Multi-focus averaging for multiple scattering suppression in optical coherence tomography

Fuente: arXiv
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Auteurs principaux: Zhu, Lida, Makita, Shuichi, Tamaoki, Junya, Lichtenegger, Antonia, Lim, Yiheng, Zhu, Yiqiang, Yasuno, Makoto Kobayashiand Yoshiaki
Format: Preprint
Publié: 2023
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author Zhu, Lida
Makita, Shuichi
Tamaoki, Junya
Lichtenegger, Antonia
Lim, Yiheng
Zhu, Yiqiang
Yasuno, Makoto Kobayashiand Yoshiaki
author_facet Zhu, Lida
Makita, Shuichi
Tamaoki, Junya
Lichtenegger, Antonia
Lim, Yiheng
Zhu, Yiqiang
Yasuno, Makoto Kobayashiand Yoshiaki
contents Multiple scattering is one of the main factors that limits the penetration depth of optical coherence tomography (OCT) in scattering samples. We propose a method termed multi-focus averaging (MFA) to suppress the multiple-scattering signals and improve the image contrast of OCT in deep regions. The MFA method captures multiple OCT volumes with various focal positions and averages them in complex form after correcting the varying defocus through computational refocusing. Because the multiple-scattering takes different trajectories among the different focal position configurations, this averaging suppresses the multiple-scattering signal. Meanwhile, the single-scattering takes a consistent trajectory regardless of the focal position configuration and is not suppressed. Hence, the MFA method improves the signal ratio between the single- and multiple-scattering signals and improves the image contrast. A scattering phantom and a postmortem zebrafish were measured for validation of the proposed method. The results showed that the contrast of intensity images of both the phantom and zebrafish were improved using the MFA method, such that they were better than the contrast provided by the standard complex averaging method. The MFA method provides a cost-effective solution for contrast enhancement through multiple-scattering reduction in tissue imaging using OCT systems.
format Preprint
id arxiv_https___arxiv_org_abs_2304_11309
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Multi-focus averaging for multiple scattering suppression in optical coherence tomography
Zhu, Lida
Makita, Shuichi
Tamaoki, Junya
Lichtenegger, Antonia
Lim, Yiheng
Zhu, Yiqiang
Yasuno, Makoto Kobayashiand Yoshiaki
Optics
Biological Physics
Instrumentation and Detectors
Medical Physics
Multiple scattering is one of the main factors that limits the penetration depth of optical coherence tomography (OCT) in scattering samples. We propose a method termed multi-focus averaging (MFA) to suppress the multiple-scattering signals and improve the image contrast of OCT in deep regions. The MFA method captures multiple OCT volumes with various focal positions and averages them in complex form after correcting the varying defocus through computational refocusing. Because the multiple-scattering takes different trajectories among the different focal position configurations, this averaging suppresses the multiple-scattering signal. Meanwhile, the single-scattering takes a consistent trajectory regardless of the focal position configuration and is not suppressed. Hence, the MFA method improves the signal ratio between the single- and multiple-scattering signals and improves the image contrast. A scattering phantom and a postmortem zebrafish were measured for validation of the proposed method. The results showed that the contrast of intensity images of both the phantom and zebrafish were improved using the MFA method, such that they were better than the contrast provided by the standard complex averaging method. The MFA method provides a cost-effective solution for contrast enhancement through multiple-scattering reduction in tissue imaging using OCT systems.
title Multi-focus averaging for multiple scattering suppression in optical coherence tomography
topic Optics
Biological Physics
Instrumentation and Detectors
Medical Physics
url https://arxiv.org/abs/2304.11309