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    • 32. 发明授权
    • X-ray fluoroscopic system
    • X光透视系统
    • US07796724B2
    • 2010-09-14
    • US12517063
    • 2007-11-27
    • Seiji Ito
    • Seiji Ito
    • H05G1/30
    • G01N23/223G01N2223/076G01N2223/30
    • An X-ray fluoroscopic system which is capable of highly accurately performing tilting tracking or rotational tracking by a simple operation in an observation work without inputting a distance from the surface of a table and an observed point of an object of fluoroscopy and without performing a calibration operation for obtaining the distance in advance. The X-ray fluoroscopic system having a tracking function of obtaining a moving amount of the table, which is necessary for performing tilting or rotational tracking, and moving the table, based on an arithmetic operation using a distance h obtained by totalizing a distance d from the surface of the table to an observed point V, and a distance z from the surface of the table to an X-ray focal point 1a, a defined value or arbitrary input value is used as an initial value of the distance h, and a shift amount of the observed point V occurred from tracking is used to update the distance h by specifying the observed point V on a screen after tracking, thereby tilt (rotation) tracking accuracy is gradually improved.
    • 一种X射线透视系统,其能够在观察作业中通过简单的操作高精度地执行倾斜跟踪或旋转跟踪,而不从表的表面和透视对象的观察点输入距离并且不执行校准 提前获取距离的操作。 X射线透视系统具有基于使用通过将距离d的总和获得的距离h的算术运算来获得执行倾斜或旋转跟踪所需的工作台的移动量以及移动工作台的跟踪功能 将表的表面到观察点V,从表的表面到X射线焦点1a的距离z,定义的值或任意输入值用作距离h的初始值,并且 追踪发生的观测点V的偏移量用于通过在跟踪后指定屏幕上的观察点V来更新距离h,从而逐渐提高倾斜(旋转)跟踪精度。
    • 33. 发明授权
    • Online analysis device
    • 在线分析装置
    • US07787593B2
    • 2010-08-31
    • US10592231
    • 2005-03-16
    • Albert Klein
    • Albert Klein
    • H05G1/30H05G1/56H05G1/58
    • G21K5/02G01N23/20G01N23/22H05G1/56
    • An online analysis device, including a feed conveyor for supplying material, an X-ray tube, having an X-ray beam directed toward a measuring range on a feed conveyor, a control unit for actuating the X-ray tube, an X-ray detector that measures the radiation that interacts with, or is emitted by, the material, and a material detector for detecting material in the measuring range and generating a signal dependent thereon. To omit a mechanical shutter without reducing the service life of the tube, the material detector is connected to the control device, which controls the X-ray tube in dependence on the signal from the material detector in one of two states, where the heating current for the X-ray tube has the same order of magnitude in both states and the acceleration voltage in the first state is 5 kV to 100 kV and in the second state is less than 10 kV.
    • 一种在线分析装置,包括用于供给材料的进料输送机,具有朝向进料输送机上的测量范围的X射线束的X射线管,用于致动X射线管的控制单元,X射线 检测器,其测量与材料相互作用或由材料发射的辐射;以及材料检测器,用于检测测量范围内的材料并产生依赖于其的信号。 为了省略机械快门而不减少管的使用寿命,材料检测器连接到控制装置,该控制装置根据来自材料检测器的信号来控制X射线管,处于两种状态之一,其中加热电流 因为X射线管在两种状态下具有相同的数量级,并且第一状态下的加速电压为5kV至100kV,而在第二状态下的加速电压小于10kV。
    • 35. 发明申请
    • Region-In-Object Measuring System, Computing Device for Measuring a Region-In-Object, Program for Measuring Region-In-Object and Computer Readable Recording Medium on Which the Program Is Recorded
    • 区域对象测量系统,用于测量对象内区域的计算设备,用于测量对象内的程序和记录该程序的计算机可读记录介质
    • US20080275666A1
    • 2008-11-06
    • US11722174
    • 2005-12-21
    • Naoya OhtaKenji MogiYoshiki Nakasone
    • Naoya OhtaKenji MogiYoshiki Nakasone
    • H05G1/30G03B42/02
    • A61B6/022A61B6/12A61B90/36A61B2090/364G06T7/73G06T2207/10116G06T2207/30036
    • A region-in object measuring system comprises a reference object (1) having two frames, i.e., an object surface frame (2) brought into contact with the surface of an object and a film frame (3) with which an X-ray film (7) is brought into contact, spaced from each other and a computing device. The computing device sets a three-dimensional X-ray coordinate system using the reference object (1) according to a two-dimensional X-ray image acquired by imaging a region in an object in a state that the object surface frame (2) of the reference object (1) is in close contact with the surface of the object by means of an X-ray imaging apparatus, determining the position of an X-ray source from the projection magnification and size of the image of the object surface frame (2), determining the position vector of a specific region in a body according to the position of the X-ray source, and accurately determines the direction and three-dimensional position of the region in the object with respect to the position of the image of the region in the object shown on the X-ray image.
    • 一种区域对象测量系统包括具有两个框架的参考对象(1),即与物体表面接触的物体表面框架(2)和胶片框架(3),X射线胶片 (7)彼此间隔开并与计算装置接触。 计算装置根据通过对对象中的区域进行成像而获取的二维X射线图像,使用参考对象(1)来设置三维X射线坐标系,该二维X射线坐标系以 参考物体(1)通过X射线成像装置与物体的表面紧密接触,根据投影倍率和物体表面框架的图像的尺寸确定X射线源的位置( 2),根据X射线源的位置确定身体中的特定区域的位置矢量,并且相对于图像的位置精确地确定物体中的区域的方向和三维位置 在X射线图像上显示的对象中的区域。
    • 39. 发明授权
    • Method and device for user-specific parameterization of an x-ray device
    • 用于X射线设备的用户特定参数化的方法和设备
    • US07298823B2
    • 2007-11-20
    • US11170661
    • 2005-06-29
    • Philipp BernhardtMarcus PfisterRudolf SollacherVolker Tresp
    • Philipp BernhardtMarcus PfisterRudolf SollacherVolker Tresp
    • H05G1/30
    • A61B6/481A61B6/4035A61B6/504A61B6/542A61B6/544A61B6/583A61B6/588
    • A method and a suitable x-ray device (1) for carrying out the method are specified for effective and operationally simplified user-specific optimization of a parameter configuration (K) of an x-ray device (1), said configuration comprising at least one recording parameter (U,I,t,F). It is accordingly provided that a user (20) is shown a plurality of reference images (V,V1) for different reference parameter sets (PV) from a reference memory (21) in which are stored a large number of reference images (V,V0) each with an associated reference parameter set (PV), that for each reference image (V,V1) shown the user (20) submits an assessment (BM) of the image quality (V,V1), and that on the basis of the submitted assessments (BM) an optimized parameter configuration (K) is created from the reference parameter sets (PV) of the reference images (V,V1) shown.
    • 指定用于执行该方法的方法和合适的x射线装置(1),用于有效和操作地简化X射线装置(1)的参数配置(K)的用户特定优化,所述配置至少包括 一个记录参数(U,I,t,F)。 因此,用户(20)从参考存储器(21)中显示用于不同参考参数组(PV)的多个参考图像(V,V 1),其中存储了大量参考图像(V ,V 0),每个具有相关联的参考参数集(PV),对于所示的每个参考图像(V,V 1),用户(20)提交图像质量(V,V 1)的评估(BM),以及 根据所提交的评估(BM),根据所示的参考图像(V,V 1)的参考参数组(PV)创建优化参数配置(K)。