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A hybrid multi-particle approach to range assessment-based treatment verification in particle therapy

Authors :
(0000-0001-5659-3907) Meric, I.
Alagoz, E.
(0000-0002-7593-7549) Hysing, L.
(0000-0002-9501-0898) Kögler, T.
(0000-0003-3810-1926) Lathouwers, D.
(0000-0003-0971-4678) Lionheart, W.
(0000-0003-4561-6995) Mattingly, J.
(0000-0002-9347-922X) Obhodas, J.
(0000-0002-2336-0178) Pausch, G.
(0000-0003-4879-771X) Pettersen, H.
(0000-0003-3761-5415) Ratliff, H.
Rovituso, M.
(0000-0002-9742-8518) Schellhammer, S.
(0000-0001-7765-7308) Setterdahl, L.
(0000-0002-3164-3100) Skjerdal, K.
(0000-0001-9764-546X) Sterpin, E.
(0000-0002-2374-9319) Sudac, D.
(0000-0002-1400-4120) Turko, J. A. B.
(0000-0002-3597-1611) Ytre-Hauge, K.
(0000-0001-5659-3907) Meric, I.
Alagoz, E.
(0000-0002-7593-7549) Hysing, L.
(0000-0002-9501-0898) Kögler, T.
(0000-0003-3810-1926) Lathouwers, D.
(0000-0003-0971-4678) Lionheart, W.
(0000-0003-4561-6995) Mattingly, J.
(0000-0002-9347-922X) Obhodas, J.
(0000-0002-2336-0178) Pausch, G.
(0000-0003-4879-771X) Pettersen, H.
(0000-0003-3761-5415) Ratliff, H.
Rovituso, M.
(0000-0002-9742-8518) Schellhammer, S.
(0000-0001-7765-7308) Setterdahl, L.
(0000-0002-3164-3100) Skjerdal, K.
(0000-0001-9764-546X) Sterpin, E.
(0000-0002-2374-9319) Sudac, D.
(0000-0002-1400-4120) Turko, J. A. B.
(0000-0002-3597-1611) Ytre-Hauge, K.
Source :
Scientific Reports 13(2023)1, 6709
Publication Year :
2023

Abstract

Particle therapy (PT) used for cancer treatment can spare healthy tissue and reduce treatment toxicity. However, full exploitation of the dosimetric advantages of PT is not yet possible due to range uncertainties, warranting development of range-monitoring techniques. This study proposes a novel range-monitoring technique introducing the yet unexplored concept of simultaneous detection and imaging of fast neutrons and prompt-gamma rays produced in beam-tissue interactions. A quasi-monolithic organic detector array is proposed, and its feasibility for detecting range shifts in the context of proton therapy is explored through Monte Carlo simulations of realistic patient models. The results indicate that range shifts of 1 mm can be detected at relatively low proton intensities (6 million/spot) when spatial information obtained through imaging of both particle species are used simultaneously. This study lays the foundation for multi-particle detection and imaging systems in the context range verification in PT.

Details

Database :
OAIster
Journal :
Scientific Reports 13(2023)1, 6709
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1415626146
Document Type :
Electronic Resource