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Automated Detection of Polyps from Multi-slice CT Images using 3D Morphologic Matching Algorithm: Phantom Study

机译:使用3D形态匹配算法从多层CT图像自动检测息肉:幻影研究

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摘要

A colon polyp phantom, 28 cm long and 5 cm in diameter, was constructed by inflating a latex ultrasound transducer cover. Four round pieces of ham (3, 6, 9, 12 mm diameter) were imbedded in the outer membrane surface of the phantom and then were tied by string at the base to simulate pedunculated polyps. Three more pieces of ham (3, 6, 9 mm) were impressed and taped on the outer surface to simulate sessile polyps. The circumference of the phantom was constricted by string at four evenly spaced locations to simulate haustral folds. The phantom was placed in a water bath and was modified by infusing water into the lumen or by partially deflating the lumen, and then rescanned. CT images were obtained in a multi-slice CT (4x1 mm collimation, 0.5s scan, 120 Kvp, 90 mAs, 1 mm slice thickness). CT images were processed with our computer-aided detection program. First, the three-dimensional colonic boundary and inner structure were segmented. From mis segmented region, soft-tissue structures were extracted and labeled to generate candidates. Shape features were evaluated along with geometric constraints. Three-dimensional region-growing and morphologic matching processes were applied to refine and classify the candidates. The detected polyps were compared with the true polyps in the phantom or known polyps in clinical cases to calculate the sensitivity and false positives.
机译:通过给乳胶超声换能器盖充气,构造了一个长28厘米,直径5厘米的结肠息肉模型。将四个圆形火腿(直径分别为3、6、9、12毫米)嵌入到幻影的外膜表面中,然后在底部用绳子捆起来以模拟带蒂息肉。再加三片火腿(3、6、9毫米),并贴在外表面以模拟无柄息肉。人体模型的圆周在四个均匀间隔的位置被细绳束紧,以模拟腹部折叠。将体模放置在水浴中,并通过将水注入内腔或部分缩小内腔来对其进行修改,然后重新扫描。在多层CT中获得CT图像(准直4x1 mm,扫描0.5s,120 Kvp,90 mAs,1 mm切片厚度)。 CT图像使用我们的计算机辅助检测程序进行处理。首先,对三维结肠边界和内部结构进行了分割。从错误分割的区域中提取软组织结构并标记以生成候选对象。评估了形状特征以及几何约束。使用三维区域生长和形态匹配过程对候选对象进行细化和分类。将检测到的息肉与幻影中的真实息肉或临床病例中的已知息肉进行比较,以计算敏感性和假阳性。

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