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    • 1. 发明授权
    • X-ray tube with a low-temperature emitter
    • 带有低温发射器的X射线管
    • US5703924A
    • 1997-12-30
    • US627999
    • 1996-04-04
    • Erich HellHelmut KuhnMathias Hoernig
    • Erich HellHelmut KuhnMathias Hoernig
    • H01J35/06H01J35/10H01J35/16
    • H01J35/16H01J35/06H01J2235/168
    • An x-ray tube has an anode and an electron emitter from which an electron beam emanates, the electron beam impinging the incident surface of the anode in a focal spot from which a useful x-ray beam emanates. At least in the region of its electron-emitting surface, the electron emitter is formed of an electron-emitting material that has a lower electron affinity than tungsten (a low-temperature emitter). Further, an apertured diaphragm at anode potential is arranged between the electron emitter and the anode and through which the electron beam passes. As electron-emitting material, the electron emitter contains lanthanum hexaboride (LaB.sub.6) or an alloy of the systems iridium/cerium (Ir/Ce) or iridium/lanthanum (Ir/La) systems.
    • X射线管具有阳极和电子发射器,电子束从该电子发射,电子束将阳极的入射表面照射在可用的X射线束发射的焦斑中。 至少在其电子发射表面的区域中,电子发射体由电子发射材料形成,该电子发射材料具有比钨更低的电子亲和力(低温发射极)。 此外,在电子发射极和阳极之间设置阳极电位的有孔隔膜,电子束通过该隔膜。 作为电子发射材料,电子发射体含有六硼化镧(LaB6)或铱/铈(Ir / Ce)或铱/镧(Ir / La)体系的合金。
    • 5. 发明授权
    • Radiation protection wall for mammography systems with integrated user interface
    • 用于乳腺摄影系统的辐射防护墙具有集成的用户界面
    • US08338810B2
    • 2012-12-25
    • US13213299
    • 2011-08-19
    • Mathias Hoernig
    • Mathias Hoernig
    • H05G1/64B23P11/00
    • A61B6/107A61B6/461A61B6/467A61B6/502G06F19/00Y10T29/49826
    • In a mammography system with a radiation protection wall, a production method for a radiation protection wall, and a method to operate a mammography system, the radiation protection wall has a further function in addition to the radiation protection. The radiation protection wall additionally serves to present a user interface of a control program to control the mammography apparatus, and can still display the images acquired by the mammography apparatus. The display region of the radiation protection wall is provided in the upper region of said radiation protection wall and can be fashioned as a touchscreen in order to control the mammography apparatus with the detected touch signals.
    • 在具有辐射防护壁的乳房摄影系统,辐射防护壁的制造方法以及操作乳房摄影系统的方法中,辐射防护墙除了辐射防护之外还具有另外的功能。 辐射防护墙还用于呈现控制程序的用户界面以控制乳房摄影装置,并且仍然可以显示由乳房X线照相术装置获取的图像。 辐射防护壁的显示区域设置在所述辐射防护壁的上部区域中,并且可以被形成为触摸屏,以便利用检测到的触摸信号来控制乳房摄影装置。
    • 9. 发明授权
    • Compression device and method for adjustment of a compression pressure
    • 用于调节压缩压力的压缩装置和方法
    • US07656993B2
    • 2010-02-02
    • US11834811
    • 2007-08-07
    • Mathias Hoernig
    • Mathias Hoernig
    • A61B6/04
    • A61B6/502A61B6/0414
    • A compression device has a compression plate that applies a pressure to a subject on a support plate. The compression plate has a number of elastically-deformable compression plate elements that are substantially transparent for an examination field used with the compression device. In a method for compressing a subject, at least one pressure sensor measures the pressure applied by a compression device to a subject, and wirelessly supplies a signal representing the detected pressure to a control unit, wherein the detected pressure is compared to a stored compression pressure value. The control device adjusts the pressure applied to the subject by the compression device so that the pressure detected by the sensor is equal to the stored compression pressure value.
    • 压缩装置具有将压力施加到支撑板上的受试者的压缩板。 压缩板具有对于与压缩装置一起使用的检查场具有大量透明的可弹性变形的压缩板元件。 在用于压缩对象的方法中,至少一个压力传感器测量压缩装置对受试者施加的压力,并将表示检测到的压力的信号无线地提供给控制单元,其中将检测到的压力与存储的压缩压力进行比较 值。 控制装置通过压缩装置调整施加到被检体的压力,使得由传感器检测到的压力等于存储的压缩压力值。