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Positronium imaging with the novel multiphoton PET scanner

Authors :
Moskal, Paweł
Dulski, Kamil
Chug, Neha
Curceanu, Catalina
Czerwiński, Eryk
Dadgar, Meysam
Gajewski, Jan
Gajos, Aleksander
Grudzień, Grzegorz
Hiesmayr, Beatrix C.
Kacprzak, Krzysztof
Kapłon, Łukasz
Karimi, Hanieh
Klimaszewski, Konrad
Korcyl, Grzegorz
Kowalski, Paweł
Kozik, Tomasz
Krawczyk, Nikodem
Krzemień, Wojciech
Kubicz, Ewelina
Małczak, Piotr
Niedźwiecki, Szymon
Pawlik-Niedźwiecka, Monika
Pędziwiatr, Michał
Raczyński, Lech
Raj, Juhi
Ruciński, Antoni
Sharma, Sushil
Shivani
Shopa, Roman Y.
Silarski, Michał
Skurzok, Magdalena
Stępień, Ewa Ł.
Szczepanek, Monika
Tayefi, Faranak
Wiślicki, Wojciech
Source :
Science Advances 7 (2021) eabh4394
Publication Year :
2021

Abstract

In vivo assessment of cancer and precise location of altered tissues at initial stages of molecular disorders are important diagnostic challenges. Positronium is copiously formed in the free molecular spaces in the patient's body during positron emission tomography (PET). The positronium properties vary according to the size of inter- and intramolecular voids and the concentration of molecules in them such as, e.g., molecular oxygen, O2; therefore, positronium imaging may provide information about disease progression during the initial stages of molecular alterations. Current PET systems do not allow acquisition of positronium images. This study presents a new method that enables positronium imaging by simultaneous registration of annihilation photons and deexcitation photons from pharmaceuticals labeled with radionuclides. The first positronium imaging of a phantom built from cardiac myxoma and adipose tissue is demonstrated. It is anticipated that positronium imaging will substantially enhance the specificity of PET diagnostics.<br />Comment: 10 pages, 5 figures

Details

Database :
arXiv
Journal :
Science Advances 7 (2021) eabh4394
Publication Type :
Report
Accession number :
edsarx.2112.08741
Document Type :
Working Paper
Full Text :
https://doi.org/10.1126/sciadv.abh4394