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Date
2018-08Type
- Report
ETH Bibliography
yes
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Abstract
In this paper, we present a novel reconstruction method for diffuse optical spectroscopic imaging with a commonly used tissue model of optical absorption and scattering. It is based on linearization and group sparsity, which allows recovering the diffusion coefficient and absorption coefficient simultaneously, provided that their spectral profiles are incoherent and a sufficient number of wavelengths are judiciously taken for the measurements. We also discuss the reconstruction for imperfectly known boundary and show that with the multi-wavelength data, the method can reduce the influence of modelling errors and still recover the absorption coefficient. Extensive numerical experiments are presented to support our analysis. Show more
Publication status
publishedExternal links
Journal / series
SAM Research ReportVolume
Publisher
Seminar for Applied Mathematics, ETH ZurichSubject
Diffuse optical spectroscopic imaging; Reconstrucion algorithm; Group sparsity; Imperfectly known boundaryOrganisational unit
09504 - Ammari, Habib / Ammari, Habib
Related publications and datasets
Is previous version of: http://hdl.handle.net/20.500.11850/325549
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