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    • 4. 发明申请
    • METHOD AND DEVICE FOR MEASURING THE LOCATION OF A PARTICLE BEAM PRESENT IN PACKETS IN A LINEAR ACCELERATOR
    • 用于测量线性加速器中包装中存在的颗粒束的位置的方法和装置
    • US20130113503A1
    • 2013-05-09
    • US13510954
    • 2010-11-04
    • Marcel RufLorenz-Peter SchmidtStefan Setzer
    • Marcel RufLorenz-Peter SchmidtStefan Setzer
    • G01B7/00
    • G01B7/003G01T1/29H05H7/22
    • The invention relates to a method and device for measuring the location of a particle beam (10) present in packets in a linear accelerator comprising a hollow chamber structure (4) in which an electromagnetic wave oscillating at a base frequency (f0) is generated in order to accelerate the particles, wherein an electrical measurement signal (M) generated by the particle beam (10) by means of electromagnetic interaction with the measurement recorder (16) is recorded by at least one measurement recorder (16) disposed in the hollow chamber structure (4), said signal being a function of the distance between the measurement recorder (16) and the particle beam (10). According to the invention, the measurement signal (M) is analyzed in a frequency range different from the base frequency (f0) and higher natural frequencies of the hollow chamber structure (4), comprising a whole multiple of the base frequency (f0).
    • 本发明涉及一种用于测量线性加速器中的分组中存在的粒子束(10)的位置的方法和装置,该线性加速器包括中空室结构(4),其中产生以基本频率(f0)振荡的电磁波 为了加速颗粒,其中通过与测量记录器(16)的电磁相互作用由粒子束(10)产生的电测量信号(M)由设置在中空室中的至少一个测量记录器(16)记录 结构(4),所述信号是测量记录器(16)和粒子束(10)之间的距离的函数。 根据本发明,在与中心腔室结构(4)的基本频率(f0)和较高固有频率不同的频率范围内分析测量信号(M),其包括基本频率(f0)的整数倍。
    • 10. 发明授权
    • Therapy facility
    • 治疗设施
    • US08199877B2
    • 2012-06-12
    • US12700941
    • 2010-02-05
    • Roland SchmidtStefan Setzer
    • Roland SchmidtStefan Setzer
    • A61N5/10
    • A61B6/02A61N5/1049A61N2005/1061
    • A therapy system has a therapeutic system that produces x-ray radiation and is directed to a treatment area, and an image-producing imaging system that produces x-ray radiation and is directed to the treatment area. The therapeutic system has a first accelerator for electrons of a first energy that produces respective x-ray radiation, and the imaging system has a second accelerator for electrons of a second energy. A supply system is connected to and operates the first and the second accelerators, and the first and second supply systems have at least one component.
    • 治疗系统具有产生x射线辐射并被引导到治疗区域的治疗系统,以及产生x射线辐射并且被引导到治疗区域的图像产生成像系统。 所述治疗系统具有产生相应X射线辐射的第一能量的电子的第一加速器,并且所述成像系统具有用于第二能量的电子的第二加速器。 供应系统连接到并操作第一和第二加速器,并且第一和第二供应系统具有至少一个部件。