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    • 41. 发明申请
    • PARTICLE BEAM TREATMENT
    • 颗粒束处理
    • WO2015198069A1
    • 2015-12-30
    • PCT/GB2015/051872
    • 2015-06-26
    • UNIVERSITY COURT OF THE UNIVERSITY OF GLASGOW
    • FREEMAN, StewartSHANKS, Richard
    • H01J49/00G21K1/14
    • H01J49/0086G21K1/14
    • A method of treating a particle beam is disclosed, of interest in particular for mass spectrometry for 14 C. A particle beam including positive ions is passed through a charge exchange cell containing a target gas. The target gas is electrically insulating at room temperature and pressure. At least some of the positive ions of the particle beam are converted to negative ions by interaction with the target gas. The particle beam incident at the charge exchange cell includes molecules and/or molecular ions which interact with the target gas to reduce the concentration of molecules as a result of repeated collisions with particles of the target gas. A corresponding mass spectrometry system is also disclosed.
    • 公开了一种处理颗粒束的方法,特别用于14C的质谱法。 包含正离子的粒子束通过含有目标气体的电荷交换电池。 目标气体在室温和压力下电绝缘。 通过与目标气体的相互作用,粒子束的至少一些正离子被转换为负离子。 入射在电荷交换电池处的粒子束包括与目标气体相互作用的分子和/或分子离子,以减少由于与目标气体的颗粒重复碰撞而导致的分子浓度。 还公开了相应的质谱系统。
    • 44. 发明申请
    • CHARGED PARTICLE CANCER THERAPY PATIENT POSITIONING METHOD AND APPARATUS
    • 充电颗粒癌治疗患者定位方法和装置
    • WO2009142545A3
    • 2010-04-22
    • PCT/RU2009000247
    • 2009-05-21
    • BALAKIN VLADIMIR YEGOROVICH
    • BALAKIN VLADIMIR YEGOROVICH
    • H05H13/04A61N5/01A61N5/10H05H7/04H05H7/10
    • A61N5/10A61N2005/1087G03B42/02G21K1/087G21K1/093G21K1/14H01J3/14H01J3/34H05H7/04H05H7/08H05H7/10H05H13/04
    • The invention comprises a patient positioning and/or repositioning system, such as a laying, semi-vertical, or seated patient positioning, alignment, and/or control method and apparatus used in conjunction with multi-axis charged particle radiation therapy. Patient positioning constraints optionally include one or more of: a seat support, a back support, a head support, an arm support, a knee support, and a foot support. One or more of the positioning constraints are preferably movable and/or under computer control for rapid positioning, repositioning, and/or immobilization of the patient. The system optionally uses an X-ray beam that lies in substantially the same path as a proton beam path of a particle beam cancer therapy system. The generated image is usable for: fine tuning body alignment relative to the proton beam path, to control the charged particle beam path to accurately and precisely target the tumor, and/or in system verification and validation.
    • 本发明包括与多轴带电粒子放射治疗结合使用的患者定位和/或重新定位系统,例如铺设,半垂直或就座的患者定位,对准和/或控制方法和装置。 患者定位限制可选地包括以下中的一个或多个:座椅支撑件,后支撑件,头部支撑件,臂支撑件,膝盖支撑件和脚支撑件。 一个或多个定位限制优选地可移动和/或在计算机控制下进行,用于快速定位,重新定位和/或固定患者。 系统可选地使用位于与粒子束癌治疗系统的质子束路径基本相同的路径中的X射线束。 生成的图像可用于:相对于质子束路径精细调整身体对准,以控制带电粒子束路径以准确且精确地靶向肿瘤,和/或在系统验证和验证中。
    • 45. 发明申请
    • CHARGED PARTICLE CANCER THERAPY BEAM PATH CONTROL METHOD AND APPARATUS
    • 充电颗粒癌治疗光束路径控制方法和装置
    • WO2009142544A3
    • 2010-04-22
    • PCT/RU2009000246
    • 2009-05-21
    • BALAKIN VLADIMIR YEGOROVICH
    • BALAKIN VLADIMIR YEGOROVICH
    • H05H13/04A61N5/01A61N5/10H05H7/00H05H7/08H05H7/10
    • G21K1/087A61N2005/1087G21K1/093G21K1/14H05H7/04H05H7/08H05H7/10H05H13/04
    • The invention comprises a charged particle beam path coupling an injector, synchrotron accelerator, beam transport system, targeting system, and/or patient interface method and apparatus. Preferably, the injector comprises: a negative ion beam source, a two phase ion source vacuum system, an ion beam focusing lens, and/or a tandem accelerator. Preferably, the synchrotron comprises turning magnets, edge focusing magnets, magnetic field concentration magnets, winding and correction coils, flat magnetic field incident surfaces, and/or extraction elements. Preferably, the synchrotron, beam transport system, targeting system, and patient interface combine to allow multi-axis / multi-field irradiation, where multi-axis control comprises control of horizontal and vertical beam position, beam energy, and/or beam intensity and multi-field control comprises control of patient rotation and distribution of delivered energy in and about the tumor in a time controlled, targeted, accurate, precise, dosage controlled, and/or efficient manner.
