Feasibility study of the positronium imaging with the J-PET tomograph
P. Moskal, D. Kisielewska, C. Curceanu, E. Czerwi\'nski, K. Dulski, A., Gajos, M. Gorgol, B. Hiesmayr, B. Jasi\'nska, K. Kacprzak, {\L}. Kap{\l}on,, G. Korcyl, P. Kowalski, W. Krzemie\'n, T. Kozik, E. Kubicz, M. Mohammed, Sz., Nied\'zwiecki, M. Pa{\l}ka, M. Pawlik-Nied\'zwiecka

TL;DR
This study explores the potential of positronium three-photon imaging using the J-PET tomograph, aiming to enhance medical imaging by measuring ortho-positronium lifetime with high precision.
Contribution
It introduces a novel imaging method based on positronium lifetime reconstruction using the J-PET system, including simulation and event-by-event analysis techniques.
Findings
Achieved a mean lifetime resolution of about 40 ps.
Simulated positronium formation in a phantom with lifetimes from 2.0 to 3.0 ns.
Potential to detect morphological changes in tissues via lifetime measurements.
Abstract
A detection system of the conventional PET tomograph is set-up to record data from e+ e- annihilation into two photons with energy of 511 keV, and it gives information on the density distribution of a radiopharmaceutical in the body of the object. In this paper we explore the possibility of performing the three gamma photons imaging based on ortho-positronium annihilation, as well as the possibility of positronium mean lifetime imaging with the J-PET tomograph constructed from plastic scintillators. For this purposes simulations of the ortho-positronium formation and its annihilation into three photons were performed taking into account distributions of photons' momenta as predicted by the theory of quantum electrodynamics and the response of the J-PET tomograph. In order to test the proposed ortho-positronium lifetime image reconstruction method, we concentrate on the decay of the…
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