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Diffraction Tomography From Single-Molecule Localization Microscopy: Numerical Feasibility

机译:单分子定位显微镜的衍射层析术:数值可行性

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Single-molecule localization microscopy (SMLM) is a fluorescence microscopy technique that achieves super-resolution imaging by sequentially activating and localizing random sparse subsets of fluorophores. Each activated fluorophore emits light that then scatters through the sample, thus acting as a source of illumination from inside the sample. Hence, the sequence of SMLM frames carries information on the distribution of the refractive index of the sample. In this proof-of-concept work, we explore the possibility of exploiting this information to recover the refractive index of the imaged sample, given the localized molecules. Our results with simulated data suggest that it is possible to exploit the phase information that underlies the SMLM data.
机译:单分子定位显微镜(SMLM)是一种荧光显微镜技术,通过顺序激活和定位荧光团的随机稀疏亚组来实现超分辨率成像。 每个活化的荧光团发射光,然后发光,然后散射通过样品,从而作用为样品内部的照明源。 因此,SMLM帧的序列携带有关样品折射率分布的信息。 在这种概念证明工作中,我们探讨了在给予局部分子的情况下利用该信息以恢复成像样品的折射率的可能性。 我们的仿真数据结果表明,可以利用基础SMLM数据的相位信息。

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