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通过小波-快速傅里叶变换滤波减少光学相干断层扫描图像中的条纹伪影

Attenuation of stripe artifacts in optical coherence tomography images through wavelet-FFT filtering.

作者信息

Byers Robert, Matcher Stephen

机构信息

Dept. of Infection & Immunity & Cardiovascular Disease, Univ. of Sheffield, Beech Hill Road, Sheffield, S10 2RX, UK.

Dept. of Electronic and Electrical Engineering, Univ. of Sheffield, Broad Lane, Sheffield, S3 7HQ, UK.

出版信息

Biomed Opt Express. 2019 Jul 24;10(8):4179-4189. doi: 10.1364/BOE.10.004179. eCollection 2019 Aug 1.

Abstract

The use of polarization-maintaining (PM) fibers for polarization-sensitive optical coherence tomography (PS-OCT) can result in numerous image artifacts which degrade the reliability of birefringence measurements. Similar artifacts can also arise in conventional OCT, due to stray reflections from optical surfaces, a problem which is increasing in tandem with the steady rise in source coherence lengths. Here, a recently presented wavelet-FFT filter[Opt. Express17(10), 8567 (2009).] is combined with surface flattening displacement fields in order to suppress ghost artifacts following either a duplicate or inverse profile to that of the sample surface. In addition, horizontal coherence stripes originating from Fresnel reflections of optical components are suppressed in order to facilitate accurate surface detection. The result is an improved visualization of the phase-retardance profile within tissue, which may improve the reliability of curve-fitting methods for localized birefringence estimation. While the results are presented with a focus towards PS-OCT, the filtering method can also be applied to the removal of stray reflection artifacts in conventional OCT images.

摘要

将保偏(PM)光纤用于偏振敏感光学相干断层扫描(PS - OCT)会产生大量图像伪影,这些伪影会降低双折射测量的可靠性。由于光学表面的杂散反射,类似的伪影也会出现在传统OCT中,随着光源相干长度的稳步增加,这个问题也日益突出。在此,一种最近提出的小波 - FFT滤波器[Opt. Express17(10), 8567 (2009).]与表面平坦化位移场相结合,以抑制与样品表面重复或相反轮廓的重影伪影。此外,源自光学元件菲涅尔反射的水平相干条纹也被抑制,以便于准确的表面检测。结果是改善了组织内相位延迟分布的可视化,这可能会提高用于局部双折射估计的曲线拟合方法的可靠性。虽然结果主要针对PS - OCT展示,但该滤波方法也可应用于去除传统OCT图像中的杂散反射伪影。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2c1/6701519/03c5b9e6201c/boe-10-8-4179-g001.jpg

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