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Impulse Noise Removal from Medical Images by Two Stage Quaternion Vector Median Filter

机译:通过两个阶段四元数矢量中间滤波器从医学图像中脉冲噪声删除

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摘要

This paper presents a two-stage impulse noise removal filter from medical images. Quaternion is used to represent differences of two pixels. The pixels are sorted and assigned a rank based on the aggregated sum of pixel differences with other pixels inside the filtering window. The central pixel is considered as corrupted by an impulse if its rank is bigger than a predefined rank and the minimum difference between it and other pixels in the four edge direction inside the window is larger than a predefined threshold. The noisy pixel is replaced by output of vector median filter implemented using quaternion. For color images, both intensity and chromaticity components are used. Quaternion processes color images as single unit rather than as separated color channels. This preserves the correlation and three dimensional vector natures of the color channels. For grayscale medical images, the same algorithm is implemented by using the intensity difference between two pixels. Experimental results show improved performance of the proposed filter in suppressing the impulse noise while retaining the original image details comparing against other well-known filters.
机译:本文介绍了医学图像的两级脉冲噪声滤波器。四元轴用于表示两个像素的差异。基于与滤波窗口内的其他像素的聚合的像素差异分类并分配等级。如果其等级大于预定义等级,则中央像素被认为是脉冲损坏,并且窗口内的四个边缘方向上的其他像素之间的最小差异大于预定阈值。噪声像素被使用四元数实现的矢量中值滤波器的输出所取代。对于彩色图像,使用两个强度和色度分量。四元数处理彩色图像作为单个单元而不是分离的颜色通道。这保留了颜色通道的相关性和三维矢量自然。对于灰度医学图像,通过使用两个像素之间的强度差来实现相同的算法。实验结果表明,在抑制脉冲噪声时,提高了所提出的过滤器的性能,同时保持与其他众所周知的过滤器相比的原始图像细节。

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