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Dual-Channel Spectral Domain Optical Coherence Tomography Based on a Single Spectrometer Using Compressive Sensing

机译:基于单光谱仪压缩感知的双通道光谱域光学相干断层扫描

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摘要

Dual-channel spectral domain optical coherence tomography (SD-OCT) is one of the effective methods for improving imaging depth and imaging speed. In this paper, we design a dual-channel SD-OCT system based on a single spectrometer that can operate in two modes: (1) Increasing imaging speed and (2) expanding imaging depth. An optical path offset is preintroduced between the two channels to separate the two-channel data. However, this offset increases the requirement for the spectral resolution of the spectrometer in mode (1), so compressive sensing (CS) technology is used herein to overcome this problem. Consequently, in mode (1), when the spectral resolution of the spectrometer is the same as that used in the single-channel system, we use a dual-channel SD-OCT system combined with CS technology to double the imaging speed. In mode (2), when the spectral resolution of the spectrometer is only half of that used in a single-channel system, the imaging depth can be nearly doubled. We demonstrate the feasibility and effectiveness of the method proposed in this work by imaging a mirror, a fish fin, a fish eye, and an onion.
机译:双通道光谱域光学相干断层扫描(SD-OCT)是提高成像深度和成像速度的有效方法之一。在本文中,我们基于单个光谱仪设计了一种双通道SD-OCT系统,该系统可以在两种模式下运行:(1)提高成像速度和(2)扩大成像深度。在两个通道之间预先引入了光路偏移量,以分隔两个通道的数据。但是,此偏移增加了对模式(1)中光谱仪的光谱分辨率的要求,因此本文使用压缩传感(CS)技术来克服此问题。因此,在模式(1)中,当光谱仪的光谱分辨率与单通道系统中使用的光谱分辨率相同时,我们使用结合CS技术的双通道SD-OCT系统将成像速度提高一倍。在模式(2)中,当光谱仪的光谱分辨率仅为单通道系统所用光谱分辨率的一半时,成像深度几乎可以增加一倍。我们通过对镜子,鱼翅,鱼眼和洋葱进行成像演示了这项工作中提出的方法的可行性和有效性。

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