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Dispersion phenomenon and a compensation method in optical coherence tomography

机译:光学相干断层扫描中的色散现象和补偿方法

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The resolution of optical coherence tomography (OCT) depends on the spectral properties of the light sources used in OCT systems. The minimum distance that can be resolved by this technique is inversely proportional to the spectral width of the light source. Using broadband light sources, ultrahigh-resolution OCT can achieve axial image resolutions on the few micron scale. However, dispersion is known to increase the width of the envelope of the OCT signal and to reduce the resolution of OCT because different wavelengths of a broadband light source have different velocities in dispersive media. In the present paper, a super-luminescent diode (SLD) source is used to characterize the dispersion of different samples. The center wavelength of the light source is 845nm and spectral width is 26nm. A 30mm thick BK7 glass slab is tested. Based on the measured source spectrum, the broadened signals are calculated with the specific dispersion coefficients of different materials. The calculated signals are compared with the results measured in the experiments. A general numerical dispersion compensation method is present, which can both be applied in time domain and in frequency domain. Using this automatic iterative optimization method, the unbroadened signal can be regenerated with high resolution.
机译:光学相干断层成像的分辨率(OCT)取决于在OCT系统中使用的光源的光谱特性。可以通过该技术来解决的最小距离成反比光源的光谱宽度。使用宽带光源,超高分辨率OCT可以实现在几个微米级的轴向图像分辨率。然而,分散体是已知的,以增加OCT信号的包络的宽度并减少OCT的分辨率,因为宽带光源的不同波长具有在色散介质不同的速度。在本文件中,超辐射发光二极管(SLD)源被用来表征不同样品的分散体。光源的中心波长为845nm和光谱宽度是26nm。甲30mm厚BK7玻璃板坯进行测试。基于所测量的源光谱,所述加宽的信号与不同的材料的特定分散系数来计算。所计算出的信号与在实验中测得的结果进行比较。一般数值色散补偿方法是本,这既可以在时域和在频域中被应用。使用这种自动迭代优化的方法,所述unbroadened信号可以以高的分辨率进行再生。

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