First Study of a HEXITEC Detector for Secondary Particle Characterisation during Proton Beam Therapy

Author:

Perez-Lara Maria L.1ORCID,Khong Jia C.1,Wilson Matthew D.2,Cline Ben D.2,Moss Robert M.1ORCID

Affiliation:

1. Department of Medical Physics and Biomedical Engineering, University College London, London WC1E 6BT, UK

2. Rutherford Appleton Laboratory in the Science and Technology Facilities Council, Chilton OX11 0QX, UK

Abstract

Online proton range verification is a rapidly emerging field characterised by its ability to reduce the error margins during proton beam therapy, as it is patient-specific and in vivo. In particular, secondary prompt gamma detection is a promising tool to monitor the dose delivery. The present research evaluates the capability of a HEXITEC detector to identify the prompt gammas produced during proton beam therapy, and assesses its potential for online range verification. To achieve this, the detector is placed at one side of a water phantom, which is irradiated at different proton energies in the University College London Hospital Proton Centre. For further analysis, Monte Carlo simulations are performed using Geant4 and the same geometry as the experiment. The results show that HEXITEC has the potential to be part of a detection system that could identify secondary prompt gammas within the secondary field produced inside the target, allowing for the in-detector discrimination of these particles via cluster size analysis. The comparison between data sets shows that there is a high level of accuracy between the model and the experimental measurements in terms of secondary flux and charge diffusion inside the detector, which poses the model as a fundamental tool for future optimisation studies.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference36 articles.

1. Radiological use of fast protons;Wilson;Radiology,1946

2. The physics of proton therapy;Newhauser;Phys. Med. Biol.,2015

3. Kim, P.J., and Shih, H.A. (2012). Ion Beam Therapy, Springer.

4. Range uncertainties in proton therapy and the role of Monte Carlo simulations;Paganetti;Phys. Med. Biol.,2012

5. In vivo proton range verification: A review;Knopf;Phys. Med. Biol.,2013

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