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    • 83. 发明申请
    • ADJUSTABLE IMMOBILIZER APPARATUS AND METHOD FOR IMMOBILIZING A PATIENT
    • 可调节的固定器装置和用于使患者固定的方法
    • US20160206395A1
    • 2016-07-21
    • US14913760
    • 2015-02-02
    • QFIX SYSTEMS, LLC
    • Daniel D. CoppensDavid M. RabenoStephen J. Reiser
    • A61B90/18
    • A61B90/18A61B6/0421A61B90/14A61F5/05841A61F5/05858A61F5/3707A61N2005/1096A61N2005/1097
    • Systems for immobilizing a patient are disclosed. The system includes at least one preform formed from a low melting temperature thermoplastic, the preform being configured to be formed to the anatomy of the patient, at least one frame coupled to the at least one preform, and at least one support configured to support the anatomy of the patient. The system also includes at least one lock mechanism coupled to at least one of the frame and the support and configured to couple the at least one frame to the at least one support, and at least one adjuster mechanism coupled to at least one of the at least one frame and the at least one support and configured to selectively adjust a distance between the at least one frame and the at least one support while the at least one frame is coupled to the at least one support.
    • 公开了用于固定患者的系统。 所述系统包括由低熔点温度的热塑性塑料形成的至少一个预型件,所述预成型件构造成形成于患者的解剖结构,至少一个框架与所述至少一个预成型件相连接,以及至少一个支撑件, 患者的解剖结构。 该系统还包括耦合到框架和支撑件中的至少一个的至少一个锁定机构,并且被配置为将至少一个框架耦合到至少一个支撑件,并且至少一个调节器机构联接到至少一个框架 至少一个框架和所述至少一个支撑件,并且被配置为当所述至少一个框架联接到所述至少一个支撑件时,选择性地调整所述至少一个框架和所述至少一个支撑件之间的距离。
    • 85. 发明申请
    • Rodent Ionizing Radiation Treatment Device
    • 啮齿动物电离辐射治疗装置
    • US20140270076A1
    • 2014-09-18
    • US13834025
    • 2013-03-15
    • THE OHIO STATE UNIVERSITY
    • Christopher E. PelloskiJames L. SommerfeldKathryn BondraLanchun Lu
    • A61N5/10
    • A61N5/1079A61N2005/1094A61N2005/1096A61N2005/1097
    • The present application relates to rodent radiation device that enables simultaneous radiation treatment of a plurality of small animals such as mice with localized radiation therapy. The device can provide clinically-relevant homogeneous radiation dosing and scheduling to a plurality of small animals or other in vivo cancer models simultaneously. Specifically, the multi station/unit design of the device allows for rapid loading of anesthetized small animals into radiation shield chambers that absorbs over 95% of the delivered dose and protects the remainder of the untreated animal, allowing for more clinically accurate recapitulation of radiotherapy regimens. In one embodiment, a total of 40-50 Gy is delivered in 20-25 fractions to small animals with more than 95% survival rates.
    • 本发明涉及能够通过局部放射治疗同时对多个小动物如小鼠进行放射治疗的啮齿动物辐射装置。 该装置可以同时向多个小动物或其他体内癌症模型提供与临床相关的均匀辐射计量和调度。 具体来说,设备的多站/单元设计允许将麻醉的小动物快速装载到辐射屏蔽室中,其吸收超过95%的递送剂量并保护未处理动物的其余部分,从而允许更准确地概括放射治疗方案 。 在一个实施方案中,总共40-50Gy以20-25个分数递送至具有超过95%存活率的小动物。
    • 86. 发明授权
    • Applicator means for x-ray radiation therapy, fastening means as well as radiation therapy device
    • 施放器用于X线放射治疗,紧固装置以及放射治疗装置
    • US08724775B2
    • 2014-05-13
    • US12928793
    • 2010-12-17
    • Timo KleinwaechterFrank WeigandFrederik Wenz
    • Timo KleinwaechterFrank WeigandFrederik Wenz
    • A61N5/10G21K1/00
    • A61N5/1028A61N5/1014A61N2005/1096
    • Among other things, an applicator means (20) for x-ray radiation therapy for the irradiation of surfaces, as well as a radiation therapy device are described, having an applicator element (21) for taking up a probe tip or a radiation source element of a radiation source means (11). In order to further develop applicator means (20) in such a way that it is especially suitable also for the irradiation of surfaces, it is provided that applicator element (21) for adjusting different beam characteristics has at least one element (27) for influencing the beam, in particular a lens element, which is disposed in an exchangeable manner at/in applicator element (21). In addition, an advantageous fastening means is described, by means of which applicator means (20) can be attached and fixed on the surface to be treated.
