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    • 71. 发明申请
    • RADIATION THERAPY USING BEAM MODIFIERS PLACED AGAINST A PATIENT'S SKIN
    • 使用放置在患者皮肤上的波束修改器进行辐射治疗
    • US20100195793A1
    • 2010-08-05
    • US12695372
    • 2010-01-28
    • BENJAMIN E. NELMS
    • BENJAMIN E. NELMS
    • A61N5/10G21K1/02
    • A61N5/103A61N5/1042A61N2005/1096
    • A method for making a beam modifier to be used in radiation therapy includes defining a region of interest in a patient that is to receive radiation, with the region of interest being defined using an anatomy coordinate system format. Radiation treatment parameters are defined for the defined region of interest, and correspond to an initial type beam modifier to be coupled to an output of a radiation device. Design data on a beam modifier to be placed on the skin of the patient is generated, with the design data being based on the defined region of interest and the defined radiation treatment parameters for the defined region of interest. The design data is in the same anatomy coordinate system format as the defined region of interest that is to receive the radiation. The design data is treated as a new region of interest, and the radiation dosage to be applied to the new region of interest is re-calculated while taking into account the beam modifier to be placed on the skin of the patient.
    • 用于制造用于放射治疗的光束修改器的方法包括定义要接收辐射的患者中的感兴趣区域,利用解剖坐标系统格式来定义关注区域。 对于所定义的感兴趣区域定义辐射处理参数,并且对应于要耦合到辐射装置的输出的初始类型光束修正器。 产生要放置在患者皮肤上的束修饰符的设计数据,其中设计数据基于所定义的感兴趣区域和所定义的感兴趣区域的定义的辐射治疗参数。 设计数据处于与要接收辐射的定义的感兴趣区域相同的解剖坐标系统格式。 将设计数据视为新的感兴趣区域,并且将新的感兴趣区域的辐射剂量重新计算,同时考虑放置在患者皮肤上的束调节剂。
    • 73. 发明授权
    • Particle beam irradiation equipment and particle beam irradiation method
    • 粒子束照射设备和粒子束照射法
    • US07449701B2
    • 2008-11-11
    • US10822767
    • 2004-04-13
    • Hisataka FujimakiKoji MatsudaMasaki YanagisawaHiroshi Akiyama
    • Hisataka FujimakiKoji MatsudaMasaki YanagisawaHiroshi Akiyama
    • A61N5/00H01J33/00
    • G21K5/04A61N5/10A61N2005/1087A61N2005/1095A61N2005/1096
    • Particle beam irradiation equipment and a method of adjusting irradiation nozzle, which can ensure a long range and high dose uniformity at any field size are provided. The particle beam irradiation equipment comprises charged particle beam generation equipment and an irradiation nozzle for irradiating a charged particle beam extracted from the charged particle beam generation equipment to an irradiation target. The irradiation nozzle comprises a first scatterer device including a first scatterer for spreading out the charged particle beam into a Gaussian-like distribution, and multiple stages of second scatterer devices including second scatterers for producing a uniform intensity distribution of the charged particle beam having been spread out into a Gaussian-like distribution by the first scatterer. For forming irradiation fields having sizes different from each other, the second scatterer devices are disposed downstream of the first scatterer device in the direction of travel of the charged particle beam at the spacing depending on the difference in the field size.
    • 提供粒子束照射设备和调节照射喷嘴的方法,其可以确保任何场尺寸的长距离和高剂量均匀性。 粒子束照射设备包括带电粒子束产生设备和用于将从带电粒子束产生设备提取的带电粒子束照射到照射目标的照射喷嘴。 照射喷嘴包括第一散射体装置,其包括用于将带电粒子束扩展成高斯状分布的第一散射体,以及包括第二散射体的多级第二散射体装置,用于产生已扩散的带电粒子束的均匀强度分布 由第一个散射体组成高斯状分布。 为了形成尺寸彼此不同的照射场,根据场尺寸的差异,第二散射体装置沿着带电粒子束的行进方向设置在第一散射体装置的下游。
    • 75. 发明申请
    • METHOD FOR PROVIDING A RADIATION FILTER FOR A RADIATION TREATMENT MACHINE
    • 辐射处理机辐射过滤器的提供方法
    • US20060015202A1
    • 2006-01-19
    • US10892652
    • 2004-07-16
    • Richard Sweat
    • Richard Sweat
    • G06F19/00
    • A61N5/1042A61N2005/1095A61N2005/1096
    • A method for providing a radiation filter for a radiation treatment machine includes receiving via e-mail design data for the radiation filter, and comparing the received design data to a radiation filter blank database for selecting a radiation filter blank compatible with the radiation treatment machine from a plurality of radiation filter blanks. The method further includes defining tooling instructions for the selected radiation filter blank, and programming a tooling machine based upon the defined tooling instructions. The programmed tooling machine is operated for machining the selected radiation filter blank into the radiation filter.
    • 一种用于提供用于辐射治疗机的辐射过滤器的方法包括:经由电子邮件设计用于辐射过滤器的数据,并将接收到的设计数据与放射线过滤器空白数据库进行比较,用于选择与辐射处理机器兼容的辐射过滤器坯料, 多个辐射过滤器坯件。 该方法还包括为所选择的辐射过滤器坯件定义加工指令,以及基于所定义的加工指令对加工机进行编程。 操作编程的加工机将所选择的辐射过滤器坯料加工成辐射过滤器。
    • 76. 发明申请
    • Particle beam irradiation equipment and particle beam irradiation method
    • 粒子束照射设备和粒子束照射法
    • US20040200983A1
    • 2004-10-14
    • US10822767
    • 2004-04-13
    • Hisataka FujimakiKoji MatsudaMasaki YanagisawaHiroshi Akiyama
    • A61N005/10
    • G21K5/04A61N5/10A61N2005/1087A61N2005/1095A61N2005/1096
    • Particle beam irradiation equipment and a method of adjusting irradiation nozzle, which can ensure a long range and high dose uniformity at any field size are provided. The particle beam irradiation equipment comprises charged particle beam generation equipment and an irradiation nozzle for irradiating a charged particle beam extracted from the charged particle beam generation equipment to an irradiation target. The irradiation nozzle comprises a first scatterer device including a first scatterer for spreading out the charged particle beam into a Gaussian-like distribution, and multiple stages of second scatterer devices including second scatterers for producing a uniform intensity distribution of the charged particle beam having been spread out into a Gaussian-like distribution by the first scatterer. For forming irradiation fields having sizes different from each other, the second scatterer devices are disposed downstream of the first scatterer device in the direction of travel of the charged particle beam at the spacing depending on the difference in the field size.
    • 提供粒子束照射设备和调节照射喷嘴的方法,其可以确保任何场尺寸的长距离和高剂量均匀性。 粒子束照射设备包括带电粒子束产生设备和用于将从带电粒子束产生设备提取的带电粒子束照射到照射目标的照射喷嘴。 照射喷嘴包括第一散射体装置,其包括用于将带电粒子束扩展成高斯状分布的第一散射体,以及包括第二散射体的多级第二散射体装置,用于产生已扩散的带电粒子束的均匀强度分布 由第一个散射体组成高斯状分布。 为了形成尺寸彼此不同的照射场,根据场尺寸的差异,第二散射体装置沿着带电粒子束的行进方向设置在第一散射体装置的下游。