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    • 1. 发明授权
    • Method for X-ray fluoroscopy or radiography, and X-ray apparatus
    • X光透视或X线检查方法,X射线装置
    • US5598453A
    • 1997-01-28
    • US517852
    • 1995-08-22
    • Rika BabaKen UedaKensuke SekiharaHironori UekiKeiji Umetani
    • Rika BabaKen UedaKensuke SekiharaHironori UekiKeiji Umetani
    • A61B6/03G21K5/10
    • A61B6/032A61B6/0457
    • An X-ray apparatus for collecting X-ray transmission data of a subject from a plurality of directions to generate an X-ray transmission image or X-ray CT image of the subject, which includes an X-ray generator for generating an X-ray, an X-ray detector for detecting a transmission X-ray after the X-ray generated by the X-ray generator is transmitted through the subject, a rotation unit for rotating an imaging unit including the X-ray generator and the X-ray detector around the subject, a data collector for converting an output signal of the X-ray detector to a digital signal and collecting the digital signal, a signal processor for subjecting data collected by the data collector to a signal processing operation, a display for displaying thereon as an image the data collected by the data collector and the data subjected by the signal processor to the signal processing operation, and a position change unit for moving a relative position of a rotation center of the imaging unit and the subject in a direction parallel to a rotation plane of the rotation, and wherein the imaging unit is rotated by the rotator around the subject and at the same time the relative position is changed by the position change unit in a direction parallel to the rotation plane to perform X-ray fluoroscopic or radiographic operation or CT scan.
    • 一种用于从多个方向收集被检体的X射线透射数据的X射线装置,以生成被检体的X射线透射图像或X射线CT图像,该X射线透射图像或X射线CT图像包括:X射线发生器, 用于检测由X射线发生器产生的X射线之后的透射X射线的X射线检测器被传送通过对象,旋转单元,用于旋转包括X射线发生器和X射线发射器的成像单元, 射线检测器,用于将X射线检测器的输出信号转换为数字信号并收集数字信号的数据收集器,用于对由数据收集器收集的数据进行信号处理操作的信号处理器,用于 将由数据收集器收集的数据和由信号处理器经受的数据作为图像显示在信号处理操作上;以及位置改变单元,用于移动成像单元的旋转中心和su的相对位置 在平行于旋转的旋转平面的方向上进行,并且其中成像单元由旋转体围绕被摄体旋转,同时位置改变单元在与旋转平面平行的方向上改变相对位置, 执行X射线透视或放射照相术或CT扫描。
    • 2. 发明授权
    • Method for generating X-ray image and apparatus therefor
    • 用于产生X射线图像的方法及其装置
    • US5960058A
    • 1999-09-28
    • US759088
    • 1996-11-29
    • Rika BabaKen UedaHironori UekiKeiji Umetani
    • Rika BabaKen UedaHironori UekiKeiji Umetani
    • A61B6/00A61B6/03G06T1/00G06T5/50H05G1/64
    • G06T5/50A61B6/583Y10S378/901
    • The method for generating an X-ray image of the present invention by correcting a measured fluorographic image or radiographic image and removing the veiling glare component and scattered X-ray component has (1) a step of generating a veiling glare component image and a scattered X-ray component image corresponding to the fluorographic image or radiographic image from the measured fluorographic image or radiographic image independently and (2) a step of obtaining the difference between the measured fluorographic image or radiographic image and the veiling glare component image and scattered X-ray component image and executes a correction of removing the veiling glare component and scattered X-ray component from the measured fluorographic image or radiographic image.
