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    • 6. 发明授权
    • Charged particle irradiation system and method for controlling the same
    • 带电粒子照射系统及其控制方法
    • US08637837B2
    • 2014-01-28
    • US12892225
    • 2010-09-28
    • Takayoshi NatoriKunio MoriyamaKoji Matsuda
    • Takayoshi NatoriKunio MoriyamaKoji Matsuda
    • G21G5/00
    • A61N5/1048A61N5/1037A61N5/1043A61N5/1064A61N2005/1087
    • A beam extraction process (interruption and restart) is appropriately performed when a failure occurs during irradiation of a spot group. A charged particle irradiation system includes a synchrotron 12 and a scanning irradiation unit 15 that scans an ion beam extracted from the synchrotron over a subject. The extraction of the ion beam from the synchrotron is stopped on the basis of a beam extraction stop command. Scanning magnets 5A and 5B are controlled to change a point (spot) to be irradiated with the ion beam, while the extraction of the ion beam is stopped. The extraction of the ion beam from the synchrotron is restarted after the change of the spot to be irradiated. When a relatively minor failure in which continuous irradiation would be possible occurs during irradiation of a certain spot with the beam, the extraction of the beam is not immediately stopped.
    • 当点组的照射期间发生故障时,适当地执行光束提取处理(中断和重新启动)。 带电粒子照射系统包括同步加速器12和扫描照射单元15,扫描照射单元15扫描从对象上的同步加速器提取的离子束。 基于光束提取停止命令停止来自同步加速器的离子束的提取。 在停止提取离子束的同时,控制扫描磁体5A和5B来改变要用离子束照射的点(点)。 离子束从同步加速器的提取在被照射点改变后重新开始。 当在用光束照射某一点时可能发生连续照射的相对较小的故障,则梁的提取不会立即停止。
    • 7. 发明授权
    • Particle beam irradiation apparatus and particle beam irradiation method
    • 粒子束照射装置和粒子束照射方法
    • US07709818B2
    • 2010-05-04
    • US11239073
    • 2005-09-30
    • Koji MatsudaKazuo HiramotoKunio Moriyama
    • Koji MatsudaKazuo HiramotoKunio Moriyama
    • A61N5/10
    • A61N5/1048A61N5/1043A61N5/1079A61N2005/1074A61N2005/1087
    • To ensure irradiation accuracy and safety, even when an irradiation device employing a different irradiation method is used, disclosed is herein a charged particle beam irradiation apparatus that irradiates an irradiation target with charged particle beams includes: a charged particle beam generator for generating the charged particle beams; a passive scattering irradiation device and a scanning irradiation device, both for irradiating the irradiation target with the charged particle beams; a beam transport system for transporting the charged particles beam extracted from the charged particle beam generator, to selected one of the two irradiation devices; and a central controller that modifies operating parameters on the charged particle beam generator, according to the irradiation method adopted for the selected irradiation device.
    • 为了确保照射精度和安全性,即使使用采用不同的照射方式的照射装置,在此公开了一种带电粒子束照射被照射靶的带电粒子束照射装置,包括:带电粒子束发生器,用于产生带电粒子 梁; 被动散射照射装置和扫描照射装置,用于向照射目标照射带电粒子束; 用于将从带电粒子束发生器提取的带电粒子束传送到两个照射装置中的一个的光束传输系统; 以及根据所选择的照射装置采用的照射方法修改带电粒子束发生器的工作参数的中央控制器。
    • 8. 发明授权
    • Device and method for outputting charged particle beam
    • 用于输出带电粒子束的装置和方法
    • US07692168B2
    • 2010-04-06
    • US11774085
    • 2007-07-06
    • Kunio MoriyamaNoriaki OuchiMasahiro TadokoroHisataka Fujimaki
    • Kunio MoriyamaNoriaki OuchiMasahiro TadokoroHisataka Fujimaki
    • A61N5/10
    • H05H7/12A61N5/1048A61N2005/1087
    • The present invention improves the accuracy of therapy by checking in real time whether an spread-out Bragg peak (SOBP) width agrees with a desired width during irradiation with a beam. The device for outputting a charged particle beam includes a charged particle beam generator 1 including a synchrotron 4; a range modulation device such as a range modulation wheel (RMW) 28 which forms a Bragg peak of an ion beam extracted from this charged particle beam generator 1; an irradiation device 16 which is located in the direction of ion beam propagation of this RMW device 28 and includes a dose monitor 31 for detecting a dose of the ion beam; and an SOBP width calculation device 73 which calculates ion beam Bragg peak formed by the RMW device 28 based on a detection value of the dose monitor 31.
