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    • 43. 发明申请
    • X-ray device that emits an x-ray beam with a scanning-like movement
    • X射线装置以扫描状运动发射X射线束
    • US20060034426A1
    • 2006-02-16
    • US11197273
    • 2005-08-04
    • Jorg FreudenbergerPeter Schardt
    • Jorg FreudenbergerPeter Schardt
    • H01J35/10
    • A61B6/502A61B6/4021G21K1/04
    • An x-ray device includes an x-ray tube for generation of an x-ray emanating from a focal spot of a rotary anode rotatable around a rotation axis and a slit-shaped diaphragm for generation of a fan-shaped x-ray beam that is gated from the x-ray and emission is moved through an examination region in the manner of a scan. To improve the image resolution, the fan-shaped x-ray beam can be moved over the examination region essentially in the direction of the rotational axis of the rotary anode by tilting the x-ray tube on the focal spot, with the x-ray tube being tilted on the focal spot so that the fan-shaped x-ray beam is always gated from the region of the overall emitted x-ray beam having the highest-image resolution or the highest image definition in the movement through the examination region.
    • X射线装置包括用于产生从旋转轴可旋转的阳极的焦点发出的X射线的X射线管和用于产生扇形X射线束的狭缝状光阑, 从x射线门控,并以扫描的方式将发射物移动通过检查区域。 为了提高图像分辨率,通过使x射线管在焦点上倾斜,可以使基本上在旋转阳极的旋转轴线的方向上的扇形X射线束移动到检查区域上 管被倾斜在焦点上,使得扇形X射线束总是从具有最高图像分辨率的全部发射的x射线束的区域或通过检查区域的移动中的最高图像定义选通。
    • 48. 发明授权
    • Method for estimating the remaining life span of an X-ray radiator
    • 用于估计X射线辐射器的剩余寿命的方法
    • US07302041B2
    • 2007-11-27
    • US10922674
    • 2004-08-20
    • Josef DeuringerJörg FreudenbergerPeter SchardtMarkus Schild
    • Josef DeuringerJörg FreudenbergerPeter SchardtMarkus Schild
    • H05G1/54
    • G01R31/257H05G1/28
    • In a method for estimating the remaining life span of an X-ray radiator that has been installed in an X-ray apparatus and is operational, under specified test conditions and at time intervals, a measurement value that is indicative for the remaining life span of the X-ray radiator is determined and stored in a memory. A forecasted progression of future measurement values is then forecasted from the instantaneous measurement value and previous measurement values that were determined under identical test conditions, which also are stored in the memory. The forecasted remaining life span of the X-ray radiator is then determined based on the forecasted progression and a limit value that is associated with the individual X-ray radiator, which is stored in the memory.
    • 在用于估计已经安装在X射线设备中并且可操作的X射线辐射器的剩余寿命的方法中,在指定的测试条件和时间间隔下,指示剩余寿命的测量值 确定X射线辐射器并将其存储在存储器中。 然后根据同样的测试条件确定的瞬时测量值和以前的测量值来预测未来测量值的预测进度,这些测量值也存储在存储器中。 然后基于预测的进程和与存储在存储器中的各个X射线辐射器相关联的限制值来确定X射线辐射器的预测剩余寿命。