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Despeckling of medical ultrasound kidney images in the curvelet domain using diffusion filtering and MAP estimation

机译:使用扩散滤波和MAP估计对曲波域中的医学超声肾脏图像进行散斑

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摘要

Speckle remains as a fundamental problem in all coherent imaging modalities such as ultrasound, synthetic aperture radar (SAR) and laser. Presence of speckle gives a granular appearance to the image, hence hinders the details of the underlying object. This paper presents a novel speckle reduction method in the curvelet domain with coefficient modelling and diffusion filtering of the coefficients. An un-decimated Atrous based curvelet transform of the image is done. A shrinkage function is estimated with the curvelet transformed coefficients using Maximum A posteriori Probability (MAP) technique with the priori distribution assumption as Gaussian. Part of the curvelet coefficients are diffusion filtered using Perona Malik Anisotrpic Diffusion filter (PMAD) and the rest of the coefficients are modelled using the estimated shrinkage function. Proposed algorithm has been tested with the synthetic as well as real time ultrasound kidney images and is found to be effective in removing the speckles. The proposed system is compared with the popular spatial domain filters such as Frost, Kuan and Wiener, also with wavelet and curvelet domain methods. Objective evaluation using peak signal to noise ratio (PSNR), coefficient of correlation (CoC) and structural similarity (SSIM) measures have been done to demonstrate the effectiveness of the proposed system.
机译:在所有相干成像模式(例如超声,合成孔径雷达(SAR)和激光)中,斑点仍然是基本问题。斑点的存在使图像具有颗粒状外观,因此妨碍了下层对象的细节。本文提出了一种在小波域中通过系数建模和系数扩散滤波的新斑点减少方法。完成了未抽取的基于Atrous的图像Curvelet变换。使用最大后验概率(MAP)技术,利用先验分布假设为高斯,通过曲波变换系数估计收缩函数。使用Perona Malik各向异性扩散滤波器(PMAD)对部分曲线波系数进行扩散滤波,并使用估计的收缩函数对其余系数建模。拟议的算法已经用合成的以及实时的超声肾脏图像进行了测试,发现可以有效去除斑点。将该系统与流行的空间域滤波器(如Frost,Kuan和Wiener)进行了比较,并与小波和Curvelet域方法进行了比较。使用峰值信噪比(PSNR),相关系数(CoC)和结构相似性(SSIM)措施进行了客观评估,以证明所提出系统的有效性。

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