Yasuno Yoshiaki, Hong Youngjoo, Makita Shuichi, Yamanari Masahiro, Akiba Masahiro, Miura Masahiro, Yatagai Toyohiko
Computational Optics Group in the University of Tsukuba, Tsukuba, Ibaraki, Japan.
Opt Express. 2007 May 14;15(10):6121-39. doi: 10.1364/oe.15.006121.
Retinal, choroidal and scleral imaging by using swept-source optical coherence tomography (SS-OCT) with a 1-microm band probe light, and high-contrast and three-dimensional (3D) imaging of the choroidal vasculature are presented. This SS-OCT has a measurement speed of 28,000 A-lines/s, a depth resolution of 10.4 microm in tissue, and a sensitivity of 99.3 dB. Owing to the high penetration of the 1-microm probe light and the high sensitivity of the system, the in vivo sclera of a healthy volunteer can be observed. A software-based algorithm of scattering optical coherence angiography (S-OCA) is developed for the high-contrast and 3D imaging of the choroidal vessels. The S-OCA is used to visualize the 3D choroidal vasculature of the in vivo human macula and the optic nerve head. Comparisons of S-OCA with several other angiography techniques including Doppler OCA, Doppler OCT, fluorescein angiography, and indocyanine green angiography are also presented.
介绍了使用带1微米波段探测光的扫频光学相干断层扫描(SS-OCT)进行视网膜、脉络膜和巩膜成像,以及脉络膜血管系统的高对比度三维(3D)成像。这种SS-OCT的测量速度为28,000条A线/秒,组织深度分辨率为10.4微米,灵敏度为99.3分贝。由于1微米探测光的高穿透性和系统的高灵敏度,可以观察到健康志愿者的活体巩膜。开发了一种基于软件的散射光学相干血管造影(S-OCA)算法,用于脉络膜血管的高对比度和3D成像。S-OCA用于可视化活体人黄斑和视神经乳头的三维脉络膜血管系统。还介绍了S-OCA与其他几种血管造影技术的比较,包括多普勒OCA、多普勒OCT、荧光素血管造影和吲哚菁绿血管造影。