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    • 72. 发明申请
    • AUDIO-VISUAL SUMMARIZATION SYSTEM FOR RT PLAN EVALUATION
    • 用于RT计划评估的视听概述系统
    • US20160030767A1
    • 2016-02-04
    • US14772441
    • 2014-03-11
    • KONINKLIJKE PHILIPS N.V.
    • Prashant KUMARVaitheeswaran RANGANATHANKarl Antonin BZDUSEK
    • A61N5/10
    • A61N5/1031A61N5/103A61N5/1071A61N2005/1074
    • A method for reviewing a treatment plan (24) for delivering radiation therapy to a patient. The treatment plan (24) includes geometric analysis data, dose distribution analysis data, dose volume histogram data, parametric analysis data or deliverability analysis data of a patient. First, for the treatment plan (24), a plurality of clinical and delivery goals are identified (20, 22). Next, goal data points are extracted (26) from the treatment plan (24). Then, data points are correlated (28) to identify deficiencies in the treatment plan (24). A report is generated (30) to display on a display (10) the correlated data points using visual markings (84) to highlight identified deficiencies. Text and audio notations can be attached to the report to explain the correlations and warn a user of plan deficiencies.
    • 一种用于检查将辐射治疗递送给患者的治疗计划(24)的方法。 治疗计划(24)包括患者的几何分析数据,剂量分布分析数据,剂量体积直方图数据,参数分析数据或递送能力分析数据。 首先,对于治疗计划(24),确定了多个临床和递送目标(20,22)。 接下来,从处理计划(24)提取目标数据点(26)。 然后,数据点是相关的(28)来识别治疗计划中的缺陷(24)。 生成报告(30),使用视觉标记(84)在显示器(10)上显示相关数据点,以突出识别缺陷。 文本和音频符号可以附加到报告中,以解释相关性,并向用户警告计划缺陷。
    • 77. 发明授权
    • Radiotherapy system and control method for radiotherapy system
    • 放射治疗系统及放射治疗系统的控制方法
    • US09192781B2
    • 2015-11-24
    • US13457635
    • 2012-04-27
    • Masahide IchihashiMasanori Koyama
    • Masahide IchihashiMasanori Koyama
    • G06K9/00A61N5/10A61B6/00
    • A61N5/103A61B6/488A61B6/542A61N5/1048A61N2005/1091
    • A radiotherapy system has: a placing unit placing a subject; an imaging unit performing an imaging of the subject; a region setting unit setting a required region of first image data obtained by the imaging unit performing the imaging of the subject and setting a corresponding required region of second image data obtained by, before the imaging, performing a pre-imaging of the subject; a histogram generating unit generating a dose-volume histogram of the required region of the first image data and generating a dose-volume histogram of the required region of the second image data; a difference computing unit computing a difference between the dose-volume histogram of the required region of the first image data and the dose-volume histogram of the required region of the second image data; and an outputting unit, if it is determined that the difference is greater than a threshold value, outputting the determination to an outside.
    • 放射治疗系统具有放置受试者的放置单元; 执行对象的成像的成像单元; 区域设置单元,设置由成像单元获得的第一图像数据的所需区域,所述成像单元执行对象的成像,并且设置通过在成像之前获得的对被摄体进行预成像的获得的第二图像数据的相应的所需区域; 直方图生成单元,生成所述第一图像数据的所需区域的剂量体积直方图,并生成所述第二图像数据的所需区域的剂量体积直方图; 差分计算单元计算第一图像数据的所需区域的剂量 - 体积直方图与第二图像数据的所需区域的剂量 - 体积直方图之间的差; 以及输出单元,如果确定所述差大于阈值,则将所述确定输出到外部。
    • 79. 发明授权
    • Use of collection of plans to develop new optimization objectives
    • 使用收集计划开发新的优化目标
    • US09076222B2
    • 2015-07-07
    • US13511670
    • 2010-11-18
    • Matthieu Bal
    • Matthieu Bal
    • A61B6/00A61N5/10G06T7/00A61B5/00
    • G06T7/0083A61B5/0033A61B5/004A61B6/52A61B6/5211A61B6/5229A61N5/103A61N5/1039G06T7/12G06T2207/10072G06T2207/30096
    • A radiation therapy system includes a diagnostic image scanner (12) which acquires a multidimensional dataset of a subject that is reconstructed into at least one image representation of an object of interest. An image processing apparatus (72), of radiation therapy system, includes a segmentation unit (74) which identifies a surface contour of the object of interest, or other critical structures. A masking unit (82) determines a non-constant margin, based on the identified surface contour and appends the determined non-constant margin to the identified surface contour. The non-constant margin is based on at least one of anisotropic motion, surface morphology, positional uncertainty, proximity to other organs, and probability of dose distribution. A planning processor (70) generates a radiation therapy plan which limits the delivery of therapeutic radiation to anatomy associated with the surface contour and appended non-constant margin. A radiation delivery system (40) delivers therapeutic radiation according to the generated plan.
    • 一种放射治疗系统包括诊断图像扫描器(12),该诊断图像扫描仪(12)获取将被重建为感兴趣对象的至少一个图像表示的被摄体的多维数据集。 放射治疗系统的图像处理装置(72)包括识别感兴趣对象的表面轮廓或其他关键结构的分割单元(74)。 掩蔽单元(82)基于所识别的表面轮廓确定非恒定余量,并将所确定的不恒定余量附加到所识别的表面轮廓。 非恒定余量基于各向异性运动,表面形态,位置不确定性,与其他器官的接近度以及剂量分布概率中的至少一个。 规划处理器(70)产生辐射治疗计划,其限制将治疗辐射递送到与表面轮廓相关联的解剖结构和附加的非恒定边缘。 辐射递送系统(40)根据生成的计划递送治疗辐射。