Opt Lett. 2023 Apr 1;48(7):1638-1641. doi: 10.1364/OL.485406.
Transport-of-intensity diffraction tomography (TIDT) is a recently developed label-free computational microscopy technique that retrieves high-resolution three-dimensional (3D) refractive index (RI) distribution of biological specimens from 3D intensity-only measurements. However, the non-interferometric synthetic aperture in TIDT is generally achieved sequentially through the acquisition of a large number of through-focus intensity stacks captured at different illumination angles, resulting in a very cumbersome and redundant data acquisition process. To this end, we present a parallel implementation of a synthetic aperture in TIDT (PSA-TIDT) with annular illumination. We found that the matched annular illumination provides a mirror-symmetric 3D optical transfer function, indicating the analyticity in the upper half-plane of the complex phase function, which allows for recovery of the 3D RI from a single intensity stack. We experimentally validated PSA-TIDT by conducting high-resolution tomographic imaging of various unlabeled biological samples, including human breast cancer cell lines (MCF-7), human hepatocyte carcinoma cell lines (HepG2), Henrietta Lacks (HeLa) cells, and red blood cells (RBCs).
强度传输衍射层析成像(TIDT)是一种新兴的无标记计算显微镜技术,可从 3D 强度仅测量中恢复生物样本的高分辨率 3D 折射率(RI)分布。然而,TIDT 中的非干涉合成孔径通常是通过获取大量在不同照明角度下捕获的聚焦强度堆栈来顺序实现的,这导致了非常繁琐和冗余的数据采集过程。为此,我们提出了一种具有环形照明的 TIDT 合成孔径的并行实现(PSA-TIDT)。我们发现匹配的环形照明提供了一个镜像对称的 3D 光学传递函数,这表明在复相位函数的上半平面中存在解析性,这允许从单个强度堆栈中恢复 3D RI。我们通过对各种未标记的生物样本进行高分辨率层析成像实验验证了 PSA-TIDT,包括人乳腺癌细胞系(MCF-7)、人肝癌细胞系(HepG2)、Henrietta Lacks(HeLa)细胞和红细胞(RBC)。