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Autofocusing and image fusion for multi-focus plankton imaging by digital holographic microscopy

机译:数字全息显微镜微焦浮游生物成像的自动聚焦和图像融合

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Digital holographic microscopy is becoming increasingly useful for the analysis of marine plankton. In this study, we investigate autofocusing and image fusion in digital holographic microscopy. We propose an area metric autofocusing method and an improved wavelet-based image fusion method. In the area metric autofocusing method, a hologram image is initially segmented into several plankton regions for focus plane detection, and an area metric is then applied to these regions. In the improved wavelet-based image fusion method, a marked map is introduced for labeling each plankton region with the order of refocus plane images that accounts for the most pixels. The results indicate that the area metric autofocusing method applied to each plankton region provides a higher depth resolution accuracy than a number of general autofocusing methods, and the mean accuracy increases by approximately 33%. The improved wavelet-based image fusion method can fuse more than nine reconstructed plane images at a time and effectively eliminate fringes and speckle noise, and the fused image is much clearer than that of a general wavelet-based method, a sparse decomposition method, and a pulse-coupled neural networks method. This work has practical value for plankton imaging using digital holographic microscopy. (C) 2020 Optical Society of America
机译:数字全息显微镜越来越有助于分析海洋浮渣。在这项研究中,我们研究了数字全息显微镜中的自动聚焦和图像融合。我们提出了一种区域度量自动聚焦方法和改进的基于小波的图像融合方法。在区域公制自动聚焦方法中,最初将全息图图像分段为焦点平面检测的几个浮游区区域,然后将区域度量应用于这些区域。在改进的基于小波的图像融合方法中,引入标记图以将每个浮游区区域标记,其具有用于最多的像素的Refofus平面图像的顺序。结果表明,应用于每个浮游区的区域度量自动聚焦方法提供比许多一般自动聚焦方法的深度分辨率精度,并且平均精度增加约33%。改进的基于小波的图像融合方法可以一次熔断大于九个重建平面图像,并有效地消除条纹和散斑噪声,并且融合图像比基于通用的基于小波的方法,稀疏分解方法更清晰地更清晰一种脉冲耦合神经网络方法。这项工作具有使用数字全息显微镜的Plankton成像的实用价值。 (c)2020美国光学学会

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    《Applied optics》 |2020年第2期|共13页
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