Picazo-Bueno Jose Angel, Micó Vicente
Opt Express. 2021 Nov 22;29(24):39904-39919. doi: 10.1364/OE.439047.
We present a cost-effective, simple, and robust method that enables single-shot quantitative phase imaging (QPI) based on the transport of intensity equation (TIE) using an add-on optical module that can be assembled into the exit port of any regular microscope. The module integrates a beamsplitter (BS) cube (placed in a non-conventional way) for duplicating the output image onto the digital sensor (field of view - FOV - multiplexing), a Stokes lens (SL) for astigmatism compensation (introduced by the BS cube), and an optical quality glass plate over one of the FOV halves for defocusing generation (needed for single-shot TIE algorithm). Altogether, the system provides two laterally separated intensity images that are simultaneously recorded and slightly defocused one to each other, thus enabling accurate QPI by conventional TIE-based algorithms in a single snapshot. The proposed optical module is first calibrated for defining the configuration providing best QPI performance and, second, experimentally validated by using different phase samples (static and dynamic ones). The proposed configuration might be integrated in a compact three-dimensional (3D) printed module and coupled to any conventional microscope for QPI of dynamic transparent samples.
我们提出了一种经济高效、简单且稳健的方法,该方法基于强度传输方程(TIE)实现单次定量相位成像(QPI),使用一个可组装到任何常规显微镜出口端口的附加光学模块。该模块集成了一个分束器(BS)立方体(以非常规方式放置),用于将输出图像复制到数字传感器上(视场 - FOV - 复用),一个斯托克斯透镜(SL)用于像散补偿(由BS立方体引入),以及一块光学质量玻璃板,放置在其中一个FOV半区上方用于产生散焦(单次TIE算法所需)。总体而言,该系统提供两个横向分离的强度图像,它们同时被记录且相互之间有轻微散焦,从而能够通过基于常规TIE的算法在单次快照中实现精确的QPI。所提出的光学模块首先进行校准以确定提供最佳QPI性能的配置,其次通过使用不同的相位样本(静态和动态样本)进行实验验证。所提出的配置可以集成到一个紧凑的三维(3D)打印模块中,并与任何常规显微镜耦合,用于动态透明样本的QPI。