Single-shot multispectral quantitative phase imaging of biological samples using deep learning
Multispectral quantitative phase imaging (MS-QPI) is a high-contrast label-free technique for morphological imaging of the specimens. The aim of the present study is to extract spectral dependent quantitative information in single-shot using a highly spatially sensitive digital holographic microscop...
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Veröffentlicht in: | Applied optics (2004) 2023-05, Vol.62 (15), p.3989 |
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Sprache: | eng |
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Zusammenfassung: | Multispectral quantitative phase imaging (MS-QPI) is a high-contrast label-free technique for morphological imaging of the specimens. The aim of the present study is to extract spectral dependent quantitative information in single-shot using a highly spatially sensitive digital holographic microscope assisted by a deep neural network. There are three different wavelengths used in our method: λ =532, 633, and 808 nm. The first step is to get the interferometric data for each wavelength. The acquired datasets are used to train a generative adversarial network to generate multispectral (MS) quantitative phase maps from a single input interferogram. The network was trained and validated on two different samples: the optical waveguide and MG63 osteosarcoma cells. Validation of the present approach is performed by comparing the predicted MS phase maps with numerically reconstructed (FT+TIE) phase maps and quantifying with different image quality assessment metrices. |
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ISSN: | 1559-128X 1539-4522 2155-3165 2155-3165 1539-4522 |
DOI: | 10.1364/AO.482788 |