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Image formation and tomogram reconstruction in optical coherence microscopy

机译:光学相干显微镜中的图像形成和断层图像重建

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摘要

In this work we present a model for image formation in optical coherence microscopy. In the spectral domain detection, each wavenumber has a specific coherent transfer function that samples a different part of the object's spatial frequency spectrum. The reconstruction of the tomogram is usually accurate only in a short depth of field. Using numerical simulations based on the developed model, we identified two distinct mechanisms that influence the signal of out-of-focus sample information. Besides the lateral blurring induced through defocusing, an additional axial envelope contributing equally to the signal degradation was found.
机译:在这项工作中,我们提出了一种在光学相干显微镜中成像的模型。在频谱域检测中,每个波数都有一个特定的相干传递函数,该函数对对象空间频谱的不同部分进行采样。断层图像的重建通常仅在短景深中才是准确的。使用基于已开发模型的数值模拟,我们确定了两种不同的机制会影响离焦样本信息的信号。除了通过散焦引起的横向模糊外,还发现了一个额外的轴向包络,其对信号质量的下降贡献相同。

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