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    • 22. 发明授权
    • Particle beam treatment device and irradiation dose setting method of the particle beam treatment device
    • 粒子束处理装置和粒子束处理装置的照射剂量设定方法
    • US08431907B2
    • 2013-04-30
    • US13318866
    • 2011-03-08
    • Masahiro IkedaHisashi HaradaOsamu Takahashi
    • Masahiro IkedaHisashi HaradaOsamu Takahashi
    • G01J1/42A61N5/00G21G5/00
    • A61N5/1036A61N5/1043A61N2005/1087
    • A particle beam treatment device includes an irradiation nozzle which moves a particle beam in a direction which is perpendicular to an advancing direction; a dose monitor which measures the dose of the particle beam; a planning part which sets the irradiation dose applied to a target volume; and a controlling part which controls the irradiation dose applied to a target volume based on irradiation dose set value which is set by a value measured by the dose monitor and the planning part, wherein the planning part stores the absorbed dose distribution data in the depth direction which is prepared in advance using the absorbed dose at the reference depth which is a predetermined position nearer to an incident side of the particle beam than the position of Bragg peak as the reference and calculates the irradiation dose set value using the absorbed dose at the reference depth.
    • 粒子束处理装置包括使粒子束沿与前进方向正交的方向移动的照射喷嘴; 测量粒子束剂量的剂量监测器; 将照射剂量设定在目标体积上的规划部分; 以及控制部,其基于由所述剂量监视器和所述规划部测量的值设定的照射剂量设定值来控制施加于目标体积的照射剂量,其中,所述规划部将所述吸收剂量分布数据存储在所述深度方向 其预先使用在比布拉格峰位置作为基准更靠近粒子束的入射侧的预定位置处的参考深度处的吸收剂量来计算,并且使用参考的吸收剂量来计算照射剂量设定值 深度。
    • 23. 发明申请
    • PARTICLE BEAM TREATMENT DEVICE AND IRRADIATION DOSE SETTING METHOD OF THE PARTICLE BEAM TREATMENT DEVICE
    • 颗粒束处理装置和颗粒束处理装置的辐照剂量设定方法
    • US20120313002A1
    • 2012-12-13
    • US13318866
    • 2011-03-08
    • Masahiro IkedaHisashi HaradaOsamu Takahashi
    • Masahiro IkedaHisashi HaradaOsamu Takahashi
    • A61N5/10
    • A61N5/1036A61N5/1043A61N2005/1087
    • A particle beam treatment device includes an irradiation nozzle which moves a particle beam in a direction which is perpendicular to an advancing direction; a dose monitor which measures the dose of the particle beam; a planning part which sets the irradiation dose applied to a target volume; and a controlling part which controls the irradiation dose applied to a target volume based on irradiation dose set value which is set by a value measured by the dose monitor and the planning part, wherein the planning part stores the absorbed dose distribution data in the depth direction which is prepared in advance using the absorbed dose at the reference depth which is a predetermined position nearer to an incident side of the particle beam than the position of Bragg peak as the reference and calculates the irradiation dose set value using the absorbed dose at the reference depth.
    • 粒子束处理装置包括使粒子束沿与前进方向正交的方向移动的照射喷嘴; 测量粒子束剂量的剂量监测器; 将照射剂量设定在目标体积上的规划部分; 以及控制部,其基于由所述剂量监视器和所述规划部测量的值设定的照射剂量设定值来控制施加于目标体积的照射剂量,其中,所述规划部将所述吸收剂量分布数据存储在所述深度方向 其预先使用在比布拉格峰位置作为基准更靠近粒子束的入射侧的预定位置处的参考深度处的吸收剂量来计算,并且使用参考的吸收剂量来计算照射剂量设定值 深度。
    • 25. 发明申请
    • CHARGED PARTICLE ACCELERATOR AND PARTICLE BEAM THERAPY SYSTEM
    • 充电颗粒加速器和颗粒束治疗系统
    • US20130193353A1
    • 2013-08-01
    • US13582645
    • 2012-01-26
    • Masahiro IkedaYuko KijimaShunsuke Okada
    • Masahiro IkedaYuko KijimaShunsuke Okada
    • H05H13/04A61N5/10
    • H05H13/04A61N2005/1087H05H2007/046H05H2277/11
    • The objective is to obtain a charged particle accelerator where the amount of pattern data for operating an acceleration cavity and electromagnets based on time clocks is reduced and the pattern data communication time is shortened. An accelerator control apparatus provided in a charged particle accelerator of the present invention is characterized by including a clock generation unit that generates an acceleration cavity clock and an electromagnet clock that is synchronized with the acceleration cavity clock and has a frequency lower than that of the acceleration cavity clock; a high-frequency control unit that controls an acceleration cavity, based on an acceleration cavity pattern stored in a first pattern memory and the acceleration cavity clock; and a deflection electromagnet control unit that controls a deflection electromagnet, based on a deflection electromagnet pattern stored in a second pattern memory and the electromagnet clock.
    • 目的是获得一种带电粒子加速器,其中用于操作基于时钟的加速腔和电磁体的模式数据量减少,并且模式数据通信时间缩短。 在本发明的带电粒子加速器中设置的加速器控制装置的特征在于,包括:时钟生成部,其生成加速腔时钟;以及与加速腔时钟同步的电磁时钟,其频率比加速度 腔钟; 基于存储在第一图案存储器中的加速腔图案和加速腔时钟控制加速腔的高频控制单元; 以及基于存储在第二图案存储器中的偏转电磁体图案和电磁时钟来控制偏转电磁体的偏转电磁体控制单元。