Aguirre Aaron D, Sawinski Juergen, Huang Shu-Wei, Zhou Chao, Denk Winfried, Fujimoto James G
Research Laboratory of Electronics and Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139 USA.
Opt Express. 2010 Mar 1;18(5):4222-39. doi: 10.1364/OE.18.004222.
Optical coherence microscopy (OCM) is a promising technique for high resolution cellular imaging in human tissues. An OCM system for high-speed en face cellular resolution imaging was developed at 1060 nm wavelength at frame rates up to 5 Hz with resolutions of < 4 microm axial and < 2 microm transverse. The system utilized a novel polarization compensation method to combat wavelength dependent source polarization and achieve broadband electro-optic phase modulation compatible with ultrahigh axial resolution. In addition, the system incorporated an auto-focusing feature that enables precise, near real-time alignment of the confocal and coherence gates in tissue, allowing user-friendly optimization of image quality during the imaging procedure. Ex vivo cellular images of human esophagus, colon, and cervix as well as in vivo results from human skin are presented. Finally, the system design is demonstrated with a miniaturized piezoelectric fiber-scanning probe which can be adapted for laparoscopic and endoscopic imaging applications.
光学相干显微镜(OCM)是一种用于人体组织高分辨率细胞成像的有前景的技术。开发了一种用于高速正面细胞分辨率成像的OCM系统,其工作波长为1060 nm,帧率高达5 Hz,轴向分辨率小于4微米,横向分辨率小于2微米。该系统采用了一种新颖的偏振补偿方法来对抗与波长相关的光源偏振,并实现与超高轴向分辨率兼容的宽带电光相位调制。此外,该系统还具备自动聚焦功能,能够在组织中实现共焦和相干门的精确、近实时对准,从而在成像过程中实现用户友好的图像质量优化。展示了人体食管、结肠和子宫颈的离体细胞图像以及人体皮肤的体内成像结果。最后,通过一个小型化的压电纤维扫描探头展示了系统设计,该探头可适用于腹腔镜和内窥镜成像应用。