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A scale-based forward-and-backward diffusion process for adaptive image enhancement and denoising

机译:基于比例的前向和后向扩散过程,用于自适应图像增强和去噪

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摘要

This work presents a scale-based forward-and-backward diffusion (SFABD) scheme. The main idea of this scheme is to perform local adaptive diffusion using local scale information. To this end, we propose a diffusivity function based on the Minimum Reliable Scale (MRS) of Elder and Zucker (IEEE Trans. Pattern Anal. Mach. Intell. 20(7), 699-716, 1998) to detect the details of local structures. The magnitude of the diffusion coefficient at each pixel is determined by taking into account the local property of the image through the scales. A scale-based variable weight is incorporated into the diffusivity function for balancing the forward and backward diffusion. Furthermore, as numerical scheme, we propose a modification of the Perona-Malik scheme (IEEE Trans. Pattern Anal. Mach. Intell. 12(7), 629-639, 1990) by incorporating edge orientations. The article describes the main principles of our method and illustrates image enhancement results on a set of standard images as well as simulated medical images, together with qualitative and quantitative comparisons with a variety of anisotropic diffusion schemes.
机译:这项工作提出了一种基于比例的向前和向后扩散(SFABD)方案。该方案的主要思想是使用局部尺度信息执行局部自适应扩散。为此,我们提出了基于Elder和Zucker的最小可靠尺度(MRS)的扩散函数(IEEE Trans。Pattern Anal。Mach。Intell。20(7),699-716,1998),以检测局部细节。结构。通过考虑比例尺上图像的局部特性来确定每个像素处的扩散系数的大小。将基于比例的可变权重合并到扩散函数中,以平衡前向和后向扩散。此外,作为数值方案,我们提出了通过合并边缘方向来对Perona-Malik方案(IEEE Trans.Pattern Anal.Mach.Intell.12(7),629-639,1990)进行修改的方案。本文介绍了我们方法的主要原理,并说明了在一组标准图像以及模拟医学图像上的图像增强结果,以及各种各向异性扩散方案的定性和定量比较。

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