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    • 3. 发明授权
    • Combined imaging and radiation therapy
    • 联合成像和放射治疗
    • US08712012B2
    • 2014-04-29
    • US13171055
    • 2011-06-28
    • John P. O'Connor
    • John P. O'Connor
    • G21K5/08
    • A61B6/03A61B6/0435A61B6/0478A61B6/502A61N5/1049A61N2005/1061A61N2005/1063
    • One or more techniques and/or systems described herein provide for examining an object (e.g., a tumor in a patient) and subsequently treating the object. The examination and treatment generally occur very close to one another in time, with the patient remaining on a support article (e.g., on a bed or in a chair) during both the examination and the treatment. In this way, a position of the tumor and/or orientation of the tumor relative to the patient is substantially fixed during both the examination and the treatment. In one embodiment, a support article is configured to rotate during the examination and/or treatment. In this way, the object can be examined (e.g., and volumetric data related to the object can be acquired) and/or treated without moving portions of the imaging and/or treatment apparatus, for example.
    • 本文描述的一种或多种技术和/或系统提供用于检查物体(例如,患者中的肿瘤)并随后处理该物体。 检查和治疗通常在时间上彼此非常接近,在检查和治疗期间,患者保留在支撑制品(例如,在床上或椅子上)。 以这种方式,在检查和治疗期间,肿瘤相对于患者的肿瘤位置和/或取向基本固定。 在一个实施例中,支撑制品构造成在检查和/或治疗期间旋转。 以这种方式,例如,可以检查对象(例如,可以获取与对象相关的体数据)和/或处理,而不移动成像和/或治疗装置的部分。
    • 4. 发明授权
    • System for combining magnetic resonance imaging with particle-based radiation systems for image guided radiation therapy
    • 用于将磁共振成像与基于粒子的辐射系统组合用于图像引导放射治疗的系统
    • US08427148B2
    • 2013-04-23
    • US12651170
    • 2009-12-31
    • John P. O'Connor
    • John P. O'Connor
    • G01V3/00
    • A61N5/1049A61N2005/1055A61N2005/1087G01R33/3806G01R33/4808
    • A hybrid MRI-particle-based therapy system can include as components both a particle radiation therapy system configured to apply a charged particle beam to a region of application in a predetermined direction and also a MRI system including a magnetic field generator for generating a magnetic field in an imaging volume which includes the region of application at the same time that the charged particle beam is applied. The MRI system can be configured with two torroidal magnets or a magnet having apertures to provide access to the region of application for the charged particle beam, and to provide a homogeneous magnetic field in the region of application of the charged particle beam. The particle beam can be positioned to pass through a relatively low-strength portion of the main magnetic B0 field of the MRI system. Related methods of image-guided therapy are also provided by embodiments of the present disclosure.
    • 基于混合MRI-粒子的治疗系统可以包括作为构造成将粒子放射治疗系统配置成沿着预定方向施加带电粒子束到应用区域的组件,还包括包括用于产生磁场的磁场发生器的MRI系统 在包括施加区域的成像体积中,同时施加带电粒子束。 MRI系统可以配置有两个环形磁体或具有孔的磁体,以提供对于带电粒子束的应用区域的访问,并且在施加带电粒子束的区域中提供均匀的磁场。 粒子束可以被定位成穿过MRI系统的主磁性B0场的相对低强度的部分。 图像引导治疗的相关方法也由本公开的实施方案提供。