yi, Jinyu Zhang
  • Patent number: 7512213
    Abstract: A multiple-view-angle cargo security inspection method for inspecting an object using a cargo security inspection system, the cargo security inspection system including a radiation source for generating a beam of rays for transmitting through the object to be inspected and a data collecting unit for collecting the transmission projection data after the beam of rays has transmitted through the inspected object, the method including a scanning step including: rotating the radiation source and/or the object about a rotation axis so as to achieve a relative rotation, thereby positioning the radiation source in a plurality of discrete positions with different view angles with respect to the inspected object, wherein, in each view angle, the radiation source moves along a straight line in a direction parallel to the rotation axis and at the same time scans the inspected object so as to acquire the transmission projection data at each view angle.
    Type: Grant
    Filed: May 8, 2007
    Date of Patent: March 31, 2009
    Assignees: Tsinghua University, Nuctech Company Limited
    Inventors: Li Zhang, Zhiqiang Chen, Kejun Kang, Haifeng Hu, Yuxiang Xing, Xinhui Duan, Yongshun Xiao, Ziran Zhao, Yuanjing Li, Yinong Liu
  • Patent number: 7499522
    Abstract: A cargo security inspection system inspecting an object moving through the system, including: a mechanical conveyance unit carrying, conveying, and defining a travel path of the object in the system; a radiation-generating unit generating ray beams for transmitting through the object; and a data collecting unit collecting transmission data about the rays having already transmitted through the object and processing the transmission data; wherein the travel path includes at least two linear sub-paths at an angle relative to each other; the data collecting unit includes at least two detector arrays receiving ray beams, each detector array corresponding to one linear sub-path, a receiving plane of each of the detector arrays disposed parallel to its corresponding linear sub-path; and in use, the radiation-generating and data collecting units remain stationary, and the object travels along its travel path and only translates on the at least two linear sub-paths without any rotation.
    Type: Grant
    Filed: May 8, 2007
    Date of Patent: March 3, 2009
    Assignees: Tsinghua University, Nuctech Company Limited
    Inventors: Zhiqiang Chen, Li Zhang, Kejun Kang, Haifeng Hu, Yuanjing Li, Yinong Liu, Hewei Gao, Ziran Zhao, Yuxiang Xing, Yongshun Xiao, Jianmin Li
  • Publication number: 20090003516
    Abstract: An X-CT scan system includes a base, an object rotary support, an X-ray generation device and a data acquisition system, wherein one side of the detector is leveled to or beyond the prolong line of the connecting line between the X-ray source of the X-ray generation device and the center of the object rotary support, the length of the beyond portion is less than the radius of the imaging field. The advantage of the invention is in that the invention can reconstruct the entire image of the object by means of X-ray projection data which only covers half of the area of the object. Compared with the traditional CT scan system, half of the detector size can be saved at most. The X-CT scan system is simplified and the projection data amount for scan and computation amount for image reconstruction are also reduced with the reconstructed image quality guaranteed.
    Type: Application
    Filed: December 14, 2006
    Publication date: January 1, 2009
    Inventors: Zhiqiang Chen, Kejun Kang, Li Zhang, Haifeng Hu, Yuxiang Xing, Liang Li, Yongshun Xiao, Ziran Zhao, Yuanjing Li, Yinong Liu
  • Publication number: 20080310598
    Abstract: A method for calibrating a dual-energy CT system and an image reconstruction method are disclosed to calculate images of atomic number and density of a scanned object as well as its attenuation coefficient images at any energy level. The present invention removes the effect from a cupping artifact due to X-ray beam hardening. The method for calibrating a dual-energy CT system is provided comprising steps of selecting at least two different materials, detecting penetrative rays from dual-energy rays penetrating said at least two different materials under different combinations of thickness to acquire projection values, and creating a lookup table in a form of correspondence between said different combinations of thickness and said projection values.
    Type: Application
    Filed: March 11, 2008
    Publication date: December 18, 2008
    Applicant: Tsinghua University
    Inventors: Li Zhang, Zhiqiang Chen, Guowei Zhang, Jianping Cheng, Yuanjing Li, Yinong Liu, Yuxiang Xing, Ziran Zhao, Yongshun Xiao
  • Patent number: 7424089
    Abstract: It is disclosed a system and a method for reconstructing an image by using a straight-line trajectory scan to avoid image spatial resolution reduction due to interpolations in angular direction and detector direction during data rebinning. This system comprises: a projection data conversion section for converting projection data from straight-line trajectory scan into projection data under quasi-parallel-beam scan; a filtration section for obtaining filtered projection data by convoluting the projection data under quasi-parallel-beam scan with a predetermined convolutional kernel; and a back-projection section for reconstructing an image by back-projecting the filtered projection data with a weighting factor. By using the inventive system and method, the spatial resolution in the reconstructed image is improved, and the influence of data truncation on the reconstructed image is reduced.
