Physical compensation method for dispersion of multiple materials in swept source optical coherence tomography.

Jiangjie Huang,Jinyu Fan,Yi He,Guohua Shi

Journal of biophotonics(2023)

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摘要
An ophthalmic SS-OCT system based on a high-speed scanning laser at 1060 nm with a scanning rate of 100 KHz is constructed. Since the sample arm of the interferometer is comprised of multiple glass materials, the ensuing dispersion severely degrades imaging quality. In this paper, second-order dispersion simulation analysis for various materials was performed firstly, and dispersion equilibrium was implemented utilizing physical compensation methods. After dispersion compensation, an imaging depth in air of 4.013 mm was achieved in model eye experiments, and Signal-to-Noise Ratio was enhanced by 11.6%, with a value of 53.8 dB. In vivo imaging of the human retina was performed to demonstrate structurally distinguishable retinal images, characterized by an axial resolution improvement of 19.8%, with a value of 7.7 μm close to the theoretical value of 7.5 μm. The proposed physical dispersion compensation method enhances imaging performance in SS-OCT systems, enabling visualization of several low scattering mediums. This article is protected by copyright. All rights reserved.
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关键词
dispersion analysis of complex materials, dispersion equilibrium, retinal imaging, swept source optical coherence tomography, ultra-high resolution imaging
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