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使用基于光纤的可见光光学相干断层扫描眼科显微镜进行人体视网膜结构和功能成像。

Structural and functional human retinal imaging with a fiber-based visible light OCT ophthalmoscope.

作者信息

Chong Shau Poh, Bernucci Marcel, Radhakrishnan Harsha, Srinivasan Vivek J

机构信息

Biomedical Engineering Department, University of California Davis, Davis, California 95616, USA.

Biomedical Engineering Department, University of California Davis, Davis, California 95616, USA; Department of Ophthalmology and Vision Science, University of California Davis School of Medicine, Sacramento, California 95817, USA.

出版信息

Biomed Opt Express. 2016 Dec 19;8(1):323-337. doi: 10.1364/BOE.8.000323. eCollection 2017 Jan 1.

Abstract

The design of a multi-functional fiber-based Optical Coherence Tomography (OCT) system for human retinal imaging with < 2 micron axial resolution in tissue is described. A detailed noise characterization of two supercontinuum light sources with different pulse repetition rates is presented. The higher repetition rate and lower noise source is found to enable a sensitivity of 96 dB with 0.15 mW light power at the cornea and a 98 microsecond exposure time. Using a broadband (560 ± 50 nm), 90/10, fused single-mode fiber coupler designed for visible wavelengths, the sample arm is integrated into an ophthalmoscope platform, similar to current clinical OCT systems. To demonstrate the instrument's range of operation, structural retinal imaging is also shown at 0.15 mW exposure with 10,000 and 70,000 axial scans per second (the latter comparable to commercial OCT systems), and at 0.03 mW exposure and 10,000 axial scans per second (below maximum permissible continuous exposure levels). Lastly, spectroscopic imaging of anatomy, saturation, and hemoglobin content in the human retina is also demonstrated.

摘要

本文描述了一种用于人体视网膜成像的多功能光纤光学相干断层扫描(OCT)系统的设计,该系统在组织中的轴向分辨率小于2微米。文中给出了两种具有不同脉冲重复率的超连续光源的详细噪声特性。结果发现,较高的重复率和较低的噪声源能够在角膜处实现96 dB的灵敏度,光功率为0.15 mW,曝光时间为98微秒。使用专为可见波长设计的宽带(560±50 nm)、90/10熔融单模光纤耦合器,样品臂被集成到检眼镜平台中,类似于当前的临床OCT系统。为了展示该仪器的操作范围,还展示了在0.15 mW曝光下,每秒10,000次和70,000次轴向扫描(后者与商用OCT系统相当)以及在0.03 mW曝光和每秒10,000次轴向扫描(低于最大允许连续曝光水平)下的视网膜结构成像。最后,还展示了人体视网膜解剖结构、饱和度和血红蛋白含量的光谱成像。

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