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Joint reconstruction of multiple initial pressures and the speed of sound in photoacoustic tomography

Suhonen, M; Lucka, F; Pulkkinen, A; Arridge, S; Cox, B; Tarvainen, T; (2025) Joint reconstruction of multiple initial pressures and the speed of sound in photoacoustic tomography. In: Oraevsky, Alexander A and Wang, Lihong V, (eds.) Progress in Biomedical Optics and Imaging - Proceedings of SPIE. (pp. p. 118). SPIE: San Francisco, California, United States. Green open access

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Abstract

The aim of the photoacoustic tomography (PAT) inverse problem is to reconstruct the initial pressure distribution from measured ultrasound waves generated by absorption of externally induced pulse of near-infrared light. Image reconstruction calls for modelling of these acoustic pressure waves, and thus knowledge of the speed of sound distribution of the target is required. However, the speed of sound is often unknown in practical situations, and therefore it would be valuable to reconstruct it together with the initial pressure. In addition, the speed of sound can provide interesting quantitative information of the imaged target. In this work, joint reconstruction of the initial pressure and speed of sound in PAT is studied. We propose an approach where photoacoustic measurements are performed using multiple different initial pressure distributions that are generated to the target using illuminations from different directions. Methodology for joint reconstruction of these multiple initial pressure and speed of sound distributions is formulated. The methodogy was evaluated with numerical simulations. The results show that, utilising data generated by producing multiple initial pressures in the target, initial pressure distributions can be reconstructed more accurately with less artefacts compared to a reference approach of utilising a single light illumination.

Type: Proceedings paper
Title: Joint reconstruction of multiple initial pressures and the speed of sound in photoacoustic tomography
Event: Photons Plus Ultrasound: Imaging and Sensing 2025 (BiOS, 2025)
Dates: 25 Jan 2025 - 31 Jan 2025
Open access status: An open access version is available from UCL Discovery
DOI: 10.1117/12.3041863
Publisher version: https://doi.org/10.1117/12.3041863
Language: English
Additional information: This version is the version of record. For information on re-use, please refer to the publisher’s terms and conditions.
UCL classification: UCL
UCL > Provost and Vice Provost Offices > UCL BEAMS
UCL > Provost and Vice Provost Offices > UCL BEAMS > Faculty of Engineering Science > Dept of Computer Science
UCL > Provost and Vice Provost Offices > UCL BEAMS > Faculty of Engineering Science > Dept of Med Phys and Biomedical Eng
URI: https://discovery.ucl.ac.uk/id/eprint/10208494
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