Phase estimation for global defocus correction in optical coherence tomography

Mikkel Jensen, N. Israelsen, A. Podoleanu, O. Bang
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Abstract

In this work we investigate three techniques for estimation of the non-linear phase present due to defocus in optical coherence tomography, and apply them with the angular spectrum method. The techniques are: Least squares fitting the of unwrapped phase of the angular spectrum, iterative optimization, and sub-aperture correlations. The estimated phase of a single en-face image is used to extrapolate the non-linear phase at all depths, which in the end can be used to correct the entire 3-D tomogram, and any other tomogram from the same system.
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光学相干层析成像中全局离焦校正的相位估计
在这项工作中,我们研究了光学相干层析成像中由于离焦而存在的非线性相位的三种估计技术,并将它们与角谱方法相结合。这些技术包括:角谱解包裹相位的最小二乘拟合、迭代优化和子孔径关联。单个正面图像的估计相位用于外推所有深度的非线性相位,最终可用于校正整个三维层析图,以及来自同一系统的任何其他层析图。
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