    • 通过校正测量的荧光图像或放射线照相图像并除去遮蔽的眩光成分和散射的X射线成分来生成本发明的X射线图像的方法具有以下步骤:(1)产生遮光眩光成分图像和散射 X射线分量图像对应于来自测量的荧光图像或放射照相图像的荧光图像或放射照相图像,以及(2)获得所测量的荧光图像或放射线照相图像与遮罩眩光分量图像之间的差异的步骤, 并且从测量的荧光图像或放射照相图像执行去除遮光眩光成分和散射X射线成分的校正。
    • 4. 发明授权
    • X-ray radiography method and system
    • X射线摄影方法和系统
    • US5526442A
    • 1996-06-11
    • US317748
    • 1994-10-04
    • Rika BabaKen UedaHisatake YokouchiKeiji UmetaniYoichi Onodera
    • Rika BabaKen UedaHisatake YokouchiKeiji UmetaniYoichi Onodera
    • G06T5/00G06K9/00
    • G06T5/006
    • An X-ray radiography method and apparatus in which a phantom such as a chart having elements arranged in predetermined positions is irradiated with X-rays and an X-rays detection unit detects signals thereof. An image of the chart is obtained and a center position of each of the elements in the image of the chart is obtained as well as for those elements which are not within the imaging field of view. Pixel positions for a distortion free image is obtained and a transform table is prepared making each of the pixel positions in the image of the chart correspond to each of the pixel positions in the distortion free image. A plurality of digital images of a subject to be examined are obtained and the digital images are corrected in accordance with the transform table. The corrected digital images are then joined together and a digital image is displayed, wherein common portions in the corrected images are in accordance with each other.
    • 用X射线照射具有布置在预定位置的元件的图案的体模的X射线照相方法和装置,并且X射线检测单元检测其信号。 获得图表的图像,并且获得图表的图像中的每个元素的中心位置以及对于不在成像视场内的那些元素。 获得用于无失真图像的像素位置,并且准备变换表,使得图形图像中的每个像素位置对应于无失真图像中的每个像素位置。 获得要检查的对象的多个数字图像,并且根据变换表来校正数字图像。 然后将校正的数字图像连接在一起并显示数字图像,其中校正图像中的公共部分彼此相符。
    • 5. 发明授权
    • Digital x-ray imaging system and method
    • 数字X射线成像系统及方法
    • US5485500A
    • 1996-01-16
    • US186471
    • 1994-01-26
    • Rika BabaKen UedaHisatake YokouchiYoichi OnoderaKeiji UmetaniMasayuki Tsuneoka
    • Rika BabaKen UedaHisatake YokouchiYoichi OnoderaKeiji UmetaniMasayuki Tsuneoka
    • H04N5/32H05G1/60G21K5/10
    • H04N5/32H05G1/60
    • A digital X-ray imaging system having an X-ray generator, an X-ray generator controller for controlling the X-ray generator, an X-ray detecting unit for detecting an X-ray transmitted through a subject, the X-ray detecting unit having an X-ray grid for shielding a scattered X-ray, a signal processor for acquiring a signal from the X-ray detecting unit and processing the signal to obtain a digital X-ray image of the subject, and a display device for displaying an image of the subject obtained by the signal processor. The system is provided with a position changing unit for changing a relative position between the X-ray detecting unit and the subject, a position change controller for controlling the position changing unit, and an imaging-sequence controller for controlling the position change controller and the X-ray generator controller. The imaging controller controls setting of each of a plurality of target imaging regions of the subject to generally a central area of an X-ray detecting plane of the X-ray detector, the X-ray detecting plane being an incident plane of the transmitted X-ray, and to set at least one imaging view field to contain an intermediate region between target imaging regions. The whole or part of a plurality of obtained digital X-ray images is used to join a single or a plurality of digital X-ray images for display.
