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In vivo high-contrast imaging of deep posterior eye by 1-um swept source optical coherence tomography and scattering optical coherence angiography

机译:1um扫频光源光学相干断层扫描和散射光学相干血管成像技术对深后眼进行体内高对比度成像

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摘要

Retinal, choroidal and scleral imaging by using swept-source optical coherence tomography (SS-OCT) with a 1-μm 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 μm in tissue, and a sensitivity of 99.3 dB. Owing to the high penetration of the 1-μm 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.
机译:提出了使用扫频光学相干断层扫描(SS-OCT)和1μm波段探测光对视网膜,脉络膜和巩膜进行成像的方法,并对脉络膜脉管系统进行了高对比度和三维(3D)成像。该SS-OCT的测量速度为28,000 A线/秒,组织中的深度分辨率为10.4μm,灵敏度为99.3 dB。由于1-μm探测光的高穿透力和系统的高灵敏度,因此可以观察到健康志愿者的体内巩膜。针对脉络膜血管的高对比度和3D成像,开发了基于软件的散射光学相干血管造影(S-OCA)算法。 S-OCA用于可视化体内人黄斑和视神经头的3D脉络膜脉管系统。还介绍了S-OCA与其他几种血管造影技术(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)的比较。

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