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    • 6. 发明申请
    • COMPUTER-AIDED DETECTION (CAD) OF A DISEASE
    • 一种疾病的计算机辅助检测(CAD)
    • WO2009063363A2
    • 2009-05-22
    • PCT/IB2008/054632
    • 2008-11-06
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHLORENZ, CristianVON BERG, JensBUELOW, ThomasWIEMKER, Rafael
    • LORENZ, CristianVON BERG, JensBUELOW, ThomasWIEMKER, Rafael
    • G06T7/00
    • G06T7/0012G06T7/11G06T2200/24G06T2207/10072G06T2207/30061
    • The present invention relates to a method for performing computer-aided detection (CAD) of a disease, e.g. lung tumours, on a medical image data set (20) from a imaging modality, such as MRI or CT. Initially, there is perform a segmentation of the medical image data set (20) using an anatomical model. Secondly, the segmented data is analyzed for characteristics of the disease resulting in a set of analysis data (25), and finally the set of analysis data (25) is evaluating with respect to the disease. At least one of these steps comprises as an input a position dependent probability (P_r) for the disease. The invention isadvantageous in that more efficient computations can be performed because the degree ofanalysis in a certain region of the part of the patient, e.g. the lung, can be adjusted or tailored to the level of probability of the disease in the that region. It is thereby possible to increase computational speed and thereby diseases like cancer, in particular cancer nodules in the lungs, can be more effectively found from medical image analysis.
    • 用于执行疾病的计算机辅助检测(CAD)的方法技术领域本发明涉及用于执行疾病的计算机辅助检测(CAD)的方法。 (例如MRI或CT)的医学图像数据组(20)上的肺肿瘤。 最初,使用解剖模型执行医学图像数据集(20)的分割。 其次,对分段数据进行分析,以获得一组分析数据(25),最后分析数据集(25)针对该疾病进行评估。 这些步骤中的至少一个包括疾病的位置依赖概率(P_r)作为输入。 本发明的有利之处在于可以进行更有效的计算,因为患者部分的某个区域的分析程度,例如, 肺,可以调整或适应该地区疾病的概率水平。 因此可以提高计算速度,从而可以从医学图像分析中更加有效地发现诸如癌症的疾病,特别是肺部的癌症结节。
    • 8. 发明申请
    • AUTOMATIC EXTRACTION AND DISPLAY OF THE TRACHEOBRONCHIAL PLANE
    • 自动提取和显示TRACHEOBRONCHIAL PLANE
    • WO2006126150A2
    • 2006-11-30
    • PCT/IB2006/051596
    • 2006-05-19
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHWIEMKER, RafaelBUELOW, ThomasBLAFFERT, Thomas
    • WIEMKER, RafaelBUELOW, ThomasBLAFFERT, Thomas
    • G06T5/00
    • G06T19/00G06T15/08G06T2210/41G06T2219/008
    • Usually orthogonal slices of a three-dimensional image set of a tracheobronchial tree (40) of a body do not show the tracheobronchial plane. Thus, the plane has to be adjusted manually by the user by trial and error, which is a tedious and time consuming process. The concept of the invention suggests a method of automated extraction and display of at least one oblique slice (49) of the tracheobronchial plane from a three- dimensional image set of a body. The method is fully automated without any user interaction. According to the invention the method comprises the step of: automatically identifying set of image points being part of a tracheobronchial tree (40); automatically identifying at least one oblique slice (49) as a fit to the image points; automatically performing a reformation step on the three-dimensional image set to extract the oblique slice (49); and automatically displaying (Fig. 6, 7) the oblique slice (49) of the tracheobronchial plane. The concept also provides a respective system (1), image acquisition device, workstation and computer program product and information carrier.
    • 通常身体的气管支气管树(40)的三维图像组的正交切片不显示气管支气管平面。 因此,飞机必须由用户手动调整,通过反复试验,这是一个冗长乏味的过程。 本发明的概念提出了一种从身体的三维图像集合自动提取和显示气管支气管平面的至少一个倾斜切片(49)的方法。 该方法是完全自动的,没有任何用户交互。 根据本发明,该方法包括以下步骤:自动识别作为气管支气管树(40)的一部分的图像点; 自动识别至少一个倾斜切片(49),以适合图像点; 自动地对三维图像集进行改写步骤以提取倾斜切片(49); 并自动显示(图6,7)气管支气管平面的斜切片(49)。 该概念还提供了相应的系统(1),图像采集设备,工作站和计算机程序产品和信息载体。