论文标题

通过细胞内不均匀性的光学分散

Optical dispersions through intracellular inhomogeneities

论文作者

Watabe, Masaki, Hirano, Yasuhiro, Iwane, Atsuko, Matoba, Osamu, Takahashi, Koichi

论文摘要

强度方程(TIE)的转运表现出生物成像中中间场(例如光和电子)的强度和相变之间的非接口相关性。先前的扎带公式通常假设沿纵向方向跨越相分布的单色相干场函数的自由空间传播。在这里,我们根据基于细胞内折射率湍流的分形(或自相似)组织模型来修改领带。然后,我们在各种分形维度和波长上实施TIE模拟。仿真结果表明,如何通过在图表计内到微米波长范围内的强度分散剂(或透射率)的细胞内折射率互连的空间波动来传播强度传播。此外,我们还提供了相位衍生物的空间自动关系,该空间衍生物可以直接测量和重建来自光学和电子显微镜成像的细胞内分形谱。

Transport of intensity equation (TIE) exhibits a non-interferometric correlation between intensity and phase variations of intermediate fields (e.g., light and electron) in biological imaging. Previous TIE formulations have generally assumed a free space propagation of monochromatic coherent field functions crossing phase distributions along a longitudinal direction. Here, we modify the TIE with fractal (or self-similar) organization models based on intracellular refractive index turbulence. We then implement the TIE simulation over a broad range of fractal dimensions and wavelengths. Simulation results show how the intensity propagation through the spatial fluctuation of intracellular refractive index interconnects fractal-dimensionality with intensity dispersion (or transmissivity) within the picometer to micrometer wavelength range. In addition, we provide a spatial-autocorrelation of phase derivatives which allows the direct measurement and reconstruction of intracellular fractal profiles from optical and electron microscopy imaging.

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