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4-D dynamic imaging of the eye using ultrahigh speed SS-OCT

机译:使用超高速SS-OCT的眼睛的4-D动态成像

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Recent advances in swept-source / Fourier domain optical coherence tomography (SS-OCT) technology enable in vivo ultrahigh speed imaging, offering a promising technique for four-dimensional (4-D) imaging of the eye. Using an ultrahigh speed tunable vertical cavity surface emitting laser (VCSEL) light source based SS-OCT prototype system, we performed imaging of human eye dynamics in four different imaging modes: 1) Pupillary reaction to light at 200,000 axial scans per second and 9 μm resolution in tissue. 2) Anterior eye focusing dynamics at 100,000 axial scans per second and 9 μm resolution in tissue. 3) Tear film break up at 50,000 axial scans per second and 19 μm resolution in tissue. 4) Retinal blood flow at 800,000 axial scans per second and 12 μm resolution in tissue. The combination of tunable ultrahigh speeds and long coherence length of the VCSEL along with the outstanding roll-off performance of SS-OCT makes this technology an ideal tool for time-resolved volumetric imaging of the eye. Visualization and quantitative analysis of 4-D OCT data can potentially provide insight to functional and structural changes in the eye during disease progression. Ultrahigh speed imaging using SS-OCT promises to enable novel 4-D visualization of realtime dynamic processes of the human eye. Furthermore, this non-invasive imaging technology is a promising tool for research to characterize and understand a variety of visual functions.
机译:扫掠源/傅里叶域光学相干断层扫描(SS-OCT)技术的最新进展使得体内超高速成像能够为眼睛的四维(4-D)成像提供有希望的技术。使用超高速调垂直腔表面发射激光器(VCSEL)光源基于SS-OCT原型系统,我们在四种不同的成像模式中进行了人眼动力学的成像:1)瞳孔反应为每秒200,000次轴向扫描和9μm在组织中分辨率。 2)前眼睛聚焦动力学在每秒100,000次轴向扫描,组织中的9μm分辨率。 3)撕裂膜在每秒50,000次轴向扫描处分解,组织中的19μm分辨率。 4)视网膜血流在800,000次轴向扫描每秒和12μm的组织中。 VCSEL的可调超高速度和长相干长度的组合以及SS-OCT的出色滚动性能使得这项技术成为眼睛的时间分辨体积成像的理想工具。 4-D OCT数据的可视化和定量分析可能在疾病进展期间潜在地提供对眼睛的功能和结构变化的洞察力。使用SS-OCT的超高速度成像承诺,使人类眼睛的实时动态过程的新颖4-D可视化。此外,这种非侵入性成像技术是用于研究表征和理解各种视觉功能的有前途的工具。

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