    • 一种具有X射线发生器,用于控制X射线发生器的X射线发生器控制器,用于检测通过被摄体透射的X射线的X射线检测单元的X射线成像系统,X射线检测 具有用于屏蔽散射X射线的X射线栅格的单元,用于从X射线检测单元获取信号并处理该信号以获得被摄体的数字X射线图像的信号处理器,以及用于 显示由信号处理器获得的被摄体的图像。 该系统设置有用于改变X射线检测单元和被摄体之间的相对位置的位置改变单元,用于控制位置改变单元的位置改变控制器,以及用于控制位置变化控制器和 X射线发生器控制器。 成像控制器将被摄体的多个目标摄像区域中的每一个的设置控制为X射线检测器的X射线检测平面的大致中心区域,X射线检测面是透射X的入射面 并且设置至少一个成像视野以包含目标成像区域之间的中间区域。 多个获得的数字X射线图像的全部或一部分用于连接单个或多个数字X射线图像以进行显示。
    • 7. 发明授权
    • Method for generating X-ray image and apparatus therefor
    • 用于产生X射线图像的方法及其装置
    • US5878108A
    • 1999-03-02
    • US80223
    • 1998-05-18
    • Rika BabaKen UedaKen IshikawaHironori UekiKeiji Umetake
    • Rika BabaKen UedaKen IshikawaHironori UekiKeiji Umetake
    • H05G1/64A61B6/03
    • A61B6/5282H05G1/64A61B6/4291A61B6/583Y10S378/901
    • A radiographic apparatus which can improve at high speed the picture quality of an X-ray fluoroscopic image or an X-ray radiographic image is disclosed. In a radiographic apparatus acquiring an X-ray fluoroscopic image or an X-ray radiographic image and having a scattered X-ray corrector for eliminating a scattered X-ray component from the acquired X-ray fluoroscopic image or X-ray radiographic image, the scattered X-ray corrector comprises: scattered X-ray intensity distribution function generator for generating a scattered X-ray intensity distribution function on the basis of the acquired X-ray fluoroscopic image or X-ray radiographic image; a moving average calculator for executing moving average calculation a plurality of times in each of the vertical and lateral directions of the acquired X-ray fluoroscopic image or X-ray radiographic image; a window width calculator for calculating a window width of the moving average calculation on the basis of the scattered X-ray intensity distribution function; and a difference calculator means for calculating the difference between the acquired X-ray fluoroscopic image or X-ray radiographic image and an image to which the moving average calculation is performed.
    • 公开了能够高速提高X射线透视图像或X射线照相图像的图像质量的放射线照相设备。 在从所获取的X射线透视图像或X射线照相图像获取X射线透视图像或X射线照相图像并具有用于消除散射X射线成分的散射X射线校正器的放射线照相设备中, 散射X射线校正器包括:散射X射线强度分布函数发生器,用于基于获取的X射线透视图像或X射线照相图像产生散射X射线强度分布函数; 移动平均计算器,用于在所获取的X射线透视图像或X射线照相图像的每个垂直和横向方向上执行移动平均计算多次; 窗口宽度计算器,用于基于散射的X射线强度分布函数计算移动平均计算的窗口宽度; 以及差分计算装置,用于计算所获取的X射线透视图像或X射线照相图像与执行移动平均计算的图像之间的差异。
    • 8. 发明授权
    • X-ray examination apparatus and imaging method of X-ray image
    • X射线检查装置和X射线图像的成像方法
    • US06381299B1
    • 2002-04-30
    • US09555904
    • 2000-06-05
    • Rika BabaKen UedaHiroyuki KawaiHironori UekiKoichi KoikeAkira KubaNobuhisa Kasagima
    • Rika BabaKen UedaHiroyuki KawaiHironori UekiKoichi KoikeAkira KubaNobuhisa Kasagima
    • G01N2300
    • A61B6/0457A61B6/032
    • Between an X-ray generating system and an X-ray image detecting system arranged opposite to the X-ray generating system, an examination object supporting system is arranged and contains a straight movement table provided on a rotary table supported by a rotary table supporting member, and an examination object supporting member for supporting the examination object under either a standing position or a sitting position on the straight movement table. While the examination object is rotated by the rotary table, the examination object is continuously moved (reciprocating movement) by the straight movement table along a direction parallel to the rotation plane, and X-ray images of the examination object are acquired along a plurality of directions during both the rotating operation and the moving operation. As a result, both an X-ray tomographic image and a three-dimensional image (stereoscopic image) of a wider area than a viewing field of an X-ray I.I. can be acquired. Since the viewing fields of the X-ray tomographic image and of the 3-dimensional image can be employed, both diagnostic performance and also a diagnostic efficiency with respect to a large organ such as a lung can be improved.
