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首页> 外文期刊>Journal of Microscopy >Restoration of distorted colour microscopic images from transverse chromatic aberration of imperfect lenses
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Restoration of distorted colour microscopic images from transverse chromatic aberration of imperfect lenses

机译:从不完美镜片的横向色差恢复变形的彩色显微图像

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摘要

An algorithm is presented for restoration of colour microscopic images with distortions from imperfect microscope lenses having transverse chromatic aberrations, resulting in a magnification that slightly varies with wavelengths or colours. The differential of each colour component image is computed as the difference between the component image and its slightly magnified version. The absolute values in the differential component images are generally higher at the edges where greater discontinuities occur. The two cross-correlation functions of the absolute differentials between red and green colours and between red and blue colours are then computed. The maximum in the two cross-correlation functions were sought, respectively, and the cross-correlation delays were then calculated. The two cross-correlation delays were used to determine dispersions and to realign the three colour components. Results of real microscopic images are provided. The restored image and the original are compared both visually and quantitatively in terms of the estimated entropies measured for the degree of concentrations using vector distributions.
机译:提出了一种用于恢复彩色显微图像的算法,该彩色显微图像具有来自具有横向色差的不完美显微镜透镜的畸变,从而导致放大率随波长或颜色而略有变化。将每个颜色成分图像的差异计算为成分图像与其稍微放大的版本之间的差异。微分分量图像中的绝对值通常在出现较大不连续性的边缘处较高。然后计算红色和绿色之间以及红色和蓝色之间的绝对差的两个互相关函数。分别寻找两个互相关函数中的最大值,然后计算互相关延迟。使用两个互相关延迟来确定色散并重新对齐三个颜色分量。提供了真实显微图像的结果。根据估计的熵(使用矢量分布测量的浓度程度),对恢复的图像和原始图像进行视觉和定量比较。

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