Leitgeb Rainer, Schmetterer L, Drexler W, Fercher A, Zawadzki R, Bajraszewski T
Opt Express. 2003 Nov 17;11(23):3116-21. doi: 10.1364/oe.11.003116.
We interfaced color Doppler Fourier domain optical coherence tomography (CD-FDOCT) with a commercial OCT system to perform in vivo studies of human retinal blood flow in real time. FDOCT does not need reference arm scanning and records one full depth and Doppler profile in parallel. The system operates with an equivalent A-scan rate of 25 kHz and allows real time imaging of the color encoded Doppler information together with the tissue morphology at a rate of 2-4 tomograms (40 x 512 pixel) per second. The recording time of a single tomogram (160 x 512 data points) is only 6,4ms. Despite the high detection speed we achieve a system sensitivity of 86dB using a beam power of 500microW at the cornea. The fundus camera allows simultaneous view for selection of the region of interest. We observe bi-directional blood flow and pulsatility of blood velocity in retinal vessels with a Doppler detection bandwidth of 12.5 kHz and a longitudinal velocity sensitivity in tissue of 200microm/s.
我们将彩色多普勒傅里叶域光学相干断层扫描(CD-FDOCT)与商用光学相干断层扫描(OCT)系统连接,以实时进行人体视网膜血流的体内研究。傅里叶域光学相干断层扫描(FDOCT)无需参考臂扫描,并能并行记录一个完整的深度和多普勒剖面图。该系统以等效25kHz的A扫描速率运行,并允许以每秒2-4张断层扫描图(40×512像素)的速率对彩色编码的多普勒信息和组织形态进行实时成像。单个断层扫描图(160×512个数据点)的记录时间仅为6.4毫秒。尽管检测速度很高,但在角膜处使用500微瓦的光束功率时,我们实现了86分贝的系统灵敏度。眼底相机允许同时观察以选择感兴趣区域。我们观察到视网膜血管中的双向血流和血流速度的搏动性,多普勒检测带宽为12.5kHz,组织中的纵向速度灵敏度为200微米/秒。