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    • 3. 发明申请
    • CHARGED PARTICLE CANCER THERAPY PATIENT CONSTRAINT APPARATUS AND METHOD OF USE THEREOF
    • 充电颗粒癌治疗患者约束装置及其使用方法
    • US20150343238A1
    • 2015-12-03
    • US14293861
    • 2014-06-02
    • Vladimir Balakin
    • Vladimir Balakin
    • A61N5/10
    • A61N5/10A61N5/1069A61N5/107A61N5/1077A61N5/1082A61N2005/1087A61N2005/1097
    • A patient positioning/constraint apparatus and method of use thereof is described in combination with a charged particle cancer therapy system. In one embodiment, a patient is tilted about a longitudinal axis, such as rotation about a head-to-foot axis of the patient where the head-to-foot axis of the patient is horizontal. Optional side support constraints are optionally used to constrain radial movement of the patient on the tilted patient support. The side support constraints are optionally pre-formed to or coupled to a radially outer shape of an individual patient, such as the dexter or sinister side of the individual's head, arm, torso, hip, and/or leg. Patient tilt is optionally combined with rotation of the patient about a vertical axis, rotation of the entire patient about an axis not overlapped by the patient, and/or dynamic control of angles of incident charged particles directed by beamline magnets of the charged particle therapy system.
    • 与带电粒子癌症治疗系统结合描述患者定位/约束装置及其使用方法。 在一个实施例中,患者围绕纵向轴线倾斜,例如围绕患者的头部到脚部轴线的旋转,其中患者的头部到脚部轴线是水平的。 可选的侧支撑约束可选地用于限制患者在倾斜患者支架上的径向运动。 侧支撑约束可选地预先形成为或联接到个体患者的径向外部形状,例如个体头部,手臂,躯干,髋部和/或腿部的屈曲或阴性侧面。 患者倾斜可选地与患者围绕垂直轴的旋转组合,整个患者围绕不与患者重叠的轴的旋转,和/或由带电粒子治疗系统的束线磁体引导的入射带电粒子的角度的动态控制 。
    • 6. 发明授权
    • Charged particle cancer therapy dose distribution method and apparatus
    • 带电粒子癌治疗剂量分布方法和装置
    • US08941084B2
    • 2015-01-27
    • US13887339
    • 2013-05-05
    • Vladimir Balakin
    • Vladimir Balakin
    • G21K5/04A61N5/10
    • A61N5/107A61N5/1049A61N5/1067A61N5/1081A61N2005/1087H05H7/10H05H13/04
    • The invention relates generally to treatment of solid cancers. More particularly, a method and apparatus for efficient radiation dose delivery to a tumor is described. Preferably, radiation is delivered through an entry point into the tumor and Bragg peak energy is targeted to a distal or far side of the tumor from an ingress point. Delivering Bragg peak energy to the distal side of the tumor from the ingress point is repeated from multiple rotational directions. Beam intensity is proportional to radiation dose delivery efficiency. The multi-field irradiation process with energy levels targeting the far side of the tumor from each irradiation direction provides even and efficient charged particle radiation dose delivery to the tumor. Preferably, the charged particle therapy is timed to patient respiration via control of charged particle beam injection, acceleration, extraction, and/or targeting methods and apparatus.
    • 本发明一般涉及固体癌的治疗。 更具体地,描述了用于向肿瘤有效辐射剂量递送的方法和装置。 优选地,辐射通过入口点输送到肿瘤中,并且布拉格峰值能量靶向肿瘤的远端或远侧与进入点。 从入口点向肿瘤的远端侧提供布拉格峰值能量从多个旋转方向重复。 光束强度与辐射剂量传递效率成正比。 具有针对每个照射方向的肿瘤远侧的能级的多场照射过程提供均匀且有效的带电粒子辐射剂量递送至肿瘤。 优选地,带电粒子治疗通过控制带电粒子束注射,加速,提取和/或靶向方法和装置来计时到患者呼吸。
    • 7. 发明申请
    • CHARGED PARTICLE THERAPY PATIENT CONSTRAINT APPARATUS AND METHOD OF USE THEREOF
    • 充电颗粒治疗患者约束装置及其使用方法
    • US20130218009A1
    • 2013-08-22
    • US13572567
    • 2012-08-10
    • Vladimir Balakin
    • Vladimir Balakin
    • A61N5/10A61B6/02
    • A61N5/1077A61B6/02A61N5/10A61N5/1043A61N2005/1087H05H7/10H05H13/04
    • The invention comprises a rapid patient positioning system including a computer and motor controlled patient constraint system, such as a patient head and/or back support system having multiple adjustable degrees of freedom that facilitates accurate, precise, and rapid alignment of a patient relative to a support or table. The patient support system is preferably integrated with a rapid patient positioning system including steps of: positioning a patient relative to the table in a substantially vertical orientation, transitioning the table through a semi-vertical orientation, such as with a robot arm, and orientating the patient and the table in a substantially horizontal orientation, such as in a position for charged particle tumor therapy. Preferably, the robot arm is in common with an arm used to move the patient in traditional proton therapy.
