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使用垂直腔面发射激光器的超高速扫频源光学相干断层扫描技术进行视网膜、眼前节和全眼成像。

Retinal, anterior segment and full eye imaging using ultrahigh speed swept source OCT with vertical-cavity surface emitting lasers.

作者信息

Grulkowski Ireneusz, Liu Jonathan J, Potsaid Benjamin, Jayaraman Vijaysekhar, Lu Chen D, Jiang James, Cable Alex E, Duker Jay S, Fujimoto James G

机构信息

Department of Electric Engineering and Computer Science and Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

Biomed Opt Express. 2012 Nov 1;3(11):2733-51. doi: 10.1364/BOE.3.002733. Epub 2012 Oct 3.

Abstract

We demonstrate swept source OCT utilizing vertical-cavity surface emitting laser (VCSEL) technology for in vivo high speed retinal, anterior segment and full eye imaging. The MEMS tunable VCSEL enables long coherence length, adjustable spectral sweep range and adjustable high sweeping rate (50-580 kHz axial scan rate). These features enable integration of multiple ophthalmic applications into one instrument. The operating modes of the device include: ultrahigh speed, high resolution retinal imaging (up to 580 kHz); high speed, long depth range anterior segment imaging (100 kHz) and ultralong range full eye imaging (50 kHz). High speed imaging enables wide-field retinal scanning, while increased light penetration at 1060 nm enables visualization of choroidal vasculature. Comprehensive volumetric data sets of the anterior segment from the cornea to posterior crystalline lens surface are also shown. The adjustable VCSEL sweep range and rate make it possible to achieve an extremely long imaging depth range of ~50 mm, and to demonstrate the first in vivo 3D OCT imaging spanning the entire eye for non-contact measurement of intraocular distances including axial eye length. Swept source OCT with VCSEL technology may be attractive for next generation integrated ophthalmic OCT instruments.

摘要

我们展示了利用垂直腔面发射激光器(VCSEL)技术的扫频光源光学相干断层扫描(OCT),用于体内高速视网膜、眼前节和全眼成像。MEMS可调谐VCSEL实现了长相干长度、可调节的光谱扫描范围和可调节的高扫描速率(轴向扫描速率为50 - 580 kHz)。这些特性使得多种眼科应用能够集成到一台仪器中。该设备的操作模式包括:超高速、高分辨率视网膜成像(高达580 kHz);高速、长深度范围眼前节成像(100 kHz)和超长范围全眼成像(50 kHz)。高速成像能够实现宽视野视网膜扫描,而1060 nm处增加的光穿透能力能够使脉络膜血管可视化。还展示了从角膜到晶状体后表面的眼前节综合体积数据集。可调谐VCSEL扫描范围和速率使得实现约50 mm的极长成像深度范围成为可能,并首次展示了用于非接触测量包括眼轴长度在内的眼内距离的全眼体内三维OCT成像。采用VCSEL技术的扫频光源OCT可能对下一代集成眼科OCT仪器具有吸引力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57fe/3493240/e3cfb1d2ab63/boe-3-11-2733-g001.jpg

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