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Gradient-based value mapping for colorization of two-dimensional fields

机译:基于梯度的价值映射,用于三维字段的着色

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This paper develops a method for automatic colorization of two-dimensional fields presented as images, in order to visualize local changes in values. In many applications, local changes in values are as important as magnitudes of values. For example, in topography, both elevation and slope often must be considered. Gradient-based value mapping for colorization is a technique to visualize both value (e.g., intensity or elevation) and gradient (e.g., local differences or slope). The method maps pixel values to a color scale in a manner that emphasizes gradients in the image. The value mapping function is monotonically non-decreasing, to maintain ordinal relationships of values on the color scale. The color scale can be a grayscale or pseudocolor scale. The first step of the method is to compute the gradient at each pixel. Then, the pixels (with computed gradients) are sorted by value. The value mapping function is the inverse of the relative cumulative gradient magnitude function computed from the sorted array. The value mapping method is demonstrated with data from comprehensive two-dimensional gas chromatography (GCxGC), using both grayscale and a pseudocolor scale to visualize local changes related to both small and large peaks in the GCxGC data.
机译:本文开发了一种用于自动彩色的方法,用于呈现为图像的二维字段,以便可视化值的局部变化。在许多应用中,值的本地变化与值的大小一样重要。例如,在地形中,通常必须考虑升高和斜率。彩色的梯度基值映射是可视化值(例如强度或高度)和梯度(例如,局部差异或斜率)的技术。该方法以强调图像中的梯度的方式将像素值映射到颜色比例。值映射函数单调是非减小的,以保持颜色尺度上的值的序数关系。颜色刻度可以是灰度或伪焦数刻度。该方法的第一步是计算每个像素处的梯度。然后,像素(具有计算的渐变)按值排序。值映射函数是从排序阵列计算的相对累积梯度幅度函数的倒数。使用灰度和伪叠加标度来自综合二维气相色谱(GCXGC)的数据来说明值映射方法,以可视化与GCXGC数据中的小型和大峰相关的局部变化。

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