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NOVO - Neutron and Prompt Gamma-Ray Range Verification in Particle Therapy

Authors :
(0000-0002-9501-0898) Kögler, T.
Alagoz, E.
(0000-0002-3597-1611) Ytre-Hauge, K. S.
(0000-0002-7593-7549) Hysing, L. B.
(0000-0003-3810-1926) Lathouwers, D.
(0000-0003-0971-4678) Lionheart, W.
(0000-0002-9347-922X) Obhodas, J.
(0000-0002-2336-0178) Pausch, G.
(0000-0003-4879-771X) Pettersen, H. E. S.
(0000-0003-3761-5415) Ratliff, H. N.
Rovituso, M.
(0000-0002-9742-8518) Schellhammer, S.
(0000-0001-7765-7308) Setterdahl, L. M.
(0000-0002-3164-3100) Skjerdal, K.
(0000-0002-2374-9319) Sudac, D.
(0000-0002-1400-4120) Turko, J. A. B.
(0000-0001-5659-3907) Meric, I.
(0000-0002-9501-0898) Kögler, T.
Alagoz, E.
(0000-0002-3597-1611) Ytre-Hauge, K. S.
(0000-0002-7593-7549) Hysing, L. B.
(0000-0003-3810-1926) Lathouwers, D.
(0000-0003-0971-4678) Lionheart, W.
(0000-0002-9347-922X) Obhodas, J.
(0000-0002-2336-0178) Pausch, G.
(0000-0003-4879-771X) Pettersen, H. E. S.
(0000-0003-3761-5415) Ratliff, H. N.
Rovituso, M.
(0000-0002-9742-8518) Schellhammer, S.
(0000-0001-7765-7308) Setterdahl, L. M.
(0000-0002-3164-3100) Skjerdal, K.
(0000-0002-2374-9319) Sudac, D.
(0000-0002-1400-4120) Turko, J. A. B.
(0000-0001-5659-3907) Meric, I.
Source :
IEEE Medical Imaging Conference 2022, 05.-12.11.2022, Milano, Italy
Publication Year :
2022

Abstract

Due to its high sensitivity to anatomical changes, particle therapy will only unfold its full potential together with a functioning online range verification. We present a detector concept making use of a large fraction of the secondary particles available by hybrid prompt gamma-ray and fast neutron imaging. The system is expected to exhibit a high detection sensitivity to these particles, a high time, energy and position resolution, excellent pulse shape discrimination, and a small footprint. It comprises a quasi-monolithic organic detector array consisting of novel organic scintillators with dual-ended silicon photomultiplier light read-out and fast digitizers. The reconstruction of the proton range from the events registered by the detector is based on gamma/neutron scatter kinematics, cone back-projection and maximum likelihood expectation maximization. Multiple studies are currently ongoing investigating the feasibility of this concept on an experimental and simulation level. A first Monte Carlo simulation study involving realistic patient data and an idealized detector has revealed that a range-shift sensitivity of 1 mm per spot is attainable for clinical spot weights. These results demonstrate the potential of particle treatment verification by fast neutrons and prompt gamma-rays and strengthen the potential of this hybrid system for clinical application.

Details

Database :
OAIster
Journal :
IEEE Medical Imaging Conference 2022, 05.-12.11.2022, Milano, Italy
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1415609102
Document Type :
Electronic Resource