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空间和空间频率域中的多重散射研究:及其在像差多样光学相干断层扫描分析中的应用

Investigation of multiple scattering in space and spatial-frequency domains: with application to the analysis of aberration-diverse optical coherence tomography.

作者信息

Wu Meiqi, Liu Siyang, Leartprapun Nichaluk, Adie Steven

机构信息

Meinig School of Biomedical Engineering, Cornell University, Ithaca, NY 14853, USA.

School of Electrical and Computer Engineering, Cornell University, Ithaca, NY 14853, USA.

出版信息

Biomed Opt Express. 2021 Nov 11;12(12):7478-7499. doi: 10.1364/BOE.439395. eCollection 2021 Dec 1.

Abstract

Optical microscopy suffers from multiple scattering (MS), which limits the optical imaging depth into scattering media. We previously demonstrated aberration-diverse optical coherence tomography (AD-OCT) for MS suppression, based on the principle that for datasets acquired with different aberration states of the imaging beam, MS backgrounds become decorrelated while single scattering (SS) signals remain correlated, so that a simple coherent average can be used to enhance the SS signal over the MS background. Here, we propose a space/spatial-frequency domain analysis framework for the investigation of MS in OCT, and apply the framework to compare AD-OCT (using astigmatic beams) to standard Gaussian-beam OCT via experiments in scattering tissue phantoms. Utilizing this framework, we found that increasing the astigmatic magnitude produced a large drop in both MS background and SS signal, but the decay experienced by the MS background was larger than the SS signal. Accounting for the decay in both SS signal and MS background, the overall signal-to-background ratio (SBR) of AD-OCT was similar to the Gaussian control after about 10 coherent averages, when deeper line foci was positioned at the plane-of-interest and the line foci spacing was smaller than or equal to 80 µm. For an even larger line foci spacing of 160 µm, AD-OCT resulted in a lower SBR than the Gaussian-beam control. This work provides an analysis framework to gain deeper levels of understanding and insights for the future study of MS and MS suppression in both the space and spatial-frequency domains.

摘要

光学显微镜会受到多重散射(MS)的影响,这限制了光在散射介质中的成像深度。我们之前基于这样的原理展示了用于抑制MS的像差多样光学相干断层扫描(AD-OCT):对于以成像光束的不同像差状态采集的数据集,MS背景变得去相关,而单次散射(SS)信号保持相关,这样就可以使用简单的相干平均来增强SS信号相对于MS背景的强度。在此,我们提出了一个用于在OCT中研究MS的空间/空间频率域分析框架,并通过在散射组织模型中的实验,将该框架应用于比较AD-OCT(使用像散光束)和标准高斯光束OCT。利用这个框架,我们发现增加像散幅度会导致MS背景和SS信号都大幅下降,但MS背景的衰减比SS信号更大。考虑到SS信号和MS背景的衰减,当更深的线焦点位于感兴趣平面且线焦点间距小于或等于80 µm时,经过约10次相干平均后,AD-OCT的整体信背比(SBR)与高斯对照相似。对于160 µm的更大线焦点间距,AD-OCT的SBR低于高斯光束对照。这项工作提供了一个分析框架,以便在空间和空间频率域中对MS及其抑制的未来研究获得更深入的理解和见解。

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