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    • 1. 发明授权
    • X-ray diagnostics method and device
    • X射线诊断方法和装置
    • US07660390B2
    • 2010-02-09
    • US11165100
    • 2005-06-23
    • Philipp BernhardtKlaus Klingenbeck-RegnMichael Maschke
    • Philipp BernhardtKlaus Klingenbeck-RegnMichael Maschke
    • H05G1/64
    • A61B6/504A61B6/4291A61B6/481A61B6/542G01N23/04
    • An x-ray diagnostics method is specified, in particular for use in angiography and cardiology, by means of which a particularly good image quality can be achieved in an easily manageable manner for the patient (P) and the medical personnel, at the same time as a comparatively low radiation exposure. Furthermore, a specific x-ray device (1) for implementing the method comprising an x-ray emitter (2), an x-ray detector (3) and a control unit (10) is specified to control the x-ray emitter (2). In this way the control unit (10) is allocated an operating element (15), by means of which a control parameter (S) characterizing the image quality, the detector input dose or the contrast noise ratio can be continuously varied, as a function of which a number of recording parameters (U,I,t,F) are set by means of the control device (10).
    • 具体说明了用于血管造影和心脏病学的x射线诊断方法,通过该X射线诊断方法可以以易于管理的方式为病人(P)和医务人员实现特别好的图像质量,同时 作为相对较低的辐射照射。 此外,指定用于实现包括x射线发射器(2),x射线检测器(3)和控制单元(10)的方法的特定X射线装置(1),以控制X射线发射器 2)。 以这种方式,控制单元(10)被分配有操作元件(15),通过该操作元件可以连续地改变表征图像质量,检测器输入剂量或对比度噪声比的控制参数(S)作为功能 其中通过控制装置(10)设定多个记录参数(U,I,t,F)。
    • 2. 发明申请
    • X-ray diagnostics method and device
    • X射线诊断方法和装置
    • US20050286681A1
    • 2005-12-29
    • US11165100
    • 2005-06-23
    • Philipp BernhardtKlaus Klingenbeck-RegnMichael Maschke
    • Philipp BernhardtKlaus Klingenbeck-RegnMichael Maschke
    • A61B6/00G01N23/04
    • A61B6/504A61B6/4291A61B6/481A61B6/542G01N23/04
    • An x-ray diagnostics method is specified, in particular for use in angiography and cardiology, by means of which a particularly good image quality can be achieved in an easily manageable manner for the patient (P) and the medical personnel, at the same time as a comparatively low radiation exposure. Furthermore, a specific x-ray device (1) for implementing the method comprising an x-ray emitter (2), an x-ray detector (3) and a control unit (10) is specified to control the x-ray emitter (2). In this way the control unit (10) is allocated an operating element (15), by means of which a control parameter (S) characterizing the image quality, the detector input dose or the contrast noise ratio can be continuously varied, as a function of which a number of recording parameters (U,I,t,F) are set by means of the control device (10).
    • 具体说明了用于血管造影和心脏病学的x射线诊断方法,通过该X射线诊断方法可以以易于管理的方式为病人(P)和医务人员实现特别好的图像质量,同时 作为相对较低的辐射照射。 此外,指定用于实现包括x射线发射器(2),x射线检测器(3)和控制单元(10)的方法的特定X射线装置(1),以控制X射线发射器 2)。 以这种方式,控制单元(10)被分配有操作元件(15),通过该操作元件可以连续地改变表征图像质量,检测器输入剂量或对比度噪声比的控制参数(S)作为功能 其中通过控制装置(10)设定多个记录参数(U,I,t,F)。
    • 7. 发明申请
    • METHOD FOR OBTAINING HIGH-CONTRAST X-RAY IMAGES AND X-RAY BEAM DETECTOR
    • 用于获取高对比度X射线图像和X射线光束检测器的方法
    • US20110280370A1
    • 2011-11-17
    • US13105502
    • 2011-05-11
    • Philipp Bernhardt
    • Philipp Bernhardt
    • G01N23/04G01T1/20
    • G03B42/02G01T1/20G03B42/08
    • An X-ray radiation detector (100) consists of an arrangement with photodetector elements (12) and a scintillator layer (14) on the same. It is assumed in an exemplary fashion that the scintillator layer (14) subjects an input signal, which describes an object to be imaged, to a convolution with a modulation transfer function. The effect of this can be cancelled, particularly by obtaining a test X-ray image in advance, with the aid of which this modulation transfer function, or a similar variable providing information on the modulation transfer function, is established. If use is made of photodetectors that are based on CMOS technology, use can be made of a particularly thick scintillator layer made of gadolinium oxysulfide, which absorbs a particularly large amount of X-ray radiation. High-contrast X-ray images are obtained in this fashion.
    • X射线辐射检测器(100)由其上具有光电检测器元件(12)和闪烁体层(14)的布置组成。 以示例性方式假设闪烁体层(14)将描述要成像的对象的输入信号对准具有调制传递函数的卷积。 可以取消这种效果,特别是通过预先获得测试X射线图像,借助于该调制传递函数或关于调制传递函数的相似变量提供信息建立起来。 如果使用基于CMOS技术的光电检测器,则可以使用特别厚的由硫氧化钆制成的闪烁体层,其吸收特别大量的X射线辐射。 以这种方式获得高对比度的X射线图像。