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采用组合式超发光二极管的人视网膜高分辨率可见光光学相干断层扫描

High-resolution visible light OCT of the human retina with combined superluminescent diodes.

作者信息

Gupta Alok K, Meng Ruoyu, Duelk Marcus, Wald Kenneth, Srinivasan Vivek J

出版信息

Opt Lett. 2025 Jun 15;50(12):4070-4073. doi: 10.1364/OL.560148.

Abstract

High-resolution optical coherence tomography (OCT) requires broadband, spatially coherent light sources. Today, the source of choice for visible light OCT, the supercontinuum (SC), is bulky, expensive, and prone to excess noise. Here we demonstrate high-resolution visible light OCT of the human retina with a combined superluminescent diode (SLD) source. The source is longer in wavelength than the high blue light hazard range but shorter in wavelength than the high photopic efficiency range, ensuring subject safety and comfort. We report an axial resolution of 3.2 µm in the retina. We find that Bruch's membrane is well-delineated in subjects without ocular pathology, even though the axial resolution is ∼3× coarser than SC visible light OCT. Imaging of intermediate age-related macular degeneration is also shown. Within the cyan-green wavelength range of the SLD, optical density spectra resemble those of macular pigments. While the combined SLD approach does not achieve the micrometer-scale resolution of the SC, it potentially reduces the cost and complexity of visible light OCT while providing novel disease-relevant biomarkers, to the best of our knowledge, in human retina.

摘要

高分辨率光学相干断层扫描(OCT)需要宽带、空间相干光源。如今,可见光OCT的首选光源——超连续谱(SC)体积庞大、价格昂贵且容易产生过多噪声。在此,我们展示了使用组合式超发光二极管(SLD)光源进行的人视网膜高分辨率可见光OCT成像。该光源的波长比高蓝光危害范围更长,但比高光视效率范围更短,从而确保了受试者的安全与舒适。我们报告了视网膜的轴向分辨率为3.2微米。我们发现,在没有眼部病变的受试者中,尽管轴向分辨率比SC可见光OCT粗约3倍,但布鲁赫膜仍能清晰显示。文中还展示了对中期年龄相关性黄斑变性的成像。在SLD的蓝绿色波长范围内,光密度光谱类似于黄斑色素的光谱。虽然组合式SLD方法无法达到SC的微米级分辨率,但据我们所知,它有可能降低可见光OCT的成本和复杂性,同时提供与疾病相关的新型生物标志物。

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