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Snapshot Partially Coherent Diffraction Tomography

delete2021-04-28
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PRE
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熊博 (Bo Xiong)
X
Xiaoxu Li
Y
You Zhou
L
Liejun Wang
吴嘉敏 (Jiamin Wu) *
戴琼海 (Qionghai Dai)
DOI:10.1103/PhysRevApplied.15.044048delete
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Abstract

Abstract

En 中文
Diffraction tomography is a promising label-free three-dimensional (3D) imaging method for transparent samples due to its low phototoxicity. However, it usually requires coherent illuminations and massive measurements, which will, respectively, introduce speckle noises and time-consuming acquisitions, and thus, limit its applications in multicellular dynamic organisms. To address these problems, here we propose a partially coherent and snapshot diffraction tomography method based on light-field microscopy. By incorporating the illumination optical transfer function into the volumetric differential phase contrast model, we obtain a 3D phase stack from the snapshot four-dimensional phase-space measurements. Then a 3D phase-point-spread function is used for 3D deconvolution to achieve computational optical sectioning and enhance the resolution, and finally, we extract 3D refractive-index information from the 3D phase stack. Experiments on freely moving Caenorhabditis elegans are shown accordingly, demonstrating the great potential of the proposed method for label-free 3D imaging of multicellular organisms in vivo at high speed up to the camera frame rate.
Keywords:
QUANTITATIVE PHASE MICROSCOPY
HIGH-THROUGHPUT
DECONVOLUTION
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Physical Review Applied cover
Physical Review Applied
IF:
4.4
Papers:
7.1K
Citations:
2.8W

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T
tsinghua university
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Papers: 10.0W
Citations: 137
X
Xinjiang University
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nanjing university
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Citations: 87
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