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适用于时编码多通道光学相干断层扫描的自适应切换方案。

Adaptable switching schemes for time-encoded multichannel optical coherence tomography.

机构信息

Medical University of Vienna, Center for Medical Physics and Biomedical Engineering, Vienna, Austria.

Vienna University of Technology, Institute of Applied Physics, Vienna, Austria.

出版信息

J Biomed Opt. 2018 May;23(5):1-12. doi: 10.1117/1.JBO.23.5.056010.

Abstract

We introduce the approach of variable time encoding for multichannel optical coherence tomography (OCT). High-speed fiber optical switches are applied for sequential sample arm switching to enable quasisimultaneous image acquisition from three different orientation angles. In comparison with previous multichannel OCT (using simultaneous sample illumination), time-encoded multichannel OCT has no need for division of illumination power among the respective channels to satisfy laser safety requirements. Especially for ophthalmic applications-in particular retinal imaging, which the presented prototype was developed for-this advantage strongly influences image quality through an enhanced sensitivity. Nevertheless, time encoding comes at the cost of a decrease in imaging speed due to sequential channel illumination. For the typical multichannel OCT modality Doppler OCT, this results in a reduction of the maximum unambiguously determinable Doppler velocity. However, we demonstrate that this drawback can be overcome by adaptation of the illumination channel switching scheme. Thus, a re-extension of the maximum unambiguously determinable Doppler frequency to the full A-scan rate of the tunable light source is presented. The performance of the technique is demonstrated by flow phantom experiments and measurements of retinal blood flow in the eyes of healthy human volunteers.

摘要

我们介绍了用于多通道光学相干断层扫描(OCT)的变时编码方法。高速光纤光开关用于顺序切换样本臂,从而能够从三个不同的方位角实现准同时图像采集。与以前的多通道 OCT(使用同时的样本照明)相比,时间编码的多通道 OCT 不需要在各个通道之间分配照明功率,以满足激光安全要求。特别是对于眼科应用,特别是为本文原型开发的视网膜成像,这种优势通过增强的灵敏度强烈影响图像质量。然而,由于顺序通道照明,时间编码会降低成像速度。对于典型的多通道 OCT 模式——多普勒 OCT,这会导致最大可确定的多普勒速度的降低。然而,我们证明通过适应照明通道切换方案可以克服这一缺点。因此,提出了将最大可确定的多普勒频率重新扩展到可调光源的完整 A 扫描速率。通过流动体模实验和对健康人类志愿者眼睛的视网膜血流测量来演示该技术的性能。

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