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    • 1. 发明申请
    • ANATOMY-RELATED IMAGE-CONTEXT-DEPENDENT APPLICATIONS FOR EFFICIENT DIAGNOSIS
    • 与解剖学相关的图像背景相关应用有效诊断
    • WO2008018014A2
    • 2008-02-14
    • PCT/IB2007/053101
    • 2007-08-07
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHKIEFER, GundolfLEHMANN, HelkoGELLER, DieterSCHRAMM, HaukePETERS, JochenECABERT, OlivierWEESE, Juergen
    • KIEFER, GundolfLEHMANN, HelkoGELLER, DieterSCHRAMM, HaukePETERS, JochenECABERT, OlivierWEESE, Juergen
    • G06F19/00
    • G16H40/63G06F19/00
    • The invention relates to a system (100) for obtaining information relating to segmented volumetric medical image data, the system comprising: a display unit (110) for displaying a view of the segmented volumetric medical image data on a display; an indication unit (115) for indicating a location on the displayed view; a trigger unit (120) for triggering an event; an identification unit (125) for identifying a segmented anatomical structure comprised in the segmented volumetric medical image data based on the indicated location on the displayed view in response to the triggered event; and an execution unit (130) for executing an action associated with the identified segmented anatomical structure, thereby obtaining information relating to the segmented volumetric medical image data. The action executed by the execution unit (130) may be displaying a name of the segmented anatomical structure, a short description of the segmented anatomical structure, or a hint on a potential malformation or malfunction of the segmented anatomical structure. Thus, the system (100) allows obtaining valuable information relating to the volumetric medical image data viewed by a physician on the display, thereby assisting the physician in medical diagnosing.
    • 本发明涉及一种用于获得与分段容积医学图像数据有关的信息的系统(100),该系统包括:显示单元(110),用于显示分段容积医学图像数据的视图 一个显示器; 指示单元(115),用于指示所显示的视图上的位置; 触发单元(120),用于触发事件; 识别单元(125),用于响应于所触发的事件,基于所显示的视图上的所指示的位置来识别包含在分段的容积医学图像数据中的分割的解剖结构; 以及用于执行与所识别的分割的解剖结构相关联的动作的执行单元(130),从而获得与分割的容积医学图像数据有关的信息。 由执行单元(130)执行的动作可以显示分割的解剖结构的名称,分割的解剖结构的简短描述或关于分割的解剖结构的潜在畸形或故障的提示。 因此,系统(100)允许获得有关医师在显示器上观看的容积医学图像数据的有价值的信息,由此帮助医生进行医学诊断。
    • 3. 发明申请
    • FLEXIBLE
    • 灵活的“插拔式”医学图像分割
    • WO2009034499A2
    • 2009-03-19
    • PCT/IB2008/053554
    • 2008-09-03
    • PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHPETERS, JochenECABERT, OlivierSCHRAMM, HaukeWEESE, Juergen
    • PETERS, JochenECABERT, OlivierSCHRAMM, HaukeWEESE, Juergen
    • G06T7/00A61B5/00
    • G06T7/149G06T7/11G06T2207/30004
    • The invention relates to a system (100) for segmentation of image data describing an object comprising a first and second object component, the system comprising: a selection unit (120) for selecting a first component model of a plurality of first component models for adapting to the image data in order to delineate the first object component and for selecting a second component model of a plurality of second component models for adapting to the image data in order to delineate the second object component, a connection unit (130) for connecting the first and second component model, an initialization unit (140) for initializing the first and second component model in the image data volume, and an adaptation unit (150) for adapting the first and second component model to the image data, thereby segmenting the image data. Thus, the system (100) of the invention offers a good coverage of object variability, allowing many object models constructed from component models, while each component model is optimized to describe the modeled object component. Consequently, selecting an optimal first and second component model and an optimal way of connecting them improves the flexibility, robustness, and accuracy of the image data segmentation.
