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Design of a k-space spectrometer for ultra-broad waveband spectral domain optical coherence tomography

机译:超宽带波段谱域光学相干层析成像的k空间光谱仪设计

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摘要

Nonlinear sampling of the interferograms in wavenumber (k) space degrades the depth-dependent signal sensitivity in conventional spectral domain optical coherence tomography (SD-OCT). Here we report a linear-in-wavenumber (k-space) spectrometer for an ultra-broad bandwidth (760 nm–920 nm) SD-OCT, whereby a combination of a grating and a prism serves as the dispersion group. Quantitative ray tracing is applied to optimize the linearity and minimize the optical path differences for the dispersed wavenumbers. Zemax simulation is used to fit the point spread functions to the rectangular shape of the pixels of the line-scan camera and to improve the pixel sampling rates. An experimental SD-OCT is built to test and compare the performance of the k-space spectrometer with that of a conventional one. Design results demonstrate that this k-space spectrometer can reduce the nonlinearity error in k-space from 14.86% to 0.47% (by approximately 30 times) compared to the conventional spectrometer. The 95% confidence interval for RMS diameters is 5.48 ± 1.76 μm—significantly smaller than both the pixel size (14 μm × 28 μm) and the Airy disc (25.82 μm in diameter, calculated at the wavenumber of 7.548 μm−1). Test results demonstrate that the fall-off curve from the k-space spectrometer exhibits much less decay (maximum as −5.20 dB) than the conventional spectrometer (maximum as –16.84 dB) over the whole imaging depth (2.2 mm).
机译:波数(k)空间中干涉图的非线性采样会降低常规谱域光学相干断层扫描(SD-OCT)中依赖于深度的信号灵敏度。在这里,我们报告了用于超宽带(760(nm–920 nm)SD-OCT的波数线性(k空间)光谱仪,其中光栅和棱镜的组合用作色散组。应用定量射线追踪可以优化线性度,并最小化分散波数的光程差。 Zemax模拟用于将点扩散函数拟合到线扫描相机像素的矩形形状,并提高像素采样率。建立了一个实验性SD-OCT,用于测试和比较k空间光谱仪与常规光谱仪的性能。设计结果表明,与传统光谱仪相比,这种k空间光谱仪可以将k空间中的非线性误差从14.86%降低到0.47%(大约30倍)。 RMS直径的95%置信区间为5.48±1.76—μm-显着小于像素大小(14μm×28μm)和Airy盘(直径25.82μm,以7.548μm -1的波数计算) )。测试结果表明,在整个成像深度(2.2 mm)上,k空间光谱仪的衰减曲线显示出的衰减(最大为–5.20 dB)比常规光谱仪(最大为–16.84 dB)要小得多。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Gongpu Lan; Guoqiang Li;

  • 作者单位
  • 年(卷),期 -1(7),-1
  • 年度 -1
  • 页码 42353
  • 总页数 8
  • 原文格式 PDF
  • 正文语种
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