Anna Tulsi, Srivastava Vishal, Mehta Dalip Singh, Shakher Chandra
Laser Applications and Holography Laboratory, Instrument Design Development Centre, Indian Institute of Technology Delhi, Hauz Khas, New Delhi-110016, India.
Appl Opt. 2011 Dec 1;50(34):6343-51. doi: 10.1364/AO.50.006343.
In this paper quantitative imaging of biological cells using high-resolution full-field optical coherence microscopy (FF-OCM) is reported. The FF-OCM was realized using a swept-source system, a Mirau interferometer, and a CCD camera (a two-dimensional detection unit). A Mirau-interferometric objective lens was used to generate the interferometric signal. The signal was analyzed by a Fourier analysis technique. Optically sectioned amplitude images and a quantitative phase map of biological cells such as onion skin and red blood cells (RBCs) are demonstrated. Further, the refractive index profile of the RBCs is also presented. For the 50× Mirau objective, the experimentally achieved axial and transverse resolution of the present system are 3.8 and 1.2 μm, respectively. The CCD provides parallel detection and measures enface images without X, Y, Z mechanical scanning.
本文报道了利用高分辨率全场光学相干显微镜(FF - OCM)对生物细胞进行定量成像的研究。FF - OCM是通过扫频源系统、Mirau干涉仪和电荷耦合器件相机(二维检测单元)实现的。使用Mirau干涉物镜来产生干涉信号。通过傅里叶分析技术对信号进行分析。展示了诸如洋葱表皮和红细胞(RBC)等生物细胞的光学切片振幅图像和定量相位图。此外,还给出了红细胞的折射率分布。对于50×Mirau物镜,本系统实验获得的轴向和横向分辨率分别为3.8μm和1.2μm。电荷耦合器件相机提供并行检测,无需X、Y、Z机械扫描即可测量表面图像。