    • 本发明涉及一种用于对描述包括第一和第二对象分量的对象的图像数据进行分割的系统(100),所述系统包括:选择单元(120),用于选择多个第一分量模型的第一分量模型以适应 为了描绘第一对象分量并选择用于适应图像数据的多个第二分量模型的第二分量模型以描绘第二对象分量,连接单元(130)用于连接图像数据 第一和第二分量模型,用于初始化图像数据量中的第一和第二分量模型的初始化单元(140)和用于使第一和第二分量模型适应图像数据的自适应单元(150),从而分割图像 数据。 因此,本发明的系统(100)提供了对象变异性的良好覆盖,允许从组件模型构建的许多对象模型,同时优化每个组件模型以描述建模对象组件。 因此,选择最优的第一和第二分量模型以及连接它们的最佳方式提高了图像数据分割的灵活性,鲁棒性和准确性。
    • 4. 发明申请
    • LOCALLY OPTIMIZED TRANSFER FUNCTIONS FOR VOLUME VISUALIZATION
    • 用于体积可视化的局部优化传输函数
    • WO2008007344A2
    • 2008-01-17
    • PCT/IB2007/052770
    • 2007-07-11
    • KONINKLIJKE PHILIPS ELECRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHRAMM, HaukeKIEFER, Gundolf
    • SCHRAMM, HaukeKIEFER, Gundolf
    • G06T11/00
    • G06T15/10
    • The invention relates to a system (100) for computing an image based on image data for displaying in a display, the image comprising a first image and a second image, the system comprising a first determination unit (110) for determining a first image data within the image data for computing the first image and for determining a second image data within the image data for computing the second image; a second determination unit (120) for determining a first transfer function for computing the first image and for determining a second transfer function for computing the second image; a third determination unit (130) for determining a viewing direction for computing the first image and for computing the second image; a fourth determination unit (140) for determining a first region of the display for displaying the first image and for determining a second region of the display for displaying the second image; and a computation unit (150) for computing the first image and the second image, thereby computing the image. The system (100) is thus capable of improving the quality of the displayed image by optimizing the first transfer function for computing the first image for displaying in the first display region and by optimizing the second transfer function for computing the second image for displaying in the second display region.
    • 本发明涉及一种用于基于用于在显示器中显示的图像数据计算图像的系统(100),所述图像包括第一图像和第二图像,所述系统包括用于确定第一图像数据的第一确定单元(110) 在用于计算第一图像的图像数据内,以及用于确定用于计算第二图像的图像数据内的第二图像数据; 第二确定单元(120),用于确定用于计算所述第一图像的第一传递函数和用于确定用于计算所述第二图像的第二传递函数; 第三确定单元(130),用于确定用于计算所述第一图像的观察方向和用于计算所述第二图像; 第四确定单元,用于确定用于显示第一图像的显示器的第一区域,以及用于确定用于显示第二图像的显示器的第二区域; 以及用于计算第一图像和第二图像的计算单元(150),从而计算图像。 因此,系统(100)能够通过优化用于计算用于在第一显示区域中显示的第一图像的第一传递函数来优化显示图像的质量,并且通过优化用于计算用于显示在第二显示区域中的第二图像的第二传递函数 第二显示区域。
    • 7. 发明申请
    • AUTOMATIC 3-D OBJECT DETECTION
    • 自动三维物体检测
    • WO2007072391A2
    • 2007-06-28
    • PCT/IB2006/054912
    • 2006-12-18
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHSCHRAMM, Hauke
    • SCHRAMM, Hauke
    • G06T7/00A61B5/00
    • G06T7/0002G06K9/6205G06T7/75G06T7/77G06T2207/20061G06T2207/30004
    • This invention relates to systems for automatically detecting and segmenting anatomical objects in 3-D images. A method of detecting an anatomical object employing the Generalized Hough Transform, comprising the steps of: a) generating a template object; b) identifying a series of edge points in the template and storing their relative position data and additional identifying information in a table; c) carrying out an edge detection process on the object and storing relative position data and additional identifying information corresponding to detected points in the object; d) applying a modified Hough Transform to the detected data, in order to identify detected points of the object corresponding to edges of the template, in which the voting weight of each detected point is modified in accordance with a predetermined correspondence between the additional identifying information of the detected data, and the additional identifying information which has been stored for the template, and in which the classification of detected points is also refined by applying further predetermined information relating to model point grouping and base model weights.
