Trujillo Carlos, Piedrahita-Quintero Pablo, Garcia-Sucerquia Jorge
Appl Opt. 2020 Jul 1;59(19):5788-5795. doi: 10.1364/AO.395672.
The description and validation of an ImageJ open-source plugin to numerically simulate and reconstruct digital lensless holographic microscopy (DLHM) holograms are presented. Two modules compose the presented plugin: the simulation module implements a discrete version of the Rayleigh-Somerfield diffraction formula, which allows the user to directly build a simulated hologram from a known phase and/or amplitude object by just introducing the geometry parameters of the simulated setup; the plugin's reconstruction module implements a discrete version of the Kirchhoff-Helmholtz diffraction integral, thus allowing the user to reconstruct DLHM holograms by introducing the parameters of the acquisition setup and the desired reconstruction distance. The plugin offers the two said modules within the robust environment provided by a complete set of built-in tools for image processing available in ImageJ. While the simulation module has been validated through the evaluation of the forecasted lateral resolution of a DLHM setup in terms of the numerical aperture, the reconstruction module is tested by means of reconstructing experimental DLHM holograms of biological samples.
本文介绍了一种用于数值模拟和重建数字无透镜全息显微镜(DLHM)全息图的ImageJ开源插件的描述和验证。该插件由两个模块组成:模拟模块实现了瑞利 - 索末菲衍射公式的离散版本,通过引入模拟设置的几何参数,用户可以直接从已知的相位和/或幅度物体构建模拟全息图;插件的重建模块实现了基尔霍夫 - 亥姆霍兹衍射积分的离散版本,用户通过引入采集设置的参数和所需的重建距离来重建DLHM全息图。该插件在ImageJ中提供的一套完整的图像处理内置工具所提供的强大环境中提供上述两个模块。虽然模拟模块已通过根据数值孔径评估DLHM设置的预测横向分辨率进行了验证,但重建模块通过重建生物样品的实验DLHM全息图进行了测试。