    • 本发明通过实时检查展开的布拉格峰(SOBP)宽度是否与用束照射期间的期望宽度一致而提高了治疗的准确性。 用于输出带电粒子束的装置包括:包括同步加速器4的带电粒子束发生器1; 范围调制装置,例如形成从该带电粒子束发生器1提取的离子束的布拉格峰的范围调制轮(RMW)28; 照射装置16,其位于该RMW装置28的离子束传播方向上,并包括用于检测离子束剂量的剂量监测器31; 以及SOBP宽度计算装置73,其基于剂量监视器31的检测值计算由RMW装置28形成的离子束布拉格峰。
    • 9. 发明申请
    • Particle beam therapy system and control system for particle beam therapy
    • 粒子束治疗系统和粒子束​​治疗控制系统
    • US20060022152A1
    • 2006-02-02
    • US11188642
    • 2005-07-26
    • Takayoshi NatoriKunio MoriyamaKazumune SakaiTakahide Nakayama
    • Takayoshi NatoriKunio MoriyamaKazumune SakaiTakahide Nakayama
    • G21G4/00
    • A61N5/1079A61N5/10A61N2005/1087
    • A particle beam therapy system comprises a charged particle beam generator for generating a charged particle beam, two or more treatment rooms provided with respective irradiation devices for irradiating the charged particle beam, a beam line for transporting the charged particle beam extracted from the charged particle beam generator to the irradiation device in selected one of the two or more treatment rooms, a beam detection processing/control unit for monitoring a beam state of the charged particle beam in one of the two or more irradiation devices, and a selector for switchably selecting one of the irradiation devices which is to be monitored by the beam detection processing/control unit. The selector is controlled such that the selector establishes connection with the irradiation device in the selected one treatment room to which the charged particle beam is transported through the beam line. The system configuration can be simplified while maintaining the operation efficiency.
    • 粒子束治疗系统包括用于产生带电粒子束的带电粒子束发生器,设置有用于照射带电粒子束的各个照射装置的两个或更多个治疗室,用于输送从带电粒子束提取的带电粒子束的束线 发生器到两个或更多个处理室中选定的一个中的照射装置;用于监测两个或更多个照射装置之一中的带电粒子束的束状态的光束检测处理/控制单元,以及用于可选择地选择一个 由光束检测处理/控制单元监视的照射装置。 控制选择器使得选择器与所选择的一个处理室中的照射装置建立连接,通过束线将带电粒子束传送到该处理室。 可以简化系统配置,同时保持运行效率。
    • 10. 发明授权
    • Particle beam therapy system and control system for particle beam therapy
    • 粒子束治疗系统和粒子束​​治疗控制系统
    • US07397054B2
    • 2008-07-08
    • US11602489
    • 2006-11-21
    • Takayoshi NatoriKunio MoriyamaKazumune SakaiTakahide Nakayama
    • Takayoshi NatoriKunio MoriyamaKazumune SakaiTakahide Nakayama
    • A61N5/00A61N5/10G21G1/00
    • A61N5/1079A61N5/10A61N2005/1087
    • A particle beam therapy system comprises a charged particle beam generator for generating a charged particle beam, two or more treatment rooms provided with respective irradiation devices for irradiating the charged particle beam, a beam line for transporting the charged particle beam extracted from the charged particle beam generator to the irradiation device in selected one of the two or more treatment rooms, a beam detection processing/control unit for monitoring a beam state of the charged particle beam in one of the two or more irradiation devices, and a selector for switchably selecting one of the irradiation devices which is to be monitored by the beam detection processing/control unit. The selector is controlled such that the selector establishes connection with the irradiation device in the selected one treatment room to which the charged particle beam is transported through the beam line. The system configuration can be simplified while maintaining the operation efficiency.
    • 粒子束治疗系统包括用于产生带电粒子束的带电粒子束发生器,设置有用于照射带电粒子束的各个照射装置的两个或更多个治疗室,用于输送从带电粒子束提取的带电粒子束的束线 发生器到两个或更多个处理室中选定的一个中的照射装置;用于监测两个或更多个照射装置之一中的带电粒子束的束状态的光束检测处理/控制单元,以及用于可选择地选择一个 由光束检测处理/控制单元监视的照射装置。 控制选择器使得选择器与所选择的一个处理室中的照射装置建立连接,通过束线将带电粒子束传送到该处理室。 可以简化系统配置,同时保持运行效率。