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    • 42. 发明申请
    • TREATMENT PLANNING SYSTEM
    • 治疗计划系统
    • WO2015169498A1
    • 2015-11-12
    • PCT/EP2015/056108
    • 2015-03-23
    • KONINKLIJKE PHILIPS N.V.SUNNYBROOK HEALTH SCIENCES CENTRE
    • AMTHOR, Thomas ErikUHLEMANN, FalkBHARAT, ShyamDEHGHAN MARVAST, EhsanKUNG, Cynthia Ming-fuRAVI, AnanthKRUECKER, Jochen
    • A61N5/10
    • A61N5/103A61N5/1027A61N2005/1041
    • The generation of the pattern and for the adaptation to the specific geometry requires a lot of manual work. It is an object of the invention to simplify the workflow for the clinician during treatment planning. This object is achieved by a treatment planning system configured for determining a set of catheter or needle insertion positions to be used during treatment comprising. The treatment planning system comprises an image providing module for providing a medical image from which at least one treatment target structure can be derived. Further the treatment planning system comprises a pattern providing module for providing one or a set of standard patterns for catheter or needle insertion comprising a plurality of catheter or needle insertion positions, wherein the catheter or needle positions relate to treatment positions in the at least one treatment target structure.
    • 模式的生成和适应特定几何需要大量的人工工作。 本发明的一个目的是简化治疗计划期间临床医生的工作流程。 该目的通过一种治疗计划系统来实现,所述治疗计划系统被配置用于确定在治疗期间使用的一组导管或针插入位置,包括。 治疗计划系统包括用于提供医学图像的图像提供模块,从该图像可以导出至少一个治疗目标结构。 此外,治疗计划系统包括模式提供模块,用于提供包括多个导管或针插入位置的导管或针插入的一个或一组标准图案,其中导管或针位置涉及至少一个治疗中的治疗位置 目标结构。
    • 44. 发明申请
    • PREDICTING ACHIEVABLE DOSE DISTRIBUTION USING 3D INFORMATION AS AN INPUT
    • 使用3D信息作为输入预测可实现的剂量分配
    • WO2015042727A1
    • 2015-04-02
    • PCT/CH2014/000139
    • 2014-09-30
    • VARIAN MEDICAL SYSTEMS INTERNATIONAL AG
    • KUUSELA, EsaHARTMAN, JoonaNORD, JanneBAGHAIE, Ramin
    • A61N5/10
    • A61N5/1039A61N5/1031A61N5/1045A61N5/1065A61N5/1071A61N2005/1041G06T7/344G06T2207/10104G06T2207/30096
    • Knowledge-based radiotherapy treatment planning is expanded to include spatial information from, for example, positron emission tomography (PET). Information that is specific to a patient is accessed. A prediction of a spatial dose distribution inside a target volume in the patient is determined using the patient-specific information as an input to a prediction model. The prediction model is established using training data that includes data resulting from applying other radiation treatment plans to other patients. The training data includes spatially distributed information indicating a level of activity in target volumes in the other patients (e.g., PET image data). A dose-volume histogram and associated three-dimensional dose distribution information based on the prediction are produced. The dose-volume histogram and the three-dimensional dose distribution information can be used to develop a radiation treatment plan for the patient.
