CHARGED PARTICLE BEAM IRRADIATION SYSTEM AND OPERATING METHOD OF CHARGED PARTICLE BEAM IRRADIATION SYSTEM
    1.
    发明申请
    CHARGED PARTICLE BEAM IRRADIATION SYSTEM AND OPERATING METHOD OF CHARGED PARTICLE BEAM IRRADIATION SYSTEM 有权
    充电颗粒光束辐射系统和充电颗粒光束辐射系统的工作方法

    公开(公告)号:US20140203186A1

    公开(公告)日:2014-07-24

    申请号:US14238068

    申请日:2011-08-31

    IPC分类号: A61N5/10

    摘要: A charged particle beam irradiation system in which the energy, Bragg peak, and irradiation depth of a charged particle beam, with which a patient is to be irradiated, can be checked in real time just before actual irradiation. Just before the actual irradiation, by providing a high-speed steering magnet with 100% current, a checking beam is intentionally hit into a beam damper. By using a dosimeter and a dose measuring device in front thereof, extraction beam intensity is measured. By using a multi-layer beam monitor, a dose distribution thereof is measured. Accordingly, just before the actual irradiation, the energy, Bragg peak, and irradiation depth of the charged particle beam, with which the patient is to be irradiated, can be checked accurately and in real time. When the beam has a desired dose distribution as a result of checking, continuously, extraction control is performed.

    摘要翻译: 可以在实际照射之前实时检查其中要照射患者的带电粒子束的能量,布拉格峰和照射深度的带电粒子束照射系统。 在实际照射之前,通过提供具有100%电流的高速转向磁体,有意地将检查光束撞到光束阻尼器中。 通过使用前面的剂量计和剂量测量装置,测量提取束强度。 通过使用多层光束监视器,测量其剂量分布。 因此,在实际照射之前,可以准确,实时地检查与患者照射的带电粒子束的能量,布拉格峰和照射深度。 当光束作为检查结果具有期望的剂量分布时,连续地执行提取控制。

    Charged particle beam irradiation system and operating method of charged particle beam irradiation system
    2.
    发明授权
    Charged particle beam irradiation system and operating method of charged particle beam irradiation system 有权
    带电粒子束照射系统和带电粒子束照射系统的操作方法

    公开(公告)号:US09199094B2

    公开(公告)日:2015-12-01

    申请号:US14238068

    申请日:2011-08-31

    摘要: A charged particle beam irradiation system in which the energy, Bragg peak, and irradiation depth of a charged particle beam, with which a patient is to be irradiated, can be checked in real time just before actual irradiation. Just before the actual irradiation, by providing a high-speed steering magnet with 100% current, a checking beam is intentionally hit into a beam damper. By using a dosimeter and a dose measuring device in front thereof, extraction beam intensity is measured. By using a multi-layer beam monitor, a dose distribution thereof is measured. Accordingly, just before the actual irradiation, the energy, Bragg peak, and irradiation depth of the charged particle beam, with which the patient is to be irradiated, can be checked accurately and in real time. When the beam has a desired dose distribution as a result of checking, continuously, extraction control is performed.

    摘要翻译: 可以在实际照射之前实时检查其中要照射患者的带电粒子束的能量,布拉格峰和照射深度的带电粒子束照射系统。 在实际照射之前,通过提供具有100%电流的高速转向磁体,有意地将检查光束撞到光束阻尼器中。 通过使用前面的剂量计和剂量测量装置,测量提取束强度。 通过使用多层光束监视器,测量其剂量分布。 因此,在实际照射之前,可以准确,实时地检查与患者照射的带电粒子束的能量,布拉格峰和照射深度。 当光束作为检查结果具有期望的剂量分布时,连续地执行提取控制。