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Adaptive deformable model for colonic polyp segmentation and measurement on CT colonography.

机译:用于结肠息肉分割和CT结肠造影测量的自适应可变形模型。

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摘要

Polyp size is one important biomarker for the malignancy risk of a polyp. This paper presents an improved approach for colonic polyp segmentation and measurement on CT colonography images. The method is based on a combination of knowledge-guided intensity adjustment, fuzzy clustering, and adaptive deformable model. Since polyps on haustral folds are the most difficult to be segmented, we propose a dual-distance algorithm to first identify voxels on the folds, and then introduce a counter-force to control the model evolution. We derive linear and volumetric measurements from the segmentation. The experiment was conducted on 395 patients with 83 polyps, of which 43 polyps were on haustral folds. The results were validated against manual measurement from the optical colonoscopy and the CT colonography. The paired t-test showed no significant difference, and the R(2) correlation was 0.61 for the linear measurement and 0.98 for the volumetric measurement. The mean Dice coefficient for volume overlap betweenautomatic and manual segmentation was 0.752 (standard deviation 0.154).
机译:息肉大小是息肉恶性风险的重要生物标志物之一。本文提出了一种改进的结肠息肉分割和CT结肠造影图像测量方法。该方法基于知识导向的强度调整,模糊聚类和自适应变形模型的组合。由于腹侧褶皱上的息肉最难分割,因此我们提出了一种双距离算法,以首先识别褶皱上的体素,然后引入反作用力来控制模型的演化。我们从分割中得出线性和体积测量值。该实验在395名息肉83例患者中进行,其中43例息肉位于胃haus部。相对于光学结肠镜检查和CT结肠摄影术的手动测量,验证了结果。配对t检验显示无显着差异,线性测量的R(2)相关性为0.61,体积测量的R(2)相关性为0.98。自动和手动分割之间体积重叠的平均Dice系数为0.752(标准偏差为0.154)。

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