    • 基于知识的放射治疗计划扩大到包括例如正电子发射断层扫描(PET)的空间信息。 访问特定于患者的信息。 使用患者特定信息作为预测模型的输入来确定患者中目标体积内的空间剂量分布的预测。 使用训练数据建立预测模型,训练数据包括将其他辐射治疗计划应用于其他患者所产生的数据。 训练数据包括指示其他患者的目标体积的活动水平的空间分布信息(例如,PET图像数据)。 产生了基于预测的剂量体积直方图和相关联的三维剂量分布信息。 剂量体积直方图和三维剂量分布信息可用于为患者制定放射治疗计划。
    • 46. 发明申请
    • DETERMINING AN IRRADIATION REGION FOR RADIOTHERAPY BASED ON MODEL PATIENT DATA AND PATIENT IMAGE DATA
    • 基于模型患者数据和患者图像数据确定放射治疗的辐射区域
    • WO2014063748A1
    • 2014-05-01
    • PCT/EP2012/071245
    • 2012-10-26
    • BRAINLAB AG
    • VILSMEIER, Stefan
    • A61N5/10
    • A61N5/1049A61N5/103A61N2005/1041A61N2005/1055
    • The invention relates to a data processing method of determining a radiotherapy treatment plan for radiotherapy treatment of a treatment body part (P) of a patient's body, the method being executed by a computer and comprising the following steps: a) acquiring treatment target position data comprising treatment target position information describing the position of a treatment target (TT1,..., TT3) to be treated by radiotherapy in the treatment body part (P); b) acquiring statistic model target region position data comprising statistic model target region position information describing the position of a model target region (MT11, MT13, MT21, MT23) in a model body part (M1, M2) corresponding to the treatment body part (P); c) determining, based on the treatment target data and the statistic model target region position data, irradiation region position data comprising irradiation region position information describing the position of an irradiation region (IR1, IR3) to be treated by irradiation with treatment radiation in the treatment body part (P).
    • 本发明涉及一种确定用于患者身体的治疗体部位(P)的放射治疗处理放射治疗计划的数据处理方法,该方法由计算机执行,包括以下步骤:a)获取治疗目标位置数据 包括描述通过放疗在治疗体部分(P)中治疗的治疗对象(TT1,...,TT3)的位置的治疗目标位置信息; b)获取统计模型目标区域位置数据,该统计模型目标区域位置数据包括描述模型目标区域(MT11,MT13,MT21,MT23)在对应于治疗主体部分的模型体部分(M1,M2)中的位置的统计模型目标区域位置信息 P); c)基于处理目标数据和统计模型目标区域位置数据确定包括照射区域位置信息的照射区域位置数据,该照射区域位置数据描述通过照射区域位置信息来描述待处理的照射区域(IR1,IR3)的位置 治疗体部位(P)。
    • 47. 发明申请
    • APPARATUS AND METHOD PERTAINING TO OPTIMIZING A RADIATION-TREATMENT PLAN USING HISTORICAL INFORMATION
    • 使用历史信息优化放射治疗计划的装置和方法
    • WO2013180969A1
    • 2013-12-05
    • PCT/US2013/041400
    • 2013-05-16
    • VARIAN MEDICAL SYSTEMS, INC.VARIAN MEDICAL SYSTEMS INTERNATIONAL AG
    • ZANKOWSKI, Corey E.NORD, JannePELTOLA, JarkkoKUUSELA, Esa
    • G06Q50/22A61N5/00
    • A61N5/1031A61N5/1038A61N2005/1041G06F19/00
    • A control circuit operably couples to a memory having historical information stored therein. This historical information comprises information regarding delivered radiation doses to non-targeted patient volumes for a plurality of different volume presentations. The control circuit iteratively optimizes a radiation-treatment plan for a specific plan using that historical information. The aforementioned historical information can comprise delivered-dose metrics as correspond to different relative distances within given patients. The control circuit can employ such information to determine, for example, an estimated dosage (including, if desired, a corresponding range of estimated dosages) for at least one volume within the specific patient at a specific distance from a specific point of reference. The control circuit can compare such historical information against radiation-treatment plan optimization results to qualitatively assess the radiation-treatment plan optimization results.
