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    • 1. 发明授权
    • X-ray CT system
    • X光CT系统
    • US5987091A
    • 1999-11-16
    • US897530
    • 1997-07-21
    • Osamu MiyazakiShinichi MigitaTetsuo Nakazawa
    • Osamu MiyazakiShinichi MigitaTetsuo Nakazawa
    • A61B6/03G06T11/00
    • G06T11/005Y10S378/901
    • Projection data having a phase difference of 180.degree. from each other, which are obtained through a 1/4 offset detector, are arranged alternately to obtain projection data of the high resolution, and a CT image is reconstructed on the basis of the projection data of the high resolution. Opposition difference data showing the difference between the projection data having the phase difference of 180.degree. from each other and having a phase difference of 180.degree. from each other are alternately arranged to obtain the opposition difference data of the high resolution, and an opposition difference image is reconstructed on the basis of the opposition difference data of the high resolution. Then, distortion components showing the high-frequency component are extracted from the aforesaid opposition difference image, and the aforesaid reconstructed CT image is corrected by the thus extracted distortion components, so that motion artifacts contained in the original CT image can be reduced.
    • 通过+ E,fra 1/4 + EE偏移检测器获得的相位差为180度的投影数据交替排列以获得高分辨率的投影数据,并且在 高分辨率投影数据的基础。 交替地布置表示彼此具有180度的相位差并具有180度的相位差的投影数据之间的差异的反差差数据,以获得高分辨率的对数差分数据和对置差分图像 基于高分辨率的对数差分数据重建。 然后,从上述对立差分图像中提取示出高频分量的失真分量,并且通过这样提取的失真分量校正上述重建的CT图像,从而可以减少包含在原始CT图像中的运动伪影。
    • 2. 发明授权
    • Computed tomography system
    • 计算机断层扫描系统
    • US5454019A
    • 1995-09-26
    • US851930
    • 1992-03-16
    • Shinichi MigitaOsamu MiyazakiTestuo Nakazawa
    • Shinichi MigitaOsamu MiyazakiTestuo Nakazawa
    • A61B6/03G01N23/04G06T11/00G01N23/083
    • A61B6/032G01N23/046G06T11/005G01N2223/419G01N2223/612Y10S378/901
    • A computed tomography system includes an image reconstruction data generator for generating image reconstruction data for a desired slice plane of an object in accordance with measuring projection data, the image reconstruction data being obtained from measuring projection data obtained at each of a plurality of rotation positions of a radiation source, and an image reconstructor for obtaining tomographic image data of the object for the desired slice plane in accordance with the image reconstruction data. The image reconstruction data generator has the capability of grouping the measuring projection data into a plurality of groups respectively corresponding to a plurality of desired slice planes of the object, the desired slice planes being spaced apart from each other by a distance corresponding to one rotation position of the radiation source, with each of the groups corresponding to a continuous rotation range of 360.degree. of the radiation source, and successively using the measuring projection data of each group for the image reconstruction data.
    • 计算机断层摄影系统包括图像重建数据发生器,用于根据测量投影数据产生对象的期望切片平面的图像重建数据,所述图像重建数据是从测量在多个旋转位置 辐射源,以及图像重建器,用于根据图像重建数据获得用于期望切片平面的物体的断层图像数据。 图像重建数据生成器具有将测量投影数据分组成分别对应于对象的多个期望切片平面的多个组的能力,期望的切片平面彼此间隔一个相当于一个旋转位置的距离 的辐射源,其中每个组对应于辐射源的360°的连续旋转范围,并且连续地使用每组的测量投影数据作为图像重建数据。
    • 3. 发明申请
    • NUCLEAR MEDICINE DIAGNOSIS APPARATUS
    • 核医学诊断设备
    • US20100019156A1
    • 2010-01-28
    • US12442149
    • 2007-09-19
    • Ryota KoharaTakashi ShirahataTetsuo NakazawaOsamu Miyazaki
    • Ryota KoharaTakashi ShirahataTetsuo NakazawaOsamu Miyazaki
    • G01T1/161G21K1/02
    • G01T1/1642
    • A nuclear medicine diagnosis apparatus comprising a mechanical collimator for effecting passage in a given direction of photons with given energy emitted from an object injected or dosed with a drug containing a radioactive isotope; a former-stage detector for detecting positional information at a point of reaction of photons having passed through the mechanical collimator and information on the momentum of charged particles generated by the reaction; a latter-stage detector disposed in the subsequent stage of the former-stage detector to detect information on the photons having been scattered by the former-stage detector; and image reconstruction means for reconstructing an image from detection information having been collected from the former-stage detector and latter-stage detector, wherein the image reconstruction means is built so that differentiation is carried out on the information on the photons having passed through the mechanical collimator and the information on the photons having been scattered by the former-stage detector and that the image reconstruction is carried out by different image reconstruction algorithms from the individual differentiated detection information.
