Picazo-Bueno José Ángel, Cojoc Dan, Iseppon Federico, Torre Vincent, Micó Vicente
Appl Opt. 2018 Jan 1;57(1):A242-A249. doi: 10.1364/AO.57.00A242.
A single-shot water-immersion digital holographic microscope combined with broadband (white light) illumination mode is presented. This double imaging platform allows conventional incoherent visualization with phase holographic imaging of inspected samples. The holographic architecture is implemented at the image space (that is, after passing the microscope lens), thus reducing the sensitivity of the system to vibrations and/or thermal changes in comparison to regular interferometers. Because of the off-axis holographic recording principle, quantitative phase images of live biosamples can be recorded in a single camera snapshot at full-field geometry without any moving parts. And, the use of water-immersion imaging lenses maximizes the achievable resolution limit. This dual-mode microscope platform is first calibrated using microbeads, then applied to the characterization of fixed cells (neuroblastoma, breast cancer, and hippocampal neuronal cells) and, finally, validated for visualization of dynamic living cells (hippocampal neurons).
本文介绍了一种结合宽带(白光)照明模式的单次水浸数字全息显微镜。这个双成像平台允许对被检查样品进行传统的非相干可视化以及相全息成像。全息架构在图像空间(即通过显微镜透镜之后)实现,因此与常规干涉仪相比,该系统对振动和/或热变化的敏感度降低。由于离轴全息记录原理,活生物样品的定量相图像可以在全场几何结构下通过单次相机快照记录下来,无需任何移动部件。此外,水浸成像透镜的使用使可实现的分辨率极限最大化。这个双模式显微镜平台首先使用微珠进行校准,然后应用于固定细胞(神经母细胞瘤、乳腺癌和海马神经元细胞)的表征,最后用于动态活细胞(海马神经元)的可视化验证。