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本文引用的文献

1
Master/slave interferometry - ideal tool for coherence revival swept source optical coherence tomography.主/从干涉测量法——用于相干恢复扫频源光学相干断层扫描的理想工具。
Biomed Opt Express. 2016 Jun 2;7(7):2453-68. doi: 10.1364/BOE.7.002453. eCollection 2016 Jul 1.
2
Quantifying the influence of Bessel beams on image quality in optical coherence tomography.量化贝塞尔光束对光学相干断层扫描图像质量的影响。
Sci Rep. 2016 Mar 24;6:23483. doi: 10.1038/srep23483.
3
Spectral fusing Gabor domain optical coherence microscopy.光谱融合加博尔域光学相干显微镜。
Opt Lett. 2016 Feb 1;41(3):508-11. doi: 10.1364/OL.41.000508.
4
Complex master slave interferometry.复杂主从干涉测量法
Opt Express. 2016 Feb 8;24(3):2885-904. doi: 10.1364/OE.24.002885.
5
Imaging the anterior eye with dynamic-focus swept-source optical coherence tomography.使用动态聚焦扫频源光学相干断层扫描对眼前部进行成像。
J Biomed Opt. 2015;20(12):126002. doi: 10.1117/1.JBO.20.12.126002.
6
Master slave en-face OCT/SLO.主从式表面光学相干断层扫描/扫描激光检眼镜
Biomed Opt Express. 2015 Aug 27;6(9):3655-69. doi: 10.1364/BOE.6.003655. eCollection 2015 Sep 1.
7
On the possibility of producing true real-time retinal cross-sectional images using a graphics processing unit enhanced master-slave optical coherence tomography system.关于使用图形处理单元增强型主从光学相干断层扫描系统生成真正实时视网膜横截面图像的可能性。
J Biomed Opt. 2015 Jul;20(7):76008. doi: 10.1117/1.JBO.20.7.076008.
8
Demonstration of tolerance to dispersion of master/slave interferometry.主/从干涉测量法色散耐受性的证明。
Opt Express. 2015 Jun 1;23(11):14148-61. doi: 10.1364/OE.23.014148.
9
Swept source optical coherence tomography Gabor fusion splicing technique for microscopy of thick samples using a deformable mirror.用于厚样本显微镜检查的扫频源光学相干断层扫描加博尔融合拼接技术,采用可变形镜。
J Biomed Opt. 2015 Jan;20(1):016012. doi: 10.1117/1.JBO.20.1.016012.
10
Imaging the eye fundus with real-time en-face spectral domain optical coherence tomography.使用实时正面光谱域光学相干断层扫描对眼底进行成像。
Biomed Opt Express. 2014 Mar 19;5(4):1233-49. doi: 10.1364/BOE.5.001233. eCollection 2014 Apr 1.

加博尔融合主从光学相干断层扫描术

Gabor fusion master slave optical coherence tomography.

作者信息

Cernat Ramona, Bradu Adrian, Israelsen Niels Møller, Bang Ole, Rivet Sylvain, Keane Pearse A, Heath David-Garway, Rajendram Ranjan, Podoleanu Adrian

机构信息

Applied Optics Group, School of Physical Sciences, University of Kent, Canterbury CT2 7NH, Kent, UK.

DTU Fotonik, Department of Photonics Engineering, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.

出版信息

Biomed Opt Express. 2017 Jan 13;8(2):813-827. doi: 10.1364/BOE.8.000813. eCollection 2017 Feb 1.

DOI:10.1364/BOE.8.000813
PMID:28270987
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5330593/
Abstract

This paper describes the application of the Gabor filtering protocol to a Master/Slave (MS) swept source optical coherence tomography (SS)-OCT system at 1300 nm. The MS-OCT system delivers information from selected depths, a property that allows operation similar to that of a time domain OCT system, where dynamic focusing is possible. The Gabor filtering processing following collection of multiple data from different focus positions is different from that utilized by a conventional swept source OCT system using a Fast Fourier transform (FFT) to produce an A-scan. Instead of selecting the bright parts of A-scans for each focus position, to be placed in a final B-scan image (or in a final volume), and discarding the rest, the MS principle can be employed to advantageously deliver signal from the depths within each focus range only. The MS procedure is illustrated on creating volumes of data of constant transversal resolution from a cucumber and from an insect by repeating data acquisition for 4 different focus positions. In addition, advantage is taken from the tolerance to dispersion of the MS principle that allows automatic compensation for dispersion created by layers above the object of interest. By combining the two techniques, Gabor filtering and Master/Slave, a powerful imaging instrument is demonstrated. The master/slave technique allows simultaneous display of three categories of images in one frame: multiple depth en-face OCT images, two cross-sectional OCT images and a confocal like image obtained by averaging the en-face ones. We also demonstrate the superiority of MS-OCT over its FFT based counterpart when used with a Gabor filtering OCT instrument in terms of the speed of assembling the fused volume. For our case, we show that when more than 4 focus positions are required to produce the final volume, MS is faster than the conventional FFT based procedure.

摘要

本文描述了将伽柏滤波协议应用于波长为1300nm的主/从(MS)扫频源光学相干断层扫描(SS)-OCT系统。MS-OCT系统能从选定深度提供信息,这一特性使其操作类似于时域OCT系统,在时域OCT系统中可进行动态聚焦。在从不同聚焦位置采集多个数据之后进行的伽柏滤波处理,不同于传统的使用快速傅里叶变换(FFT)来生成A扫描的扫频源OCT系统所采用的处理方式。不是为每个聚焦位置选择A扫描的明亮部分以放入最终的B扫描图像(或最终体数据)并丢弃其余部分,而是可以利用MS原理仅从每个聚焦范围内的深度有利地传递信号。通过对黄瓜和昆虫重复进行4个不同聚焦位置的数据采集,展示了MS程序在创建具有恒定横向分辨率的数据体方面的应用。此外,利用了MS原理对色散的耐受性,这允许自动补偿感兴趣对象上方各层产生的色散。通过结合伽柏滤波和主/从这两种技术,展示了一种强大的成像仪器。主/从技术允许在一帧中同时显示三类图像:多个深度的正面OCT图像、两个横截面OCT图像以及通过对正面图像求平均得到的类似共焦的图像。我们还证明,在与伽柏滤波OCT仪器配合使用时,就融合体数据的组装速度而言,MS-OCT优于基于FFT的同类产品。对于我们的情况,我们表明,当需要超过4个聚焦位置来生成最终体数据时,MS比传统的基于FFT的程序更快。