    Type: Grant
    Filed: October 12, 2006
    Date of Patent: September 9, 2008
    Assignees: Tsinghua University, Nuctech Company Limited
    Inventors: Li Zhang, Hewei Gao, Zhiqiang Chen, Kejun Kang, Jianping Cheng, Yuanjing Li, Yinong Liu, Yuxiang Xing, Ziran Zhao, Yongshun Xiao
  • Publication number: 20080084962
    Abstract: A multiple-view-angle cargo security inspection method for inspecting an object using a cargo security inspection system, the cargo security inspection system including a radiation source for generating a beam of rays for transmitting through the object to be inspected and a data collecting unit for collecting the transmission projection data after the beam of rays has transmitted through the inspected object, the method including a scanning step including: rotating the radiation source and/or the object about a rotation axis so as to achieve a relative rotation, thereby positioning the radiation source in a plurality of discrete positions with different view angles with respect to the inspected object, wherein, in each view angle, the radiation source moves along a straight line in a direction parallel to the rotation axis and at the same time scans the inspected object so as to acquire the transmission projection data at each view angle.
    Type: Application
    Filed: May 8, 2007
    Publication date: April 10, 2008
    Inventors: Li Zhang, Zhiqiang Chen, Kejun Kang, Haifeng Hu, Yuxiang Xing, Xinhui Duan, Yongshun Xiao, Ziran Zhao, Yuanjing Li, Yinong Liu
  • Publication number: 20080075226
    Abstract: A cargo security inspection system inspecting an object moving through the system, including: a mechanical conveyance unit carrying, conveying, and defining a travel path of the object in the system; a radiation-generating unit generating ray beams for transmitting through the object; and a data collecting unit collecting transmission data about the rays having already transmitted through the object and processing the transmission data; wherein the travel path includes at least two linear sub-paths at an angle relative to each other; the data collecting unit includes at least two detector arrays receiving ray beams, each detector array corresponding to one linear sub-path, a receiving plane of each of the detector arrays disposed parallel to its corresponding linear sub-path; and in use, the radiation-generating and data collecting units remain stationary, and the object travels along its travel path and only translates on the at least two linear sub-paths without any rotation.
    Type: Application
    Filed: May 8, 2007
    Publication date: March 27, 2008
    Inventors: Zhiqiang Chen, Li Zhang, Kejun Kang, Haifeng Hu, Yuanjing Li, Yinong Liu, Hewei Gao, Ziran Zhao, Yuxiang Xing, Yongshun Xiao, Jianmin Li
  • Publication number: 20070280417
    Abstract: A cargo security inspection method and system based on spiral scanning, the method including: spirally scanning an inspected object at a first precision to obtain the transmission projection data; judging whether there is a suspect area in the inspected area; scanning at least one slice of the suspect area at a second precision wherein the second precision is greater than the first precision; reconstructing a tomographic image of the at least one slice; and using the reconstructed tomographic image to judge whether there is any dangerous article in the suspect area.
    Type: Application
    Filed: May 8, 2007
    Publication date: December 6, 2007
    Inventors: Kejun Kang, Li Zhang, Zhiqiang Chen, Haifeng Hu, Yuanjing Li, Yinong Liu, Guowei Zhang, Ziran Zhao, Yuxiang Xing, Yongshun Xiao
  • Publication number: 20070179710
    Abstract: The present invention relates to the deviation-correction system for positioning of moving objects, and discloses a deviation-correction system for positioning of moving objects and the motion-tracking method thereof. The system includes a control system for receiving motion parameters required for deviation-correction, and sending commands to an actuator to control a moving object based on the motion parameters, the deviation-correction system for positioning of moving objects further comprising: a reference object which is set as a specified motion trail for the moving object; an image capturing system for acquiring successive digital image data upon the moving object moves; a motion tracking system for performing a motion tracking algorithm based on the digital image data transmitted by the image capturing system to judge whether the current motion state needs to be corrected and then transmitting the motion parameters required for deviation-correction to the control system.
    Type: Application
    Filed: December 22, 2006
    Publication date: August 2, 2007
    Applicants: Nuctech Company Limited, Tsinghua University
    Inventors: Li Zhang, Zhiqiang Chen, Lijun Wang, Zhiming Wang, Ziran Zhao, Yuxiang Xing, Yongshun Xiao, Yuanjing Li, Yinong Liu
  • Publication number: 20070116175
    Abstract: It is disclosed a system and a method for reconstructing an image by using a straight-line trajectory scan to avoid image spatial resolution reduction due to interpolations in angular direction and detector direction during data rebinning. This system comprises: a projection data conversion section for converting projection data from straight-line trajectory scan into projection data under quasi-parallel-beam scan; a filtration section for obtaining filtered projection data by convoluting the projection data under quasi-parallel-beam scan with a predetermined convolutional kernel; and a back-projection section for reconstructing an image by back-projecting the filtered projection data with a weighting factor. By using the inventive system and method, the spatial resolution in the reconstructed image is improved, and the influence of data truncation on the reconstructed image is reduced.
    Type: Application
    Filed: October 12, 2006
    Publication date: May 24, 2007
    Inventors: Li Zhang, Hewei Gao, Zhiqiang Chen, Kejun Kang, Jianping Cheng, Yuanjing Li, Yinong Liu, Yuxiang Xing, Ziran Zhao, Yongshun Xiao