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    • 1. 发明授权
    • Device and method for generating a virtual model of an installation
    • 用于生成安装虚拟模型的设备和方法
    • US07054793B2
    • 2006-05-30
    • US09750673
    • 2001-01-02
    • Soeren MoritzWolfgang FriedrichAli-Reza Bani-HashemiNicholas CraftNassir NavabFrank Sauer
    • Soeren MoritzWolfgang FriedrichAli-Reza Bani-HashemiNicholas CraftNassir NavabFrank Sauer
    • G06F17/50
    • G06T17/00
    • The invention relates to a method and a device for generating a virtual installation model (2) as an image of a real installation (1). As a database therefor, digital picture data (4) representing pictures of a real installation (1) on the one hand and installation components (13) of a component library (6) on the other hand are used. The data of the installation components as well as the digital picture data (4) of the real installation (1) is evaluated by means of an image analysis (5). Based on this analysis, the identified installation components (13) are assigned to the virtually generated installation model (2). The virtual image of the real installation thus created serves to document the actual structure of the installation/facility, to simplify failure analysis, e.g., in areas that are difficult to access, and/or to operate and monitor the installation/facility. In addition to geometric data, functional data, etc. of the installation components are also stored.
    • 本发明涉及一种用于生成虚拟安装模型(2)作为真实设备(1)的图像的方法和装置。 作为数据库,使用表示实际装置(1)的照片的数字图像数据(4)和组件库(6)的安装部件(13)。 通过图像分析(5)评估安装部件的数据以及实际安装(1)的数字图像数据(4)。 基于此分析,将已识别的安装组件(13)分配给虚拟生成的安装模型(2)。 如此创建的真实安装的虚拟映像用于记录安装/设施的实际结构,以简化故障分析,例如在难以访问的区域和/或操作和监视安装/设施。 除了几何数据,还存储了安装组件的功能数据等。
    • 2. 发明授权
    • Rotational radiation treatment of moving targets
    • 移动目标的旋转放射治疗
    • US08238519B2
    • 2012-08-07
    • US12834067
    • 2010-07-12
    • Ali-Reza Bani-Hashemi
    • Ali-Reza Bani-Hashemi
    • A61N5/10
    • A61N5/1047A61B5/113A61N5/1037A61N5/1049A61N5/1064A61N5/1067A61N5/107
    • Some aspects include a system, apparatus, and method for determining that a motion of a patient area of a patient due to breathing is substantially periodic according to a treatment plan, moving a radiotherapy gantry towards a first treatment gantry angle, moving a radiotherapy beam shaping device towards a first treatment shape corresponding to the first treatment gantry angle, determining when a next treatment window is to begin based on a predictive model derived from the motion of the patient area, where the treatment window is a period of time designated for delivery of treatment radiation to the patient area according to the treatment plan, adjusting the moving of the radiotherapy gantry such that the radiotherapy gantry will reach the first treatment angle during the determined next treatment window, and delivering a treatment radiation beam to the patient area during the determined next treatment window.
    • 一些方面包括用于根据治疗计划确定由于呼吸而导致的患者的患者区域的运动基本上是周期性的系统,装置和方法,将放射治疗台架朝向第一处理机架角移动,移动放射线束成形 设备朝向与第一处理台架角度对应的第一处理形状,基于从患者区域的运动导出的预测模型确定下一个治疗窗口何时开始,其中治疗窗口是指定用于递送 根据治疗计划对患者区域进行治疗辐射,调整放射治疗台架的移动,使得放射治疗台架在确定的下一治疗窗口期间将达到第一治疗角度,并且在确定的治疗期间将治疗辐射束递送至患者区域 下一个治疗窗口。
    • 3. 发明申请
    • Rotational Radiation Treatment of Moving Targets
    • 移动目标的旋转辐射治疗
    • US20120008744A1
    • 2012-01-12
    • US12834067
    • 2010-07-12
    • Ali-Reza Bani-Hashemi
    • Ali-Reza Bani-Hashemi
    • A61N5/10
    • A61N5/1047A61B5/113A61N5/1037A61N5/1049A61N5/1064A61N5/1067A61N5/107
    • Some aspects include a system, apparatus, and method for determining that a motion of a patient area of a patient due to breathing is substantially periodic according to a treatment plan, moving a radiotherapy gantry towards a first treatment gantry angle, moving a radiotherapy beam shaping device towards a first treatment shape corresponding to the first treatment gantry angle, determining when a next treatment window is to begin based on a predictive model derived from the motion of the patient area, where the treatment window is a period of time designated for delivery of treatment radiation to the patient area according to the treatment plan, adjusting the moving of the radiotherapy gantry such that the radiotherapy gantry will reach the first treatment angle during the determined next treatment window, and delivering a treatment radiation beam to the patient area during the determined next treatment window.
    • 一些方面包括用于根据治疗计划确定由于呼吸而导致的患者的患者区域的运动基本上是周期性的系统,装置和方法,将放射治疗台架朝向第一处理机架角移动,移动放射线束成形 设备朝向与第一处理台架角度对应的第一处理形状,基于从患者区域的运动导出的预测模型确定下一个治疗窗口何时开始,其中治疗窗口是指定用于递送 根据治疗计划对患者区域进行治疗辐射,调整放射治疗台架的移动,使得放射治疗台架在确定的下一治疗窗口期间将达到第一治疗角度,并且在确定的治疗期间将治疗辐射束递送至患者区域 下一个治疗窗口。
    • 4. 发明申请
    • METHOD FOR CALIBRATING AN IMAGING SYSTEM
    • 用于校准成像系统的方法
    • US20130229495A1
    • 2013-09-05
    • US13654286
    • 2012-10-17
    • Ali-Reza Bani-HashemiGerhard LechselAndreas Rau
    • Ali-Reza Bani-HashemiGerhard LechselAndreas Rau
    • H04N13/02
    • A61B6/582A61B6/4233A61B6/4441A61N5/1075A61N2005/1061A61N2005/1076
    • In order to increase the accuracy of the calibration of an imaging system of a radiation treatment system operable to generate a treatment beam, an imaging device generates first data representing a reticle disposed in a beam path of the treatment beam. A first transformation between at least two dimensions of a coordinate system of a radiotherapy device of the radiation treatment system and a two-dimensional (2D) image coordinate system for the imaging device is determined based on the first data. The imaging device generates second data representing a phantom including a plurality of markers. A position of the phantom in the coordinate system of the radiotherapy device is determined based on the second data and the first transformation. A second transformation between three dimensions of the coordinate system of the radiotherapy device and the 2D image coordinate system for the imaging device is determined based on the second data and the determined position of the phantom.
    • 为了提高可操作以产生治疗束的放射治疗系统的成像系统的校准精度,成像装置产生表示设置在治疗束的光束路径中的掩模版的第一数据。 基于第一数据确定放射线治疗系统的放射治疗装置的坐标系的至少两个维度和成像装置的二维(2D)图像坐标系之间的第一变换。 成像装置生成表示包括多个标记的体模的第二数据。 基于第二数据和第一变换来确定放射治疗装置的坐标系中的体模的位置。 基于第二数据和确定的体模位置来确定放射治疗装置的坐标系的三维和成像装置的2D图像坐标系之间的第二变换。