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Image Smoothing with Savitzky-Golay Filters

机译:使用Savitzky-Golay滤波器进行图像平滑

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摘要

Noise in medical images is common. It occurs during the image formation, recording, transmission, and subsequent image processing. Image smoothing attempts to locally preprocess these images primarily to suppress image noise by making use of the redundancy in the image data. One-dimensional Savitzky-Golay filtering provides smoothing without loss of resolution by assuming that the distant points have significant redundancy. This redundancy is exploited to reduce the noise level. Using this assumed redundancy, the underlying function is locally fitted by a polynomial whose coefficients are data independent and hence can be calculated in advance. Geometric representations of data as patches and surfaces have been used in volumetric modeling and reconstruction. Similar representations could also be used in image smoothing. This paper shows the two and three-dimensional extensions of one-dimensional Savitzky-Golay filters. The idea is to fit a two/three-dimensional polynomial to a two/three-dimensional sub region of the image. As in the one-dimensional case, the coefficients of the polynomial are computed a priori with a linear filter. The filter coefficients preserve higher moments. The coefficients always have a central positive lobe with smaller outlying corrections of both positive and negative magnitudes. To show the efficacy of this smoothing, it is used in-line with volume rendering while computing the sampling points and the gradient.
机译:医学图像中的噪声很常见。它发生在图像形成,记录,传输和后续图像处理期间。图像平滑尝试通过利用图像数据中的冗余来对这些图像进行局部预处理,从而主要抑制图像噪声。一维Savitzky-Golay滤波通过假设遥远的点具有明显的冗余性,可以提供平滑度而不会降低分辨率。利用这种冗余来降低噪声水平。使用这种假定的冗余,基础函数由多项式局部拟合,该多项式的系数与数据无关,因此可以预先计算。数据作为小块和表面的几何表示已用于体积建模和重建。类似的表示也可以用于图像平滑。本文展示了一维Savitzky-Golay滤波器的二维和三维扩展。想法是使二维/二维多项式适合图像的二维/三维子区域。与一维情况一样,使用线性滤波器先验地计算多项式的系数。滤波器系数保留较高的力矩。系数始终具有中央正波瓣,同时具有较小的正向和负向幅度校正值。为了显示这种平滑效果,在计算采样点和梯度时,将其与体积渲染一起使用。

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