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Spatial coherence effect on layer thickness determination in narrowband full-field optical coherence tomography

机译:空间相干性对窄带全场光学相干层析成像中层厚度确定的影响

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摘要

Longitudinal spatial coherence (LSC) is determined by the spatial frequency content of an optical beam. The use of lenses with a high numerical aperture (NA) in full-field optical coherence tomography and a narrowband light source makes the LSC length much shorter than the temporal coherence length, hence suggesting that high-resolution 3D images of biological and multilayered samples can be obtained based on the low LSC. A simplified model is derived, supported by experimental results, which describes the expected interference output signal of multilayered samples when high-NA lenses are used together with a narrowband light source. An expression for the correction factor for the layer thickness determination is found valid for high-NA objectives. Additionally, the method was applied to a strongly scattering layer, demonstrating the potential of this method for high-resolution imaging of scattering media.
机译:纵向空间相干性(LSC)由光束的空间频率含量决定。在全场光学相干断层扫描和窄带光源中使用具有高数值孔径(NA)的镜头会使LSC长度比时间相干长度短得多,因此表明生物和多层样品的高分辨率3D图像可以根据低LSC获得。导出了一个简化的模型,并得到实验结果的支持,该模型描述了将高NA透镜与窄带光源一起使用时多层样品的预期干扰输出信号。发现用于层厚确定的校正因子的表达式对于高NA物镜有效。此外,该方法还应用于强散射层,这证明了该方法对散射介质进行高分辨率成像的潜力。

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