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基于单相机和光开关的 1.3 微米高速光谱域偏振敏感光学相干断层扫描

High-speed spectral domain polarization- sensitive optical coherence tomography using a single camera and an optical switch at 1.3 microm.

出版信息

J Biomed Opt. 2010 Jan-Feb;15(1):010501. doi: 10.1117/1.3277668.

Abstract

We propose high-speed spectral domain polarization-sensitive optical coherence tomography (SD-PS-OCT) using a single camera and a 1x2 optical switch at the 1.3-microm region. The PS-low coherence interferometer used in the system is constructed using free-space optics. The reflected horizontal and vertical polarization light rays are delivered via an optical switch to a single spectrometer by turns. Therefore, our system costs less to build than those that use dual spectrometers, and the processes of timing and triggering are simpler from the viewpoints of both hardware and software. Our SD-PS-OCT has a sensitivity of 101.5 dB, an axial resolution of 8.2 microm, and an acquisition speed of 23,496 A-scans per second. We obtain the intensity, phase retardation, and fast axis orientation images of a rat tail tendon ex vivo.

摘要

我们提出了一种在 1.3 微米波段使用单相机和 1x2 光开关的高速光谱域偏振敏感光相干断层扫描(SD-PS-OCT)。该系统中使用的 PS 低相干干涉仪采用自由空间光学构建。反射的水平和垂直偏振光线通过光开关依次传输到单个光谱仪。因此,与使用双光谱仪的系统相比,我们的系统成本更低,从硬件和软件的角度来看,定时和触发过程也更简单。我们的 SD-PS-OCT 的灵敏度为 101.5dB,轴向分辨率为 8.2 微米,采集速度为每秒 23496 次 A 扫描。我们获得了大鼠尾腱的强度、相位延迟和快轴方向图像。

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