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基于二维特征滤波器方法设计的多方向完全重构滤波器组:在超声散斑抑制中的应用

A Multi Directional Perfect Reconstruction Filter Bank Designed with 2-D Eigenfilter Approach: Application to Ultrasound Speckle Reduction.

作者信息

Nagare Mukund B, Patil Bhushan D, Holambe Raghunath S

机构信息

S.G.G.S Institute of Engineering and Technology, Vishnupuri, Nanded, 431606, India.

出版信息

J Med Syst. 2017 Feb;41(2):31. doi: 10.1007/s10916-016-0675-2. Epub 2016 Dec 29.

Abstract

B-Mode ultrasound images are degraded by inherent noise called Speckle, which creates a considerable impact on image quality. This noise reduces the accuracy of image analysis and interpretation. Therefore, reduction of speckle noise is an essential task which improves the accuracy of the clinical diagnostics. In this paper, a Multi-directional perfect-reconstruction (PR) filter bank is proposed based on 2-D eigenfilter approach. The proposed method used for the design of two-dimensional (2-D) two-channel linear-phase FIR perfect-reconstruction filter bank. In this method, the fan shaped, diamond shaped and checkerboard shaped filters are designed. The quadratic measure of the error function between the passband and stopband of the filter has been used an objective function. First, the low-pass analysis filter is designed and then the PR condition has been expressed as a set of linear constraints on the corresponding synthesis low-pass filter. Subsequently, the corresponding synthesis filter is designed using the eigenfilter design method with linear constraints. The newly designed 2-D filters are used in translation invariant pyramidal directional filter bank (TIPDFB) for reduction of speckle noise in ultrasound images. The proposed 2-D filters give better symmetry, regularity and frequency selectivity of the filters in comparison to existing design methods. The proposed method is validated on synthetic and real ultrasound data which ensures improvement in the quality of ultrasound images and efficiently suppresses the speckle noise compared to existing methods.

摘要

B超图像会因一种名为散斑的固有噪声而退化,这种噪声会对图像质量产生相当大的影响。这种噪声会降低图像分析和解读的准确性。因此,减少散斑噪声是提高临床诊断准确性的一项重要任务。本文基于二维特征滤波器方法提出了一种多方向完全重构(PR)滤波器组。该方法用于设计二维(2-D)两通道线性相位FIR完全重构滤波器组。在该方法中,设计了扇形、菱形和棋盘形滤波器。滤波器通带和阻带之间误差函数的二次度量被用作目标函数。首先设计低通分析滤波器,然后将PR条件表示为对相应合成低通滤波器的一组线性约束。随后,使用具有线性约束的特征滤波器设计方法设计相应的合成滤波器。新设计的二维滤波器用于平移不变金字塔方向滤波器组(TIPDFB),以减少超声图像中的散斑噪声。与现有设计方法相比,所提出的二维滤波器具有更好的对称性、规则性和频率选择性。该方法在合成和真实超声数据上得到验证,与现有方法相比,确保了超声图像质量的提高并有效抑制了散斑噪声。

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