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An improved level set method for vertebra CT image segmentation

机译:一种改进的椎骨CT图像分割水平集方法

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Background Clinical diagnosis and therapy for the lumbar disc herniation requires accurate vertebra segmentation. The complex anatomical structure and the degenerative deformations of the vertebrae makes its segmentation challenging. Methods An improved level set method, namely edge- and region-based level set method (ERBLS), is proposed for vertebra CT images segmentation. By considering the gradient information and local region characteristics of images, the proposed model can efficiently segment images with intensity inhomogeneity and blurry or discontinuous boundaries. To reduce the dependency on manual initialization in many active contour models and for an automatic segmentation, a simple initialization method for the level set function is built, which utilizes the Otsu threshold. In addition, the need of the costly re-initialization procedure is completely eliminated. Results Experimental results on both synthetic and real images demonstrated that the proposed ERBLS model is very robust and efficient. Compared with the well-known local binary fitting (LBF) model, our method is much more computationally efficient and much less sensitive to the initial contour. The proposed method has also applied to 56 patient data sets and produced very promising results. Conclusions An improved level set method suitable for vertebra CT images segmentation is proposed. It has the flexibility of segmenting the vertebra CT images with blurry or discontinuous edges, internal inhomogeneity and no need of re-initialization.
机译:背景技术腰椎间盘突出症的临床诊断和治疗需要准确的椎骨分割。复杂的解剖结构和椎骨的退行性变形使其分割具有挑战性。方法提出了一种改进的水平集方法,即基于边缘和区域的水平集方法(ERBLS),用于椎骨CT图像分割。通过考虑图像的梯度信息和局部特征,所提出的模型可以有效地分割强度不均匀,边界模糊或不连续的图像。为了减少许多活动轮廓模型中对手动初始化的依赖以及进行自动分割,针对水平设置功能建立了一种简单的初始化方法,该方法利用了Otsu阈值。另外,完全消除了昂贵的重新初始化过程的需要。结果在合成图像和真实图像上的实验结果表明,所提出的ERBLS模型非常健壮和高效。与众所周知的局部二进制拟合(LBF)模型相比,我们的方法在计算效率上要高得多,并且对初始轮廓的敏感度要低得多。所提出的方法也已应用于56个患者数据集,并产生了非常有希望的结果。结论提出了一种适用于椎骨CT图像分割的改进水平集方法。它具有分割具有模糊或不连续边缘,内部不均匀性且无需重新初始化的椎骨CT图像的灵活性。

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