Litcius/Paper detail

A high contrast and resolution reconstruction algorithm in quantitative photoacoustic tomography

Anwesa Dey, Alfio Borzı̀, Souvik Roy

2024Journal of Computational and Applied Mathematics11 citationsDOIOpen Access PDF

Abstract

A framework for reconstruction of optical diffusion and absorption coefficients in quantitative photoacoustic tomography is presented. This framework is based on a Tikhonov-type functional with a regularization term promoting sparsity of the absorption coefficient and a prior involving a Kubelka-Munk absorption-diffusion relation that allows to obtain superior reconstructions. The reconstruction problem is formulated as the minimization of this functional subject to the differential constraint given by a photon-propagation model. The solution of this problem is obtained by a fast and robust sequential quadratic hamiltonian algorithm based on the Pontryagin maximum principle. Results of several numerical experiments demonstrate that the proposed computational strategy is able to obtain reconstructions of the optical coefficients with high contrast and resolution for a wide variety of objects.

Topics & Concepts

MathematicsTomographyPhotoacoustic tomographyContrast (vision)High contrastAlgorithmResolution (logic)Photoacoustic imaging in biomedicineHigh resolutionComputer visionOpticsArtificial intelligenceRadiologyComputer scienceRemote sensingMedicineGeologyPhysicsPhotoacoustic and Ultrasonic ImagingOptical Imaging and Spectroscopy TechniquesThermography and Photoacoustic Techniques