    • 本发明包括快速的患者定位系统,其包括计算机和马达控制的患者约束系统,例如具有多个可调节自由度的患者头部和/或后支撑系统,其有助于患者相对于患者的准确,精确和快速对准 支持或表。 患者支撑系统优选地与快速患者定位系统集成,包括以下步骤:将患者相对于桌子以基本竖直的方向定位,使得桌子通过诸如机器人手臂的半垂直取向过渡,并使 患者和桌子处于基本水平的方向,例如用于带电粒子肿瘤治疗的位置。 优选地,机器人臂与用于在传统质子治疗中移动患者的手臂相同。
    • 9. 发明申请
    • MAGNETIC FIELD CONTROL METHOD AND APPARATUS USED IN CONJUNCTION WITH A CHARGED PARTICLE CANCER THERAPY SYSTEM
    • 磁场控制方法和与充电粒子治疗系统连接使用的装置
    • US20120209052A1
    • 2012-08-16
    • US13456840
    • 2012-04-26
    • Vladimir Balakin
    • Vladimir Balakin
    • A61N2/00
    • H05H13/04H05H7/04
    • The invention comprises a charged particle beam acceleration, extraction, and/or targeting method and apparatus used in conjunction with charged particle beam radiation therapy of cancerous tumors. Novel design features of a synchrotron are described. Particularly, turning magnets, edge focusing magnets, concentrating magnetic field magnets, winding and control coils, flat surface incident magnetic field surfaces, and extraction elements are described that minimize the overall size of the synchrotron, provide a tightly controlled proton beam, directly reduce the size of required magnetic fields, directly reduces required operating power, and allow continual acceleration of protons in a synchrotron even during a process of extracting protons from the synchrotron.
    • 本发明包括与癌性肿瘤的带电粒子束放射治疗一起使用的带电粒子束加速,提取和/或靶向方法和装置。 描述了同步加速器的新颖设计特征。 特别地,描述了转动磁体,边缘聚焦磁体,集中磁场磁体,绕组和控制线圈,平面入射磁场表面和提取元件,其使得同步加速器的总体尺寸最小化,提供严格控制的质子束,直接减少 即使在从同步加速器提取质子的过程中,所需磁场的尺寸也能直接降低所需的工作功率,并允许同步加速器中质子的持续加速。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR INTENSITY CONTROL OF A CHARGED PARTICLE BEAM EXTRACTED FROM A SYNCHROTRON
    • 从SYNCHROTRON提取的充电颗粒束的强度控制方法和装置
    • US20120205551A1
    • 2012-08-16
    • US13456945
    • 2012-04-26
    • Vladimir Balakin
    • Vladimir Balakin
    • H01J3/26
    • G21K1/087A61N2005/1087G21K1/093H05H7/04H05H7/12
    • The invention comprises intensity control of a charged particle beam acceleration, extraction, and/or targeting method and apparatus used in conjunction with charged particle beam radiation therapy of cancerous tumors. Particularly, intensity of a charged particle stream of a synchrotron is described. Intensity control is described in combination with turning magnets, edge focusing magnets, concentrating magnetic field magnets, winding and control coils, and extraction elements of the synchrotron. The system reduces the overall size of the synchrotron, provides a tightly controlled proton beam, directly reduces the size of required magnetic fields, directly reduces required operating power, and allows continual acceleration of protons in a synchrotron even during a process of extracting protons from the synchrotron.
    • 本发明包括与癌肿瘤的带电粒子束放射治疗结合使用的带电粒子束加速度,提取和/或靶向方法和装置的强度控制。 特别地,描述了同步加速器的带电粒子流的强度。 强度控制与旋转磁体,边缘聚焦磁铁,集中磁场磁体,绕组和控制线圈以及同步加速器的提取元件相结合来描述。 该系统减小同步加速器的总体尺寸,提供严格控制的质子束,直接减小所需磁场的尺寸,直接降低所需的操作功率,并且允许在同步加速器中质子的连续加速,即使在从质子中提取质子的过程中 同步加速器