    • 在与X射线产生系统相对设置的X射线产生系统和X射线图像检测系统之间,配置有检查对象支撑系统,并且包括设置在由旋转台支撑构件支撑的旋转台上的直动移动台 以及检查对象支撑构件,用于在直立移动台上的站立位置或坐姿下支撑检查对象。 当检查对象被旋转台旋转时,检查对象通过直线移动台沿着与旋转平面平行的方向连续移动(往复运动),并且检查对象的X射线图像沿着多个 在旋转操作和移动操作期间的方向。 结果,X射线断层图像和比X射线I.I的视场更宽区域的三维图像(立体图像)都是。 可以获得。 由于可以使用X射线断层图像和3D图像的视野,因此可以提高诊断性能以及相对于诸如肺的大器官的诊断效率。
    • 9. 发明申请
    • X-ray measuring apparatus
    • X射线测量装置
    • US20050063507A1
    • 2005-03-24
    • US10942892
    • 2004-09-17
    • Rika BabaKen UedaMasakazu Okabe
    • Rika BabaKen UedaMasakazu Okabe
    • A61B6/03G01N23/04G06T11/00G21K1/12A61B6/00G01N23/00H05G1/60
    • A61B6/466A61B6/032G01N23/04G06T11/005
    • An x-ray measuring apparatus comprises an x-ray source, an x-ray detector, a rotating device, and a processor. The x-ray source generates x-rays to be emitted to a subject. The x-ray detector detects measurement data regarding the subject. The rotating device changes a relative position of the x-ray source and the x-ray detector with respect to the subject. The processor executes an arithmetic operation for the measurement data. The x-ray detector is shifted by a distance shorter than half the length of the x-ray detector along a line parallel to the plane of rotation, in a tangential direction of the plane of rotation generated by the x-ray source 201. The processor executes a process for obtaining projection data by executing a logarithmic converting process for the measurement data, a process for multiplying a value of the projection data by a weight, and a process for obtaining reconstructed data by executing a reconstructing process using the data after being multiplied by the weight, thereby obtaining a three-dimensional reconstructed image.
    • X射线测量装置包括x射线源,X射线检测器,旋转装置和处理器。 x射线源产生要发射到被摄体的X射线。 X射线检测器检测关于被摄体的测量数据。 旋转装置相对于被摄体改变x射线源和X射线检测器的相对位置。 处理器执行测量数据的算术运算。 X射线检测器沿着X射线源201的旋转平面的切线方向沿平行于旋转平面的线偏移X射线探测器的长度的一半的距离。 处理器通过执行用于测量数据的对数转换处理来执行获取投影数据的处理,用于将投影数据的值乘以权重的处理以及通过执行使用该数据之后的数据的重建处理来获得重建数据的处理 乘以权重,从而获得三维重建图像。
    • 10. 发明授权
    • X-ray based measuring device
    • 基于X射线的测量装置
    • US06519314B1
    • 2003-02-11
    • US09720204
    • 2000-12-22
    • Rika BabaKen Ueda
    • Rika BabaKen Ueda
    • G01N2300
    • A61B6/032A61B6/00A61B6/4085
    • An X-ray based measuring device of the invention includes: X-ray imaging means (102, 103, 311) which have their detection areas divided into a plurality of detector units (102a to 102d, 201′), detect X-rays transmitted through an inspection object (106), and pick up X-ray images in interested areas (310, 902, 902′) of the inspection object; conversion means (211, 212) for converting analog image signals read from the detector units into digital image data under specified conversion conditions for each of the detector units; and re-conversion means (214, 222) for converting the digital image data obtained for each of the detector units under re-conversion conditions corresponding to the specified conversion conditions, wherein analog image signals are A/D converted into digital image data under optimum conversion conditions for each detector unit, and X-ray images in interested areas of the inspection object are sequentially picked up.
    • 本发明的基于X射线的测量装置包括:将其检测区域划分为多个检测器单元(102a至102d,201')的X射线成像装置(102,103,311),检测发射的X射线 通过检查对象(106),并且在检查对象的感兴趣区域(310,902,902')中拾取X射线图像; 转换装置(211,212),用于在每个检测器单元的特定转换条件下将从检测器单元读取的模拟图像信号转换成数字图像数据; 以及再转换装置(214,222),用于在对应于指定的转换条件的重新转换条件下转换针对每个检测器单元获得的数字图像数据,其中模拟图像信号被最佳地A / D转换成数字图像数据 依次拾取每个检测器单元的转换条件和检查对象的感兴趣区域中的X射线图像。