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Edge Preserved Speckle Noise Reduction Using Integrated Fuzzy Filters

机译:使用集成模糊滤波器减少边缘保留的斑点噪声

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摘要

Echocardiographic images are inherent with speckle noise which makes visual reading and analysis quite difficult. The multiplicative speckle noise masks finer details, necessary for diagnosis of abnormalities. A novel speckle reduction technique based on integration of geometric, wiener, and fuzzy filters is proposed and analyzed in this paper. The denoising applications of fuzzy filters are studied and analyzed along with 26 denoising techniques. It is observed that geometric filter retains noise and, to address this issue, wiener filter is embedded into the geometric filter during iteration process. The performance of geometric-wiener filter is further enhanced using fuzzy filters and the proposed despeckling techniques are called integrated fuzzy filters. Fuzzy filters based on moving average and median value are employed in the integrated fuzzy filters. The performances of integrated fuzzy filters are tested on echocardiographic images and synthetic images in terms of image quality metrics. It is observed that the performance parameters are highest in case of integrated fuzzy filters in comparison to fuzzy and geometric-fuzzy filters. The clinical validation reveals that the output images obtained using geometric-wiener, integrated fuzzy, nonlocal means, and details preserving anisotropic diffusion filters are acceptable. The necessary finer details are retained in the denoised echocardiographic images.
机译:超声心动图图像固有有斑点噪声,这使得视觉读取和分析相当困难。乘法斑点噪声掩盖了诊断异常所必需的更精细的细节。提出并分析了一种基于几何,维纳和模糊滤波器集成的新斑点减少技术。对模糊滤波器的去噪应用以及26种去噪技术进行了分析。可以看出,几何滤波器保留了噪声,并且为了解决该问题,在迭代过程中将维纳滤波器嵌入到几何滤波器中。使用模糊滤波器可进一步提高几何维纳滤波器的性能,并且所提出的去斑点技术称为集成模糊滤波器。在集成模糊滤波器中采用了基于移动平均值和中值的模糊滤波器。根据图像质量指标,对超声心动图图像和合成图像测试了集成模糊滤波器的性能。可以看出,与模糊和几何模糊滤波器相比,集成模糊滤波器的性能参数最高。临床验证表明,使用几何维纳,综合模糊,非局部方法以及保留各向异性扩散滤镜细节的输出图像是可以接受的。必要的更精细的细节保留在降噪的超声心动图图像中。

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