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    • 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。
    • 5. 发明授权
    • Imaging system for obtaining X-ray energy subtraction images
    • 用于获得X射线能量减影图像的成像系统
    • US4945552A
    • 1990-07-31
    • US277987
    • 1988-11-30
    • Ken UedaKeiji UmetaniYoshio Suzuki
    • Ken UedaKeiji UmetaniYoshio Suzuki
    • G01T1/36
    • G01T1/36
    • An energy subtraction image measuring system for selectively depicting any target element using X-rays includes an X-ray filter containing the target element. It measures an X-ray image by using a quasi-monoenergetic X-ray beam obtained without using the filter and having a photon energy range that extends above and below the absorption edge of the target element, as well as an X-ray image using an X-ray beam containing only the photon energy component having photon energy levels lower than the absorption edge which is obtained by using the filter. The energy subtraction image measuring system then generates an energy substraction image by the operation of the thus obtained data.
    • 用于使用X射线选择性地描绘任何目标元件的能量减影图像测量系统包括包含目标元件的X射线滤光器。 它通过使用获得的准单能X射线束来测量X射线图像,而不使用滤光器并具有在目标元件的吸收边缘上方和下方延伸的光子能量范围,以及使用 仅含有光子能量级别低于通过使用滤波器获得的吸收边缘的光子能量的X射线束。 能量减影图像测量系统然后通过这样获得的数据的操作产生能量减影图像。
    • 6. 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。
    • 7. 发明授权
    • Two-dimensional radiation image detector
    • 二维辐射图像检测器
    • US5880470A
    • 1999-03-09
    • US643746
    • 1996-05-06
    • Keiji UmetaniKen UedaTetsurou MinemuraKazutaka TsujiKoichi Koike
    • Keiji UmetaniKen UedaTetsurou MinemuraKazutaka TsujiKoichi Koike
    • G01T1/20G01T1/24G03B42/02H01L27/146H04N5/32G21K4/00
    • G01T1/2018
    • A 2-dimensional radiation image detector wherein a plurality of conversion elements for converting a radiation into visible light and a plurality of photo-sensitive elements for detecting the visible light and accumulating signals are formed an elements board includes two elements boards arranged in an overlapping relationship with each other and each having the plurality of photo-sensitive elements arranged two-dimensionally thereon such that the distance between centers of the photo-sensitive elements in one direction of the arrangement is substantially equal to a width of the photo-sensitive elements while the distance between the centers of the photo-sensitive elements in a direction perpendicular to the one direction is substantially equal to twice the width of the photo-sensitive elements and such that that portion of a radiation directed upon the two overlapping elements boards which has passed through a first one of the elements boards other than locations of the photo-sensitive elements is detected by the photo-sensitive elements of the second elements board.
    • 一种二维放射线图像检测器,其中用于将辐射转换成可见光的多个转换元件和用于检测可见光和累积信号的多个光敏元件形成为元件板,包括以重叠关系布置的两个元件板 彼此之间并且每个具有多个光敏元件,其二维地布置在其上,使得光敏元件的中心之间在该布置的一个方向上的距离基本上等于光敏元件的宽度,而 光敏元件在与一个方向垂直的方向上的中心之间的距离基本上等于光敏元件宽度的两倍,并且使得照射到已经通过的两个重叠元件板的辐射部分 除了照片敏感度位置之外的第一个要素板 e元件由第二元件板的光敏元件检测。