Opt Lett. 2018 May 15;43(10):2237-2240. doi: 10.1364/OL.43.002237.
We demonstrate a novel hybrid-beam scanning-based quantitative optical coherence tomography angiography (OCTA) that provides high-speed wide dynamic range blood flow speed imaging. The hybrid-beam scanning scheme enables multiple OCTA image acquisitions with a wide range of multiple time intervals simultaneously providing wide dynamic range blood flow speed imaging independent of the blood vessel orientation, which was quantified over a speed range of 0.6∼104 mm/s through the blood flow phantom experiments. A fully automated high-speed hybrid-beam scanning-based quantitative OCTA system demonstrates visualization of blood flow speeds in various vessels from the main arteries to capillaries in a 4 mm×4 mm area (1024 A-lines × 512 B-scans) in vivo in 20 s, showing its potential as a useful imaging tool for various biomedical applications.
我们展示了一种新颖的基于混合光束扫描的定量光相干断层扫描血管造影术(OCTA),它可以提供高速宽动态范围血流速度成像。混合光束扫描方案可同时实现多次 OCTA 图像采集,具有广泛的多个时间间隔,可独立于血管方向提供宽动态范围血流速度成像,通过血流体模实验在 0.6∼104 mm/s 的速度范围内进行了量化。一个全自动高速混合光束扫描的定量 OCTA 系统在 20 秒内在体内 4 mm×4 mm 的区域(1024 个 A 线×512 个 B 扫描)内可视化了从主要动脉到毛细血管的各种血管的血流速度,显示了其作为各种生物医学应用的有用成像工具的潜力。