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采用双检测全范围频域光学相干断层扫描的多普勒成像。

Doppler imaging with dual-detection full-range frequency domain optical coherence tomography.

作者信息

Meemon Panomsak, Lee Kye-Sung, Rolland Jannick P

出版信息

Biomed Opt Express. 2010 Aug 10;1(2):537-552. doi: 10.1364/BOE.1.000537.

Abstract

Most of full-range techniques for Frequency Domain Optical Coherence Tomography (FD-OCT) reported to date utilize the phase relation between consecutive axial lines to reconstruct a complex interference signal and hence may exhibit degradation in either mirror image suppression performance or detectable velocity dynamic range or both when monitoring a moving sample such as flow activity. We have previously reported a technique of mirror image removal by simultaneous detection of the quadrature components of a complex spectral interference called a Dual-Detection Frequency Domain OCT (DD-FD-OCT) [Opt. Lett. 35, 1058-1060 (2010)]. The technique enables full range imaging without any loss of acquisition speed and is intrinsically less sensitive to phase errors generated by involuntary movements of the subject. In this paper, we demonstrate the application of the DD-FD-OCT to a phase-resolved Doppler imaging without degradation in either mirror image suppression performance or detectable velocity dynamic range that were observed in other full-range Doppler methods. In order to accommodate for Doppler imaging, we have developed a fiber-based DD-FD-OCT that more efficiently utilizes the source power compared with the previous free-space DD-FD-OCT. In addition, the velocity sensitivity of the phase-resolved DD-FD-OCT was investigated, and the relation between the measured Doppler phase shift and set flow velocity of a flow phantom was verified. Finally, we demonstrate the Doppler imaging using the DD-FD-OCT in a biological sample.

摘要

迄今为止报道的大多数用于频域光学相干断层扫描(FD - OCT)的全量程技术利用连续轴向线之间的相位关系来重建复干涉信号,因此在监测诸如血流活动等移动样本时,可能在镜像抑制性能、可检测速度动态范围或两者方面出现退化。我们之前报道了一种通过同时检测复谱干涉的正交分量来去除镜像的技术,称为双检测频域光学相干断层扫描(DD - FD - OCT)[《光学快报》35, 1058 - 1060 (2010)]。该技术能够实现全量程成像,而不会损失任何采集速度,并且本质上对由受试者非自主运动产生的相位误差不太敏感。在本文中,我们展示了DD - FD - OCT在相位分辨多普勒成像中的应用,在镜像抑制性能和可检测速度动态范围方面均未出现其他全量程多普勒方法中所观察到的退化。为了适应多普勒成像,我们开发了一种基于光纤的DD - FD - OCT,与之前的自由空间DD - FD - OCT相比,它能更有效地利用光源功率。此外,研究了相位分辨DD - FD - OCT的速度灵敏度,并验证了测量的多普勒相移与流体模型设定流速之间的关系。最后,我们展示了使用DD - FD - OCT在生物样本中的多普勒成像。

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