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    • 5. 发明申请
    • ANATOMY MODELING FOR TUMOR REGION OF INTEREST DEFIINITION
    • 肿瘤学习区域的解剖学建模
    • WO2011010231A1
    • 2011-01-27
    • PCT/IB2010/052689
    • 2010-06-15
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHRENISCH, SteffenOPFER, Roland
    • RENISCH, SteffenOPFER, Roland
    • G06T7/00
    • G06T7/0012A61B6/037G06T2200/24G06T2207/10072G06T2207/20221G06T2207/30096
    • A hot spot detection system for automatically segmenting and quantifying hot spots in functional images includes a segmentation unit (76) to segment an anatomical image representation (72) into regions corresponding to anatomical structures of a subject. A hot spot detection unit (90) detects regions of high uptake from a functional second image representation (74). The regions of high tracer uptake indicate high metabolic activity which maybe caused by potentially hazardous tumor lesions or other malignant processes. However, a number of normally functioning organs uptake high amounts of imaging tracer, particularly FDG. Therefore, a suppression unit (102) suppresses regions of high tracer uptake in the functional second image representation based on the results of a classification unit (101). The classification unit classifies the regions of high tracer uptake according to their position relative to the anatomical structures segmented from the anatomical first image representation. The remaining unsuppressed regions of high uptake are identified by an identification unit (106) as one of potential lesion and non-potential lesion.
    • 用于在功能图像中自动分割和量化热点的热点检测系统包括将解剖图像表示(72)分割成对应于对象的解剖结构的区域的分割单元(76)。 热点检测单元(90)从功能性第二图像表示(74)检测高摄取区域。 高示踪剂摄取的区域表明可能由潜在的危险的肿瘤病变或其他恶性过程引起的高代谢活性。 然而,许多正常功能的器官摄取大量成像示踪剂,特别是FDG。 因此,抑制单元(102)基于分类单元(101)的结果来抑制功能性第二图像表示中的高示踪剂摄取的区域。 分类单元根据其相对于从解剖学第一图像表示分割的解剖结构的位置对高示踪剂摄取的区域进行分类。 剩余的未摄取的未被抑制的区域由识别单元(106)鉴定为潜在病变和非潜在病变之一。