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Thyroid nodule segmentation using active contour bilateral filtering on ultrasound images

机译:使用主动轮廓双侧过滤在超声图像上的甲状腺结节分割

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Utilization of ultrasound imaging with various resolutions as modalities for thyroid nodules examination is growing rapidly. This is consistent with an increase in incidence of thyroid malignancy. Thyroid ultrasound examination is considered superior to other medical imaging modalities for its non-invasive, practical, inexpensive and painless. In the examination process, a radiologist expects areas of thyroid nodules that can be localized precisely from the surrounding normal tissue. Thus boundary of the nodules can be seen as to be regular or irregular. Boundary is one of the important features of malignancy that doctors use to make a diagnosis. Most malignant nodules have unclear and irregular boundaries. Imprecise segmentation result will lead to misdiagnosis based on boundary characteristics. Active contour segmentation technique is applied for detecting boundary of thyroid nodules and separating them with normal tissue iteratively. However, the characteristics of the ultrasound image that brings speckle noises make the segmentation process more complicated. It also resulted in interpretation errors and inaccuracies diagnosis made by a doctor. The intricacy of irregular nodule area can not easily be solved by changing the value of iteration on active contour. Therefore, speckle noise reduction method is needed to overcome this problem so that nodule area segmented properly. In this paper speckle noise reduction is done with bilateral filter. Comparison of image segmentation results of thyroid nodules with and without bilateral filter is attached at the end of this article. The combination of bilateral filter and active contour showed better results with the edge of the nodules firmly and clear.
机译:利用超声成像与各种分辨率作为甲状腺结节检查的方式迅速增长。这与甲状腺恶性肿瘤发生率的增加一致。甲状超声检查被认为是优于其非侵入性,实用,便宜的和无痛的其他医学成像方式。在检查过程中,放射科医生期望甲状腺结节的区域可以精确地从周围的正常组织局部定位。因此,结节的边界可以被视为规则或不规则。边界是医生用于诊断的恶性肿瘤的重要特征之一。大多数恶性结节都不清楚和不规则的边界。不精确的分割结果将导致基于边界特征的误诊。施加活性轮廓分段技术用于检测甲状腺结节的边界,并迭代地将它们与正常组织分离。然而,超声图像的特性使散斑噪声使分段过程更加复杂。它还导致医生制作的解释错误和不准确的诊断。通过在活动轮廓上改变迭代的值,不能轻易解决不规则结节区域的复杂性。因此,需要散斑降噪方法来克服这个问题,使得结节区域被正确分割。在本文中,斑点降噪通过双侧过滤器进行。在本文末端附着具有和不具有双侧过滤器的甲状腺结节的图像分割结果的比较。双侧过滤器和活性轮廓的组合显示出牢固和清晰的结节边缘的更好的结果。

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