Northwestern University, Department of Biomedical Engineering, 2145 Sheridan Road, Evanston, Illinois 60208, United States.
Northwestern University, Department of Biomedical Engineering, 2145 Sheridan Road, Evanston, Illinois 60208, United StatesbBoston University, Department of Medicine, 650 Albany Street, Boston, Massachusetts 02118, United States.
J Biomed Opt. 2016 Jun 1;21(6):66013. doi: 10.1117/1.JBO.21.6.066013.
We developed a simultaneous visible-light (Vis) and near-infrared (NIR) dual-band optical coherence tomography (OCT) system using a single supercontinuum laser source. The goal was to benchmark our newly developed Vis-OCT against the well-developed NIR-OCT. The Vis-OCT subsystem operated at 91 nm full-width-at-half-maximum (FWHM) bandwidth centered at 566 nm; the NIR-OCT subsystem operated at 93 nm FWHM bandwidth centered at 841 nm. The axial resolutions were 1.8 and 4.4 μm in air for the Vis- and NIR-OCT subsystems, respectively. We compared the respective performances, including anatomical imaging, angiography, absolute retinal blood flow measurements, and spectroscopic analysis for retinal blood oxygen saturation (sO2), between the two subsystems in rodents in vivo. While demonstrating minor discrepancies related to operation wavelengths, both subsystems showed comparable performances in the first three tests. However, we were only able to retrieve sO2 using the Vis-OCT subsystem.
我们开发了一种使用单一超连续激光源的同时可见 (Vis) 和近红外 (NIR) 双带光相干断层扫描 (OCT) 系统。我们的目标是将新开发的 Vis-OCT 与成熟的 NIR-OCT 进行基准测试。Vis-OCT 子系统在 566nm 处的半最大值全宽 (FWHM) 带宽为 91nm;NIR-OCT 子系统在 841nm 处的 FWHM 带宽为 93nm。Vis-OCT 和 NIR-OCT 子系统在空气中的轴向分辨率分别为 1.8μm 和 4.4μm。我们在体内的啮齿动物中比较了这两个子系统在解剖成像、血管造影、视网膜绝对血流测量和视网膜血氧饱和度 (sO2) 的光谱分析方面的性能。虽然与操作波长有关的差异较小,但两个子系统在前三个测试中均表现出相当的性能。然而,我们只能使用 Vis-OCT 子系统检索 sO2。