Buitrago-Duque Carlos, Garcia-Sucerquia Jorge
Appl Opt. 2022 Feb 10;61(5):B56-B63. doi: 10.1364/AO.443137.
The description, implementation, and validation of an ImageJ plugin that allows the realistic simulation and real-time reconstruction of digital holographic microscopy (DHM) experiments are presented. The simulation module implements a telecentric image-plane DHM recording scheme with fully configurable imaging system, interference, and scaling parameters, including the possibility of defining an estimate of the roughness distribution of the sample to produce realistic coherent-noise affectations. The reconstruction module allows the computation of amplitude, intensity, or phase, from digital holograms' input as either single images or video streams for real-time processing; this module also implements user-defined fine-tuning parameters, allowing subpixel linear phase compensations and digital refocusing of the complex-valued reconstructed fields. In this note, the functionality of the plugin is illustrated by simulating the noisy DHM recording of a phase-only resolution test target and the reconstruction of both the resulting synthetic hologram and an equivalent experimental recording; the results show good agreement between the simulation and the experimental recording, and accurate measurements on the reconstructed information, thus granting the use of either module with full confidence according to needs and possibilities.
本文介绍了一款ImageJ插件,该插件可实现数字全息显微镜(DHM)实验的逼真模拟和实时重建,并对其进行了描述、实现和验证。模拟模块采用远心像面DHM记录方案,成像系统、干涉和缩放参数可完全配置,包括定义样品粗糙度分布估计值以产生逼真相干噪声影响的可能性。重建模块可根据数字全息图输入计算振幅、强度或相位,输入可以是单幅图像或视频流以进行实时处理;该模块还实现了用户定义的微调参数,允许进行亚像素线性相位补偿和对复值重建场进行数字重新聚焦。在本说明中,通过模拟仅相位分辨率测试目标的噪声DHM记录以及对所得合成全息图和等效实验记录的重建,展示了该插件的功能;结果表明模拟与实验记录之间具有良好的一致性,并且对重建信息的测量准确,从而可根据需求和可能性放心使用任一模块。