    • 控制电路可操作地耦合到存储有历史信息的存储器。 该历史信息包括关于针对多个不同体积呈现的非目标患者体积的递送辐射剂量的信息。 控制电路使用该历史信息对特定计划的辐射处理计划进行迭代优化。 上述历史信息可以包括对应于给定患者内的不同相对距离的递送剂量度量。 控制电路可以使用这样的信息来确定特定患者中距离特定参考点特定距离的至少一个体积的估计剂量(包括如果需要,相应的估计剂量范围)。 控制电路可以将这些历史信息与放射治疗计划优化结果进行比较,对辐射治疗计划优化结果进行定性评估。
    • 48. 发明申请
    • SEMANTIC RADIATION TREATMENT PLAN OPTIMIZATION GUIDANCE
    • 语义辐射治疗计划优化指导
    • WO2013049845A2
    • 2013-04-04
    • PCT/US2012/058355
    • 2012-10-01
    • VARIAN MEDICAL SYSTEMS INTERNATIONAL AGTOIMELA, LasseNORD, JanneZANKOWSKI, Corey
    • TOIMELA, LasseNORD, JanneZANKOWSKI, Corey
    • A61N5/1031A61N2005/1041
    • A method for radiation therapy treatment plan optimization, comprising generating a first radiation therapy treatment plan for a patient using a selected treatment type from a database and optimizing the first radiation therapy treatment plan. A selection of metrics from the first radiation therapy treatment plan are identified and compared to metrics from aggregated prior patient records selected from the database. At least one parameter is identified that affects the ability of the first radiation therapy treatment plan to meet an identified metric. The at least one parameter is defined with a single, clinically meaningful, human understandable language statement. The at least one parameter for the identified metric is compared to at least one parameter for a competing metric and at least one alternative treatment step for the treatment plan is determined that will change the identified at least one parameter to improve the identified metric. The at least one alternative treatment step is expressed in clinically meaningful, human understandable language.
    • 一种用于放射治疗治疗计划优化的方法,包括利用来自数据库的选定治疗类型为患者生成第一放射疗法治疗计划并优化第一放射疗法治疗计划。 识别来自第一放射治疗治疗计划的指标的选择,并将其与从数据库中选择的汇总的先前患者记录进行比较。 至少有一个参数会影响第一个放射疗法治疗计划达到识别度量的能力。 至少一个参数是用单一的,临床有意义的,人类可理解的语言语句定义的。 将所识别的度量的至少一个参数与竞争度量的至少一个参数进行比较,并且确定用于治疗计划的至少一个替代治疗步骤,其将改变所识别的至少一个参数以改善所识别的度量。 至少一个替代治疗步骤用临床上有意义的人类可理解的语言表达。
    • 50. 发明申请
    • TREATMENT PLANNING SYSTEMS AND METHODS FOR BODY CONTOURING APPLICATIONS
    • 治疗计划系统和身体结构应用的方法
    • WO2010036732A1
    • 2010-04-01
    • PCT/US2009/058088
    • 2009-09-23
    • ZELTIQ AESTHETICS, INC.ALLISON, John, W.
    • ALLISON, John, W.
    • A61B18/02
    • A61F7/00A61B18/203A61B34/10A61B2018/00452A61B2034/102A61B2034/256A61F7/10A61F2007/0075A61N5/00A61N7/00A61N7/02A61N2005/1041A61N2007/0008G06F19/00G06F19/3481G16H50/20
    • Methods and system for treatment planning for non- and minimally-invasive alteration of body adipose tissue for reduction and contouring of body fat are described Treatment plans can be generated by capturing current body data (e g, positioning, contour/shape, thickness of adipose tissue, etc), determining desired outcome of treatment (β g, percent reduction of adipose tissue thickness, degree of contour change, etc), and determining treatment parameters to achieve desired results Algorithms can be used to determine best-fit treatment parameters to use in treatment sessions In some embodiments, the system can provide a predictive endresult image for communication to patient and/or for determining alteration of desired outcome Real-time monitoring of feedback data can be used to determine treatment plan efficacy Additional algorithms can provide real-time comparison of feedback data to anticipated feedback data, and can be used to change treatment parameters in real-time to achieve desired effects
    • 描述用于身体脂肪组织的非微创改变的治疗计划的方法和系统,用于身体脂肪的减少和轮廓描述治疗计划可以通过捕获当前身体数据(例如,定位,轮廓/形状,脂肪组织的厚度 等),确定预期的治疗结果(βg,脂肪组织厚度的减少百分比,轮廓变化程度等),以及确定治疗参数以达到期望的结果算法可用于确定最适合的治疗参数以用于 治疗会话在一些实施例中,系统可以提供用于与患者通信的预测性结果图像和/或用于确定期望结果的改变。可以使用反馈数据的实时监测来确定治疗计划功效。附加算法可以提供实时比较 的反馈数据到预期的反馈数据,并可用于实时改变治疗参数 有效的效果