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- W2290671444 endingPage "39" @default.
- W2290671444 startingPage "13" @default.
- W2290671444 abstract "Quantitative phase imaging (QPI), a method that precisely recovers the wavefront of an electromagnetic field scattered by a transparent, weakly scattering object, is a rapidly growing field of study. By solving the inverse scattering problem, the structure of the scattering object can be reconstructed from QPI data. In the past decade, 3D optical tomographic reconstruction methods based on QPI techniques to solve inverse scattering problems have made significant progress. In this review, we highlight a number of these advances and developments. In particular, we cover in depth Fourier transform light scattering (FTLS), optical diffraction tomography (ODT), and white-light diffraction tomography (WDT)." @default.
- W2290671444 created "2016-06-24" @default.
- W2290671444 creator A5022877503 @default.
- W2290671444 creator A5052179421 @default.
- W2290671444 creator A5056127619 @default.
- W2290671444 creator A5090287884 @default.
- W2290671444 date "2015-12-16" @default.
- W2290671444 modified "2023-09-27" @default.
- W2290671444 title "Solving inverse scattering problems in biological samples by quantitative phase imaging" @default.
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