Tang Yifeng, Gao Wanrong
Appl Opt. 2021 Jul 10;60(20):5942-5952. doi: 10.1364/AO.428454.
In this work, we present a handheld full-field optical coherence tomography (FFOCT) system based on a series connection of two interferometers: the Michelson interferometer is used as a compensation part and the Fizeau interferometer is used as a detection part. Owing to the common-path arrangement of the Fizeau interferometer, this handheld FFOCT system has a compact detection arm and is insensitive to the external disturbance. A high-output halogen lamp and high NA microscope objective contribute to achieving the spatial resolution of 0.7µ×0.5µ (transverse × axial). Low imaging stability is caused by an extremely short coherence length. We found that to generate en face images with high quality and high stability using a probe with an extremely short coherence length, the range of deviation of the orientation of the beam splitter must be less than 1°, and the range of orientation deviation of the mirror in the Michelson interferometer corresponds to the displacement between the two field stop images at a distance not to exceed 10 µm.
在这项工作中,我们展示了一种基于两个干涉仪串联的手持式全场光学相干断层扫描(FFOCT)系统:迈克尔逊干涉仪用作补偿部分,斐索干涉仪用作检测部分。由于斐索干涉仪的共光路配置,这种手持式FFOCT系统具有紧凑的检测臂,并且对外部干扰不敏感。高输出卤素灯和高数值孔径显微镜物镜有助于实现0.7µ×0.5µ(横向×轴向)的空间分辨率。极低的相干长度导致成像稳定性较差。我们发现,要使用具有极短相干长度的探头生成高质量和高稳定性的正面图像,分束器的光束取向偏差范围必须小于1°,并且迈克尔逊干涉仪中反射镜的取向偏差范围对应于两个视场光阑图像之间的位移,该位移不超过10 µm。