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首页> 外文期刊>Medical Physics >Liver segmentation for CT images using GVF snake.
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Liver segmentation for CT images using GVF snake.

机译:使用GVF蛇对CT图像进行肝脏分割。

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摘要

Accurate liver segmentation on computed tomography (CT) images is a challenging task especially at sites where surrounding tissues (e.g., stomach, kidney) have densities similar to that of the liver and lesions reside at the liver edges. We have developed a method for semiautomatic delineation of the liver contours on contrast-enhanced CT images. The method utilizes a snake algorithm with a gradient vector flow (GVF) field as its external force. To improve the performance of the GVF snake in the segmentation of the liver contour, an edge map was obtained with a Canny edge detector, followed by modifications using a liver template and a concavity removal algorithm. With the modified edge map, for which unwanted edges inside the liver were eliminated, the GVF field was computed and an initial liver contour was formed. The snake algorithm was then applied to obtain the actual liver contour. This algorithm was extended to segment the liver volume in a slice-by-slice fashion, where the result of the preceding slice constrained the segmentation of the adjacent slice. 551 two-dimensional liver images from 20 volumetric images with colorectal metastases spreading throughout the livers were delineated using this method, and also manually by a radiologist for evaluation. The difference ratio, which is defined as the percentage ratio of mismatching volume between the computer and the radiologist's results, ranged from 2.9% to 7.6% with a median value of 5.3%.
机译:在计算机断层扫描(CT)图像上进行准确的肝分割是一项艰巨的任务,尤其是在周围组织(例如,胃,肾)的密度与肝脏相似且病变位于肝脏边缘的部位。我们已经开发了一种在对比度增强的CT图像上半自动描绘肝脏轮廓的方法。该方法利用蛇形算法,将梯度矢量流(GVF)场作为其外力。为了提高GVF蛇在肝轮廓分割中的性能,使用Canny边缘检测器获取了边缘图,然后使用肝脏模板和凹面去除算法进行了修改。通过修改后的边缘图,可以消除肝脏内部不需要的边缘,计算GVF场并形成初始肝脏轮廓。然后将蛇算法应用于获得实际肝脏轮廓。该算法被扩展为以逐个切片的方式分割肝脏体积,其中先前切片的结果限制了相邻切片的分割。使用该方法以及放射科医生手动描绘了来自20个体积图像的551个二维肝脏图像,其中结肠直肠转移遍布整个肝脏。差异率定义为计算机与放射线医师结果之间体积不匹配的百分比率,范围从2.9%到7.6%,中值为5.3%。

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