White Brian, Pierce Mark, Nassif Nader, Cense Barry, Park B, Tearney Guillermo, Bouma Brett, Chen Teresa, de Boer Johannes
Opt Express. 2003 Dec 15;11(25):3490-7. doi: 10.1364/oe.11.003490.
An ultra-high-speed spectral domain optical Doppler tomography (SD-ODT) system is used to acquire images of blood flow in a human retina in vivo, at 29,000 depth profiles (A-lines) per second and with data acquisition over 99% of the measurement time. The phase stability of the system is examined and image processing algorithms are presented that allow accurate determination of bi-directional Doppler shifts. Movies are presented of human retinal flow acquired at 29 frames per second with 1000 A-lines per frame over a time period of 3.28 seconds, showing accurate determination of vessel boundaries and time-dependent bi-directional flow dynamics in artery-vein pairs. The ultra-high-speed SD-ODT system allows visualization of the pulsatile nature of retinal blood flow, detects blood flow within the choroid and retinal capillaries, and provides information on the cardiac cycle. In summary, accurate video rate imaging of retinal blood flow dynamics is demonstrated at ocular exposure levels below 600 microW.
一种超高速光谱域光学多普勒断层扫描(SD - ODT)系统用于在体内获取人视网膜血流图像,每秒可获取29000条深度剖面(A线),且在99%的测量时间内进行数据采集。研究了该系统的相位稳定性,并提出了图像处理算法,可精确测定双向多普勒频移。展示了以每秒29帧、每帧1000条A线在3.28秒的时间段内获取的人视网膜血流视频,显示了动脉 - 静脉对中血管边界的精确测定以及随时间变化的双向血流动力学。这种超高速SD - ODT系统能够可视化视网膜血流的搏动特性,检测脉络膜和视网膜毛细血管内的血流,并提供有关心动周期的信息。总之,在低于600微瓦的眼部暴露水平下,实现了视网膜血流动力学的精确视频速率成像。