    • 一种核医学诊断装置,包括机械准直器,用于在给定的光子的方向上进行通过,所述能量具有从注射或计量的含有放射性同位素的药物的物体发射的给定能量; 用于检测通过机械准直器的光子的反应点的位置信息的前级检测器和由反应产生的带电粒子的动量的信息; 后级检测器,设置在前级检测器的后级中,以检测由前级检测器散射的光子的信息; 以及用于从前级检测器和后级检测器收集的检测信息重构图像的图像重建装置,其中构建图像重建装置,以便对已经通过机械的光子的信息进行区分 准直仪和由前级检测器分散的光子的信息,并且通过来自各个差分检测信​​息的不同的图像重建算法执行图像重建。
    • 5. 发明申请
    • X-ray ct device
    • X射线ct装置
    • US20060140337A1
    • 2006-06-29
    • US10544907
    • 2004-02-13
    • Osamu MiyazakiTetsuo NakazawaHiroto Kokubun
    • Osamu MiyazakiTetsuo NakazawaHiroto Kokubun
    • A61B6/00G01N23/00G21K1/12H05G1/60
    • A61B6/032A61B6/027A61B6/5288A61B6/542
    • An X-ray CT apparatus comprises: motion information acquisition means that acquires periodical motion information on a motion portion of an object to be examined; a detector that rotates together with an X-ray source and detects X-rays applied to the object from the X-ray source to acquire projection data per collection region; and reconstruction means that processes the projection data resulting from the detector to reconstruct a tomogram of the object, wherein the X-ray CT apparatus further includes delay time determination means that determines a delay time by adding a time width of the collection region and a processing delay time in the X-ray CT apparatus and a time interval from the moment when the phase of the measured periodical motion information is matched with the phase of the rotation period of the X-ray CT apparatus to the moment when they are matched next time, and collection means that correlates, with the periodical motion information obtained by the motion information acquisition means, and successively collects the projection data obtained from the detector, with the reconstruction means starting reconstruction of the tomogram after the delay time.
    • X射线CT装置包括:运动信息获取装置,其获取关于待检查对象的运动部分的周期运动信息; 检测器,其与X射线源一起旋转,并且检测从X射线源施加到物体的X射线以获取每个收集区域的投影数据; 并且重建装置处理由检测器产生的投影数据,以重构物体的断层图像,其中,所述X射线CT装置还包括延迟时间确定装置,其通过加入所述收集区域的时间宽度和处理来确定延迟时间 X射线CT装置的延迟时间和从测定的周期运动信息的相位与X射线CT装置的旋转周期的相位相匹配的时刻到下一次匹配的时刻 以及与由运动信息获取装置获得的周期运动信息相关联的收集装置,并且连续地收集从检测器获得的投影数据,重建装置在延迟时间之后开始重建断层图像。
    • 8. 发明授权
    • Compton camera device
    • 康普顿相机设备
    • US07750308B2
    • 2010-07-06
    • US12304284
    • 2007-06-11
    • Takashi ShirahataRyota KoharaTetsuo NakazawaOsamu Miyazaki
    • Takashi ShirahataRyota KoharaTetsuo NakazawaOsamu Miyazaki
    • G01T1/20
    • G01T1/1642A61B6/4258
    • A Compton camera device according to the invention includes first means for reading coordinate data of a scattering point of a quantum ray detected by a pre-stage detector for each Compton scattering event, second means for reading coordinate data of a reaching point of the Compton-scattered quantum ray detected by a post-stage detector for each Compton scattering event, and third means for calculating a measurement accuracy of the scattered quantum ray by the first and second means for each Compton scattering event, calculating a statistical quantity of the quantum ray for each calculated measurement accuracy, and outputting the calculated statistical quantity to image reconstruction means.
