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Extended focused imaging and depth map reconstruction in optical scanning holography

机译:光学扫描全息术中的扩展聚焦成像和深度图重建

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摘要

In conventional microscopy, specimens lying within the depth of field are clearly recorded whereas other parts are blurry. Although digital holographic microscopy allows post-processing on holograms to reconstruct multifocus images, it suffers from defocus noise as a traditional microscope in numerical reconstruction. In this paper, we demonstrate a method that can achieve extended focused imaging (EFI) and reconstruct a depth map (DM) of three-dimensional (3D) objects. We first use a depth-from-focus algorithm to create a DM for each pixel based on entropy minimization. Then we show how to achieve EFI of the whole 3D scene computationally. Simulation and experimental results involving objects with multiple axial sections are presented to validate the proposed approach. (C) 2016 Optical Society of America
机译:在常规显微镜中,清晰地记录了景深内的标本,而其他部分则模糊。尽管数字全息显微镜允许对全息图进行后处理以重建多焦点图像,但是它在数字重建中作为传统显微镜遭受散焦噪声的影响。在本文中,我们演示了一种可以实现扩展聚焦成像(EFI)并重建三维(3D)对象深度图(DM)的方法。我们首先使用深度聚焦算法根据熵最小化为每个像素创建一个DM。然后,我们展示如何通过计算实现整个3D场景的EFI。提出了涉及具有多个轴向截面的对象的仿真和实验结果,以验证所提出的方法。 (C)2016美国眼镜学会

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