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基于光学干涉条纹图的光谱校准技术提高光谱域光学相干断层成像的灵敏度

Optical Interferometric Fringe Pattern-Incorporated Spectrum Calibration Technique for Enhanced Sensitivity of Spectral Domain Optical Coherence Tomography.

机构信息

School of Electronics Engineering, College of IT Engineering, Kyungpook National University, 80, Daehak-ro, Buk-gu, Daegu 41566, Korea.

Department of Biomedical Engineering, College of Engineering, Kyungil University, 50, Gamasil-gil, Hayang-eup, Gyeongsan-si, Gyeongsangbuk-do 38428, Korea.

出版信息

Sensors (Basel). 2020 Apr 7;20(7):2067. doi: 10.3390/s20072067.

Abstract

Depth-visualizing sensitivity can be degraded due to imperfect optical alignment and non-equidistant distribution of optical signals in the pixel array, which requires a measurement of the re-sampling process. To enhance this depth-visualizing sensitivity, reference and sample arm-channeled spectra corresponding to different depths using mirrors were obtained to calibrate the spectrum sampling prior to Fourier transformation. During the process, eight interferogram patterns corresponding to point spread function (PSF) signals at eight optical path length differences were acquired. To calibrate the spectrum, generated intensity points of the original interferogram were re-indexed towards a maximum intensity range, and these interferogram re-indexing points were employed to generate a new lookup table. The entire software-based process consists of eight consecutive steps. Experimental results revealed that the proposed method can achieve images with a high depth-visualizing sensitivity. Furthermore, the results validate the proposed method as a rapidly performable spectral calibration technique, and the real-time images acquired using our technique confirm the simplicity and applicability of the method to existing optical coherence tomography (OCT) systems. The sensitivity roll-off prior to the spectral calibration was measured as 28 dB and it was halved after the calibration process.

摘要

深度可视化灵敏度可能会因光学对准不完美和像素阵列中光学信号的非等距分布而降低,这需要对重采样过程进行测量。为了提高这种深度可视化灵敏度,使用镜子获得了对应于不同深度的参考臂和样品臂通道光谱,以在傅里叶变换之前对光谱采样进行校准。在此过程中,获得了对应于八个光程差处的点扩散函数 (PSF) 信号的八个干涉图模式。为了校准光谱,对原始干涉图的生成强度点进行重新索引到最大强度范围内,并且使用这些干涉图重新索引点来生成新的查找表。整个基于软件的过程由八个连续的步骤组成。实验结果表明,所提出的方法可以实现具有高深度可视化灵敏度的图像。此外,结果验证了该方法作为一种快速执行的光谱校准技术的有效性,并且使用我们的技术获得的实时图像证实了该方法对现有光学相干断层扫描 (OCT) 系统的简单性和适用性。在光谱校准之前,灵敏度的下降幅度为 28dB,校准后灵敏度下降了一半。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/817b/7181120/04db730462be/sensors-20-02067-g001.jpg

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