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A three-stage method for reconstructing multiple coefficients in coupled photoacoustic and diffuse optical imaging

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arxiv 2408.03496 v3 pith:WKJCNDD2 submitted 2024-08-07 math.NA cs.NAmath.OCphysics.comp-phphysics.med-ph

classification math.NAcs.NAmath.OCphysics.comp-phphysics.med-ph
keywords opticalcoefficientsuneisenabsorptionadditionallowscoefficientcurrent
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This paper studies inverse problems in quantitative photoacoustic tomography with additional optical current data supplemented from diffuse optical tomography. We propose a three-stage image reconstruction method for the simultaneous recovery of the absorption, diffusion, and Gr\"uneisen coefficients. We demonstrate, through numerical simulations, that: (i) when the Gr\"uneisen coefficient is known, the addition of the optical measurements allows a more accurate reconstruction of the scattering and absorption coefficients; and (ii) when the Gr\"uneisen coefficient is not known, the addition of optical current measurements allows us to reconstruct uniquely the Gr\"uneisen, the scattering and absorption coefficients. Numerical simulations based on synthetic data are presented to demonstrate the effectiveness of the proposed idea.

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