Aguirre A D, Hsiung P, Ko T H, Hartl I, Fujimoto J G
Department of Electrical Engineering and Computer Science and Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Opt Lett. 2003 Nov 1;28(21):2064-6. doi: 10.1364/ol.28.002064.
Optical coherence microscopy (OCM) is demonstrated with a high-speed, broadband, reflective-grating phase modulator and a femtosecond Ti:Al2O3 laser. The novel system design permits high-resolution OCM imaging in a new operating regime in which a short coherence gate is used to relax the requirement for high-numerical-aperture confocal axial sectioning. In vivo cellular imaging is demonstrated in the Xenopus laevis tadpole and in human skin with a 3-microm coherence gate and a 30-microm confocal gate. The ability to achieve cellular imaging with a lower numerical aperture should facilitate the development of miniaturized probes for in vivo imaging applications.
利用高速、宽带反射光栅相位调制器和飞秒钛宝石激光器展示了光学相干显微镜(OCM)。这种新颖的系统设计允许在一种新的工作模式下进行高分辨率OCM成像,其中使用短相干门来放宽对高数值孔径共焦轴向切片的要求。利用3微米的相干门和30微米的共焦门,在非洲爪蟾蝌蚪和人体皮肤中展示了体内细胞成像。使用较低数值孔径实现细胞成像的能力应有助于开发用于体内成像应用的小型化探头。