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- W2535839330 abstract "We propose a new reconstruction algorithm for fluorescence diffuse optical tomography, which is designed for highly heterogeneous objects, such as biological tissues. It is a two-step algorithm that exploits continuous-wave measurements acquired at both excitation and fluorescence wavelengths. First, an optical heterogeneity map, which depends on both absorption and diffusion coefficients, is obtained from excitation measurements. Second, the fluorescence distribution is reconstructed considering the recovered optical heterogeneity map. The algorithm includes dimensionality reduction techniques, namely measurement compression and structured illumination, which significantly reduce acquisition and reconstruction times. The algorithm has been tested on experimental data acquired from tissue-mimicking phantoms considering sparsity priors. We demonstrate the feasibility and effectiveness of this new approach that allows the fluorescence reconstruction quality to be significantly improved with respect to that provided by the standard normalized Born method." @default.
- W2535839330 created "2016-10-28" @default.
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- W2535839330 date "2016-10-18" @default.
- W2535839330 modified "2023-09-27" @default.
- W2535839330 title "Reconstruction of an optical inhomogeneity map improves fluorescence diffuse optical tomography" @default.
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- W2535839330 doi "https://doi.org/10.1088/2057-1976/2/5/055020" @default.
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