    • 本发明包括连接注射器,同步加速器,束输送系统,靶向系统和/或患者接口方法和装置的带电粒子束路径。 优选地,喷射器包括:负离子束源,两相离子源真空系统,离子束聚焦透镜和/或串联加速器。 优选地,同步加速器包括转动磁体,边缘聚焦磁体,磁场集中磁体,绕组和校正线圈,平坦磁场入射表面和/或提取元件。 优选地,同步加速器,光束传输系统,瞄准系统和患者接口组合以允许多轴/多场照射,其中多轴控制包括水平和垂直光束位置,光束能量和/或光束强度的控制,以及 多场控制包括以时间控制的,靶向的,准确的,精确的,剂量控制的和/或有效的方式来控制患者旋转和在肿瘤中和周围分布的能量。
    • 46. 发明申请
    • CHARGED PARTICLE CANCER THERAPY BEAM PATH CONTROL METHOD AND APPARATUS
    • 充电颗粒癌治疗光束路径控制方法和装置
    • WO2009142544A2
    • 2009-11-26
    • PCT/RU2009/000246
    • 2009-05-21
    • BALAKIN, Vladimir Yegorovich
    • BALAKIN, Vladimir Yegorovich
    • H05H13/04H05H7/08
    • G21K1/087A61N2005/1087G21K1/093G21K1/14H05H7/04H05H7/08H05H7/10H05H13/04
    • The invention comprises a charged particle beam path coupling an injector, synchrotron accelerator, beam transport system, targeting system, and/or patient interface method and apparatus. Preferably, the injector comprises: a negative ion beam source, a two phase ion source vacuum system, an ion beam focusing lens, and/or a tandem accelerator. Preferably, the synchrotron comprises turning magnets, edge focusing magnets, magnetic field concentration magnets, winding and correction coils, flat magnetic field incident surfaces, and/or extraction elements. Preferably, the synchrotron, beam transport system, targeting system, and patient interface combine to allow multi-axis / multi-field irradiation, where multi-axis control comprises control of horizontal and vertical beam position, beam energy, and/or beam intensity and multi-field control comprises control of patient rotation and distribution of delivered energy in and about the tumor in a time controlled, targeted, accurate, precise, dosage controlled, and/or efficient manner.
    • 本发明包括连接注射器,同步加速器,束输送系统,靶向系统和/或患者接口方法和装置的带电粒子束路径。 优选地,喷射器包括:负离子束源,两相离子源真空系统,离子束聚焦透镜和/或串联加速器。 优选地,同步加速器包括转动磁体,边缘聚焦磁体,磁场集中磁体,绕组和校正线圈,平坦磁场入射表面和/或提取元件。 优选地,同步加速器,光束传输系统,瞄准系统和患者接口组合以允许多轴/多场照射,其中多轴控制包括水平和垂直光束位置,光束能量和/或光束强度的控制,以及 多场控制包括以时间控制的,靶向的,准确的,精确的,剂量控制的和/或有效的方式来控制患者旋转和在肿瘤中和周围分布的能量。
    • 48. 发明授权
    • Methods for disrupting electronic circuits
    • 破坏电路的方法
    • US09069049B2
    • 2015-06-30
    • US13919926
    • 2013-06-17
    • Kaonetics Technologies, Inc.
    • James Cornwell
    • G01V3/00G01R33/48G01R33/28
    • G01R33/4808F41H13/0043G01R33/28G21K1/14G21K5/00H05H3/00
    • Directed-energy systems and methods are described for disrupting electronic circuits, especially those containing semiconductors. A directed-energy system can include a charged particle generator configured to generate plural energized particles and a charge transformer configured to receive the plural energized particles that include charged particles and to output energized particles that include particles having substantially zero charge. The charged particle generator can be configured to direct the plural energized particles through the charge transformer in a predefined direction. A method for disrupting electronic circuits can include generating plural energized particles, directing the plural energized particles to an incident surface of a charge transformer and transforming the plural energized particles within the charge transformer. The transformed particles can be at substantially zero charge. The method can further include generating a wavefront at an exit surface of the charge transformer including the transformed particles and impinging an electronic circuit with the wavefront.
    • 描述了用于扰乱电子电路的定向能量系统和方法,特别是那些包含半导体的电子电路。 定向能系统可以包括被配置为产生多个通电粒子的带电粒子发生器和被配置为接收包括带电粒子的多个带电粒子的电荷变换器,并输出包括具有基本零电荷的粒子的激励粒子。 带电粒子发生器可以被配置成沿预定方向引导多个通电的粒子穿过电荷变换器。 破坏电子电路的方法可以包括产生多个通电粒子,将多个通电粒子引导到电荷变换器的入射表面,并将电荷变换器内的多个通电粒子转化。 转化的颗粒可以基本上为零电荷。 该方法还可以包括在电荷变换器的出口表面处生成波前,其包括经变换的粒子并且与波前相撞的电子电路。