基于能量的活动轮廓图像分割方法

R. Kashyap, V. Tiwari
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引用次数: 34

摘要

水平集方法为医学图像分析提供了有效的结构。然而,要获得物体的确切界限,特别是当它们的边缘很弱或力不均匀时,仍然是一项极其困难的任务。发现现有的水平集方法忽略了对边缘无力的图像进行分割。模糊的边缘和不均匀的功率导致分割不稳定。本文提出了一种新的基于能量的水平集方法,该方法通过幂函数的真实似然密度和评估似然密度的对比来定义能量容量,并确定了寻找重要功基的偏微分方程。该方法已在医学图像上进行了试验,发现了真正的抗议限制,低差异和非均匀力。该技术具有计算机化、力不均匀性的不变性和精确的医学图像部分等有利优势。
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Energy-based active contour method for image segmentation
The level set methods have given effective structures to medical image analysis. Nonetheless, to acquire exact limits of the objects, particularly when they have feeble edges or inhomogeneous forces, is still an extremely difficult undertaking. It is found that existing level set methodologies neglect to fragment the images with powerless edges. The hazy edges and inhomogeneous powers cause instability for segmentation. In this paper, a novel energy based level set approach is proposed in which the energy capacity is defined by contrast between the real and assessed likelihood densities of the powers and partial differential equation is determined for finding the base of the vital work. The proposed approach has been tried on medical images and find the genuine protest limits, low difference, and inhomogeneous forces. The technique determines profitable advantages like computerisation, invariance of force inhomogeneity and precise medical image portions.
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