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Feasibility study of the positronium imaging with the J-PET tomograph.

Authors :
P Moskal
D Kisielewska
C Curceanu
E Czerwiński
K Dulski
A Gajos
M Gorgol
B Hiesmayr
B Jasińska
K Kacprzak
Ł Kapłon
G Korcyl
P Kowalski
W Krzemień
T Kozik
E Kubicz
M Mohammed
Sz Niedźwiecki
M Pałka
M Pawlik-Niedźwiecka
Source :
Physics in Medicine & Biology; Mar2019, Vol. 64 Issue 5, p1-1, 1p
Publication Year :
2019

Abstract

A detection system of the conventional PET tomograph is set-up to record data from 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 ortho-positronium into three photons and applications of radiopharmaceuticals labeled with isotopes emitting a prompt gamma. The proposed method of imaging is based on the determination of hit-times and hit-positions of registered photons which enables the reconstruction of the time and position of the annihilation point as well as the lifetime of the ortho-positronium on an event-by-event basis. We have simulated the production of the positronium in point-like sources and in a cylindrical phantom composed of a set of different materials in which the ortho-positronium lifetime varied from 2.0 ns to 3.0 ns, as expected for ortho-positronium created in the human body. The presented reconstruction method for total-body J-PET like detector allows to achieve a mean lifetime resolution of  ∼40 ps. Recent positron annihilation lifetime spectroscopy measurements of cancerous and healthy uterine tissues show that this sensitivity may allow to study the morphological changes in cell structures. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00319155
Volume :
64
Issue :
5
Database :
Complementary Index
Journal :
Physics in Medicine & Biology
Publication Type :
Academic Journal
Accession number :
135119426
Full Text :
https://doi.org/10.1088/1361-6560/aafe20