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    • 47. 发明申请
    • CONFIGURATION MANAGEMENT AND RETRIEVAL SYSTEM FOR PROTON BEAM THERAPY SYSTEM
    • 用于原子束治疗系统的配置管理和检索系统
    • US20130345489A1
    • 2013-12-26
    • US13741018
    • 2013-01-14
    • Loma Linda University Medical Center
    • Alexandre V. BeloussovMichael A. BaumannHoward B. OlsenDana Salem
    • A61N5/10
    • A61N5/1048A61N5/10A61N5/1077A61N5/1079A61N2005/1074A61N2005/1087H05H7/00
    • In a complex, multi-processor software controlled system, such as proton beam therapy system (PBTS), it may be important to provide treatment configurable parameters that are easily modified by an authorized user to prepare the software controlled systems for various modes of operation. This particular invention relates to a configuration management system for the PBTS that utilizes a database to maintain data and configuration parameters and also to generate and distribute system control files that can be used by the PBTS for treatment delivery. The use of system control files reduces the adverse effects of single point failures in the database by allowing the PBTS to function independently from the database. The PBTS accesses the data, parameters, and control settings from the database through the system control files, which insures that the data and configuration parameters are accessible when and if single point failures occur with respect to the database.
    • 在诸如质子束治疗系统(PBTS)的复杂的多处理器软件控制系统中,提供治疗可配置参数可能是重要的,该可配置参数由授权用户容易地修改以准备用于各种操作模式的软件控制系统。 本发明涉及一种PBTS的配置管理系统,其利用数据库来维护数据和配置参数,并且还用于生成和分发可由PBTS用于治疗传递的系统控制文件。 使用系统控制文件可以通过允许PBTS独立于数据库运行来减少数据库中单点故障的不利影响。 PBTS通过系统控制文件从数据库访问数据,参数和控制设置,确保当数据库和数据库发生单点故障时可以访问数据和配置参数。
    • 48. 发明授权
    • Intensity-modulated ion therapy
    • 强度调制离子治疗
    • US09555265B2
    • 2017-01-31
    • US14945214
    • 2015-11-18
    • Loma Linda University Medical Center
    • Reinhard W. Schulte
    • A61N5/10
    • A61N5/1039A61N5/1031A61N5/1077A61N2005/1087
    • The therapeutic treatment of a patient using intensity-modulated proton therapy is described. In one example, a method of creating a proton treatment plan is presented that divides volumes of interest into sub-volumes, applies dose constraints to the sub-volumes, finds one or more feasible configurations of a proton therapy system, and selects a proton beam configuration that improves or optimizes one or more aspects of proton therapy. In some implementations, the method of dividing volumes into sub-volumes includes creating fractional sub-volumes based at least in part on proximity to a target volume boundary. In some implementations, the method of finding an improved or optimal proton beam configuration from a set of feasible configurations includes finding a minimum of a cost function that utilizes weighting factors associated with treatment sites.
    • 描述了使用强度调制质子治疗的患者的治疗方法。 在一个示例中,提出了一种创建质子治疗计划的方法,其将感兴趣的体积分成子体积,对子体积施加剂量约束,找到质子治疗系统的一个或多个可行配置,并选择质子束 改善或优化质子治疗的一个或多个方面的配置。 在一些实现中,将卷分割成子卷的方法包括至少部分地基于与目标卷边界的接近度来创建分数子卷。 在一些实施方式中,从一组可行配置中找到改进或最佳质子束配置的方法包括找到利用与治疗部位相关联的加权因子的成本函数的最小值。
    • 49. 发明申请
    • SYSTEMS AND METHODOLOGIES FOR PROTON COMPUTED TOMOGRAPHY
    • 用于PROTON计算机图像的系统和方法
    • US20160077223A1
    • 2016-03-17
    • US14799910
    • 2015-07-15
    • University of HaifaUniversity of WollongongLoma Linda University Medical Center
    • Yair CensorScott N. PenfoldReinhard W. Schulte
    • G01T1/29A61B6/03A61B6/00G01T1/17
    • G01T1/2985A61B6/032A61B6/4241A61B6/4258A61B6/4266A61B6/5205A61B6/583A61N5/10A61N2005/1087G01N23/046G01N2223/419G01T1/17G06F19/12G06F19/24G06T11/006
    • Disclosed are systems, devices and methodologies relating to proton computed tomography. In some implementations, detection of protons can yield track information before and after an object for each proton so as to allow determination of a likely path of each proton within the object. Further, measurement of energy loss experienced by each proton allows determination that a given likely path results in a given energy loss. A collection of such data allows characterization of the object. In the context of energy loss, such a characterization can include an image map of relative stopping power of the object. Various reconstruction methodologies for obtaining such an image, including but not limited to superiorization of a merit function such as total variation, are disclosed. In some implementations, various forms of total variation superiorization methodology can yield excellent results while being computationally efficient and with reduced computing time. In some implementations, such a methodology can result in high quality proton CT images using relatively low dose of protons.
    • 公开了与质子计算机断层摄影相关的系统,装置和方法。 在一些实施方案中,质子的检测可以产生每个质子的物体之前和之后的轨道信息,以便允许确定物体内每个质子的可能路径。 此外,每个质子经历的能量损失的测量允许确定给定的可能路径导致给定的能量损失。 这样的数据的集合允许表征对象。 在能量损失的上下文中,这种表征可以包括对象的相对停止力的图像映射。 公开了用于获得这种图像的各种重建方法,包括但不限于诸如总变化的优点功能的优化。 在一些实现中,各种形式的全变异优化方法可以产生优异的结果,同时在计算上有效并且具有减少的计算时间。 在一些实施方案中,这种方法可以产生使用相对低剂量的质子的高质量质子CT图像。