    • 本发明涉及用于自动检测和分割3-D图像中解剖物体的系统。 一种使用广义霍夫变换检测解剖学对象的方法,包括以下步骤:a)生成模板对象; b)识别模板中的一系列边缘点并将其相对位置数据和附加识别信息存储在表中; c)对对象执行边缘检测处理,并存储与对象中检测到的点对应的相对位置数据和附加识别信息; d)将修正的霍夫变换应用于检测到的数据,以便识别对应于模板边缘的对象的检测点,其中根据附加标识信息之间的预定对应关系修改每个检测点的投票权重 的检测数据,以及已经为模板存储的附加识别信息,并且其中检测点的分类也通过应用与模型点分组和基本模型权重有关的进一步的预定信息而被改进。
    • 8. 发明申请
    • ERROR DETECTION FOR SPEECH TO TEXT TRANSCRIPTION SYSTEMS
    • 用于语音到文本转换系统的错误检测
    • WO2005045803A1
    • 2005-05-19
    • PCT/IB2004/052218
    • 2004-10-27
    • PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHKONINKLIJKE PHILIPS ELECTRONICS N. V.SCHRAMM, Hauke
    • SCHRAMM, Hauke
    • G10L13/04
    • G10L13/00G10L2021/0135
    • The present invention relates to a method, a system and a computer program product for error detection within text generated by a speech to text transcription system. The transcribed text is re-transformed into an artificial speech signal by means of a text to speech transcription system. The original, natural speech signal and the artificially generated speech are provided to a proof reader for comparison of the two acoustic signals. Deviations between the original speech signal and the speech transformed from the transcribed text indicate, that an error may have occurred in the speech to text transcription process, which has to be corrected manually. The speech signals to be compared can be provided acoustically and/or visually to the proof reader preferably by making use of a comparison signal deduced from the two speech signals. Major, correctly transcribed, parts of the text can be skipped during the proof reading process, saving time and enhancing effectivity of the entire proof reading process.
    • 本发明涉及用于通过语音到文本转录系统生成的文本内的错误检测的方法,系统和计算机程序产品。 转录文本通过文本到语音转录系统被重新转换为人造语音信号。 将原始的自然语音信号和人为生成的语音提供给证明读取器以比较两个声信号。 原始语音信号与从转录文本转换的语音之间的偏差表明,文本转录过程的语音中可能出现错误,必须手动校正。 要比较的语音信号可以优选地通过利用从两个语音信号推导的比较信号来声学地和/或视觉地提供给校对阅读器。 在校对阅读过程中,可以跳过正确转录的部分文本,节省时间并提高整个校样阅读过程的有效性。
    • 10. 发明公开
    • PROGRESSIVE MODEL-BASED ADAPTATION
    • 渐进式模块式自适应
    • EP2143072A2
    • 2010-01-13
    • EP08763047.1
    • 2008-04-28
    • Koninklijke Philips Electronics N.V.Philips Intellectual Property & Standards GmbH
    • PETERS, JochenECABERT, OlivierSCHRAMM, HaukeWEESE, JuergenBERG, Jens VonLORENZ, Cristian
    • G06T7/00
    • G06T7/149G06T7/12G06T2207/10072G06T2207/30048G06T2207/30101
    • The invention relates to an adaptation system for adapting a deformable model to an object of interest in an image data set, the system comprising a propagator for propagating a set of predetermined transformation parameters to the model segments that have not yet been activated for adaptation to the image; an activator for activating at least one model segment from the model segments that have not yet been activated for adaptation to the image; and an adapter for adapting the deformable model by optimizing model energy of the deformable model, said model energy comprising internal energy of the plurality of model segments and external energy of at least the latest activated model segment(s). By enabling propagation of the transformation parameters from the model segments that have been adapted to the image to the model segments that have not been adapted to the image, this invention can improve the robustness and flexibility of the adaptation.
    • 本发明涉及一种用于将可变形模型适应于图像数据集中的感兴趣对象的自适应系统,该系统包括传播器,用于将一组预定变换参数传播到尚未被激活以适应于 图片; 用于激活尚未被激活用于适应图像的模型段的至少一个模型段的激活器; 以及用于通过优化所述可变形模型的模型能量来适配所述可变形模型的适配器,所述模型能量包括所述多个模型段的内部能量和至少最近激活的模型段的外部能量。 通过使来自已经适应于图像的模型段的变换参数能够传播到尚未适应于图像的模型段,本发明可以提高适应性的鲁棒性和灵活性。