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A variable region scalable fitting energy approach for human Metaspread chromosome image segmentation

机译:用于人逆向染色体图像分割的可变区域可扩展拟合能量方法

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摘要

The medical images often suffer from intensity inhomogeneity and therefore they are difficult to segment using the conventional image segmentation approaches. In this work an image segmentation approach is being presented, in which the region scalable fitting energy is variable for the regions inside and outside the contours. The energy term is defined along the two sides of the contour, by considering different scale parameters for the foreground and background regions. Two fitting functions are used to approximate the intensities of the foreground and background regions. The proposed method is able to deal with intensity inhomogeneity as a Gaussian kernel function has been used in the energy formulation. The kernel function is used to assign weights to the intensity values during energy formulation. Different scale parameters are used for the kernel function for background and foreground regions. The proposed method proves to be robust as it has the self-regularization capability, partial differential equations have been discretized by approximations and the method does not require computationally expensive re-initialization procedure. The proposed method is capable of efficiently segmenting the human metaspread chromosome images that suffer from intensity inhomogeneity. The chromosomes that have very low contrast with the background or the group of chromosomes that appear to be nearly touching each other are segmented correctly from the metaspread images.
机译:医学图像经常遭受强度的不均匀性,因此它们难以使用传统图像分割方法进行段。在这项工作中,正在呈现图像分割方法,其中区域可伸缩配合能量对于轮廓内外的区域是可变的。通过考虑前景和背景区域的不同比例参数,能量术语沿着轮廓的两侧定义。两个拟合功能用于近似前景和背景区域的强度。该方法能够处理强度不均匀性,因为高斯核功能已用于能量配方。内核功能用于在能量配方期间为强度值分配权重。不同的比例参数用于背景和前景区域的内核函数。所提出的方法被证明是稳健的,因为它具有自正结转能力,部分微分方程已经通过近似被离散,并且该方法不需要计算昂贵的重新初始化过程。该方法的方法能够有效地分割患有强度不均匀性的人血糖染色体图像。与似乎几乎触摸彼此的背景或染色体组具有非常低的对比度的染色体从质量图像正确地分段。

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