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Hologram reconstruction corrected for measurements through layers with different refractive indices in digital in-line holographic microscopy

机译:校正全息图重建,以通过数字在线全息显微镜通过具有不同折射率的层进行测量

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摘要

Digital in-line holographic microscopy (DIHM) using point sources has been shown to be a versatile technique, especially for three-dimensional tracking of particles or microorganisms. However, the spherical source wave is altered when measurements are performed through layers with different refractive indices, such as water cuvettes. The situations where a layer of medium with a refractive index different than that of the predominant surrounding propagation medium (usually air) is situated behind or in front of the plane to be reconstructed are analyzed in detail, and a general approach for reconstruction under such circumstances is developed. The proposed refractive index correction is tested experimentally and compared to conventional reconstruction algorithms. Using 3D traces of swimming algal spores, the influence on the velocity calculation is also shown.
机译:使用点源的数字在线全息显微镜(DIHM)已被证明是一种通用技术,尤其是对于微粒或微生物的三维跟踪。但是,当通过具有不同折射率的层(例如比色杯)执行测量时,球形源波会发生变化。详细分析折射率不同于主要周围传播介质(通常是空气)的介质层位于要重建的平面的后面或前面的情况,并介绍在这种情况下进行重建的一般方法被开发。提出的折射率校正经过实验测试,并与常规重建算法进行了比较。使用游泳藻类孢子的3D痕迹,还显示了对速度计算的影响。

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