Peng Yu, Huang Yuncong, Li Yong, Han Xingjiang, Jin Weimin, Ma Lihong
Opt Lett. 2024 Oct 15;49(20):5838-5841. doi: 10.1364/OL.536909.
In this Letter, we propose a new, to the best of our knowledge, lensless on-chip holographic microscopy platform, which can acquire sub-pixel-shifting holograms through centimeter (cm)-level lateral translations. An LED light source is used to illuminate the sample, and two orthogonally tilted step-structure glass plates are inserted into the optical path. By merely displacing the glass plates under cm-level precision, a series of holograms with sub-pixel displacements can be obtained. Combined with our improved pixel super-resolution (PSR) algorithm, high-quality PSR phase imaging can be achieved. Tests on the high-resolution USAF1951 target demonstrate that the system can achieve a half-width resolution of 870 nm by a camera with a pixel size of 1.67 µm. Additionally, imaging experiments were conducted on phase-type sinusoidal gratings, yeasts, red blood cells, and lilium ovary sections, respectively. The results show that the system can achieve large field-of-view, high-resolution phase imaging under low-cost hardware conditions and holds promise for its applications in biology and medicine.
在本信函中,据我们所知,我们提出了一种新型的无透镜片上全息显微镜平台,该平台可通过厘米(cm)级的横向平移获取亚像素移位全息图。使用发光二极管(LED)光源照射样品,并在光路中插入两块正交倾斜的阶梯结构玻璃板。仅通过以厘米级精度移动玻璃板,就能获得一系列具有亚像素位移的全息图。结合我们改进的像素超分辨率(PSR)算法,可实现高质量的PSR相位成像。对高分辨率美国空军1951靶标的测试表明,该系统使用像素尺寸为1.67 µm的相机可实现870 nm的半高宽分辨率。此外,还分别对相位型正弦光栅、酵母、红细胞和百合子房切片进行了成像实验。结果表明,该系统在低成本硬件条件下可实现大视场、高分辨率的相位成像,在生物学和医学领域具有应用前景。