Makita Shuichi, Fabritius Tapio, Yasuno Yoshiaki
Computational Optics Group in the University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki, 3058573, Japan.
Opt Express. 2008 Jun 9;16(12):8406-20. doi: 10.1364/oe.16.008406.
An alternative optical coherence tomography (OCT) to clinical ophthalmic 830 nm spectral-domain OCTs (SD-OCT) is demonstrated. An axial resolution of 7.4 microm, ranging depth of 4.2 mm in tissue, sensitivity of 98.5 dB, and detection speed of 38,300 axial scans/s have been achieved. These are comparable or superior to those of recently commercially available ophthalmic 830 nm SD-OCTs in clinics. In addition, fast volumetric imaging for the in vivo human posterior eye with high-contrast of the choroid is achieved. A broadband 1.04 microm light source enables the high-contrast and high resolution imaging of the retina and choroid. The ranging depth is extended by applying a full-range imaging method with an electro-optic modulator (BM-scan method). A prototype high-speed InGaAs line scan camera with 1024 pixels is used. A newly reported sensitivity improvement property of the BM-scan method demonstrates a sensitivity enhancement of 5.1 dB. We also introduce a newly developed resampling calibration method of spectrum that is independent of the intrinsic dispersion mismatch of the interferometer. The three-dimensional structure of the in vivo human optic nerve head with a very deep cupping is successfully visualized.
展示了一种不同于临床眼科830纳米光谱域光学相干断层扫描(SD - OCT)的光学相干断层扫描(OCT)。已实现轴向分辨率为7.4微米、组织中扫描深度为4.2毫米、灵敏度为98.5分贝以及检测速度为38300次轴向扫描/秒。这些指标与近期临床可用的眼科830纳米SD - OCT相当或更优。此外,还实现了对活体人眼后部具有高对比度脉络膜的快速容积成像。宽带1.04微米光源能够实现视网膜和脉络膜的高对比度和高分辨率成像。通过应用带有电光调制器的全范围成像方法(BM扫描方法)扩展了扫描深度。使用了具有1024像素的新型高速铟镓砷线扫描相机。新报道的BM扫描方法的灵敏度提升特性显示灵敏度提高了5.1分贝。我们还介绍了一种新开发的与干涉仪固有色散失配无关的光谱重采样校准方法。成功可视化了具有非常深杯状凹陷的活体人视神经乳头的三维结构。