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physics.med-ph2026

Three-Photon Bayesian Imaging of Ortho-Positronium

L. Raczynski, W. Krzemien, A. Coussat +5

PET provides functional images relying on two-photon coincidences from positron-electron annihilation. In human tissue, about 40\% of annihilations are preceded by Ps formation, of…

physics.med-ph2026

A Monte Carlo positronium decay source model with multiple annihilation channels in GATE

Wojciech Krzemien, Mateusz Bala, Kamil Dulski +10

Positronium-based imaging requires realistic modelling of positronium (Ps) decay in matter. We introduce a modular Ps decay model implemented in GATE 9.4 and GATE 10, enabling the…

physics.med-ph2025

Development of the normalization method for the first large field-of-view plastic-based PET Modular scanner

A. Coussat, W. Krzemien, J. Baran +4

In positron emission tomography acquisition (PET), sensitivity along a line of response can vary due to crystal geometrical arrangements in the scanner and/or detector inefficienci…

physics.med-ph2025

Realistic Total-Body J-PET Geometry Optimization -- Monte Carlo Study

Jakub Baran, Wojciech Krzemien, Lech Raczyński +31

Total-Body PET is one of the most promising medical diagnostics modalities. The high sensitivity provided by Total-Body technology can be advantageous for novel tomography methods…

physics.med-ph2024

Development of the normalization method for the Jagiellonian PET scanner

Aurélien Coussat, Wojciech Krzemien, Jakub Baran +1

This work aims at applying the theory of the component-based normalization for the Jagiellonian PET scanner, currently under development at the Jagiellonian University. In any Posi…

physics.med-ph2024

TOF MLEM Adaptation for the Total-Body J-PET with a Realistic Analytical System Response Matrix

R. Y. Shopa, J. Baran, K. Klimaszewski +32

We report a study of the original image reconstruction algorithm based on the time-of-flight maximum likelihood expectation maximisation (TOF MLEM), developed for the total-body (T…