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Estimation and compensation of dispersion for a high-resolution optical coherence tomography system

机译:高分辨率光学相干断层扫描系统分散的估计与补偿

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摘要

Balanced reference-sample arm dispersion is critical in optical coherence tomography systems in order to attain images with the highest axial resolution. Here, an experimental method for the estimation and correction of dispersion in an optical coherence tomography system is presented. The system dispersion was computed from two optical coherence tomography images of the reference mirror that were symmetrically placed around the zero delay point. The method was tested using a broad bandwidth spectral domain optical coherence tomography system, compensating for the dispersion caused by a 3 mm thick fused silica flat placed in the sample arm. Using our method, dispersion compensation was achieved and the axial resolution was improved from 10.6 mu m to 1.9 mu m in air. Results suggest that this technique can be a simple and effective method for eliminating axial resolution degradation due to dispersion mismatch between the sample and reference arm in high-resolution optical coherence tomography systems.
机译:平衡参考样品臂色散在光学相干断层扫描系统中是至关重要的,以便获得具有最高轴向分辨率的图像。这里,提出了一种估计和校正光学相干断层扫描系统中的分散的实验方法。从对称地放置在零延迟点的参考镜的两个光学相干断层摄影图像中计算系统分散。使用宽带宽光谱畴光相干断层扫描系统测试该方法,补偿由放置在样品臂中的3mm厚的熔融二氧化硅平面引起的分散体。使用我们的方法,实现了分散补偿,并且在空气中从10.6μm至1.9μm提高了轴向分辨率。结果表明,由于在高分辨率光学相干断层摄影系统中的样品和参考臂之间的色散失配,该技术可以是消除轴向分辨率劣化的简单有效方法。

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