    • 其中,描述了一种用于照射表面的X射线辐射治疗的施用装置(20)以及放射治疗装置,其具有用于吸收探针尖端或辐射源元件的施加器元件(21) 的辐射源装置(11)。 为了进一步开发施用装置(20),使得其特别适用于表面的照射,提供用于调节不同光束特性的施加器元件(21)具有用于影响的至少一个元件(27) 光束,特别是透镜元件,其以可更换的方式设置在施加器元件(21)的/处。 此外,描述了有利的紧固装置,通过该紧固装置可以将施用装置(20)附接并固定在待处理的表面上。
    • 87. 发明授权
    • Flexible energy filter for ion beam therapy
    • 用于离子束治疗的柔性能量过滤器
    • US08704201B2
    • 2014-04-22
    • US13512670
    • 2010-11-16
    • Jacobus Maarten Schippers
    • Jacobus Maarten Schippers
    • H01J29/52
    • A61N5/1077A61N5/10A61N5/1078A61N5/1081A61N2005/1087A61N2005/1095A61N2005/1096G21K1/043G21K1/10
    • An energy filter allows, particularly at lower beam energies, a determined spread of the beam energies in order to preserve the beam edges and to spread the Bragg peak at each individual beam energy. The energy filter behaves similarly to a ridge filter and spreads out the Bragg peak of a low energy proton beam (70-100 MeV) so that energy modulation of the beam can be done with steps of 5 mm in one go over the full range of 235-70 MeV. Due to its mechanical flexibility, the energy filter can be placed on the skin of the patient which minimizes the effect of scattering in the filter due to the short distance behind a layer of a plurality of metal particles within a flexible soft plastic sheet to the skin of the patient.
    • 能量滤波器特别是在较低的波束能量下允许确定的光束能量的扩展,以便保留光束边缘并且在每个单独的光束能量下扩展布拉格峰。 能量滤波器的行为类似于脊滤波器,并展开低能量质子束(70-100MeV)的布拉格峰值,使得能够以5毫米的步长在一整个范围内完成束的能量调制 235-70 MeV。 由于其机械灵活性,能量过滤器可以放置在患者的皮肤上,由于在柔性软塑料片内的多个金属颗粒层之后的短距离到皮肤的距离,从而使过滤器中散射的影响最小化 的病人。
    • 90. 发明授权
    • Bolus, bolus manufacturing method, particle beam therapy system, and treatment planning apparatus
    • 螺栓,弹丸制造方法,粒子束治疗系统和治疗计划装置
    • US08263954B2
    • 2012-09-11
    • US13126235
    • 2010-11-16
    • Takaaki Iwata
    • Takaaki Iwata
    • G21K5/04
    • A61N5/10A61N2005/1087A61N2005/1096G21K1/10Y10T29/49
    • The objective is to obtain a bolus, with which there can be formed an irradiation field that is accurately suited to the depth-direction shape of an irradiation subject, and a particle beam therapy system. An irradiation orbit of a particle beam is defined by a first slant with respect to a first axis that starts from a first reference point, that is perpendicular to a beam axis, and that includes the first reference point and by a second slant with respect to a second axis that is perpendicular to the beam axis and the first axis; the shape of a bolus is set in such a way that the path length, of a particle beam, within the bolus in each of the irradiation orbits defined for combinations within a predetermined range among combinations of the first slant and the second slant, compensates the path length from a body surface to a to-be-irradiated portion.
    • 目的是获得一种可以形成准确地适合照射对象的深度方向形状的照射场和粒子束治疗系统的推注。 颗粒束的照射轨道由相对于从第一参考点开始的第一倾斜度定义,第一轴垂直于梁轴,并且包括第一参考点和第二倾斜相对于 垂直于光束轴线和第一轴线的第二轴线; 弹丸的形状被设置为使得在第一倾斜和第二倾斜的组合之间的预定范围内为组合定义的每个照射轨道内的弹丸内的粒子束的路径长度补偿 从身体表面到被照射部分的路径长度。