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    • 1. 发明授权
    • Particle beam irradiation system
    • 粒子束照射系统
    • US09265970B2
    • 2016-02-23
    • US13393418
    • 2011-03-02
    • Taizo HondaMasahiro Ikeda
    • Taizo HondaMasahiro Ikeda
    • H01J3/26A61N5/10
    • A61N5/1043A61N5/1067A61N5/1068A61N2005/1059A61N2005/1087A61N2005/1095
    • A particle beam irradiation system comprises deflection electromagnets which scan by deflecting the particle beam in two dimensions in the lateral direction which is perpendicular to an irradiation direction of the particle beam, and an energy width expanding device through which the particle beam passes so as to expand an energy width of the particle beam and form a SOBP in a depth direction of the irradiation target, that is, in an irradiation direction of the particle beam, wherein the energy width expanding device is configured to form the SOBP in the depth direction along whole irradiation area in the depth direction of the irradiation target, and the deflection electromagnets are controlled so as for an irradiation spot which is formed in the irradiation target by the particle beam to move stepwise along whole irradiation area in the lateral direction of the irradiation target.
    • 粒子束照射系统包括偏转电磁体,该偏转电磁体通过在与粒子束的照射方向垂直的横向方向上的二维偏转粒子束进行扫描;以及能量扩大装置,粒子束通过该能量扩张装置以扩展 粒子束的能量宽度,并且在照射对象的深度方向,即在粒子束的照射方向上形成SOBP,其中,能量宽度扩展装置被构造成沿着整个深度方向形成SOBP 照射对象的深度方向的照射区域,并且对于通过粒子束形成在照射对象物上的照射点,控制偏转电磁体,沿着照射对象的横向的整个照射区域逐步移动。
    • 3. 发明授权
    • Particle beam therapy system
    • 粒子束治疗系统
    • US08421031B2
    • 2013-04-16
    • US13258772
    • 2011-03-10
    • Taizo HondaMasahiro IkedaYuehu PuKazushi Hanakawa
    • Taizo HondaMasahiro IkedaYuehu PuKazushi Hanakawa
    • H01J3/26A61N5/10
    • A61N5/1043A61N5/1048A61N5/1077A61N2005/1074A61N2005/1087
    • The objective is to obtain a particle beam therapy system that can suppress the effect of a leakage dose. There are provided a scanning nozzle that irradiates in a predetermined direction a particle beam emitted from an accelerator; an irradiation control unit that controls operation of the irradiation nozzle in such a way that the particle beam of a predetermined dose is sequentially irradiated onto each of a plurality of spots set in a planar direction in an irradiation subject; and a control unit that on/off-controls emission of the particle beam from the accelerator. The irradiation control unit makes the irradiation nozzle scan in a diluting manner the particle beam onto a predetermined area in the irradiation subject, in a predetermined period after a time point when emission is switched from ON to OFF, or in a period from the time point when emission is switched from ON to OFF to a time point when the particle beam is cut off.
    • 目的是获得能够抑制泄漏剂量影响的粒子束治疗系统。 提供了沿预定方向照射从加速器发射的粒子束的扫描喷嘴; 照射控制单元,其以照射对象的平面方向上设置的多个点顺序地照射预定剂量的粒子束的方式控制照射喷嘴的动作; 以及控制单元,其控制来自加速器的粒子束的发射。 照射控制单元使得照射喷嘴在发射从ON切换到OFF之后的预定时间内或在从时间点开始的时间段内,将粒子束以稀释的方式扫描到照射对象的预定区域上 当发射从ON切换到截止到粒子束的时间点时。
    • 4. 发明申请
    • PARTICLE BEAM IRRADIATION SYSTEM
    • 颗粒光束辐照系统
    • US20120223247A1
    • 2012-09-06
    • US13393418
    • 2011-03-02
    • Taizo HondaMasahiro Ikeda
    • Taizo HondaMasahiro Ikeda
    • H01J3/26
    • A61N5/1043A61N5/1067A61N5/1068A61N2005/1059A61N2005/1087A61N2005/1095
    • A particle beam irradiation system comprises deflection electromagnets which scan by deflecting the particle beam in two dimensions in the lateral direction which is perpendicular to an irradiation direction of the particle beam, and an energy width expanding device through which the particle beam passes so as to expand an energy width of the particle beam and form a SOBP in a depth direction of the irradiation target, that is, in an irradiation direction of the particle beam, wherein the energy width expanding device is configured to form the SOBP in the depth direction along whole irradiation area in the depth direction of the irradiation target, and the deflection electromagnets are controlled so as for an irradiation spot which is formed in the irradiation target by the particle beam to move stepwise along whole irradiation area in the lateral direction of the irradiation target.
    • 粒子束照射系统包括偏转电磁体,该偏转电磁体通过在垂直于粒子束的照射方向的横向方向上的二维偏转粒子束进行扫描;以及能量扩大装置,粒子束通过该能量扩展装置以扩展 粒子束的能量宽度,并且在照射对象的深度方向,即在粒子束的照射方向上形成SOBP,其中,能量宽度扩展装置被构造成沿着整个深度方向形成SOBP 照射对象的深度方向的照射区域,并且对于通过粒子束形成在照射对象物上的照射点,控制偏转电磁体,沿着照射对象的横向的整个照射区域逐步移动。
    • 6. 发明授权
    • Particle beam scanning irradiation system
    • 粒子束扫描照射系统
    • US09079026B2
    • 2015-07-14
    • US14386626
    • 2012-03-21
    • Yuehu PuMasahiro IkedaTaizo Honda
    • Yuehu PuMasahiro IkedaTaizo Honda
    • A61N5/10
    • A61N5/1071A61N5/103A61N5/1031A61N5/1043A61N2005/1087
    • A particle beam scanning irradiation method includes the steps of calculating a planned irradiating particle count of a particle beam for each of irradiation spots, on the basis of a relative amount of particle beam irradiation and a prescription particle-beam dose determined from a particle-beam therapy plan; simulating an irradiation process of the particle beam at each irradiation spot, on the basis of the planned irradiating particle count and a beam current waveform of the particle beam, and calculating a particle count of the particle beam irradiating the diseased portion during a scan shift of the particle beam; correcting the planned irradiating particle count for each irradiation spot by using the irradiating particle count during the scan shift; converting the corrected planned-irradiation particle count into a count value used in a dose monitor; and irradiating the irradiation spot with the particle beam, on the basis of the converted count value.
    • 粒子束扫描照射方法包括以下步骤:基于粒子束照射的相对量和从粒子束确定的处方粒子束剂量来计算每个照射点的粒子束的计划照射粒子数 治疗方案; 基于所计划的照射粒子数和粒子束的束电流波形,模拟在各照射点处的粒子束的照射过程,计算在扫描位移期间照射患病部位的粒子束的粒子数 粒子束; 通过使用扫描偏移期间的照射粒子数来校正每个照射点的计划照射粒子数; 将校正的计划照射粒子数转换为剂量监视器中使用的计数值; 并且基于转换后的计数值,用粒子束照射照射点。