    • 根据本发明的康普顿相机装置包括用于读取由每个康普顿散射事件由前级检测器检测到的量子射线的散射点的坐标数据的第一装置,用于读取康普顿散射事件的到达点的坐标数据的第二装置, 用于每个康普顿散射事件由后级检测器检测的散射量子射线;以及第三装置,用于通过第一和第二装置针对每个康普顿散射事件计算散射量子射线的测量精度,计算量子射线的统计量 每个计算出的测量精度,并将计算的统计量输出到图像重建装置。
    • 9. 发明授权
    • X-ray CT device
    • X射线CT装置
    • US07426255B2
    • 2008-09-16
    • US10544907
    • 2004-02-13
    • Osamu MiyazakiTetsuo NakazawaHiroto Kokubun
    • Osamu MiyazakiTetsuo NakazawaHiroto Kokubun
    • H05G1/60
    • A61B6/032A61B6/027A61B6/5288A61B6/542
    • An X-ray CT apparatus comprises: motion information acquisition means that acquires periodical motion information on a motion portion of an object to be examined; a detector that rotates together with an X-ray source and detects X-rays applied to the object from the X-ray source to acquire projection data per collection region; and reconstruction means that processes the projection data resulting from the detector to reconstruct a tomogram of the object, wherein the X-ray CT apparatus further includes delay time determination means that determines a delay time by adding a time width of the collection region and a processing delay time in the X-ray CT apparatus and a time interval from the moment when the phase of the measured periodical motion information is matched with the phase of the rotation period of the X-ray CT apparatus to the moment when they are matched next time, and collection means that correlates, with the periodical motion information obtained by the motion information acquisition means, and successively collects the projection data obtained from the detector, with the reconstruction means starting reconstruction of the tomogram after the delay time.
    • X射线CT装置包括:运动信息获取装置,其获取关于待检查对象的运动部分的周期运动信息; 检测器,其与X射线源一起旋转,并且检测从X射线源施加到物体的X射线以获取每个收集区域的投影数据; 并且重建装置处理由检测器产生的投影数据,以重构物体的断层图像,其中,所述X射线CT装置还包括延迟时间确定装置,其通过加入所述收集区域的时间宽度和处理来确定延迟时间 X射线CT装置的延迟时间和从测定的周期运动信息的相位与X射线CT装置的旋转周期的相位相匹配的时刻到下一次匹配的时刻 以及与由运动信息获取装置获得的周期运动信息相关联的收集装置,并且连续地收集从检测器获得的投影数据,重建装置在延迟时间之后开始重建断层图像。
    • 10. 发明授权
    • Nuclear medicine diagnosis apparatus
    • 核医诊断仪
    • US07999235B2
    • 2011-08-16
    • US12442149
    • 2007-09-19
    • Ryota KoharaTakashi ShirahataTetsuo NakazawaOsamu Miyazaki
    • Ryota KoharaTakashi ShirahataTetsuo NakazawaOsamu Miyazaki
    • G01T1/161
    • G01T1/1642
    • A nuclear medicine diagnosis apparatus comprising a mechanical collimator for effecting passage in a given direction of photons with given energy emitted from an object injected or dosed with a drug containing a radioactive isotope; a former-stage detector for detecting positional information at a point of reaction of photons having passed through the mechanical collimator and information on the momentum of charged particles generated by the reaction; a latter-stage detector disposed in the subsequent stage of the former-stage detector to detect information on the photons having been scattered by the former-stage detector; and image reconstruction means for reconstructing an image from detection information having been collected from the former-stage detector and latter-stage detector, wherein the image reconstruction means is built so that differentiation is carried out on the information on the photons having passed through the mechanical collimator and the information on the photons having been scattered by the former-stage detector and that the image reconstruction is carried out by different image reconstruction algorithms from the individual differentiated detection information.
    • 一种核医学诊断装置,包括机械准直器,用于在给定的光子的方向上进行通过,所述能量具有从注射或计量的含有放射性同位素的药物的物体发射的给定能量; 用于检测通过机械准直器的光子的反应点的位置信息的前级检测器和由反应产生的带电粒子的动量的信息; 后级检测器,设置在前级检测器的后级中,以检测由前级检测器散射的光子的信息; 以及用于从前级检测器和后级检测器收集的检测信息重构图像的图像重建装置,其中构建图像重建装置,以便对已经通过机械的光子的信息进行区分 准直仪和由前级检测器分散的光子的信息,并且通过来自各个差分检测信​​息的不同的图像重建算法执行图像重建。